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Adsorption performance of modified agricultural waste materials for removal of emerging micro-contaminant bisphenol A: A comprehensive review

机译:改良农业废料去除新兴微污染物双酚的吸附性能A:全面审查

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摘要

This review is an attempt to assess the adsorption performance of different green adsorbents derived from agricultural waste materials (AWMs) that were used for the elimination of bisphenol A (BPA) from aqueous matrices. Different processes including grafting, polymerization, activation and chemical treatment have been applied to functionalize and modify agricultural waste materials for the purposes of increasing their adsorptive performances toward BPA. The highest reported adsorption capacity of adsorbent from agricultural waste for the uptake of BPA is the highly microporous carbon adsorbent derived from Argan nut shell (1408 mg g~(-1)). Hydrogen bonding, hydrophobic and π-π interactions were reported in most studies as the main mechanisms governing the adsorption of BPA onto agricultural waste adsorbents. Equilibrium isotherm and kinetic studies for the uptake of BPA onto agricultural waste adsorbents were best described by Langmuir/Freundlich model and pseudo-second order model, respectively. Despite the effective elimination of BPA by various agricultural waste adsorbents, an appropriate selection of elution solvent is important for effective desorption of BPA from spent adsorbent. To date, ethanol, diethyl ether-methanol, methanol-acetic acid, mineral acids and sodium hydroxide are the most eluents applied for desorption of BPA molecules loaded onto AW-adsorbents. Looking toward the future, studies on the agricultural waste adsorbents based on polymers, activated carbons, nanoparti-cles and highly microporous carbons should be mostly considered by the researchers toward removing BPA. These future studies should be performed both in laboratory, pilot and industrial scales, and also should report the sustainable techniques for disposal of the spent AW-adsorbents after lose their adsorption performance on BPA.
机译:这个评论是,以评估从被用于双酚A(BPA)的水溶液从基体中消除,农业废料(AWMS)衍生的不同绿色吸附剂的吸附性能的一种尝试。不同的进程,包括接枝聚合,激活和化学处理已应用到官能化和修改农业废弃物为原料BPA对增加其吸附性能的目的。最高报吸附吸附剂的农业废料为BPA的吸收能力是从坚果坚果壳导出的高度微孔碳吸附剂(1408毫克克〜(-1))。氢键,疏水和π-π相互作用的报道在大多数研究,作为管理BPA的吸附到农业废弃物吸附剂的主要机制。吸附等温线和双酚A的摄取到农业废弃物吸附剂动力学研究的最佳途径是,朗缪尔分别/ Freundlich模型和伪二阶模型描述。尽管有效消除BPA的各种农业废弃物吸附剂,洗脱剂的适当选择是从废吸附剂BPA的有效解吸重要。迄今为止,乙醇,二乙醚 - 甲醇,甲醇 - 乙酸,无机酸和氢氧化钠是应用于装载到AW-吸附剂BPA分子的解吸最洗脱液。展望未来,基于聚合物,活性炭,nanoparti - 克莱斯和高微孔碳的农业废弃物吸附剂研究应主要通过向去除BPA研究人员认为。这些今后的研究应在实验室,中试和工业规模进行两者,并且还后BPA失去其吸附性能应报告处置用过的AW-吸附剂的可持续技术。

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  • 来源
    《Science of the total environment》 |2021年第1期|146629.1-146629.16|共16页
  • 作者单位

    College of Chemistry Green Catalysis Center Zhengzhou University No. 100 of Kexue Road Zhengzhou 450001 People's Republic of China;

    College of Chemistry Green Catalysis Center Zhengzhou University No. 100 of Kexue Road Zhengzhou 450001 People's Republic of China;

    College of Chemistry Green Catalysis Center Zhengzhou University No. 100 of Kexue Road Zhengzhou 450001 People's Republic of China;

    College of Chemistry Green Catalysis Center Zhengzhou University No. 100 of Kexue Road Zhengzhou 450001 People's Republic of China;

    College of Chemistry Green Catalysis Center Zhengzhou University No. 100 of Kexue Road Zhengzhou 450001 People's Republic of China;

    College of Chemistry Green Catalysis Center Zhengzhou University No. 100 of Kexue Road Zhengzhou 450001 People's Republic of China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Adsorption; Agricultural waste materials; Adsorbent; Wastewaters; Bisphenol A;

    机译:吸附;农业废料;吸附剂;废水;双酚A.;

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