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首页> 外文期刊>Water Environment Research >In Situ Bioremediation of Perchlorate in Vadose Zone Soil Using Gaseous Electron Donors: Microcosm Treatability Study
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In Situ Bioremediation of Perchlorate in Vadose Zone Soil Using Gaseous Electron Donors: Microcosm Treatability Study

机译:气态电子供体在渗流区土壤中高氯酸盐的原位生物修复:微观可处理性研究

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A series of microcosm experiments were performed to determine the effectiveness of various gaseous electron donors (including hydrogen, 1 -hexene, ethyl acetate, and liquefied petroleum gas [LPG]) for supporting biological perchlorate reduction under different electron donor concentrations and soil moistures. Under high soil moisture (16% w/w) conditions, complete or partial perchlorate degradation was achieved with all of the tested electron donors, except for ethyl acetate. Hydrogen was the most promising of the tested electron donors, achieving complete perchlorate degradation with first-order rate constants ranging from 0.13 to 0.20 day~(-1) and reducing concentrations to non-detectable levels within 35 to 42 days. The LPG and 1-hexene each promoted partial perchlorate reduction, with average first-order rate constants of 0.05 and 0.11 day~(-1), respectively. Although significant perchlorate reduction was observed with as little as 13% moisture, the moisture content for complete perchlorate degradation in this particular soil was determined to be 17%.
机译:进行了一系列微观实验,以确定各种气态电子给体(包括氢气,1-己烯,乙酸乙酯和液化石油气[LPG])在不同电子给体浓度和土壤湿度下支持生物高氯酸盐还原的有效性。在高土壤湿度(16%w / w)条件下,除乙酸乙酯外,所有测试的电子给体均可实现完全或部分的高氯酸盐降解。氢是测试电子供体中最有前途的,实现了高氯酸盐的完全降解,其一级速率常数范围为0.13至0.20天〜(-1),并在35至42天之内将浓度降低到不可检测的水平。 LPG和1-己烯均促进部分高氯酸盐还原,平均一级速率常数分别为0.05和0.11天〜(-1)。尽管仅用13%的水分就能观察到高氯酸盐的显着减少,但是在这种特殊的土壤中,高氯酸盐完全降解的水分含量被确定为17%。

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