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基于现场测量估算底土中微生物生长和烃类污染物生物降解的方法:2. 在现场淋溶实验中的应用。

Approach for estimating microbial growth and biodegradation of hydrocarbon contaminants in subsoil based on field measurements: 2. Application in a field lysimeter experiment.

机构信息

Kiso-jiban Consultants Co., Ltd., 1-5-7 Kameido, Koutou-ku, Tokyo 136-8577, Japan.

出版信息

Environ Sci Technol. 2010 Sep 1;44(17):6795-801. doi: 10.1021/es100770g.

Abstract

A new approach was applied to represent the natural attenuation of hydrocarbon (HC) contaminants as observed in a field lysimeter experiment. The approach describes the microbial growth on HC contaminants and linked HC biodegradation under natural precipitation conditions. The HC contaminants contained an inert component (n-dodecane) and soluble components (toluene, ethylbenzene, xylene isomers, and naphthalene), and their attenuation processes were predicted. The respiratory quinone profile method is used to indicate temporary changes in in situ microbial biomass possessed by HC-degrading microorganisms in soils. On the basis of field measurements conducted during the initial 92 days post-HC contamination, the kinetic parameters of HC-degrading microorganisms were estimated, which were used for the prediction of microbial growth and linked HC-contaminant depletion in the contaminated soil for the subsequent 259 days. The prediction was in good agreement with the measured HC concentration and corresponding respiratory quinones from HC-degrading microorganisms. The results indicate that the proposed approach can provide a reliable prediction of HC depletion in subsoil on the basis of field measurements. Further efforts are expected to incorporate the approach into a multiphase flow and multicomponent transport model for application to actual HC-contaminated sites.

摘要

一种新方法被应用于描述在现场淋溶实验中观察到的烃(HC)污染物的自然衰减。该方法描述了在自然降水条件下 HC 污染物上微生物的生长和相关的 HC 生物降解。HC 污染物含有惰性成分(正十二烷)和可溶性成分(甲苯、乙苯、二甲苯异构体和萘),并预测了它们的衰减过程。呼吸醌谱法用于指示土壤中 HC 降解微生物原位生物量的暂时变化。基于 HC 污染后最初 92 天的现场测量,估算了 HC 降解微生物的动力学参数,用于预测随后 259 天污染土壤中微生物生长和相关 HC 污染物的消耗。预测结果与实测的 HC 浓度和 HC 降解微生物的相应呼吸醌一致。结果表明,该方法可以根据现场测量可靠地预测亚土壤中 HC 的消耗。预计将进一步努力将该方法纳入多相流和多组分传输模型,以应用于实际的 HC 污染场地。

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