4.7 Article

Biochar-microorganism interactions for organic pollutant remediation: Challenges and perspectives*

期刊

ENVIRONMENTAL POLLUTION
卷 308, 期 -, 页码 -

出版社

ELSEVIER SCI LTD
DOI: 10.1016/j.envpol.2022.119609

关键词

Biochar; Biofilm; Organicpollutants; Microbialdegradation; Microbialhabitat; Redoxtransformation

资金

  1. Lancaster University-Global Challenge Research Fund Scheme [GCRF/2021-02UTB1000XS22]
  2. Lancaster Environment Centre Project

向作者/读者索取更多资源

Biochar technology has great potential in recycling of biomass, remediation of contaminated soil, and reducing the risk of organic contaminants to human and environmental health. It can support the growth and activity of contaminant-degrading microorganisms and release enzymes for contaminant degradation.
Numerous harmful chemicals are introduced every year in the environment through anthropogenic and geological activities raising global concerns of their ecotoxicological effects and decontamination strategies. Biochar technology has been recognized as an important pillar for recycling of biomass, contributing to the carbon capture and bioenergy industries, and remediation of contaminated soil, sediments and water. This paper aims to critically review the application potential of biochar with a special focus on the synergistic and antag-onistic effects on contaminant-degrading microorganisms in single and mixed-contaminated systems. Owing to the high specific surface area, porous structure, and compatible surface chemistry, biochar can support the proliferation and activity of contaminant-degrading microorganisms. A combination of biochar and microor-ganisms to remove a variety of contaminants has gained popularity in recent years alongside traditional chemical and physical remediation technologies. The microbial compatibility of biochar can be improved by optimizing the surface parameters so that toxic pollutant release is minimized, biofilm formation is encouraged, and mi-crobial populations are enhanced. Biocompatible biochar thus shows potential in the bioremediation of organic contaminants by harboring microbial populations, releasing contaminant-degrading enzymes, and protecting beneficial microorganisms from immediate toxicity of surrounding contaminants. This review recommends that biochar-microorganism co-deployment holds a great potential for the removal of contaminants thereby reducing the risk of organic contaminants to human and environmental health.

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