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Rise and decline of the fishery industry in the Aydarkul-Arnasay Lake System (Uzbekistan): effects of reservoir management, irrigation farming and climate change on an unstable ecosystem

机译:Aydarkul-Arnasay湖系统(乌兹别克斯坦)渔业的兴衰:水库管理,灌溉农业和气候变化对不稳定生态系统的影响

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摘要

Originally, a shallow saline depression between the Kyzylkum and the Nurata mountain range the Aydarkul-Arnasay Lake System (AALS) was created in 1969 when a catastrophic flood event in the Syr Darya catchment exceeded the capacity of the Chardarya reservoir. Additional water diversions further increased the volume of the lakes to up to 42.2 mln m(3) in 2006. After the breakdown of the commercial fishing in the Uzbek part of the Aral Sea in 1983, the AALS became the most important fishery lake in Uzbekistan with an annual catch of more than 4600 tons (in 1988). In recent years, however, the fish catch experienced a sharp decline (down to 728 tons in 2006) due to the increased inflow of drainage water from the large Golodnaya Steppe (Hunger Steppe) irrigation scheme (e.g., 0.1 km(3) in 1960, 1.0 km(3) in 1970, 2.3 km(3) in 1980, 2.9 km(3) in 2000 and 3.6 km(3) in 2010) and a decrease in freshwater inflow from the Chardarya reservoir (e.g., 4.0 km(3) in 1995, 2.3 km(3) in 2005 and 1.8 km(3) in 2010). The increasing anthropogenic pressure, as well as the impacts of the climate change (+0.6-0.9 degrees C between 1950 and 2000, decrease in the long-term precipitation and increase in the variability), is threatening this ecological and economic important lake system. This article presents new data about the temporal dynamic of the lake hydrology (size, volume, water balance), the surrounding climate and its development as well as about the water quality of the lakes and the main drainage water collectors, and the development of the fish fauna over the last decades. This study, based on official data (Uzhydromet, Uzryba), online databases (GHCN) and extensive field work (water quality and fish sampling), provides a complete published analysis of the status quo of the AALS. Therefore, it is an important contribution to the establishment of a stable lake ecosystem system and a sustainable fishing industry.
机译:最初,Kyzylkum和Nurata山脉Aydarkul-Arnasay湖系统(AALS)之间形成了一个浅层盐洼,当时Syr Darya流域发生的灾难性洪水事件超出了Chardarya水库的容量。额外的引水措施使湖泊的流量在2006年进一步增加到4220万平方米(3)。在1983年咸海的乌兹别克斯坦部分地区的商业捕鱼中断之后,AALS成为乌兹别克斯坦最重要的渔业湖泊年捕捞量超过4600吨(1988年)。但是,近年来,由于大型Golodnaya草原(饥饿草原)灌溉计划(例如,1960年为0.1 km(3))的排水量增加,鱼的捕捞量急剧下降(2006年降至728吨) ,1970年为1.0 km(3),1980年为2.3 km(3),2000年为2.9 km(3),2010年为3.6 km(3))以及从Chardarya水库流入的淡水减少了(例如4.0 km(3) )1995年,2005年2.3公里(3)和2010年1.8公里(3))。人为压力的增加以及气候变化的影响(1950年至2000年间摄氏+ 0.6-0.9摄氏度,长期降水减少和变异性增加)正威胁着这一具有生态和经济意义的重要湖泊系统。本文提供了有关湖泊水文学的时间动态(大小,体积,水平衡),周围气候及其发展以及湖泊和主要排水集水器的水质以及湖泊的发展的新数据。过去几十年来的鱼类这项研究基于官方数据(Uzhydromet,Uzryba),在线数据库(GHCN)和广泛的现场工作(水质和鱼类抽样),提供了有关AALS现状的完整公开分析。因此,这对建立稳定的湖泊生态系统和可持续的渔业产业具有重要的贡献。

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