生物修复
生物转化
生物累积
戒毒(替代医学)
重金属
环境化学
植物提取工艺
环境科学
生物吸附
生化工程
环境修复
生物反应器
化学
微生物
食物链
废物管理
解毒
污染物
污染
生物降解
金属毒性
废物处理
微生物降解
废水
生物浸出
污水处理
Mercury(编程语言)
作者
Varsha Bisht,Shruti Singh,Veeranna Channashettar,Nanthakumar Kuppanan,Banwari Lal
标识
DOI:10.1016/j.clwat.2026.100216
摘要
The rapid expansion of industrial activities and their consequent discharge into the environment is causing severe threats to ecosystems and public health. Toxic heavy metals such as cadmium, arsenic, copper, chromium, lead, cobalt, and others are of particular concern. It has become a long-term challenge to treat such wastes polluted with these persisting contaminants. They bioaccumulate in food chains and therefore possess harmful effects. Microorganisms serve as effective biological tools for heavy metal removal and detoxification from water and wastewater. The role of microbes in biotransformation of heavy metals into lesser toxic forms has been explored in this review. Bacterial-mediated mechanisms such as biosorption, bioleaching, bioaccumulation, bioprecipitation, and biotransformation involved in the detoxification of heavy metals have been discussed. Biotechnological implication of metal-contaminated waste has been highlighted with reference to use of bioreactor technology, nanobiotechnology, genomics, heavy metal accumulating plants, and mechanism of metal removal and tolerance in microbes. Understanding these processes further contributes to the development of approaches which are effective yet sustainable in remediating wastewaters contaminated with heavy metals. • Bacterial mechanisms for detoxification of heavy metals in wastewater matrices. • Summarizes recent advances in microbial remediation strategies. • Integrates data on bacterial strains, removal efficiencies and pathways. • Identifies research gaps and future directions for sustainable remediation.
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