Methoxy-grafted NiFe-LDH with enhanced adsorption removal of methyl orange from aqueous solution
编号:105 访问权限:仅限参会人 更新:2022-05-12 14:31:34 浏览:641次 特邀报告

报告开始:2022年05月26日 15:35(Asia/Shanghai)

报告时间:30min

所在会场:[S7] Mineral Materials and Advanced Energy Materials [S7-1] Mineral Materials and Advanced Energy Materials-1

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摘要
The printing and dyeing industry discharges a large amount of dye wastewater, which causes serious pollution to the environment. Therefore, the removal of dyes in water is very important to the sustainable development of human society. Methyl orange (MO) is a common dye, whose removal has important representative significance. Layer double hydroxide (LDH) is an anionic layered compound with a brucite structure. Its physical and chemical properties can be precisely controlled by adjusting the ratio and type of anion and cation. LDH is often used as an adsorbent, electrocatalyst, etc. In this work, MO adsorption was studied using methoxy-modified NiFe- Layer double hydroxide (NiFe-LDH). A facile co-precipitation method was used to prepare NiFe-LDH, and a solvothermal treatment was used to modify NiFe-LDH with methoxy. The obtained methoxy-modified LDH was characterized by XRD, TEM, TG-DTG, DIS, etc. The effects of different pH values, dosages and MO concentrations on the adsorption performance of the samples before and after methoxy modification were investigated. In addition, the adsorption kinetics of the samples were also studied. Finally, it was found that the LDH modified with methoxy presented significantly improved MO adsorption performance, with a qm of 442.47 mg/m g, much higher than the single LDH adsorbent performance that has been reported so far. The reason may be due to the enhanced anion exchange capacity with MO resulting from the enlarged interlayer spacing, and the enhanced van der Waals attraction to MO molecules by methyl oxygen replacement.
关键词
layered double hydroxide,methoxy,modification,adsorption,methyl orange
报告人
Jinan NIU
China University of Mining and Technology

稿件作者
季言 谢 中国矿业大学材料与物理学院
继南 牛 中国矿业大学材料与物理学院
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重要日期
  • 会议日期

    05月26日

    2022

    05月27日

    2022

  • 05月03日 2022

    初稿截稿日期

  • 05月26日 2022

    报告提交截止日期

  • 05月28日 2022

    注册截止日期

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