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首页> 外文期刊>Journal of Contaminant Hydrology >Quantifying MTBE biodegradation in the Vandenberg Air Force Base ethanol release study using stable carbon isotopes
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Quantifying MTBE biodegradation in the Vandenberg Air Force Base ethanol release study using stable carbon isotopes

机译:在范登堡空军基地乙醇释放研究中使用稳定的碳同位素量化MTBE的生物降解

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Compound-specific isotope analysis (CSIA) was used to assess biodegradation of MTBE and TB A during an ethanol release study at Vandenberg Air Force Base. Two continuous side-by-side field releases were conducted within a preexisting MTBE plume to form two lanes. The first involved the continuous injection of site groundwater amended with benzene, toluene and o-xylene ("No ethanol lane"), while the other involved the continuous injection of site groundwater amended with benzene, toluene and o-xylene and ethanol ("With ethanol lane"). The δ~(13)C of MTBE for all wells in the "No ethanol lane" remained constant during the experiment with a mean value of - 31.3 ± 0.5%o (n=40), suggesting the absence of any substantial MTBE biodegradation in this lane. In contrast, substantial enrichment in ~(13)C of MTBE by 40.6%o, was measured in the "With ethanol lane", consistent with the effects of biodegradation. A substantial amount of TBA (up to 1200 μg/L) was produced by the biodegradation of MTBE in the "With ethanol lane". The mean value of δ~(13)C for TBA in groundwater samples in the "With ethanol lane" was -26.0±1.0‰ (n = 32). Uniform δ~(13)C TBA values through space and time in this lane suggest that substantial anaerobic biodegradation of TBA did not occur during the experiment. Using the reported range in isotopic enrichment factors for MTBE of- 9.2‰ to -15.6%o, and values of δ~(13)C of MTBE in groundwater samples, MTBE first-order biodegradation rates in the "With ethanol lane" were 12.0 to 20.3 year~(-1) (n = 18). The isotope-derived rate constants are in good agreement with the previously published rate constant of 16.8 year~(-1) calculated using contaminant mass-discharge for the "With ethanol lane".
机译:在范登堡空军基地进行乙醇释放研究期间,化合物特异性同位素分析(CSIA)用于评估MTBE和TB A的生物降解。在预先存在的MTBE羽流中进行了两次连续的并排田间释放,形成了两个通道。第一个涉及连续注入用苯,甲苯和邻二甲苯修正的现场地下水(“无乙醇通道”),而第二个涉及连续注入用苯,甲苯和邻二甲苯和乙醇修正的现场地下水(“乙醇泳道”)。实验期间,“无乙醇泳道”中所有孔的MTBE的δ〜(13)C保持恒定,平均值为-31.3±0.5%o(n = 40),表明在该处没有任何实质性的MTBE生物降解。这条车道。相反,在“有乙醇通道”中测得MTBE的〜(13)C大量富集了40.6%o,与生物降解作用一致。在“有乙醇通道”中通过MTBE的生物降解产生了大量的TBA(最高1200μg/ L)。 “有乙醇通道”的地下水样品中TBA的δ〜(13)C平均值为-26.0±1.0‰(n = 32)。在该泳道中,通过空间和时间的均匀δ〜(13)C TBA值表明,在实验过程中未发生TBA的实质性厌氧生物降解。使用报道的MTBE同位素富集因子范围为9.2‰至-15.6%o,以及地下水样品中MTBE的δ〜(13)C值,“有乙醇通道”中MTBE的一级生物降解率为12.0。至20.3年〜(-1)(n = 18)。同位素衍生的速率常数与先前公布的速率常数16.8年〜(-1)一致,该速率常数是使用“带乙醇通道”的污染物质量排放量计算得出的。

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