Recent advancement of nano-biochar for the remediation of heavy metals and emerging contaminants: Mechanism, adsorption kinetic model, plant growth and development

生物炭 环境修复 环境科学 土壤修复 吸附 重金属 非生物成分 环境化学 污染 废物管理 化学 生态学 生物 工程类 热解 有机化学
作者
Himanshu Pathak,Chandra Shekhar Seth,Prabhat K. Chauhan,Gopal Dubey,Garima Singh,Devendra Jain,Sudhir K. Upadhyay,Padmanabh Dwivedi,Kuan Shiong Khoo
出处
期刊:Environmental Research [Elsevier BV]
卷期号:255: 119136-119136 被引量:91
标识
DOI:10.1016/j.envres.2024.119136
摘要

Even though researches have shown that biochar can improve soil-health and plant-growth even in harsh environments and get rid of harmful heavy metals and new contaminants, it is still not sustainable, affordable, or effective enough. Therefore, scientists are required to develop nanomaterials in order to preserve numerous aquatic and terrestrial species. The carbonaceous chemical known as nano-biochar (N-BC) can be used to get rid of metal contamination and emerging contaminants. However, techniques to reduce hetero-aggregation and agglomeration of nano-biochar are needed that lead to the emergence of emerging nano-biochar (EN-BC) in order to maximise its capacity for adsorption of nano-biochar. To address concerns in regards to the expanding human population and sustain a healthy community, it is imperative to address the problems associated with toxic heavy metals, emerging contaminants, and other abiotic stressors that are threatening agricultural development. Nano-biochar can provide an effective solution for removal of emerging contaminants, toxic heavy metals, and non-degradable substance. This review provides the detailed functional mechanistic and kinetics of nano-biochar, its effectiveness in promoting plant growth, and soil health under abiotic stress. Nonetheless, this review paper has comprehensively illustrated various adsorption study models that will be employed in future research.
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