Adsorptive removal of antibiotic pollutants from wastewater using biomass/biochar-based adsorbents

生物炭 吸附 废水 生物量(生态学) 污水处理 污染物 化学 环境化学 制浆造纸工业 废物管理 环境科学 环境工程 有机化学 生物 生态学 工程类 热解
作者
Oluwaseyi Aderemi Ajala,Solomon Oluwaseun Akinnawo,Abayomi Bamisaye,Demilade T. Adedipe,Morenike O. Adesina,Omolabake Abiodun Okon-Akan,Tosin Adewumi Adebusuyi,Adedamola Titi Ojedokun,Kayode Adesina Adegoke,Olugbenga Solomon Bello
出处
期刊:RSC Advances [Royal Society of Chemistry]
卷期号:13 (7): 4678-4712 被引量:152
标识
DOI:10.1039/d2ra06436g
摘要

This study explores adsorptive removal measures to shed light on current water treatment innovations for kinetic/isotherm models and their applications to antibiotic pollutants using a broad range of biomass-based adsorbents. The structure, classifications, sources, distribution, and different techniques for the remediation of antibiotics are discussed. Unlike previous studies, a wide range of adsorbents are covered and adsorption of comprehensive classes of antibiotics onto biomass/biochar-based adsorbents are categorized as β-lactam, fluoroquinolone, sulfonamide, tetracycline, macrolides, chloramphenicol, antiseptic additives, glycosamides, reductase inhibitors, and multiple antibiotic systems. This allows for an assessment of their performance and an understanding of current research breakthroughs in applying various adsorbent materials for antibiotic removal. Distinct from other studies in the field, the theoretical basis of different isotherm and kinetics models and the corresponding experimental insights into their applications to antibiotics are discussed extensively, thereby identifying the associated strengths, limitations, and efficacy of kinetics and isotherms for describing the performances of the adsorbents. In addition, we explore the regeneration of adsorbents and the potential applications of the adsorbents in engineering. Lastly, scholars will be able to grasp the present resources employed and the future necessities for antibiotic wastewater remediation.
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