Sustainable remediation of hazardous environmental pollutants using biochar-based nanohybrid materials

生物炭 热解 流出物 环境修复 纳米材料 危险废物 废物管理 污染物 材料科学 环境化学 环境科学 化学 纳米技术 环境工程 污染 有机化学 工程类 生物 生态学
作者
Yuping Zhao,Sarmad Ahmad Qamar,Mahpara Qamar,Muhammad Bilal,Hafiz M.N. Iqbal
出处
期刊:Journal of Environmental Management [Elsevier BV]
卷期号:300: 113762-113762 被引量:91
标识
DOI:10.1016/j.jenvman.2021.113762
摘要

Biochar is a well-known carbon material with diversified functionalities and excellent physicochemical characteristics with high wastewater treatment potential. This review aims to summarize recent advancements in the development of biochar and biochar-based nanohybrid materials as a potential tool for the removal of harmful organic compounds such as synthetic dyes/effluents. The formation of biochar using pyrolysis of renewable feedstocks and their applications in various industries are explained hereafter. The characteristics and construction of biochar-based hybrid materials are explained in detail. Diversity of feedstocks, including municipal wastes, industrial byproducts, agricultural, and forestry residues, endows different biochar types with a wide structural variety. The production of cost-effective biochar drives the interest in manipulating biochars and induces desire functionality using nanoscale reinforcements. Various types of biochars, such as magnetic biochar, layered nanomaterial coated biochar, nanometallic oxide composites, chemically and physically functionalized biochar, have been produced. With the aid of nanomaterial, hybrid biochar exhibits a high potential to remove toxic contaminants. Depending upon biochar type, dyes/effluents can be removed via different mechanisms, including the Fenton process, photocatalytic degradation, π-π interaction, electrostatic interaction, and physical adsorption. In conclusion, desired physicochemical features, and tunable surface properties of biochar present high potential material in removing organic dyes and other effluents. The blended biochar with different materials/nanomaterials endows broader development and multi-functional opportunities for treating dyes/effluents.
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