Amity Institute of Biotechnology, Amity University Uttar Pradesh, Lucknow Campus, Lucknow, India.
Harcourt Butler Technical University, Kanpur, India.
Environ Sci Pollut Res Int. 2022 Sep;29(41):61821-61837. doi: 10.1007/s11356-021-16047-y. Epub 2021 Aug 22.
Increasing petroleum consumption and a rise in incidental oil spillages have become global concerns owing to their aquatic and terrestrial toxicity. Various physicochemical and biological treatment strategies have been studied to tackle them and their impact on environment. One of such approaches in this regard is the use of microbial processes due to their being "green" and also apparent low cost and high effectiveness. This review presents the advancement in the physical and biological remediation methods and their progressive efficacy if employed in combination of hybrid modes. The use of biosurfactants and/or biochar along with microbes seems to be a more effective bioremediation approach as compared to their individual effects. The lacuna in research at community or molecular level has been overcome by the recent introduction of "-omics" technology in hydrocarbon degradation. Thus, the review further focuses on presenting the state-of-art information on the advancement of petroleum bioremediation strategies and identifies the research gaps for achieving total mitigation of petroleum oil.
由于石油消费的增加和偶然溢油的增加对水生和陆地生物具有毒性,已成为全球关注的问题。已经研究了各种物理化学和生物处理策略来解决这些问题及其对环境的影响。在这方面的一种方法是利用微生物过程,因为它们是“绿色”的,而且明显成本低、效率高。本文综述了物理和生物修复方法的进展,如果以混合模式组合使用,其效果会逐渐增强。与单独使用相比,生物表面活性剂和/或生物炭与微生物一起使用似乎是一种更有效的生物修复方法。最近在碳氢化合物降解中引入“组学”技术,克服了在群落或分子水平上研究的空白。因此,本综述进一步侧重于介绍石油生物修复策略的最新进展,并确定了实现石油油完全缓解的研究差距。