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RDX biodegradation column study: comparison of electron donors for biologically induced reductive transformation in groundwater

机译:RDX生物降解柱研究:地下水中生物诱导还原转化的电子给体的比较

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A series of column studies, using site-specific soil and groundwater, were conducted to determine the feasibility of biologically active zone enhancement (BAZE) process for reductive biotransformation of hexahydro-1,3,5-trinitro-l,3,5-triazine (RDX) in groundwater. This treatability study examined the use of four amendments (acetate, ethanol, soluble starch, and acetate plus ammonium), which served as electron donors. Triplicate columns, with groundwater residence time of about 27.5 h, were used for each amendment treatment and the amendment control. In treatment columns amendment dosing was 500mg/L C for carbon sources and 100mg/L N for ammonium. Each of the amendment treatments reduced RDX inlet concentrations of 100 μg/L to less than 1 μg/L. The highest first-order RDX biodegradation rate ranged between 0.140 and 0.447 h~(-1) for acetate amended columns as compared to 0.037 to 0.083 h~(-1) in control columns (no amendment). The addition of soluble starch resulted in increased toxicity (based on Microtox~® analysis) that was partially removed by biological activity in the columns. Ethanol addition itself did not result in increased toxicity but biological activity in this system did induce Microtox~® toxicity. Acetate did not have any Microtox~® toxicity associated with it. The addition of ammonium as a nitrogen source did not significantly increase the removal rate of RDX. Based on these observations acetate was selected for the field demonstration.
机译:进行了一系列针对特定地点的土壤和地下水的色谱柱研究,以确定生物活性区增强(BAZE)工艺对六氢-1,3,5-三硝基-1,3,5-三嗪进行还原性生物转化的可行性。 (RDX)在地下水中。这项可治疗性研究检查了用作电子供体的四种修正剂(乙酸盐,乙醇,可溶性淀粉和乙酸盐加铵盐)的使用。每种修正处理和修正控制均使用一式三份的色谱柱,其中地下水的停留时间约为27.5小时。在处理柱中,碳源的修正剂量为500mg / L C,铵的修正剂量为100mg / LN。每种修正处理都将RDX入口浓度从100μg/ L降低到小于1μg/ L。醋酸盐改性色谱柱的最高一级RDX生物降解率在0.140至0.447 h〜(-1)范围内,而对照色谱柱则为0.037至0.083 h〜(-1)(无修正值)。可溶性淀粉的添加导致毒性增加(基于Microtox®分析),该毒性被色谱柱中的生物活性部分除去。加入乙醇本身不会导致毒性增加,但该系统中的生物活性确实会引起Microtox®毒性。醋酸酯没有任何与之相关的毒性。铵盐作为氮源的添加并未显着提高RDX的去除率。基于这些观察,选择醋酸盐进行现场演示。

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