首页> 外文期刊>Journal of Contaminant Hydrology >Comparison of biotic and abiotic treatment approaches for co-mingled perchlorate, nitrate, and nitramine explosives in groundwater
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Comparison of biotic and abiotic treatment approaches for co-mingled perchlorate, nitrate, and nitramine explosives in groundwater

机译:地下水中高氯酸盐,硝酸盐和硝胺爆炸物共混生物处理和非生物处理方法的比较

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摘要

Biological and abiotic approaches for treating co-mingled perchlorate, nitrate, and nitramine explosives in groundwater were compared in microcosm and column studies. In microcosms, microscale zero-valent iron (mZVI), nanoscale zero-valent iron (nZVI), and nickel catalyzed the reduction of RDX and HMX from initial concentrations of 9 and 1 mg/L, respectively, to below detection (0.02 mg/L), within 2 h. The mZVI and nZVI also degraded nitrate (3 mg/L) to below 0.4 mg/L, but none of the metal catalysts were observed to appreciably reduce perchlorate (~5 mg/L) in microcosms. Perchlorate losses were observed after approximately 2 months in columns of aquifer solids treated with mZVI, but this decline appears to be the result of biodegradation rather than abiotic reduction. An emulsified vegetable oil substrate was observed to effectively promote the biological reduction of nitrate, RDX and perchlorate in microcosms, and all four target contaminants in the flow-through columns. Nitrate and perchlorate were biodegraded most rapidly, followed by RDX and then HMX, although the rates of biological reduction for the nitramine explosives were appreciably slower than observed for mZVI or nickel. A model was developed to compare contaminant degradation mechanisms and rates between the biotic and abiotic treatments.
机译:在微观世界和色谱柱研究中,对处理地下水中高氯酸盐,硝酸盐和硝胺共混物的生物和非生物方法进行了比较。在微观世界中,微米级零价铁(mZVI),纳米级零价铁(nZVI)和镍催化RDX和HMX的浓度分别从初始浓度9和1 mg / L降至检测值以下(0.02 mg / L L),在2小时内。 mZVI和nZVI还可将硝酸盐(3 mg / L)降解至0.4 mg / L以下,但在微观世界中,未观察到任何金属催化剂可明显降低高氯酸盐(〜5 mg / L)。大约2个月后,在用mZVI处理的含水层固体中观察到高氯酸盐损失,但这种下降似乎是生物降解而不是非生物降解的结果。观察到一种乳化的植物油底物可以有效地促进微观世界中硝酸盐,RDX和高氯酸盐以及流通塔中所有四种目标污染物的生物还原。硝酸盐和高氯酸盐的生物降解速度最快,其次是RDX,然后是HMX,尽管硝胺炸药的生物还原速度明显慢于mZVI或镍。开发了一个模型来比较生物处理和非生物处理之间的污染物降解机理和速率。

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