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Hydrogeochemistry and water quality assessment of the Kor-Sivand Basin, Fars province, Iran

机译:伊朗法尔斯省库尔-西万德盆地的水文地球化学和水质评估

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摘要

In order to assess the quality and suitability of waters in the Kor-Sivand river basin, 60 water samples from the Kor river and 90 water samples from wells in the basin were studied. Assessments were based on Piper's and Gibbs' diagrams for water quality, Food and Agricultural Organization's (FAO) guidelines, and US Salinity Laboratory diagram for water suitability. The results showed that the river water is of Ca-HCO_3 type, while well water is of Ca-Cl and Na-Cl type. Based on Gibbs' diagram, the source of soluble ions in the river water samples is the weathering of stones over which water flows, while evaporation was found to be the dominant process in the ion concentration of the well samples. According to the FAO Guidelines, the salinity of surface water for irrigation did not cause great restrictions; however, many of these waters could create potential permeability problems. In the groundwater samples, a high salt concentration is more important than the infiltration problem. Mg hazard values at some sites limit its use for agricultural purposes. One third of the river water samples and two thirds of well waters had more than 50% magnesium. Saturation indices showed that 94% of the analyzed water samples are supersaturated with calcite, aragonite, and dolomite. Based on the US Salinity Laboratory diagram, river water samples were classified as C_2S_1 and C_2S_1, while C_4S_3, C_4S_4, C_2S_1, and C_3S_1 were the most dominant classes in well samples. Some management practices necessary for sustainable development of water resources in the study area were discussed briefly, including appropriate selection of crops, adequate drainage, leaching, blending and cyclic use of saline water, proper irrigation method, and addition of soil amendment.
机译:为了评估Kor-Sivand河流域的水质和适宜性,研究了来自Kor河的60个水样和流域水井的90个水样。评估基于Piper和Gibbs的水质图,粮食及农业组织(FAO)准则以及美国盐度实验室的水适用性图。结果表明,河水为Ca-HCO_3型,井水为Ca-Cl和Na-Cl型。根据吉布斯图,河水样品中的可溶性离子的来源是水流过的石头的风化作用,而蒸发是影响井样品离子浓度的主要过程。根据粮农组织准则,用于灌溉的地表水的盐度并没有造成很大的限制。但是,其中许多水可能会引起潜在的渗透性问题。在地下水样品中,高盐浓度比渗透问题更为重要。在某些场所,镁的危害值限制了其在农业上的用途。三分之一的河水样本和三分之二的井水中镁含量超过50%。饱和指数表明,分析的水样品中有94%的水被方解石,文石和白云石过饱和。根据美国盐度实验室图,河水样本被分类为C_2S_1和C_2S_1,而C_4S_3,C_4S_4,C_2S_1和C_3S_1是井样本中最主要的类别。简要讨论了研究区域水资源可持续发展所需的一些管理措施,包括适当选择农作物,充分排水,淋洗,盐水的混合和循环使用,适当的灌溉方法以及添加土壤改良剂。

著录项

  • 来源
    《Environmental Monitoring and Assessment》 |2012年第8期|p.4861-4877|共17页
  • 作者单位

    Department of Salinity Research, Fars Research Center forAgriculture and Natural Resources,Bakhshande Blvd. Zarghan,Fars, Iran;

    Department of Salinity Research, Fars Research Center forAgriculture and Natural Resources,Bakhshande Blvd. Zarghan,Fars, Iran;

    Fars Research Center for Agriculture and Natural Resources,P.O. Box 1151, 71955 Shiraz, Iran;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    irrigation water quality; hydrochemistry; kor river;

    机译:灌溉水质;水化学科尔河;
  • 入库时间 2022-08-17 13:27:37

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