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Effect of Introduced Flow and Aquatic Vegetation on Phosphorus Loads of Agricultural Drainage

机译:引入流动和水生植被对农业排水磷负荷的影响

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Phosphorous (P) loads from anthropogenic sources increase eutrophication and reduce water quality. This study tested the management of two floating aquatic vegetation (FAV) species-water hyacinth (Eichhornia crassipes (Mart.) Solms)) and water lettuce (Pistia stratiotes L.)-and introduced flow facilitated by hydraulic pumps in reducing P loads exiting agricultural drainage ditches. The experimental design consisted of four treatment ditches equipped with hydraulic pumps to circulate farm canal water through the ditches prior to discharge. Treatment ditches 2 and 3 contained FAV that was physically introduced while treatment ditches 1 and 4 did not. In addition, two control ditches (ditches 5 and 6) were managed without hydraulic pumps or introduced FAV. Introduced flow was found to cause significant differences in total P, total dissolved P, and soluble reactive P concentration (p 0.01) between inflow and outflow water. The treatment ditches reduced total P and total dissolved P by 13% and 33%, respectively compared with the control ditches, which increase total P by 9% and total dissolved P by 8%, respectively. Circulating farm canal water through ditches can be considered a treatment technology that reduces P loading via FAV uptake or particulate settling prior to being discharged.
机译:来自人为源的磷(P)载荷增加了富营养化,降低了水质。本研究检测了两种浮动水生植被(FAV)物种 - 水葫芦(Eichhornia Crassipes(Mart.)Solms)的管理和水莴苣(Pistia stratiotels L.) - 并通过液压泵引入的流动,减少了液压泵退出农业的P负载排水沟。实验设计由四个处理沟渠组成,配备液压泵,在放电之前将农用运河循环通过沟渠。治疗沟渠2和3含有物理引入的FAV,而治疗沟渠1和4没有。此外,在没有液压泵或引入最佳的情况下管理两个控制沟(沟渠5和6)。引入的流动被发现引起流入和流出水之间的总P,总溶解P和可溶性反应性P浓度(P <0.01)造成显着差异。处理沟槽分别与控制沟相比将总P和总溶解P减少13%和33%,其分别将总P×9%和总溶解P递增8%。通过沟渠循环农用运河水可以被认为是一种处理技术,可通过在排出之前通过最优化的加热或微粒沉降来减少P加载。

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