4.7 Review

Biosurfactant is a powerful tool for the bioremediation of heavy metals from contaminated soils

Journal

JOURNAL OF HAZARDOUS MATERIALS
Volume 418, Issue -, Pages -

Publisher

ELSEVIER
DOI: 10.1016/j.jhazmat.2021.126253

Keywords

Biosurfactants; Bioremediation; Heavy metals; Toxicity; Microorganisms; Interaction mechanism

Funding

  1. Key-Area Research and Development Program of Guangdong Province, China [2018B020206001, 2020B0202090001]
  2. National Natural Science Foundation of China, China [31401763]
  3. Natural Science Founda-tion of Guangdong Province, China [2021A1515010889]
  4. Guangdong Special Branch Plan for Young Talent with Scientific and Technological Innovation, China [2017TQ04N026]

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Heavy metal toxicity is a pressing ecological issue affecting ecosystems, with conventional approaches being unsuitable for remediation due to environmental concerns. Biosurfactant-based bioremediation offers a promising, sustainable solution with potential for effective removal of heavy metal pollutants.
Heavy metal toxicity has become a pressing ecological problem that affects the ecosystems through bioaccumulation, representing a serious public health hazard. Many conventional strategies have been developed and applied to decontaminate and restore metal-contaminated areas. However, these conventional approaches are not very suitable and environmentally safe for heavy metal remediation because of their high operational costs, high energy requirements, post-waste disposal problems, and secondary pollutant generation. Thus, biosurfactant-based bioremediation of heavy metals is a sustainable and promising approach because of its biodegradation capability, economic effectiveness, and ecofriendly nature. Pseudomonas sp., Bacillus sp., Citrobacter freundii, and Candida tropicalis have been isolated as potential sources of biosurfactants and produce compounds such as surfactin, rhamnolipids, and sophorolipids. Owing to the severity of heavy metal pollution in certain parts of the environment, biosurfactants have garnered great interest and attention as an emerging multifunctional technology of the new century for successful removal of heavy metal pollutants. The present study describes the role of biosurfactants in the bioremediation of heavy metals from contaminated environments. Moreover, the interaction mechanism underlying biosurfactant-metal complexation and metal remediation are discussed. Based on the review of the literature, further research is warranted to elucidate the mechanistic roles and explore the structural characterization and gene regulation of biosurfactants to improve their productivity and expand their applicability in bioremediation.

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