Remediation of Polychlorinated Biphenyls (PCBs) through Bio and Phytoremediation in the Environment: A Review Study

Sunila Abdul Wassey, S. Shafeeq, J. A. Butt, Ahmed Jamil
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Abstract

One of the persistent organic pollutants (POPs) utilized globally between the 1930s and 1980s was polychlorinated biphenyls (PCBs). Even though their usage has been severely constrained, a lot of PCBs are still present in the environment, including soils and air. This local, national, international and governmental organizations regarding polychlorinated biphenyls and how can resolve and treat the problem sustainably. This can be achieved if seriously working on degrading persistent organic pollutants, especially polychlorinated biphenyls biologically via thorough research and sound implementation. The methods opted for remediation by the use of choosing suitable types of microorganisms and plants. These methods are practically active for the identification of the source, concentration level and effects on the ecosystem. It would help in developing appropriate strategy and data generation in formulating the inventories for the management of polychlorinated biphenyls in the future. It is also noted through numerous research that polychlorinated biphenyls are also found in human blood commonly analyzed by indicator congeners such as PCB 138,153, 180, and in air and soil markers of PCBs pollution include PCB congeners 28, 52,101,138,153 and 180 as well. The methods and mechanisms described for degrading the persistent pollutant in this research review the solutions for mitigating PCB pollution in an environment. The best option is to strictly ban it in Pakistan or weightage its usage with its multiple benefits and disadvantages. Promote biological treatment if the payback is healthy and environmentally sustainable.
环境中多氯联苯(PCBs)的生物和植物修复研究进展
20世纪30年代至80年代期间全球使用的持久性有机污染物之一是多氯联苯。尽管它们的使用受到严格限制,但许多多氯联苯仍然存在于环境中,包括土壤和空气中。这是地方、国家、国际和政府组织关于多氯联苯的问题,以及如何可持续地解决和处理这个问题。如果通过彻底的研究和合理的实施,认真致力于降解持久性有机污染物,特别是多氯联苯的生物降解,就可以实现这一目标。通过选择合适类型的微生物和植物来选择修复方法。这些方法对确定污染物的来源、浓度水平和对生态系统的影响具有实际意义。它将有助于在拟订今后多氯联苯管理清单时制订适当的战略和产生数据。通过大量的研究也注意到,在人体血液中也发现了多氯联苯,通常用指示剂同系物分析,如PCB 138,153, 180,在空气和土壤中,多氯联苯污染的标记物还包括PCB同系物28,52,101,138,153和180。本研究描述了降解持久性污染物的方法和机制,综述了减轻环境中多氯联苯污染的解决方案。最好的选择是在巴基斯坦严格禁止它,或者权衡它的多重利弊。如果回报是健康和环境可持续的,则促进生物处理。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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