State-of-the-art of research progress on adsorptive removal of fluoride-contaminated water using biochar-based materials: Practical feasibility through reusability and column transport studies

生物炭 氟化物 环境修复 吸附 可重用性 废水 环境化学 地下水 水处理 污染 化学 木炭 废物管理 环境科学 制浆造纸工业 热解 环境工程 无机化学 有机化学 地质学 计算机科学 岩土工程 程序设计语言 生态学 工程类 软件 生物
作者
Ravi Kumar,Prabhakar Sharma,Wen Yang,Mika Sillanpää,Jianying Shang,Prosun Bhattacharya,Meththika Vithanage,Jyoti Prakash Maity
出处
期刊:Environmental Research [Elsevier]
卷期号:214: 114043-114043 被引量:7
标识
DOI:10.1016/j.envres.2022.114043
摘要

Fluoride (F-) is one of the essential elements found in soil and water released from geogenic sources and several anthropogenic activities. Fluoride causes fluorosis, dental and skeletal growth problems, teeth mottling, and neurological damage due to prolonged consumption, affecting millions worldwide. Adsorption is an extensively implemented technique in water and wastewater treatment for fluoride, with significant potential due to efficiency, cost-effectiveness, ease of operation, and reusability. This review highlights the current state of knowledge for fluoride adsorption using biochar-based materials and the limitations of biochar for fluoride-contaminated groundwater and industrial wastewater treatment. Biochar materials have shown significant adsorption capacities for fluoride under the influence of low pH, biochar dose, initial concentration, temperature, and co-existing ions. Modified biochar possesses various functional groups (-OH, -CC, -C-O, -CONH, -C-OH, X-OH), in which enhanced hydroxyl (-OH) groups onto the surface plays a significant role in fluoride adsorption via electrostatic attraction and ion exchange. Regeneration and reusability of biochar sorbents need to be performed to a greater extent to improve removal efficiency and reusability in field conditions. Furthermore, the present investigation identifies the limitations of biochar materials in treating fluoride-contaminated drinking groundwater and industrial effluents. The fluoride removal using biochar-based materials at an industrial scale for understanding the practical feasibility is yet to be documented. This review work recommend the feasibility of biochar-based materials in column studies for fluoride remediation in the future.
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