Biotransformation and removal of heavy metals: a review of phytoremediation and microbial remediation assessment on contaminated soil

Биотрансформация и удаление тяжёлых металлов: обзор фиторемедиации и микробной ремедиации загрязнённых почв
Chijioke Emenike, B. Jayanthi, P. Agamuthu, S. H. Fauziah
2018-01-12

contaminated soilheavy metal biotransformationheavy metal remediationmicrobial bioremediationphytoremediation
Environmental deterioration is caused by a variety of pollutants; however, heavy metals are often a major issue. Development and globalization has now also resulted in such pollution occurring in developing societies, including Africa and Asia. This review explores the geographical outlook of soil pollution with heavy metals. Various approaches used to remedy metal-polluted soils include physical, chemical, and biological systems, but many of these methods are not economically viable, and they do not ensure restoration without residual effects. This review evaluates the diverse use of plants and microbes in biotransformation and removal of heavy metals from contaminated soil. Mechanisms on how natural processes utilizing plants (phytoremediation) and microorganisms (bioremediation) remove or reduce heavy metals from soil at various levels are presented. This review concludes that remediation technologies are necessary for the recovery of metal-contaminated environments and the prevention of continuous environmentally toxic impacts on living organisms.
1
Conventional physical and chemical remediation approaches may be economically infeasible and can leave residual effects, limiting complete soil restoration.
2
Heavy-metal soil pollution is a major environmental problem increasingly affecting developing regions, including Africa and Asia.
3
Phytoremediation and microbial bioremediation use natural plant- and microorganism-mediated processes to transform, immobilize, or remove heavy metals from contaminated soils.
4
Remediation technologies are necessary to recover metal-contaminated environments and prevent ongoing toxic effects on living organisms.
5
The review evaluates mechanisms by which plants and microorganisms reduce heavy-metal contamination at different levels.

heavy-metal-contaminated soil

plant- and microorganism-mediated biotransformation and removal of heavy metals from soil

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2018-01-12
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Chijioke Emenike
B. Jayanthi
P. Agamuthu
S. H. Fauziah
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