首页> 外文期刊>Journal of Environmental Science and Health. A, Toxic/Hazardous Substances & Environmental Engineering >Determination of Electron Donors by Comparing Reaction Rates for In Situ Bioremediation of Nitrate-Contaminated Groundwater
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Determination of Electron Donors by Comparing Reaction Rates for In Situ Bioremediation of Nitrate-Contaminated Groundwater

机译:通过比较反应速率对硝酸盐污染的地下水进行原位生物修复来确定电子给体

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Groundwater contaminated by nitrates occurs frequently. In this research, fumarate, acetate, formate, lactate, propionate, ethanol, and methane were evaluated as a potential electron donor and carbon source by comparing the denitrification rate for the in situ bioremediation of nitrate contaminated groundwater. The denitrification rate for each substance was the quickest in the order of: fumarate > hydrogen > formate/Lactate > ethanol > propionate > methanol > acetate. Microcosm studies were performed with fumarates and acetates. When fumarates were used as a substrate, nitrates were removed completely at a rate of 0.66mmol/day, while the conversion rate from nitrate to nitrogen gas and other by-products was 87%. For the microcosm test, 42 mg of fumarates were needed to remove 30 mg of NO_3~- -N/L. When using acetate as a sole carbon source, 31% of nitrates were removed during the initial adjustment period. Among the removed fractions, however, 83% of the nitrates were removed by the cell growth. Overall, the nitrate removal rate was 0.37 mmol/day when acetate was used as a sole carbon source. The acetate showed longer lag time before denitrification occurred, which implied that fumarate would have been a better carbon source compared to acetate as more amounts were utilized for nitrate removal than cell growth.
机译:硝酸盐污染的地下水经常发生。在这项研究中,通过比较硝酸盐污染地下水的原位生物修复反硝化率,将富马酸盐,乙酸盐,甲酸盐,乳酸盐,丙酸盐,乙醇和甲烷评估为潜在的电子供体和碳源。每种物质的反硝化速率最快的顺序为:富马酸酯>氢>甲酸酯/乳酸酯>乙醇>丙酸酯>甲醇>乙酸酯。用富马酸酯和乙酸酯进行了缩影研究。当使用富马酸盐作为底物时,硝酸盐以0.66mmol /天的速度被完全去除,而硝酸盐到氮气和其他副产物的转化率为87%。对于微观测试,需要42 mg富马酸酯以去除30 mg NO_3-〜-N / L。当使用乙酸盐作为唯一碳源时,在初始调整期间会去除31%的硝酸盐。但是,在去除的级分中,有83%的硝酸盐通过细胞生长而被去除。总体而言,当乙酸盐用作唯一碳源时,硝酸盐去除速率为0.37 mmol /天。醋酸盐在反硝化发生之前显示出更长的滞后时间,这意味着与醋酸盐相比,富马酸盐将是更好的碳源,因为用于硝酸盐去除的量要多于细胞生长。

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