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Leading edges in bioremediation technologies for removal of petroleum hydrocarbons

机译:用于去除石油碳氢化合物的生物修复技术领域

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摘要

There is a worldwide concern regarding soil pollution caused by contamination of petroleum hydrocarbon, released during oil processing or production. Once a spill occurs, it disturbs the marine and freshwater ecosystem and greatly threatens human health. It usually requires complex technologies to remove it from soil. Petroleum hydrocarbons contain a range of chemicals which are extremely toxic and carcinogenic in nature. Although physical or chemical methods are widely employed for remediation, numerous studies revealed that bioremediation is a sustainable approach. Bioremediation is often preferred as clean and carbon-neutral solution. This review aims to provide series of sustainable solution for petroleum hydrocarbon degradation without exploiting the environment as well as opportunity to reuse treated media. Integrated and enhanced bioremediation technologies are more effective than natural degradation of petroleum hydrocarbons in terms of shorter time period and percent removal efficiency. It comprehensively illustrates bioremediation assisted with bacteria, fungi, and algae either by integrated technologies or by enhancing the process. Most recent application methods of petroleum hydrocarbon bioremediation (in situ and ex situ) are also reported. There is dire need to explore different cost-effective biotechnological resources for degradation of petroleum hydrocarbon by the screening of novel microbial strains or by the creation of genetically engineered bacteria to survive in harsh environment.
机译:在油加工或生产过程中释放的石油烃污染引起的土壤污染存在全球令人担忧。一旦出现泄漏,它会扰乱海洋和淡水生态系统,大大威胁人类健康。它通常需要复杂的技术从土壤中取出它。石油碳氢化合物含有一系列化学物质,本质上是极其有毒和致癌的化学物质。尽管物理或化学方法广泛用于修复,但许多研究表明生物修复是一种可持续的方法。生物修复通常优选作为清洁和碳中性溶液。该审查旨在为石油碳氢化合物劣化提供一系列可持续解决方案,而无需利用环境以及重用处理媒体的机会。综合和增强的生物修复技术在较短的时间段内和百分比的去除效率方面比石油烃的自然降解更有效。它全面地用综合技术辅助细菌,真菌和藻类的生物修复或通过增强该过程。还报道了最近最近的石油烃生物化(原位和前原位)的应用方法。急需探索通过筛选新型微生物菌株或通过在恶劣环境中产生遗传工程细菌来筛选石油烃的不同经济高效的生物技术资源。

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