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Transport of anionic azo dyes from aqueous solution to gemini surfactant-modified wheat bran: Synchrotron infrared, molecular interaction and adsorption studies

机译:阴离子偶氮染料从水溶液到双子表面活性剂改性麦麸的传输:同步辐射红外,分子相互作用和吸附研究

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摘要

From the view of economic efficiency and technology sustainability, biomass adsorbent has a high potential for pollution control. In the present study, the performance of gemini 12-2-12 surfactant-modified wheat bran (MWB) for the removal of anionic azo dyes from aqueous solution was investigated. A new insight was gained into the modification mechanism through synchrotron-assisted infrared analysis and molecular interaction simulation. The equilibrium and kinetic studies for the adsorption of Acid Red 18 (AR-18), Acid Orange 7 (A0-7) and Acid Black 1 (AB-1) on MWB were conducted. The Langmuir model well fit the adsorption isotherm data. The adsorption kinetics could be described by the pseudo-second-order and intra-particle diffusion models. The results of thermodynamic studies indicated the adsorption of AR-18 and AB-1 onto MWB was endothermic and spontaneous, while the adsorption of AO-7 was exothermic. The optimum pH for the adsorption of anionic azo dyes on MWB was 3. The adsorbed amount of anionic azo dyes onto MWB decreased when NaCl concentration increased from 0 to 0.4 mol L~(-1). The potential of modified wheat bran as a suitable adsorbent for the removal of dyes from wastewater was presented in this study. The results can help understand the migration patterns of organic pollutants at wheat bran-water interface.
机译:从经济效率和技术可持续性的角度来看,生物质吸附剂具有很高的污染控制潜力。在本研究中,研究了双子化合物12-2-12表面活性剂改性的麦麸(MWB)从水溶液中去除阴离子偶氮染料的性能。通过同步加速器辅助红外分析和分子相互作用模拟,获得了对修饰机理的新见解。进行了酸性红18(AR-18),酸性橙7(A0-7)和酸性黑1(AB-1)在MWB上的​​吸附平衡和动力学研究。 Langmuir模型很好地拟合了吸附等温线数据。吸附动力学可以用伪二级和颗粒内扩散模型来描述。热力学研究结果表明,AR-18和AB-1在MWB上的​​吸附是吸热和自发的,而AO-7的吸附是放热的。 MWB吸附阴离子偶氮染料的最佳pH为3。当NaCl浓度从0增加到0.4 mol L〜(-1)时,阴离子偶氮染料在MWB上的​​吸附量降低。这项研究提出了改性麦麸作为一种合适的吸附剂从废水中去除染料的潜力。研究结果有助于了解有机污染物在麦麸-水界面的迁移方式。

著录项

  • 来源
    《The Science of the Total Environment》 |2017年第1期|723-732|共10页
  • 作者单位

    MOE Key Laboratory of Resources and Environmental Systems Optimization, Institute for Energy, Environment and Sustainability Research, UR-NCEPU, North China Electric Power University, Beijing 102206, China , Institute for Energy, Environment and Sustainable Communities, University of Regina, Regina S4S 0A2, Canada;

    MOE Key Laboratory of Resources and Environmental Systems Optimization, Institute for Energy, Environment and Sustainability Research, UR-NCEPU, North China Electric Power University, Beijing 102206, China;

    Institute for Energy, Environment and Sustainable Communities, University of Regina, Regina S4S 0A2, Canada;

    Institute for Energy, Environment and Sustainable Communities, University of Regina, Regina S4S 0A2, Canada;

    Canadian Light Source, Saskatoon, S7N 2V3, Canada;

    Bioengineering and Drug Design Lab, Department of Biotechnology, Bhupat and Jyoti Mehta School of Biosciences, Indian Institute of Technology-Madras, Chennai 600 036, India;

    Institute for Energy, Environment and Sustainable Communities, University of Regina, Regina S4S 0A2, Canada;

    MOE Key Laboratory of Resources and Environmental Systems Optimization, Institute for Energy, Environment and Sustainability Research, UR-NCEPU, North China Electric Power University, Beijing 102206, China;

    Bioengineering and Drug Design Lab, Department of Biotechnology, Bhupat and Jyoti Mehta School of Biosciences, Indian Institute of Technology-Madras, Chennai 600 036, India;

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

    Adsorption; Wheat bran; Anionic azo dyes; Gemini surfactant modification; Synchrotron infrared analysis; Molecular interaction simulation;

    机译:吸附;麦麸;阴离子偶氮染料;双子表面活性剂改性;同步加速器红外分析;分子相互作用模拟;
  • 入库时间 2022-08-17 13:49:10

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