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Euphrates

The Euphrates (/juːˈfrtz/ yoo-FRAY-teez; see below) is the longest and one of the most historically important rivers of Western Asia. Together with the Tigris, it is one of the two defining rivers of Mesopotamia (lit.'the land between the rivers'). Originating in Turkey, the Euphrates flows through Syria and Iraq to join the Tigris in the Shatt al-Arab, which empties into the Persian Gulf.

Euphrates
The Euphrates in the town of Birecik, Turkey.
Map of the combined Tigris–Euphrates drainage basin (in yellow)
Etymologyfrom Akkadian Purattu, from Sumerian Burannu
Location
CountryTurkey, Iraq, Syria
Basin areaTurkey, Syria, Iraq, Saudi Arabia, Kuwait, Iran
Source regionArmenian highlands[1]
CitiesBirecik, Raqqa, Deir ez-Zor, Mayadin, Haditha, Ramadi, Habbaniyah, Fallujah, Kufa, Samawah, Nasiriyah
Physical characteristics
SourceMurat River
 • locationÇat, Turkey
 • coordinates39°43′44″N 41°13′23″E / 39.729°N 41.223°E / 39.729; 41.223
 • elevation3,520 m (11,550 ft)
2nd sourceKarasu
 • locationYakutiye, Turkey
 • coordinates40°11′24″N 41°30′25″E / 40.190°N 41.507°E / 40.190; 41.507
 • elevation3,290 m (10,790 ft)
Source confluence 
 • locationKeban, Turkey
 • coordinates39°43′44″N 40°15′25″E / 39.729°N 40.257°E / 39.729; 40.257
 • elevation610 m (2,000 ft)
MouthShatt al-Arab
 • location
Al-Qurnah, Iraq
 • coordinates
31°0′18″N 47°26′31″E / 31.00500°N 47.44194°E / 31.00500; 47.44194
 • elevation
1 m (3.3 ft)
LengthApprox. 2,800 km (1,700 mi)
Basin sizeApprox. 500,000 km2 (190,000 sq mi)
Discharge 
 • locationHīt
 • average356 m3/s (12,600 cu ft/s)
 • minimum58 m3/s (2,000 cu ft/s)
 • maximum2,514 m3/s (88,800 cu ft/s)
Basin features
ProgressionShatt al-ArabPersian Gulf
River systemTigris–Euphrates river system
Tributaries 
 • leftBalikh, Khabur
 • rightSajur

The Euphrates is the fifteenth-longest river in Asia and the longest in Western Asia, at about 2,780 km (1,730 mi), and has a drainage area of 440,000 km2 (170,000 sq mi) that covers six countries.

Etymology edit

The term Euphrates derives from the Greek Euphrátēs (Εὐφρᾱ́της), adapted from Old Persian: 𐎢𐎳𐎼𐎠𐎬𐎢, romanized: Ufrātu,[2] itself from Elamite: 𒌑𒅁𒊏𒌅𒅖, romanized: ú-ip-ra-tu-iš. The Elamite name is ultimately derived from a name spelt in cuneiform 𒌓𒄒𒉣 , which read as Sumerian is Buranuna and read as Akkadian is Purattu; many cuneiform signs have a Sumerian pronunciation and an Akkadian pronunciation, taken from a Sumerian word and an Akkadian word that mean the same. The Akkadian Purattu[3] has been perpetuated in Semitic languages (cf. Arabic: الفرات al-Furāt; Syriac: ̇ܦܪܬ Pǝrāṯ, Hebrew: פְּרָת Pǝrāṯ) and in other nearby languages of the time (cf. Hurrian Puranti, Sabarian Uruttu). The Elamite, Akkadian, and possibly Sumerian forms are suggested to be from an unrecorded substrate language.[4] Tamaz V. Gamkrelidze and Vyacheslav Ivanov suggest the proto-Sumerian *burudu "copper" (Sumerian urudu) as an origin, with an explanation that Euphrates was the river by which copper ore was transported in rafts, since Mesopotamia was the center of copper metallurgy during the period.[5]

The Euphrates is called Yeprat in Armenian (Եփրատ), Perat in modern Hebrew (פרת), Fırat in Turkish and Firat in Kurdish. The Mandaic name is Praš (ࡐࡓࡀࡔ), and is often mentioned as Praš Ziwa (pronounced Fraš Ziwa) in Mandaean scriptures such as the Ginza Rabba.[6] In Mandaean scriptures, the Euphrates is considered to be the earthly manifestation of the heavenly yardna or flowing river (similar to the Yazidi concept of Lalish being the earthly manifestation of its heavenly counterpart,[7] or the ‘Sacred House’ Kaaba in Mecca being the earthly manifestation of the heavenly Al-Bayt Al-Mamur).[8]

The earliest references to the Euphrates come from cuneiform texts found in Shuruppak and pre-Sargonic Nippur in southern Iraq and date to the mid-3rd millennium BCE. In these texts, written in Sumerian, the Euphrates is called Buranuna (logographic: UD.KIB.NUN). The name could also be written KIB.NUN.(NA) or dKIB.NUN, with the prefix "d" indicating that the river was a divinity. In Sumerian, the name of the city of Sippar in modern-day Iraq was also written UD.KIB.NUN, indicating a historically strong relationship between the city and the river.

Course edit

 
Plan, topographic representation of Babylon. The clay tablet depicts "Tu-ba", a suburb of the ancient city of Babylon. The River Euphrates is represented by the water-lined band. 660-500 BCE. British Museum

The Euphrates is the longest river of Western Asia.[9] It emerges from the confluence of the Kara Su or Western Euphrates (450 kilometres (280 mi)) and the Murat Su or Eastern Euphrates (650 kilometres (400 mi)) 10 kilometres (6.2 mi) upstream from the town of Keban in southeastern Turkey.[10] Daoudy and Frenken put the length of the Euphrates from the source of the Murat River to the confluence with the Tigris at 3,000 kilometres (1,900 mi), of which 1,230 kilometres (760 mi) is in Turkey, 710 kilometres (440 mi) in Syria and 1,060 kilometres (660 mi) in Iraq.[11][12] The same figures are given by Isaev and Mikhailova.[13] The length of the Shatt al-Arab, which connects the Euphrates and the Tigris with the Persian Gulf, is given by various sources as 145–195 kilometres (90–121 mi).[14]

Both the Kara Su and the Murat Su rise northwest from Lake Van at elevations of 3,290 metres (10,790 ft) and 3,520 metres (11,550 ft) amsl, respectively.[15] At the location of the Keban Dam, the two rivers, now combined into the Euphrates, have dropped to an elevation of 693 metres (2,274 ft) amsl. From Keban to the Syrian–Turkish border, the river drops another 368 metres (1,207 ft) over a distance of less than 600 kilometres (370 mi). Once the Euphrates enters the Upper Mesopotamian plains, its grade drops significantly; within Syria the river falls 163 metres (535 ft) while over the last stretch between Hīt and the Shatt al-Arab the river drops only 55 metres (180 ft).[10][16]

Discharge edit

The Euphrates receives most of its water in the form of rainfall and melting snow, resulting in peak volumes during the months April through May. Discharge in these two months accounts for 36 percent of the total annual discharge of the Euphrates, or even 60–70 percent according to one source, while low runoff occurs in summer and autumn.[13][17] The average natural annual flow of the Euphrates has been determined from early- and mid-twentieth century records as 20.9 cubic kilometres (5.0 cu mi) at Keban, 36.6 cubic kilometres (8.8 cu mi) at Hīt and 21.5 cubic kilometres (5.2 cu mi) at Hindiya.[18] However, these averages mask the high inter-annual variability in discharge; at Birecik, just north of the Syro–Turkish border, annual discharges have been measured that ranged from a low volume of 15.3 cubic kilometres (3.7 cu mi) in 1961 to a high of 42.7 cubic kilometres (10.2 cu mi) in 1963.[19]

The discharge regime of the Euphrates has changed dramatically since the construction of the first dams in the 1970s. Data on Euphrates discharge collected after 1990 show the impact of the construction of the numerous dams in the Euphrates and of the increased withdrawal of water for irrigation. Average discharge at Hīt after 1990 has dropped to 356 cubic metres (12,600 cu ft) per second (11.2 cubic kilometres (2.7 cu mi) per year). The seasonal variability has equally changed. The pre-1990 peak volume recorded at Hīt was 7,510 cubic metres (265,000 cu ft) per second, while after 1990 it is only 2,514 cubic metres (88,800 cu ft) per second. The minimum volume at Hīt remained relatively unchanged, rising from 55 cubic metres (1,900 cu ft) per second before 1990 to 58 cubic metres (2,000 cu ft) per second afterward.[20][21]

Tributaries edit

 
View of the Murat River

In Syria, three rivers add their water to the Euphrates; the Sajur, the Balikh and the Khabur. These rivers rise in the foothills of the Taurus Mountains along the Syro–Turkish border and add comparatively little water to the Euphrates. The Sajur is the smallest of these tributaries; emerging from two streams near Gaziantep and draining the plain around Manbij before emptying into the reservoir of the Tishrin Dam. The Balikh receives most of its water from a karstic spring near 'Ayn al-'Arus and flows due south until it reaches the Euphrates at the city of Raqqa. In terms of length, drainage basin and discharge, the Khabur is the largest of these three. Its main karstic springs are located around Ra's al-'Ayn, from where the Khabur flows southeast past Al-Hasakah, where the river turns south and drains into the Euphrates near Busayrah. Once the Euphrates enters Iraq, there are no more natural tributaries to the Euphrates, although canals connecting the Euphrates basin with the Tigris basin exist.[22][23]

Name Length Watershed size Discharge Bank
Kara Su 450 km (280 mi) 22,000 km2 (8,500 sq mi) Confluence
Murat River 650 km (400 mi) 40,000 km2 (15,000 sq mi) Confluence
Sajur River 108 km (67 mi) 2,042 km2 (788 sq mi) 4.1 m3/s (145 cu ft/s) Right
Balikh River 100 km (62 mi) 14,400 km2 (5,600 sq mi) 6 m3/s (212 cu ft/s) Left
Khabur River 486 km (302 mi) 37,081 km2 (14,317 sq mi) 45 m3/s (1,600 cu ft/s) Left

Drainage basin edit

 
French map from the 17th century showing the Euphrates and the Tigris

The drainage basins of the Kara Su and the Murat River cover an area of 22,000 square kilometres (8,500 sq mi) and 40,000 square kilometres (15,000 sq mi), respectively.[10] Estimates of the area of the Euphrates drainage basin vary widely; from a low 233,000 square kilometres (90,000 sq mi) to a high 766,000 square kilometres (296,000 sq mi).[13] Recent estimates put the basin area at 388,000 square kilometres (150,000 sq mi),[10] 444,000 square kilometres (171,000 sq mi)[11][24] and 579,314 square kilometres (223,674 sq mi).[25] The greater part of the Euphrates basin is located in Turkey, Syria, and Iraq. According to both Daoudy and Frenken, Turkey's share is 28 percent, Syria's is 17 percent and that of Iraq is 40 percent.[11][12] Isaev and Mikhailova estimate the percentages of the drainage basin lying within Turkey, Syria and Iraq at 33, 20 and 47 percent respectively.[13] Some sources estimate that approximately 15 percent of the drainage basin is located within Saudi Arabia, while a small part falls inside the borders of Kuwait.[11][12] Finally, some sources also include Jordan in the drainage basin of the Euphrates; a small part of the eastern desert (220 square kilometres (85 sq mi)) drains toward the east rather than to the west.[13][26]

Climate change edit

In 2021, the Iraqi Ministry of Water Resources reported that the Euphrates river could dry out by 2040 due to climate change and droughts.[27]

Natural history edit

 
Rafetus euphraticus

The Euphrates flows through a number of distinct vegetation zones. Although millennia-long human occupation in most parts of the Euphrates basin has significantly degraded the landscape, patches of original vegetation remain. The steady drop in annual rainfall from the sources of the Euphrates toward the Persian Gulf is a strong determinant for the vegetation that can be supported. In its upper reaches the Euphrates flows through the mountains of Southeast Turkey and their southern foothills which support a xeric woodland. Plant species in the moister parts of this zone include various oaks, pistachio trees, and Rosaceae (rose/plum family). The drier parts of the xeric woodland zone supports less dense oak forest and Rosaceae. Here can also be found the wild variants of many cereals, including einkorn wheat, emmer, oat and rye.[28]

South of this zone lies a zone of mixed woodland-steppe vegetation. Between Raqqa and the Syro–Iraqi border the Euphrates flows through a steppe landscape. This steppe is characterised by white wormwood (Artemisia herba-alba) and Amaranthaceae. Throughout history, this zone has been heavily overgrazed due to the practicing of sheep and goat pastoralism by its inhabitants.[29] Southeast of the border between Syria and Iraq starts true desert. This zone supports either no vegetation at all or small pockets of Chenopodiaceae or Poa sinaica. Although today nothing of it survives due to human interference, research suggests that the Euphrates Valley would have supported a riverine forest. Species characteristic of this type of forest include the Oriental plane, the Euphrates poplar, the tamarisk, the ash and various wetland plants.[30]

Among the fish species in the Tigris–Euphrates basin, the family of the Cyprinidae are the most common, with 34 species out of 52 in total.[31] Among the Cyprinids, the mangar has good recreational fishing qualities, leading the British to nickname it the "Tigris salmon." The Euphrates softshell turtle is an endangered soft-shelled turtle that is limited to the Tigris–Euphrates river system.[32][33]

The Neo-Assyrian palace reliefs from the 1st millennium BCE depict lion and bull hunts in fertile landscapes.[34] Sixteenth to nineteenth century European travellers in the Syrian Euphrates basin reported on an abundance of animals living in the area, many of which have become rare or even extinct. Species like gazelle, onager and the now-extinct Arabian ostrich lived in the steppe bordering the Euphrates valley, while the valley itself was home to the wild boar. Carnivorous species include the wolf, the golden jackal, the red fox, the leopard and the lion. The Syrian brown bear can be found in the mountains of Southeast Turkey. The presence of Eurasian beaver has been attested in the bone assemblage of the prehistoric site of Tell Abu Hureyra in Syria, but the beaver has never been sighted in historical times.[35]

River edit

 
Map (in French) showing the locations of dams and barrages built in the SyroTurkish part of the Euphrates basin

The Hindiya Barrage on the Iraqi Euphrates, based on plans by British civil engineer William Willcocks and finished in 1913, was the first modern water diversion structure built in the Tigris–Euphrates river system.[36] The Hindiya Barrage was followed in the 1950s by the Ramadi Barrage and the nearby Abu Dibbis Regulator, which serve to regulate the flow regime of the Euphrates and to discharge excess flood water into the depression that is now Lake Habbaniyah. Iraq's largest dam on the Euphrates is the Haditha Dam; a 9-kilometre-long (5.6 mi) earth-fill dam creating Lake Qadisiyah.[37] Syria and Turkey built their first dams in the Euphrates in the 1970s. The Tabqa Dam in Syria was completed in 1973 while Turkey finished the Keban Dam, a prelude to the immense Southeastern Anatolia Project, in 1974. Since then, Syria has built two more dams in the Euphrates, the Baath Dam and the Tishrin Dam, and plans to build a fourth dam – the Halabiye Dam – between Raqqa and Deir ez-Zor.[38] The Tabqa Dam is Syria's largest dam and its reservoir (Lake Assad) is an important source of irrigation and drinking water. It was planned that 640,000 hectares (2,500 sq mi) should be irrigated from Lake Assad, but in 2000 only 100,000–124,000 hectares (390–480 sq mi) had been realized.[39][40] Syria also built three smaller dams on the Khabur and its tributaries.[41]

With the implementation of the Southeastern Anatolia Project (Turkish: Güneydoğu Anadolu Projesi, or GAP) in the 1970s, Turkey launched an ambitious plan to harness the waters of the Tigris and the Euphrates for irrigation and hydroelectricity production and provide an economic stimulus to its southeastern provinces.[42] GAP affects a total area of 75,000 square kilometres (29,000 sq mi) and approximately 7 million people; representing about 10 percent of Turkey's total surface area and population, respectively. When completed, GAP will consist of 22 dams – including the Keban Dam – and 19 power plants and provide irrigation water to 1,700,000 hectares (6,600 sq mi) of agricultural land, which is about 20 percent of the irrigable land in Turkey.[43] C. 910,000 hectares (3,500 sq mi) of this irrigated land is located in the Euphrates basin.[44] By far the largest dam in GAP is the Atatürk Dam, located c. 55 kilometres (34 mi) northwest of Şanlıurfa. This 184-metre-high (604 ft) and 1,820-metre-long (5,970 ft) dam was completed in 1992; thereby creating a reservoir that is the third-largest lake in Turkey. With a maximum capacity of 48.7 cubic kilometres (11.7 cu mi), the Atatürk Dam reservoir is large enough to hold the entire annual discharge of the Euphrates.[45] Completion of GAP was scheduled for 2010 but has been delayed because the World Bank has withheld funding due to the lack of an official agreement on water sharing between Turkey and the downstream states on the Euphrates and the Tigris.[46]

Apart from barrages and dams, Iraq has also created an intricate network of canals connecting the Euphrates with Lake Habbaniyah, Lake Tharthar, and Abu Dibbis reservoir; all of which can be used to store excess floodwater. Via the Shatt al-Hayy, the Euphrates is connected with the Tigris. The largest canal in this network is the Main Outfall Drain or so-called "Third River;" constructed between 1953 and 1992. This 565-kilometre-long (351 mi) canal is intended to drain the area between the Euphrates and the Tigris south of Baghdad to prevent soil salinization from irrigation. It also allows large freight barges to navigate up to Baghdad.[47][48][49]

Environmental and social effects edit

 
Keban Dam in Turkey, the first dam on the Euphrates after it emerges from the confluence of the Kara Su and the Murat Su
 
Qal'at Ja'bar in Syria, once perched on a hilltop overlooking the Euphrates valley but now turned into an island by the flooding of Lake Assad

The construction of the dams and irrigation schemes on the Euphrates has had a significant impact on the environment and society of each riparian country. The dams constructed as part of GAP – in both the Euphrates and the Tigris basins – have affected 382 villages and almost 200,000 people have been resettled elsewhere. The largest number of people was displaced by the building of the Atatürk Dam, which alone affected 55,300 people.[50] A survey among those who were displaced showed that the majority were unhappy with their new situation and that the compensation they had received was considered insufficient.[51] The flooding of Lake Assad led to the forced displacement of c. 4,000 families, who were resettled in other parts of northern Syria as part of a now abandoned plan to create an "Arab belt" along the borders with Turkey and Iraq.[52][53][54]

Apart from the changes in the discharge regime of the river, the numerous dams and irrigation projects have also had other effects on the environment. The creation of reservoirs with large surfaces in countries with high average temperatures has led to increased evaporation; thereby reducing the total amount of water that is available for human use. Annual evaporation from reservoirs has been estimated at 2 cubic kilometres (0.48 cu mi) in Turkey, 1 cubic kilometre (0.24 cu mi) in Syria and 5 cubic kilometres (1.2 cu mi) in Iraq.[55] Water quality in the Iraqi Euphrates is low because irrigation water tapped in Turkey and Syria flows back into the river, together with dissolved fertilizer chemicals used on the fields.[56] The salinity of Euphrates water in Iraq has increased as a result of upstream dam construction, leading to lower suitability as drinking water.[57] The many dams and irrigation schemes, and the associated large-scale water abstraction, have also had a detrimental effect on the ecologically already fragile Mesopotamian Marshes and on freshwater fish habitats in Iraq.[58][59]

The inundation of large parts of the Euphrates valley, especially in Turkey and Syria, has led to the flooding of many archaeological sites and other places of cultural significance.[60] Although concerted efforts have been made to record or save as much of the endangered cultural heritage as possible, many sites are probably lost forever. The combined GAP projects on the Turkish Euphrates have led to major international efforts to document the archaeological and cultural heritage of the endangered parts of the valley. Especially the flooding of Zeugma with its unique Roman mosaics by the reservoir of the Birecik Dam has generated much controversy in both the Turkish and international press.[61][62] The construction of the Tabqa Dam in Syria led to a large international campaign coordinated by UNESCO to document the heritage that would disappear under the waters of Lake Assad. Archaeologists from numerous countries excavated sites ranging in date from the Natufian to the Abbasid period, and two minarets were dismantled and rebuilt outside the flood zone. Important sites that have been flooded or affected by the rising waters of Lake Assad include Mureybet, Emar and Abu Hureyra.[63] A similar international effort was made when the Tishrin Dam was constructed, which led, among others, to the flooding of the important Pre-Pottery Neolithic B site of Jerf el Ahmar.[64] An archaeological survey and rescue excavations were also carried out in the area flooded by Lake Qadisiya in Iraq.[65] Parts of the flooded area have recently become accessible again due to the drying up of the lake, resulting not only in new possibilities for archaeologists to do more research, but also providing opportunities for looting, which has been rampant elsewhere in Iraq in the wake of the 2003 invasion.[66]

Religion edit

Islam edit

In Islam, a hadith is mentioned prophecying about unearthing of a gold mountain beneath the Euphrates river before the apocalypse, with many people dying fighting over it; it is said to be one of the future minor signs of the coming of Judgement Day:[67][68]

"Sahih Muslim 2894 c Abu Huraira reported Allah's Messenger (ﷺ) as saying:

The Last Hour would not come unless the Euphrates would uncover a treasure of gold, so he who finds it should not take anything out of that."

Christianity edit

In the Christian Bible, the Euphrates River is mentioned in Revelation 16:12, in the final book of the New Testament. Author, John of Patmos writes about the Euphrates river drying up as part of a series of events that foretell the Second Coming of Jesus Christ.[69]

The river Phrath mentioned in Genesis 2:14 is also identified as the Euphrates.[70]

History edit

 
A fishing boat in the Euphrates Southern Iraq

Palaeolithic to Chalcolithic periods edit

The early occupation of the Euphrates basin was limited to its upper reaches; that is, the area that is popularly known as the Fertile Crescent. Acheulean stone artifacts have been found in the Sajur basin and in the El Kowm oasis in the central Syrian steppe; the latter together with remains of Homo erectus that were dated to 450,000 years old.[71][72] In the Taurus Mountains and the upper part of the Syrian Euphrates valley, early permanent villages such as Abu Hureyra – at first occupied by hunter-gatherers but later by some of the earliest farmers, Jerf el Ahmar, Mureybet and Nevalı Çori became established from the eleventh millennium BCE onward.[73] In the absence of irrigation, these early farming communities were limited to areas where rainfed agriculture was possible, that is, the upper parts of the Syrian Euphrates as well as Turkey.[74] Late Neolithic villages, characterized by the introduction of pottery in the early 7th millennium BCE, are known throughout this area.[75] Occupation of lower Mesopotamia started in the 6th millennium and is generally associated with the introduction of irrigation, as rainfall in this area is insufficient for dry agriculture. Evidence for irrigation has been found at several sites dating to this period, including Tell es-Sawwan.[76] During the 5th millennium BCE, or late Ubaid period, northeastern Syria was dotted by small villages, although some of them grew to a size of over 10 hectares (25 acres).[77] In Iraq, sites like Eridu and Ur were already occupied during the Ubaid period.[78] Clay boat models found at Tell Mashnaqa along the Khabur indicate that riverine transport was already practiced during this period.[79] The Uruk period, roughly coinciding with the 4th millennium BCE, saw the emergence of truly urban settlements across Mesopotamia. Cities like Tell Brak and Uruk grew to over 100 hectares (250 acres) in size and displayed monumental architecture.[80] The spread of southern Mesopotamian pottery, architecture and sealings far into Turkey and Iran has generally been interpreted as the material reflection of a widespread trade system aimed at providing the Mesopotamian cities with raw materials. Habuba Kabira on the Syrian Euphrates is a prominent example of a settlement that is interpreted as an Uruk colony.[81][82]

Ancient history edit

During the Jemdet Nasr (3600–3100 BCE) and Early Dynastic periods (3100–2350 BCE), southern Mesopotamia experienced a growth in the number and size of settlements, suggesting strong population growth. These settlements, including Sumero-Akkadian sites like Sippar, Uruk, Adab and Kish, were organized in competing city-states.[83] Many of these cities were located along canals of the Euphrates and the Tigris that have since dried up, but that can still be identified from remote sensing imagery.[84] A similar development took place in Upper Mesopotamia, Subartu and Assyria, although only from the mid 3rd millennium and on a smaller scale than in Lower Mesopotamia. Sites like Ebla, Mari and Tell Leilan grew to prominence for the first time during this period.[85]

Large parts of the Euphrates basin were for the first time united under a single ruler during the Akkadian Empire (2335–2154 BC) and Ur III empires, which controlled – either directly or indirectly through vassals – large parts of modern-day Iraq and northeastern Syria.[86] Following their collapse, the Old Assyrian Empire (1975–1750 BCE) and Mari asserted their power over northeast Syria and northern Mesopotamia, while southern Mesopotamia was controlled by city-states like Isin, Kish and Larsa before their territories were absorbed by the newly emerged state of Babylonia under Hammurabi in the early to mid 18th century BCE.[87]

In the second half of the 2nd millennium BCE, the Euphrates basin was divided between Kassite Babylon in the south and Mitanni, Assyria and the Hittite Empire in the north, with the Middle Assyrian Empire (1365–1020 BC) eventually eclipsing the Hittites, Mitanni and Kassite Babylonians.[88] Following the end of the Middle Assyrian Empire in the late 11th century BCE, struggles broke out between Babylonia and Assyria over the control of the Iraqi Euphrates basin. The Neo-Assyrian Empire (935–605 BC) eventually emerged victorious out of this conflict and also succeeded in gaining control of the northern Euphrates basin in the first half of the 1st millennium BCE.[89]

In the centuries to come, control of the wider Euphrates basin shifted from the Neo-Assyrian Empire (which collapsed between 612 and 599 BC) to the short lived Median Empire (612–546 BC) and equally brief Neo-Babylonian Empire (612–539 BC) in the last years of the 7th century BC, and eventually to the Achaemenid Empire (539–333 BC).[90] The Achaemenid Empire was in turn overrun by Alexander the Great, who defeated the last king Darius III and died in Babylon in 323 BCE.[91]

Subsequent to this, the region came under the control of the Seleucid Empire (312–150 BC), Parthian Empire (150–226 AD) (during which several Neo-Assyrian states such as Adiabene came to rule certain regions of the Euphrates), and was fought over by the Roman Empire, its succeeding Byzantine Empire and the Sassanid Empire (226–638 AD), until the Islamic conquest of the mid 7th century AD. The Battle of Karbala took place near the banks of this river in 680 AD.

In the north, the river served as a border between Greater Armenia (331 BC–428 AD) and Lesser Armenia (the latter became a Roman province in the 1st century BC).

Modern era edit

 
Wooden bridge carrying the Baghdad Railway over the Euphrates, c. 1900–1910

After World War I, the borders in Southwest Asia were redrawn in the Treaty of Lausanne (1923), when the Ottoman Empire was partitioned. Clause 109 of the treaty stipulated that the three riparian states of the Euphrates (at that time Turkey, France for its Syrian mandate and the United Kingdom for its mandate of Iraq) had to reach a mutual agreement on the use of its water and on the construction of any hydraulic installation.[92] An agreement between Turkey and Iraq signed in 1946 required Turkey to report to Iraq on any hydraulic changes it made on the Tigris–Euphrates river system, and allowed Iraq to construct dams on Turkish territory to manage the flow of the Euphrates.[93]

 
Coat of arms of the Kingdom of Iraq 1932–1959 depicting the two rivers, the confluence Shatt al-Arab and the date palm forest, which used to be the largest in the world

The river featured on the coat of arms of Iraq from 1932 to 1959.

 
Euphrates near Kahta

Turkey and Syria completed their first dams on the Euphrates – the Keban Dam and the Tabqa Dam, respectively – within one year of each other and filling of the reservoirs commenced in 1975. At the same time, the area was hit by severe drought and river flow toward Iraq was reduced from 15.3 cubic kilometres (3.7 cu mi) in 1973 to 9.4 cubic kilometres (2.3 cu mi) in 1975. This led to an international crisis during which Iraq threatened to bomb the Tabqa Dam. An agreement was eventually reached between Syria and Iraq after intervention by Saudi Arabia and the Soviet Union.[94][95] A similar crisis, although not escalating to the point of military threats, occurred in 1981 when the Keban Dam reservoir had to be refilled after it had been almost emptied to temporarily increase Turkey's hydroelectricity production.[96] In 1984, Turkey unilaterally declared that it would ensure a flow of at least 500 cubic metres (18,000 cu ft) per second, or 16 cubic kilometres (3.8 cu mi) per year, into Syria, and in 1987 a bilateral treaty to that effect was signed between the two countries.[97] Another bilateral agreement from 1989 between Syria and Iraq settles the amount of water flowing into Iraq at 60 percent of the amount that Syria receives from Turkey.[93][95][98] In 2008, Turkey, Syria and Iraq instigated the Joint Trilateral Committee (JTC) on the management of the water in the Tigris–Euphrates basin and on 3 September 2009 a further agreement was signed to this effect.[99] On 15 April 2014, Turkey began to reduce the flow of the Euphrates into Syria and Iraq. The flow was cut off completely on 16 May 2014 resulting in the Euphrates terminating at the Turkish–Syrian border.[100] This was in violation of an agreement reached in 1987 in which Turkey committed to releasing a minimum of 500 cubic metres (18,000 cu ft) of water per second at the Turkish–Syrian border.[101]

 
Euphrates in Iraq, 2005

During the Syrian civil war and the Iraqi Civil War, much of the Euphrates was controlled by the Islamic State from 2014 until 2017, when the terrorist group began losing land and was eventually defeated territorially in Syria at the Battle of Baghouz and in Iraq in the Western Iraq offensive respectively.[102]

Economy edit

Throughout history, the Euphrates has been of vital importance to those living along its course. With the construction of large hydropower stations, irrigation schemes, and pipelines capable of transporting water over large distances, many more people now depend on the river for basic amenities such as electricity and drinking water than in the past. Syria's Lake Assad is the most important source of drinking water for the city of Aleppo, 75 kilometres (47 mi) to the west of the river valley.[103] The lake also supports a modest state-operated fishing industry.[104] Through a newly restored power line, the Haditha Dam in Iraq provides electricity to Baghdad.[105]

See also edit

References edit

  1. ^ "Euphrates River | Definition, Location, & Facts | Britannica". from the original on 24 June 2015. Retrieved 12 April 2022.
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  6. ^ Gelbert, Carlos (2011). Ginza Rba. Sydney: Living Water Books. ISBN 9780958034630. from the original on 16 March 2022. Retrieved 17 February 2022.
  7. ^ Nasoraia, Brikha H.S. (2021). The Mandaean gnostic religion: worship practice and deep thought. New Delhi: Sterling. ISBN 978-81-950824-1-4. OCLC 1272858968.
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  61. ^ Tanaka 2007
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  104. ^ Krouma 2006
  105. ^ O'Hara 2004, p. 3

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External links edit

  •   Media related to Euphrates at Wikimedia Commons
  • Old maps of the Euphrates, from the Eran Laor Cartographic Collection, The National Library of Israel

euphrates, this, article, about, river, mesopotamia, other, uses, disambiguation, juː, fray, teez, below, longest, most, historically, important, rivers, western, asia, together, with, tigris, defining, rivers, mesopotamia, land, between, rivers, originating, . This article is about the river in Mesopotamia For other uses see Euphrates disambiguation The Euphrates juː ˈ f r eɪ t iː z yoo FRAY teez see below is the longest and one of the most historically important rivers of Western Asia Together with the Tigris it is one of the two defining rivers of Mesopotamia lit the land between the rivers Originating in Turkey the Euphrates flows through Syria and Iraq to join the Tigris in the Shatt al Arab which empties into the Persian Gulf EuphratesThe Euphrates in the town of Birecik Turkey Map of the combined Tigris Euphrates drainage basin in yellow Etymologyfrom Akkadian Purattu from Sumerian BurannuLocationCountryTurkey Iraq SyriaBasin areaTurkey Syria Iraq Saudi Arabia Kuwait IranSource regionArmenian highlands 1 CitiesBirecik Raqqa Deir ez Zor Mayadin Haditha Ramadi Habbaniyah Fallujah Kufa Samawah NasiriyahPhysical characteristicsSourceMurat River locationCat Turkey coordinates39 43 44 N 41 13 23 E 39 729 N 41 223 E 39 729 41 223 elevation3 520 m 11 550 ft 2nd sourceKarasu locationYakutiye Turkey coordinates40 11 24 N 41 30 25 E 40 190 N 41 507 E 40 190 41 507 elevation3 290 m 10 790 ft Source confluence locationKeban Turkey coordinates39 43 44 N 40 15 25 E 39 729 N 40 257 E 39 729 40 257 elevation610 m 2 000 ft MouthShatt al Arab locationAl Qurnah Iraq coordinates31 0 18 N 47 26 31 E 31 00500 N 47 44194 E 31 00500 47 44194 elevation1 m 3 3 ft LengthApprox 2 800 km 1 700 mi Basin sizeApprox 500 000 km2 190 000 sq mi Discharge locationHit average356 m3 s 12 600 cu ft s minimum58 m3 s 2 000 cu ft s maximum2 514 m3 s 88 800 cu ft s Basin featuresProgressionShatt al Arab Persian GulfRiver systemTigris Euphrates river systemTributaries leftBalikh Khabur rightSajurThe Euphrates is the fifteenth longest river in Asia and the longest in Western Asia at about 2 780 km 1 730 mi and has a drainage area of 440 000 km2 170 000 sq mi that covers six countries Contents 1 Etymology 2 Course 2 1 Discharge 2 2 Tributaries 3 Drainage basin 4 Climate change 5 Natural history 6 River 6 1 Environmental and social effects 7 Religion 7 1 Islam 7 2 Christianity 8 History 8 1 Palaeolithic to Chalcolithic periods 8 2 Ancient history 8 3 Modern era 9 Economy 10 See also 11 References 11 1 Citations 12 External linksEtymology editThe term Euphrates derives from the Greek Euphrates Eὐfrᾱ ths adapted from Old Persian 𐎢𐎳𐎼𐎠𐎬𐎢 romanized Ufratu 2 itself from Elamite 𒌑𒅁𒊏𒌅𒅖 romanized u ip ra tu is The Elamite name is ultimately derived from a name spelt in cuneiform 𒌓𒄒𒉣 which read as Sumerian is Buranuna and read as Akkadian is Purattu many cuneiform signs have a Sumerian pronunciation and an Akkadian pronunciation taken from a Sumerian word and an Akkadian word that mean the same The Akkadian Purattu 3 has been perpetuated in Semitic languages cf Arabic الفرات al Furat Syriac ܦܪܬ Pǝraṯ Hebrew פ ר ת Pǝraṯ and in other nearby languages of the time cf Hurrian Puranti Sabarian Uruttu The Elamite Akkadian and possibly Sumerian forms are suggested to be from an unrecorded substrate language 4 Tamaz V Gamkrelidze and Vyacheslav Ivanov suggest the proto Sumerian burudu copper Sumerian urudu as an origin with an explanation that Euphrates was the river by which copper ore was transported in rafts since Mesopotamia was the center of copper metallurgy during the period 5 The Euphrates is called Yeprat in Armenian Եփրատ Perat in modern Hebrew פרת Firat in Turkish and Firat in Kurdish The Mandaic name is Pras ࡐࡓࡀࡔ and is often mentioned as Pras Ziwa pronounced Fras Ziwa in Mandaean scriptures such as the Ginza Rabba 6 In Mandaean scriptures the Euphrates is considered to be the earthly manifestation of the heavenly yardna or flowing river similar to the Yazidi concept of Lalish being the earthly manifestation of its heavenly counterpart 7 or the Sacred House Kaaba in Mecca being the earthly manifestation of the heavenly Al Bayt Al Mamur 8 The earliest references to the Euphrates come from cuneiform texts found in Shuruppak and pre Sargonic Nippur in southern Iraq and date to the mid 3rd millennium BCE In these texts written in Sumerian the Euphrates is called Buranuna logographic UD KIB NUN The name could also be written KIB NUN NA or dKIB NUN with the prefix d indicating that the river was a divinity In Sumerian the name of the city of Sippar in modern day Iraq was also written UD KIB NUN indicating a historically strong relationship between the city and the river Course edit nbsp Plan topographic representation of Babylon The clay tablet depicts Tu ba a suburb of the ancient city of Babylon The River Euphrates is represented by the water lined band 660 500 BCE British MuseumThe Euphrates is the longest river of Western Asia 9 It emerges from the confluence of the Kara Su or Western Euphrates 450 kilometres 280 mi and the Murat Su or Eastern Euphrates 650 kilometres 400 mi 10 kilometres 6 2 mi upstream from the town of Keban in southeastern Turkey 10 Daoudy and Frenken put the length of the Euphrates from the source of the Murat River to the confluence with the Tigris at 3 000 kilometres 1 900 mi of which 1 230 kilometres 760 mi is in Turkey 710 kilometres 440 mi in Syria and 1 060 kilometres 660 mi in Iraq 11 12 The same figures are given by Isaev and Mikhailova 13 The length of the Shatt al Arab which connects the Euphrates and the Tigris with the Persian Gulf is given by various sources as 145 195 kilometres 90 121 mi 14 Both the Kara Su and the Murat Su rise northwest from Lake Van at elevations of 3 290 metres 10 790 ft and 3 520 metres 11 550 ft amsl respectively 15 At the location of the Keban Dam the two rivers now combined into the Euphrates have dropped to an elevation of 693 metres 2 274 ft amsl From Keban to the Syrian Turkish border the river drops another 368 metres 1 207 ft over a distance of less than 600 kilometres 370 mi Once the Euphrates enters the Upper Mesopotamian plains its grade drops significantly within Syria the river falls 163 metres 535 ft while over the last stretch between Hit and the Shatt al Arab the river drops only 55 metres 180 ft 10 16 Discharge edit The Euphrates receives most of its water in the form of rainfall and melting snow resulting in peak volumes during the months April through May Discharge in these two months accounts for 36 percent of the total annual discharge of the Euphrates or even 60 70 percent according to one source while low runoff occurs in summer and autumn 13 17 The average natural annual flow of the Euphrates has been determined from early and mid twentieth century records as 20 9 cubic kilometres 5 0 cu mi at Keban 36 6 cubic kilometres 8 8 cu mi at Hit and 21 5 cubic kilometres 5 2 cu mi at Hindiya 18 However these averages mask the high inter annual variability in discharge at Birecik just north of the Syro Turkish border annual discharges have been measured that ranged from a low volume of 15 3 cubic kilometres 3 7 cu mi in 1961 to a high of 42 7 cubic kilometres 10 2 cu mi in 1963 19 The discharge regime of the Euphrates has changed dramatically since the construction of the first dams in the 1970s Data on Euphrates discharge collected after 1990 show the impact of the construction of the numerous dams in the Euphrates and of the increased withdrawal of water for irrigation Average discharge at Hit after 1990 has dropped to 356 cubic metres 12 600 cu ft per second 11 2 cubic kilometres 2 7 cu mi per year The seasonal variability has equally changed The pre 1990 peak volume recorded at Hit was 7 510 cubic metres 265 000 cu ft per second while after 1990 it is only 2 514 cubic metres 88 800 cu ft per second The minimum volume at Hit remained relatively unchanged rising from 55 cubic metres 1 900 cu ft per second before 1990 to 58 cubic metres 2 000 cu ft per second afterward 20 21 Tributaries edit nbsp View of the Murat RiverIn Syria three rivers add their water to the Euphrates the Sajur the Balikh and the Khabur These rivers rise in the foothills of the Taurus Mountains along the Syro Turkish border and add comparatively little water to the Euphrates The Sajur is the smallest of these tributaries emerging from two streams near Gaziantep and draining the plain around Manbij before emptying into the reservoir of the Tishrin Dam The Balikh receives most of its water from a karstic spring near Ayn al Arus and flows due south until it reaches the Euphrates at the city of Raqqa In terms of length drainage basin and discharge the Khabur is the largest of these three Its main karstic springs are located around Ra s al Ayn from where the Khabur flows southeast past Al Hasakah where the river turns south and drains into the Euphrates near Busayrah Once the Euphrates enters Iraq there are no more natural tributaries to the Euphrates although canals connecting the Euphrates basin with the Tigris basin exist 22 23 Name Length Watershed size Discharge BankKara Su 450 km 280 mi 22 000 km2 8 500 sq mi ConfluenceMurat River 650 km 400 mi 40 000 km2 15 000 sq mi ConfluenceSajur River 108 km 67 mi 2 042 km2 788 sq mi 4 1 m3 s 145 cu ft s RightBalikh River 100 km 62 mi 14 400 km2 5 600 sq mi 6 m3 s 212 cu ft s LeftKhabur River 486 km 302 mi 37 081 km2 14 317 sq mi 45 m3 s 1 600 cu ft s LeftDrainage basin edit nbsp French map from the 17th century showing the Euphrates and the TigrisFurther information Tigris Euphrates river system The drainage basins of the Kara Su and the Murat River cover an area of 22 000 square kilometres 8 500 sq mi and 40 000 square kilometres 15 000 sq mi respectively 10 Estimates of the area of the Euphrates drainage basin vary widely from a low 233 000 square kilometres 90 000 sq mi to a high 766 000 square kilometres 296 000 sq mi 13 Recent estimates put the basin area at 388 000 square kilometres 150 000 sq mi 10 444 000 square kilometres 171 000 sq mi 11 24 and 579 314 square kilometres 223 674 sq mi 25 The greater part of the Euphrates basin is located in Turkey Syria and Iraq According to both Daoudy and Frenken Turkey s share is 28 percent Syria s is 17 percent and that of Iraq is 40 percent 11 12 Isaev and Mikhailova estimate the percentages of the drainage basin lying within Turkey Syria and Iraq at 33 20 and 47 percent respectively 13 Some sources estimate that approximately 15 percent of the drainage basin is located within Saudi Arabia while a small part falls inside the borders of Kuwait 11 12 Finally some sources also include Jordan in the drainage basin of the Euphrates a small part of the eastern desert 220 square kilometres 85 sq mi drains toward the east rather than to the west 13 26 Climate change editIn 2021 the Iraqi Ministry of Water Resources reported that the Euphrates river could dry out by 2040 due to climate change and droughts 27 Natural history editSee also Mesopotamian Marshes nbsp Rafetus euphraticusThe Euphrates flows through a number of distinct vegetation zones Although millennia long human occupation in most parts of the Euphrates basin has significantly degraded the landscape patches of original vegetation remain The steady drop in annual rainfall from the sources of the Euphrates toward the Persian Gulf is a strong determinant for the vegetation that can be supported In its upper reaches the Euphrates flows through the mountains of Southeast Turkey and their southern foothills which support a xeric woodland Plant species in the moister parts of this zone include various oaks pistachio trees and Rosaceae rose plum family The drier parts of the xeric woodland zone supports less dense oak forest and Rosaceae Here can also be found the wild variants of many cereals including einkorn wheat emmer oat and rye 28 South of this zone lies a zone of mixed woodland steppe vegetation Between Raqqa and the Syro Iraqi border the Euphrates flows through a steppe landscape This steppe is characterised by white wormwood Artemisia herba alba and Amaranthaceae Throughout history this zone has been heavily overgrazed due to the practicing of sheep and goat pastoralism by its inhabitants 29 Southeast of the border between Syria and Iraq starts true desert This zone supports either no vegetation at all or small pockets of Chenopodiaceae or Poa sinaica Although today nothing of it survives due to human interference research suggests that the Euphrates Valley would have supported a riverine forest Species characteristic of this type of forest include the Oriental plane the Euphrates poplar the tamarisk the ash and various wetland plants 30 Among the fish species in the Tigris Euphrates basin the family of the Cyprinidae are the most common with 34 species out of 52 in total 31 Among the Cyprinids the mangar has good recreational fishing qualities leading the British to nickname it the Tigris salmon The Euphrates softshell turtle is an endangered soft shelled turtle that is limited to the Tigris Euphrates river system 32 33 The Neo Assyrian palace reliefs from the 1st millennium BCE depict lion and bull hunts in fertile landscapes 34 Sixteenth to nineteenth century European travellers in the Syrian Euphrates basin reported on an abundance of animals living in the area many of which have become rare or even extinct Species like gazelle onager and the now extinct Arabian ostrich lived in the steppe bordering the Euphrates valley while the valley itself was home to the wild boar Carnivorous species include the wolf the golden jackal the red fox the leopard and the lion The Syrian brown bear can be found in the mountains of Southeast Turkey The presence of Eurasian beaver has been attested in the bone assemblage of the prehistoric site of Tell Abu Hureyra in Syria but the beaver has never been sighted in historical times 35 River editMain articles Dams in Iraq Tabqa Dam and Southeastern Anatolia Project nbsp Map in French showing the locations of dams and barrages built in the Syro Turkish part of the Euphrates basinThe Hindiya Barrage on the Iraqi Euphrates based on plans by British civil engineer William Willcocks and finished in 1913 was the first modern water diversion structure built in the Tigris Euphrates river system 36 The Hindiya Barrage was followed in the 1950s by the Ramadi Barrage and the nearby Abu Dibbis Regulator which serve to regulate the flow regime of the Euphrates and to discharge excess flood water into the depression that is now Lake Habbaniyah Iraq s largest dam on the Euphrates is the Haditha Dam a 9 kilometre long 5 6 mi earth fill dam creating Lake Qadisiyah 37 Syria and Turkey built their first dams in the Euphrates in the 1970s The Tabqa Dam in Syria was completed in 1973 while Turkey finished the Keban Dam a prelude to the immense Southeastern Anatolia Project in 1974 Since then Syria has built two more dams in the Euphrates the Baath Dam and the Tishrin Dam and plans to build a fourth dam the Halabiye Dam between Raqqa and Deir ez Zor 38 The Tabqa Dam is Syria s largest dam and its reservoir Lake Assad is an important source of irrigation and drinking water It was planned that 640 000 hectares 2 500 sq mi should be irrigated from Lake Assad but in 2000 only 100 000 124 000 hectares 390 480 sq mi had been realized 39 40 Syria also built three smaller dams on the Khabur and its tributaries 41 With the implementation of the Southeastern Anatolia Project Turkish Guneydogu Anadolu Projesi or GAP in the 1970s Turkey launched an ambitious plan to harness the waters of the Tigris and the Euphrates for irrigation and hydroelectricity production and provide an economic stimulus to its southeastern provinces 42 GAP affects a total area of 75 000 square kilometres 29 000 sq mi and approximately 7 million people representing about 10 percent of Turkey s total surface area and population respectively When completed GAP will consist of 22 dams including the Keban Dam and 19 power plants and provide irrigation water to 1 700 000 hectares 6 600 sq mi of agricultural land which is about 20 percent of the irrigable land in Turkey 43 C 910 000 hectares 3 500 sq mi of this irrigated land is located in the Euphrates basin 44 By far the largest dam in GAP is the Ataturk Dam located c 55 kilometres 34 mi northwest of Sanliurfa This 184 metre high 604 ft and 1 820 metre long 5 970 ft dam was completed in 1992 thereby creating a reservoir that is the third largest lake in Turkey With a maximum capacity of 48 7 cubic kilometres 11 7 cu mi the Ataturk Dam reservoir is large enough to hold the entire annual discharge of the Euphrates 45 Completion of GAP was scheduled for 2010 but has been delayed because the World Bank has withheld funding due to the lack of an official agreement on water sharing between Turkey and the downstream states on the Euphrates and the Tigris 46 Apart from barrages and dams Iraq has also created an intricate network of canals connecting the Euphrates with Lake Habbaniyah Lake Tharthar and Abu Dibbis reservoir all of which can be used to store excess floodwater Via the Shatt al Hayy the Euphrates is connected with the Tigris The largest canal in this network is the Main Outfall Drain or so called Third River constructed between 1953 and 1992 This 565 kilometre long 351 mi canal is intended to drain the area between the Euphrates and the Tigris south of Baghdad to prevent soil salinization from irrigation It also allows large freight barges to navigate up to Baghdad 47 48 49 Environmental and social effects edit See also Environmental impact of reservoirs nbsp Keban Dam in Turkey the first dam on the Euphrates after it emerges from the confluence of the Kara Su and the Murat Su nbsp Qal at Ja bar in Syria once perched on a hilltop overlooking the Euphrates valley but now turned into an island by the flooding of Lake AssadThe construction of the dams and irrigation schemes on the Euphrates has had a significant impact on the environment and society of each riparian country The dams constructed as part of GAP in both the Euphrates and the Tigris basins have affected 382 villages and almost 200 000 people have been resettled elsewhere The largest number of people was displaced by the building of the Ataturk Dam which alone affected 55 300 people 50 A survey among those who were displaced showed that the majority were unhappy with their new situation and that the compensation they had received was considered insufficient 51 The flooding of Lake Assad led to the forced displacement of c 4 000 families who were resettled in other parts of northern Syria as part of a now abandoned plan to create an Arab belt along the borders with Turkey and Iraq 52 53 54 Apart from the changes in the discharge regime of the river the numerous dams and irrigation projects have also had other effects on the environment The creation of reservoirs with large surfaces in countries with high average temperatures has led to increased evaporation thereby reducing the total amount of water that is available for human use Annual evaporation from reservoirs has been estimated at 2 cubic kilometres 0 48 cu mi in Turkey 1 cubic kilometre 0 24 cu mi in Syria and 5 cubic kilometres 1 2 cu mi in Iraq 55 Water quality in the Iraqi Euphrates is low because irrigation water tapped in Turkey and Syria flows back into the river together with dissolved fertilizer chemicals used on the fields 56 The salinity of Euphrates water in Iraq has increased as a result of upstream dam construction leading to lower suitability as drinking water 57 The many dams and irrigation schemes and the associated large scale water abstraction have also had a detrimental effect on the ecologically already fragile Mesopotamian Marshes and on freshwater fish habitats in Iraq 58 59 The inundation of large parts of the Euphrates valley especially in Turkey and Syria has led to the flooding of many archaeological sites and other places of cultural significance 60 Although concerted efforts have been made to record or save as much of the endangered cultural heritage as possible many sites are probably lost forever The combined GAP projects on the Turkish Euphrates have led to major international efforts to document the archaeological and cultural heritage of the endangered parts of the valley Especially the flooding of Zeugma with its unique Roman mosaics by the reservoir of the Birecik Dam has generated much controversy in both the Turkish and international press 61 62 The construction of the Tabqa Dam in Syria led to a large international campaign coordinated by UNESCO to document the heritage that would disappear under the waters of Lake Assad Archaeologists from numerous countries excavated sites ranging in date from the Natufian to the Abbasid period and two minarets were dismantled and rebuilt outside the flood zone Important sites that have been flooded or affected by the rising waters of Lake Assad include Mureybet Emar and Abu Hureyra 63 A similar international effort was made when the Tishrin Dam was constructed which led among others to the flooding of the important Pre Pottery Neolithic B site of Jerf el Ahmar 64 An archaeological survey and rescue excavations were also carried out in the area flooded by Lake Qadisiya in Iraq 65 Parts of the flooded area have recently become accessible again due to the drying up of the lake resulting not only in new possibilities for archaeologists to do more research but also providing opportunities for looting which has been rampant elsewhere in Iraq in the wake of the 2003 invasion 66 Religion editIslam edit In Islam a hadith is mentioned prophecying about unearthing of a gold mountain beneath the Euphrates river before the apocalypse with many people dying fighting over it it is said to be one of the future minor signs of the coming of Judgement Day 67 68 Sahih Muslim 2894 c Abu Huraira reported Allah s Messenger ﷺ as saying The Last Hour would not come unless the Euphrates would uncover a treasure of gold so he who finds it should not take anything out of that Christianity edit In the Christian Bible the Euphrates River is mentioned in Revelation 16 12 in the final book of the New Testament Author John of Patmos writes about the Euphrates river drying up as part of a series of events that foretell the Second Coming of Jesus Christ 69 The river Phrath mentioned in Genesis 2 14 is also identified as the Euphrates 70 History editFurther information History of Mesopotamia and History of Iraq nbsp A fishing boat in the Euphrates Southern IraqPalaeolithic to Chalcolithic periods edit The early occupation of the Euphrates basin was limited to its upper reaches that is the area that is popularly known as the Fertile Crescent Acheulean stone artifacts have been found in the Sajur basin and in the El Kowm oasis in the central Syrian steppe the latter together with remains of Homo erectus that were dated to 450 000 years old 71 72 In the Taurus Mountains and the upper part of the Syrian Euphrates valley early permanent villages such as Abu Hureyra at first occupied by hunter gatherers but later by some of the earliest farmers Jerf el Ahmar Mureybet and Nevali Cori became established from the eleventh millennium BCE onward 73 In the absence of irrigation these early farming communities were limited to areas where rainfed agriculture was possible that is the upper parts of the Syrian Euphrates as well as Turkey 74 Late Neolithic villages characterized by the introduction of pottery in the early 7th millennium BCE are known throughout this area 75 Occupation of lower Mesopotamia started in the 6th millennium and is generally associated with the introduction of irrigation as rainfall in this area is insufficient for dry agriculture Evidence for irrigation has been found at several sites dating to this period including Tell es Sawwan 76 During the 5th millennium BCE or late Ubaid period northeastern Syria was dotted by small villages although some of them grew to a size of over 10 hectares 25 acres 77 In Iraq sites like Eridu and Ur were already occupied during the Ubaid period 78 Clay boat models found at Tell Mashnaqa along the Khabur indicate that riverine transport was already practiced during this period 79 The Uruk period roughly coinciding with the 4th millennium BCE saw the emergence of truly urban settlements across Mesopotamia Cities like Tell Brak and Uruk grew to over 100 hectares 250 acres in size and displayed monumental architecture 80 The spread of southern Mesopotamian pottery architecture and sealings far into Turkey and Iran has generally been interpreted as the material reflection of a widespread trade system aimed at providing the Mesopotamian cities with raw materials Habuba Kabira on the Syrian Euphrates is a prominent example of a settlement that is interpreted as an Uruk colony 81 82 Ancient history edit During the Jemdet Nasr 3600 3100 BCE and Early Dynastic periods 3100 2350 BCE southern Mesopotamia experienced a growth in the number and size of settlements suggesting strong population growth These settlements including Sumero Akkadian sites like Sippar Uruk Adab and Kish were organized in competing city states 83 Many of these cities were located along canals of the Euphrates and the Tigris that have since dried up but that can still be identified from remote sensing imagery 84 A similar development took place in Upper Mesopotamia Subartu and Assyria although only from the mid 3rd millennium and on a smaller scale than in Lower Mesopotamia Sites like Ebla Mari and Tell Leilan grew to prominence for the first time during this period 85 Large parts of the Euphrates basin were for the first time united under a single ruler during the Akkadian Empire 2335 2154 BC and Ur III empires which controlled either directly or indirectly through vassals large parts of modern day Iraq and northeastern Syria 86 Following their collapse the Old Assyrian Empire 1975 1750 BCE and Mari asserted their power over northeast Syria and northern Mesopotamia while southern Mesopotamia was controlled by city states like Isin Kish and Larsa before their territories were absorbed by the newly emerged state of Babylonia under Hammurabi in the early to mid 18th century BCE 87 In the second half of the 2nd millennium BCE the Euphrates basin was divided between Kassite Babylon in the south and Mitanni Assyria and the Hittite Empire in the north with the Middle Assyrian Empire 1365 1020 BC eventually eclipsing the Hittites Mitanni and Kassite Babylonians 88 Following the end of the Middle Assyrian Empire in the late 11th century BCE struggles broke out between Babylonia and Assyria over the control of the Iraqi Euphrates basin The Neo Assyrian Empire 935 605 BC eventually emerged victorious out of this conflict and also succeeded in gaining control of the northern Euphrates basin in the first half of the 1st millennium BCE 89 In the centuries to come control of the wider Euphrates basin shifted from the Neo Assyrian Empire which collapsed between 612 and 599 BC to the short lived Median Empire 612 546 BC and equally brief Neo Babylonian Empire 612 539 BC in the last years of the 7th century BC and eventually to the Achaemenid Empire 539 333 BC 90 The Achaemenid Empire was in turn overrun by Alexander the Great who defeated the last king Darius III and died in Babylon in 323 BCE 91 Subsequent to this the region came under the control of the Seleucid Empire 312 150 BC Parthian Empire 150 226 AD during which several Neo Assyrian states such as Adiabene came to rule certain regions of the Euphrates and was fought over by the Roman Empire its succeeding Byzantine Empire and the Sassanid Empire 226 638 AD until the Islamic conquest of the mid 7th century AD The Battle of Karbala took place near the banks of this river in 680 AD In the north the river served as a border between Greater Armenia 331 BC 428 AD and Lesser Armenia the latter became a Roman province in the 1st century BC Modern era edit See also Water politics in the Middle East nbsp Wooden bridge carrying the Baghdad Railway over the Euphrates c 1900 1910After World War I the borders in Southwest Asia were redrawn in the Treaty of Lausanne 1923 when the Ottoman Empire was partitioned Clause 109 of the treaty stipulated that the three riparian states of the Euphrates at that time Turkey France for its Syrian mandate and the United Kingdom for its mandate of Iraq had to reach a mutual agreement on the use of its water and on the construction of any hydraulic installation 92 An agreement between Turkey and Iraq signed in 1946 required Turkey to report to Iraq on any hydraulic changes it made on the Tigris Euphrates river system and allowed Iraq to construct dams on Turkish territory to manage the flow of the Euphrates 93 nbsp Coat of arms of the Kingdom of Iraq 1932 1959 depicting the two rivers the confluence Shatt al Arab and the date palm forest which used to be the largest in the worldThe river featured on the coat of arms of Iraq from 1932 to 1959 nbsp Euphrates near KahtaTurkey and Syria completed their first dams on the Euphrates the Keban Dam and the Tabqa Dam respectively within one year of each other and filling of the reservoirs commenced in 1975 At the same time the area was hit by severe drought and river flow toward Iraq was reduced from 15 3 cubic kilometres 3 7 cu mi in 1973 to 9 4 cubic kilometres 2 3 cu mi in 1975 This led to an international crisis during which Iraq threatened to bomb the Tabqa Dam An agreement was eventually reached between Syria and Iraq after intervention by Saudi Arabia and the Soviet Union 94 95 A similar crisis although not escalating to the point of military threats occurred in 1981 when the Keban Dam reservoir had to be refilled after it had been almost emptied to temporarily increase Turkey s hydroelectricity production 96 In 1984 Turkey unilaterally declared that it would ensure a flow of at least 500 cubic metres 18 000 cu ft per second or 16 cubic kilometres 3 8 cu mi per year into Syria and in 1987 a bilateral treaty to that effect was signed between the two countries 97 Another bilateral agreement from 1989 between Syria and Iraq settles the amount of water flowing into Iraq at 60 percent of the amount that Syria receives from Turkey 93 95 98 In 2008 Turkey Syria and Iraq instigated the Joint Trilateral Committee JTC on the management of the water in the Tigris Euphrates basin and on 3 September 2009 a further agreement was signed to this effect 99 On 15 April 2014 Turkey began to reduce the flow of the Euphrates into Syria and Iraq The flow was cut off completely on 16 May 2014 resulting in the Euphrates terminating at the Turkish Syrian border 100 This was in violation of an agreement reached in 1987 in which Turkey committed to releasing a minimum of 500 cubic metres 18 000 cu ft of water per second at the Turkish Syrian border 101 nbsp Euphrates in Iraq 2005During the Syrian civil war and the Iraqi Civil War much of the Euphrates was controlled by the Islamic State from 2014 until 2017 when the terrorist group began losing land and was eventually defeated territorially in Syria at the Battle of Baghouz and in Iraq in the Western Iraq offensive respectively 102 Economy editSee also List of cities and towns on the Euphrates River Throughout history the Euphrates has been of vital importance to those living along its course With the construction of large hydropower stations irrigation schemes and pipelines capable of transporting water over large distances many more people now depend on the river for basic amenities such as electricity and drinking water than in the past Syria s Lake Assad is the most important source of drinking water for the city of Aleppo 75 kilometres 47 mi to the west of the river valley 103 The lake also supports a modest state operated fishing industry 104 Through a newly restored power line the Haditha Dam in Iraq provides electricity to Baghdad 105 See also editArmenian highlands Mountains of Ararat Zagros MountainsReferences edit Euphrates River Definition Location amp Facts Britannica Archived from the original on 24 June 2015 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