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An Overview of Biodegradation of LNAPLs in Coastal (Semi)-arid Environment

机译:沿海(半)干旱环境中LNAPLs的生物降解概述

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摘要

Contamination of soil and water due to the release of light non-aqueous phase liquids (LNAPLs) is a ubiquitous problem. The problem is more severe in arid and semi-arid coastal regions where most of the petroleum production and related refinery industries are located. Biological treatment of these organic contaminated resources is receiving increasing interests and where applicable, can serve as a cost-effective remediation alternative. The success of bioremediation greatly depends on the prevailing environmental variables, and their remediation favoring customization requires a sound understanding of their integrated behavior on fate and transport of LNAPLs under site-specific conditions. The arid and semi-arid coastal sites are characterized by specific environmental extremes; primarily, varying low and high temperatures, high salinity, water table dynamics, and fluctuating soil moisture content. An understanding of the behavior of these environmental variables on biological interactions with LNAPLs would be helpful in customizing the bioremediation for restoring problematic sites in these regions. Therefore, this paper reviews the microbial degradation of LNAPLs in soil–water, considering the influences of prevailing environmental parameters of arid and semi-arid coastal regions. First, the mechanism of biodegradation of LNAPLs is discussed briefly, followed by a summary of popular kinetic models used by researchers for describing the degradation rate of these hydrocarbons. Next, the impact of soil moisture content, water table dynamics, and soil–water temperature on the fate and transport of LNAPLs are discussed, including an overview of the studies conducted so far. Finally, based on the reviewed information, a general conclusion is presented with recommendations for future research subjects on optimizing the bioremediation technique in the field under the aforesaid environmental conditions. The present review will be useful to better understand the feasibility of bioremediation technology, in general, and its applicability for remediating LNAPLs polluted lands under aforesaid environments, in particular.
机译:轻质非水相液体(LNAPLs)的释放会污染土壤和水,这是一个普遍存在的问题。在大多数石油生产和相关炼油厂所在的干旱和半干旱沿海地区,问题更加严重。对这些有机污染资源进行生物处理的兴趣日益增加,在适用的情况下,可以作为一种具有成本效益的补救措施。生物修复的成功在很大程度上取决于主要的环境变量,其修复有利于定制化需要对它们在特定场所条件下对LNAPL的命运和运输的综合行为有深刻的了解。干旱和半干旱的沿海地区具有特定的极端环境特征。首先,要改变低温和高温,高盐度,地下水位动态以及土壤水分含量的波动。了解这些环境变量在与LNAPL的生物相互作用中的行为,将有助于定制生物修复方法来恢复这些区域中的问题站点。因此,本文考虑了干旱和半干旱沿海地区主要环境参数的影响,综述了LNAPLs在土壤-水中的微生物降解。首先,简要讨论了LNAPLs的生物降解机理,然后总结了研究人员用来描述这些碳氢化合物降解速率的流行动力学模型。接下来,讨论了土壤含水量,地下水位动态和土壤-水温对低NAPs命运和运输的影响,包括迄今为止进行的研究的概述。最后,根据所审查的信息,提出了一个总体结论,并为今后在上述环境条件下优化该领域的生物修复技术提供了建议。总体而言,本综述将有助于更好地理解生物修复技术的可行性,尤其是其在上述环境下对LNAPLs污染土地进行修复的适用性。

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