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石油烃废物的加速生物降解

Accelerated biodegradation of petroleum hydrocarbon waste.

作者信息

Ward Owen, Singh Ajay, Van Hamme J

机构信息

Department of Biology, University of Waterloo, N2L 3G1, Waterloo, Ontario,

出版信息

J Ind Microbiol Biotechnol. 2003 May;30(5):260-70. doi: 10.1007/s10295-003-0042-4. Epub 2003 Apr 3.

Abstract

Conventional landfarming approaches to bioremediation of refinery and other petroleum sludges are not acceptable environmentally and are banned in most North American jurisdictions. While initial bioreactor-based systems for treatment of these sludges required batch-cycle process-times of 1-3 months, an accelerated process has now been developed which can be completed in 10-12 days. In this process, up to 99% of total petroleum hydrocarbons are degraded and the sludges are converted from hazardous to non-hazardous according to the United States EPA's toxicity characteristic leachate procedure criteria. Understanding and exploiting mechanisms to improve hydrocarbon accession to the degrading microorganisms was a key development component of the process. Contrasting physiological mechanisms were observed for different component organisms of the mixed culture with respect to their associations with the hydrocarbon substrate; and the beneficial effects of using surfactants were demonstrated. The mixed culture used in the process exhibited a capacity for high-rate degradation of volatile organic carbons and the potential use of the culture as a liquid biofilter was demonstrated. The culture was also effective as an inoculant for the bioaugmentation of total petroleum hydrocarbon-contaminated soil and as a de-emulsifier of oilfield emulsions and could transform some other environmental contaminants which are not predominant components of crude oil.

摘要

传统的用于炼油厂及其他石油污泥生物修复的土地耕作方法在环境方面是不可接受的,并且在北美大多数司法管辖区都被禁止。虽然最初基于生物反应器的处理这些污泥的系统需要1至3个月的间歇循环处理时间,但现在已经开发出一种加速处理方法,该方法可在10至12天内完成。在此过程中,根据美国环境保护局(EPA)的毒性特征沥出程序标准,高达99%的总石油烃被降解,污泥从危险变为非危险。了解和利用提高碳氢化合物进入降解微生物的机制是该过程的关键发展组成部分。对于混合培养物的不同组成生物体,观察到它们与碳氢化合物底物的关联存在不同的生理机制;并且证明了使用表面活性剂的有益效果。该过程中使用的混合培养物表现出对挥发性有机碳的高速率降解能力,并证明了该培养物作为液体生物滤池的潜在用途。该培养物作为总石油烃污染土壤生物强化的接种剂以及油田乳液的破乳剂也很有效,并且可以转化一些并非原油主要成分的其他环境污染物。

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