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MONITORING IN SITU BIODEGRADATION OF BENZENE AND TOLUENE BY STABLE CARBON ISOTOPE FRACTIONATION

机译:稳定碳同位素分馏监测苯和甲苯的原位生物降解

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Intrinsic biodegradation of benzene and toluene in a heavily contaminated aquifer at the site of a former hydrogenation plant was investigated by means of isotope fractionation processes. The carbon isotope compositions of benzene and toluene were monitored in two campaigns within a time period of 12 months to assess the extent of the in situ biodegradation and the stability of the plume over time. The Rayleigh model, applied to calculate the extent of biodegradation and residual theoretical concentrations of toluene, showed that in situ biodegradation was a relevant attenuation process. The biodegradation rate constant for toluene was estimated to be k = 5.7 +- 0.5 μM/d in the groundwater flow path downstream of the source area. The spatial distribution of the carbon isotope composition of benzene indicated that in situ biodegradation occurred at marginal zones of the plume where concentrations were lower than 30 mg/L. The vertical structure of the benzene plume provided evidence for in situ degradation processes at the upper and lower fringes of the plume. The results show that isotope fractionation can be used to quantify the extent of microbial in situ degradation in contaminated aquifers and to develop conceptual models for natural attenuation approaches.
机译:通过同位素分馏方法研究了在前加氢工厂所在地受重度污染的含水层中苯和甲苯的内在生物降解。在12个月的时间内,以两次活动监测了苯和甲苯的碳同位素组成,以评估原位生物降解的程度以及烟羽随时间的稳定性。用于计算生物降解程度和残余甲苯理论浓度的瑞利模型表明,原位生物降解是一个相关的衰减过程。在源区下游的地下水流动路径中,甲苯的生物降解速率常数估计为k = 5.7±0.5μM/ d。苯的碳同位素组成的空间分布表明,原位生物降解发生在浓度低于30 mg / L的羽状边缘区域。苯烟羽的垂直结构为烟羽上部和下部边缘的原位降解过程提供了证据。结果表明,同位素分级分离可用于量化受污染含水层中微生物原位降解的程度,并为自然衰减方法开发概念模型。

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