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Modeling Biosurfactant-Enhanced Bioremediation Processes for Petroleum-Contaminated Sites

机译:为受石油污染的地点建模的生物表面活性剂增强的生物修复过程

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摘要

In situ bioremediation is an effective technology for cleaning up petroleum- contaminated sites. To improve efficiencies of conventional bioremediation processes, biosurfactant treatment has received much attention. In this study, an integrated mathematical modeling system was developed for simulating biosurfactant-enhanced bioremediation (BEB) processes. The model includes modules of multiphase, multi- component flow and transport, biological degradation, and biosurfactant-enhanced re- mediation. A pilot-scale physical modeling system, with rhamnolipid as biosurfactant, was designed to simulate the BEB process. The results demonstrated that the developed mathematical model is effective in examining the coupled effects of biodegradation and biosurfactant enhancement and can be used for supporting management of petroleum- contaminated sites.
机译:原位生物修复是清除石油污染场所的有效技术。为了提高常规生物修复方法的效率,生物表面活性剂处理受到了广泛关注。在这项研究中,开发了一个集成的数学建模系统来模拟生物表面活性剂增强的生物修复(BEB)过程。该模型包括多相,多组分流动和运输,生物降解和生物表面活性剂强化修复的模块。设计了以鼠李糖脂作为生物表面活性剂的中试规模物理建模系统,以模拟BEB过程。结果表明,开发的数学模型可有效地检查生物降解和生物表面活性剂增强的耦合作用,并可用于支持石油污染场所的管理。

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