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The Influence of Nitrate on Selenium in Irrigated Agricultural Groundwater Systems

机译:灌溉农业地下水系统中硝酸盐对硒的影响

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Selenium (Se) contamination of groundwater is an environmental concern especially in areas where aquifer systems are underlain by Se-bearing geologic formations such as marine shale. This study examined the influence of nitrate (NO3) on Se species in irrigated soil and groundwater systems and presents results from field and laboratory studies that further clarify this influence. Inhibition of selenate (SeO4) reduction in the presence of NO3 and the oxidation of reduced Se from shale by autotrophic denitrification were investigated. Groundwater sampling from piezometers near an alluvium-shale interface suggests that SeO4 present in the groundwater was due in part to autotrophic denitrification. Laboratory shale oxidation batch studies indicate that autotrophic denitrification is a major driver in the release of SeO4 and sulfate. Similar findings occurred for a shale oxidation flow-through column study, with 70 and 31% more reduced Se and S mass, respectively, removed from the shale material in the presence of NO3 than in its absence. A final laboratory flow-through column test was performed with shallow soil samples to assess the inhibition of SeO4 reduction in the presence of NO3, with results suggesting that a concentration of NO3 of approximately 5 mg L-1 or greater will diminish the reduction of SeO4. The inclusion of the fate and transport of NO3 and dissolved oxygen is imperative when studying or simulating the fate and transport of Se species in soil and groundwater systems.
机译:地下水中硒(Se)的污染是一个环境问题,尤其是在含水层系统被含海藻页岩等含硒地质构造所覆盖的地区。这项研究检查了硝酸盐(NO3)对灌溉土壤和地下水系统中硒物种的影响,并提出了田野和实验室研究的结果,进一步阐明了这种影响。研究了在自养反硝化作用下,在NO3存在下抑制硒酸盐(SeO4)还原和从页岩中还原硒的氧化作用。从冲积层-页岩界面附近的压力计中抽取的地下水表明,地下水中存在的SeO4部分是由于自养反硝化作用造成的。实验室页岩氧化批处理研究表明,自养反硝化作用是SeO4和硫酸盐释放的主要驱动力。对于页岩氧化流过柱研究,也发现了类似的发现,在存在NO3的情况下,从页岩材料中去除的Se和S质量分别比不存在NO3时减少了70%和31%。对浅土样品进行了最终的实验室流通管测试,以评估在NO3存在下对SeO4还原的抑制作用,结果表明,约3 mg L-1或更高的NO3浓度将减少SeO4的还原。在研究或模拟土壤和地下水系统中硒物种的命运和运输时,必须包括NO3和溶解氧的命运和运输。

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