生物修复
环境修复
环境科学
危险废物
污染
废物管理
污染物
环境化学
生物刺激
植物提取工艺
植物修复
重金属
环境工程
超量积累植物
化学
生态学
生物
工程类
作者
Aniruddha Sarker,Md Abdullah Al Masud,Deen Mohammad Deepo,Kallol Das,Rakhi Nandi,Most. Waheda Rahman Ansary,Abu Reza Md. Towfiqul Islam,Tofazzal Islam
出处
期刊:Chemosphere
[Elsevier]
日期:2023-05-05
卷期号:332: 138861-138861
被引量:82
标识
DOI:10.1016/j.chemosphere.2023.138861
摘要
Contamination of the natural ecosystem by heavy metals, organic pollutants, and hazardous waste severely impacts on health and survival of humans, animals, plants, and microorganisms. Diverse chemical and physical treatments are employed in many countries, however, the acceptance of these treatments are usually poor because of taking longer time, high cost, and ineffectiveness in contaminated areas with a very high level of metal contents. Bioremediation is an eco-friendly and efficient method of reclaiming contaminated soils and waters with heavy metals through biological mechanisms using potential microorganisms and plant species. Considering the high efficacy, low cost, and abundant availability of biological materials, particularly bacteria, algae, yeasts, and fungi, either in natural or genetically engineered (GE) form, bioremediation is receiving high attention for heavy metal removal. This report comprehensively reviews and critically discusses the biological and green remediation tactics, contemporary technological advances, and their principal applications either in-situ or ex-situ for the remediation of heavy metal contamination in soil and water. A modified PRISMA review protocol is adapted to critically assess the existing research gaps in heavy metals remediation using green and biological drivers. This study pioneers a schematic illustration of the underlying mechanisms of heavy metal bioremediation. Precisely, it pinpoints the research bottleneck during its real-world application as a low-cost and sustainable technology.
科研通智能强力驱动
Strongly Powered by AbleSci AI