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铁铜改性稻壳炭对双氯芬酸钠吸附性能

裴曼一 李梅 裴建川 杨金艳 单骁 郑砚石 赖阳阳 宋博涵 梁佳雨

环境工程学报2024,Vol.18Issue(3):737-746,10.
环境工程学报2024,Vol.18Issue(3):737-746,10.DOI:10.12030/j.cjee.202311085

铁铜改性稻壳炭对双氯芬酸钠吸附性能

Performance of Fe/Cu modified rice husk biochar on diclofenac sodium adsorption

裴曼一 1李梅 1裴建川 1杨金艳 1单骁 2郑砚石 1赖阳阳 1宋博涵 1梁佳雨1

作者信息

  • 1. 浙江农林大学环境与资源学院,碳中和学院,杭州 311300
  • 2. 临安区市政公用和市容环境卫生保障中心,杭州 311300
  • 折叠

摘要

Abstract

Rice husk was used to prepare iron-copper modified biochar(FCBC300),and its physicochemical properties were characterized by using Fourier transform infrared spectroscopy,X-ray diffraction spectroscopy,elemental composition analysis,and scanning electron microscopy.The effect and mechanism of diclofenac sodium(DCF)removal by FCBC300 were investigated through adsorption batch tests at different pH,interfering ions and organic humic acid(HA).The results showed that Fe3O4,γ-Fe2O3,and CuO loading onto the surface of FCBC300 could increase its aromaticity and decrease its hydrophilicity,as well as largely increase the adsorption performance on DCF.The adsorption capacity of DCF on FCBC was about 20 times that of the unmodified rice husk charcoal at pHs of 5~9.Electrostatic interactions dominated the adsorption mechanism.The coexisting PO43-had hardly effect on DCF removal,while coexisting SO42-,Cl-,and HCO3-slightly inhibited DCF removal with less than 5%reduction rate.HA had an obviously inhibitory effect on DCF adsorption on FCBC300.The fitting results with adsorption kinetic and isothermal modes revealed that the DCF adsorption process on FCBC300 was more consistent with the quasi-first-order kinetic model and the Langmuir model.The maximum adsorption capacity was estimated to be 476.190 5 mg·g-1.FCBC300 is a promising material for wastewater treatment because of its strong adsorption capabilities,anti-ion interference,and pH buffering capabilities.

关键词

稻壳生物炭/改性/双氯芬酸钠/吸附

Key words

rice husk biochar/modification/diclofenac sodium/adsorption

分类

资源环境

引用本文复制引用

裴曼一,李梅,裴建川,杨金艳,单骁,郑砚石,赖阳阳,宋博涵,梁佳雨..铁铜改性稻壳炭对双氯芬酸钠吸附性能[J].环境工程学报,2024,18(3):737-746,10.

基金项目

浙江省"尖兵""领雁"研发攻关计划项目(2024C03249) (2024C03249)

浙江农林大学科研发展基金项目(2012FR088) (2012FR088)

环境工程学报

OA北大核心CSTPCD

1673-9108

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