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In situ TCE bioremediation study using electrokinetic cometabolite injection

机译:电动替补代谢物的原位三氯乙烯生物修复研究

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The feasibility was evaluated of using electrokinetic injection of benzoic acid cometabolite to enhance the biodegradation of a representative recalcitrant contaminant, trichloroethene (TCE). Whereas in flask studies, sulfate ion alone enhanced TCE (at 6 ppm) degradation rates over those found in the absence of suitable additives. benzoic acid showed enhanced degradation rates for TCE at 6-50 ppm levels. Following injection of benzoic acid cometabolite into a l m column of TCE contaminated Loess clay, the TCE first order degradation rate at the periphery was determined to be (0.039 ± 0.007) day~1, a value in good agreement with an anaerobic slurry flask tests at 30℃, (0.047 ± 0.009) day~1. However, unless the rate of injection of an additive is made compatible with its rate of consumption. these column results and a theoretical model reveal that homogeneous penetration of additive is not achieved. It is cautioned that knowledge of the rate of degradation of a carbon source enhancer (or additive) is critical for engi- neering its homogeneous injection, whether by hydraulic or electrokinetic methods. These results demonstrate that electrokinetic degradation of recalcitrant wastes may be practical, in particular for those sites whose soil media have low coefficients of hydraulic permeability (clay deposits, silty clays. etc.) where traditional pump and treat technology is ineffective.
机译:使用电动注射苯甲酸粉刺剂来增强代表性顽固性污染物三氯乙烯(TCE)的生物降解性,评估了可行性。而在烧瓶研究中,单独的硫酸根离子比没有合适添加剂的情况下提高了TCE(6 ppm)降解速率。苯甲酸在6-50 ppm的水平下显示出更高的TCE降解速率。在将TCE污染的黄土黏土的Alm柱中注入苯甲酸甲磺酸酯后,外围TCE的一级降解速率被确定为(0.039±0.007)day〜1,该值与30日的厌氧浆料烧瓶测试相吻合℃,(0.047±0.009)天〜1。但是,除非使添加剂的注入速率与其消耗速率兼容。这些色谱柱结果和理论模型表明,没有实现添加剂的均匀渗透。请注意,无论是通过液压方法还是电动方法,了解碳源增强剂(或添加剂)的降解速率对于进行均匀注入都是至关重要的。这些结果表明,难降解废物的电动降解可能是可行的,特别是对于那些土壤介质的水力渗透系数较低(粘土沉积物,粉质粘土等)的地点,而传统的泵送和处理技术无效。

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