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Groundwater and soil salinity variations in a canal command area in Pakistan

机译:巴基斯坦运河指挥区的地下水和土壤盐度变化

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This three-year study was undertaken to investigate the groundwater and soil salinity variation in a canal-irrigated area. Water and soil samples were collected along 54 tertiary canals located on six secondary canals (two each at head, middle and tail end) of a main canal. Data of crop yield and income of the farmers were also collected. The results show that electrical conductivity (EC) of groundwater increased from head to lower reaches along all the irrigation channels, i.e. main, the secondary and the tertiary canals. Similarly, the soil water ECe also increased with increased distance from the head of the irrigation system. Reduced canal water supply at lower reaches of the irrigation system forced the downstream water users to pump more groundwater, thereby increasing their irrigation cost. The deteriorating groundwater quality further adds misery to the downstream farmers by degrading productivity of their lands caused by excessive use of saline groundwater. Location of the water users along the canal irrigation system had an impact on their crop yield as well as income and these parameters decreased with increased distance from the head of the irrigation channels. For example, the net income of the tail-end farmers varied from 43% to 59% of the head-end farmers.
机译:这项为期三年的研究旨在调查运河灌溉区的地下水和土壤盐分变化。沿着位于主干渠的六个辅助干渠(头,中和尾端各两个)上的54条第三干渠收集水和土壤样品。还收集了农民的农作物产量和收入数据。结果表明,沿所有灌溉渠道,即干渠,次要渠和第三纪渠,地下水的电导率(EC)从水头到下游增加。同样,随着距灌溉系统头部距离的增加,土壤水ECe也会增加。灌溉系统下游的运河水供应减少,迫使下游用水户抽出更多的地下水,从而增加了灌溉成本。地下水水质恶化进一步加剧了下游农民的苦难,因为他们过度使用盐碱地下水导致土地生产力下降。沿渠灌溉系统的用水户位置对他们的作物产量和收入都有影响,并且这些参数随着距灌溉渠首距离的增加而降低。例如,尾部农民的净收入从首部农民的43%到59%不等。

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