Toxicity and Bioremediation of Heavy Metals Contaminated Ecosystem from Tannery Wastewater: A Review

Токсичность и биоремедиация экосистем, загрязнённых тяжёлыми металлами из сточных вод кожевенных производств: обзор
Bernard E. Igiri, Stanley I.R. Okoduwa, Grace O. Idoko, Ebere P. Akabuogu, Abraham O. Adeyi, Ibe Kevin Ejiogu
2018-09-27

BiofilmDetoxification mechanismsHeavy metal bioremediationMicrobial biosorptionTannery wastewater
The discharge of untreated tannery wastewater containing biotoxic substances of heavy metals in the ecosystem is one of the most important environmental and health challenges in our society. Hence, there is a growing need for the development of novel, efficient, eco-friendly, and cost-effective approach for the remediation of inorganic metals (Cr, Hg, Cd, and Pb) released into the environment and to safeguard the ecosystem. In this regard, recent advances in microbes-base heavy metal have propelled bioremediation as a prospective alternative to conventional techniques. Heavy metals are nonbiodegradable and could be toxic to microbes. Several microorganisms have evolved to develop detoxification mechanisms to counter the toxic effects of these inorganic metals. This present review offers a critical evaluation of bioremediation capacity of microorganisms, especially in the context of environmental protection. Furthermore, this article discussed the biosorption capacity with respect to the use of bacteria, fungi, biofilm, algae, genetically engineered microbes, and immobilized microbial cell for the removal of heavy metals. The use of biofilm has showed synergetic effects with many fold increase in the removal of heavy metals as sustainable environmental technology in the near future.
1
Biofilms demonstrate synergistic effects and many-fold increases in heavy-metal removal, indicating strong potential as a sustainable remediation technology.
2
Microbe-based bioremediation is presented as a prospective efficient, eco-friendly, and cost-effective alternative to conventional heavy-metal remediation methods.
3
Microorganisms possess evolved detoxification mechanisms that enable them to tolerate and remove toxic heavy metals through bioremediation.
4
The review evaluates biosorption by bacteria, fungi, biofilms, algae, genetically engineered microbes, and immobilized microbial cells for heavy-metal removal.
5
Untreated tannery wastewater releases toxic, nonbiodegradable heavy metals, particularly chromium, mercury, cadmium, and lead, threatening ecosystems and human health.

Tannery wastewater-contaminated ecosystems containing heavy metals (Cr, Hg, Cd, and Pb)

Heavy-metal toxicity and microorganism-based bioremediation, including microbial detoxification and biosorption/removal capacity

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2018-09-27
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Bernard E. Igiri
Stanley I.R. Okoduwa
Grace O. Idoko
Ebere P. Akabuogu
Abraham O. Adeyi
Ibe Kevin Ejiogu
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