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Comparison of new biosorbents based on chemically modified Lagenaria vulgaris shell

机译:化学修饰寻常豆荚壳的新型生物吸附剂的比较

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摘要

Sorption characteristics of three Lagenaria vulgaris-based biosorbents: raw biomass (rLVB), acid-base-activated biomass (aLVB) and sulfuric acid-treated biomass (ccLVB), were compared as a function of contact time, initial methylene blue concentration, and initial pH, in order to evaluate the effect of chemical modifications. The adsorption studies of raw and chemically modified L. vulgaris biomass were compared in batch mode. The Fourier transform Infrared spectroscopy (FTIR) results of biosorbents' characterization showed presence of different functional groups which can be responsible for sorption of MB from aqueous solutions. Moreover, FTTR analysis reveals that acid-base activation of raw biomaterial resulted in hydrolysis of esters providing more reactive sites (-COO~-), while sulfuric acid-treatment method introduced new functional groups such as -SO_3~-. Surface functional groups containing oxygen, such as carboxylic, lactonic, and phenolic, are quantified using the Boehm's method. The kinetics of MB biosorption were found to follow a pseudo-second-order kinetics in all cases, while experimental equilibrium data were fitted to Freundlich, Langmuir, and Dubinin-Radushkevich isotherms by linear regression method. Langmuir model provides the best fitting. The MB biosorption capacity and uptake kinetics are greatly improved by chemical modification of the biomass. Effectiveness of examined biosorbents in MB removal from aqueous solutions can be put in the following order: rLVB<aLVB<ccLVB.
机译:比较了三种基于紫薇的生物吸附剂的吸附特性:原始生物质(rLVB),酸碱活化生物质(aLVB)和硫酸处理生物质(ccLVB)作为接触时间,初始亚甲基蓝浓度和初始pH,以评估化学修饰的效果。以分批方式比较了原始的和化学改性的寻常乳杆菌生物量的吸附研究。生物吸附剂表征的傅里叶变换红外光谱(FTIR)结果表明存在不同的官能团,这些官能团可能负责从水溶液中吸附MB。此外,FTTR分析表明,原始生物材料的酸碱活化导致酯水解,从而提供更多的反应位点(-COO〜-),而硫酸处理方法引入了新的官能团,例如-SO_3〜-。使用Boehm方法对含氧的表面官能团(例如羧酸,内酯和酚)进行定量。在所有情况下,MB生物吸附的动力学都遵循伪二级动力学,而通过线性回归方法将实验平衡数据拟合到Freundlich,Langmuir和Dubinin-Radushkevich等温线。 Langmuir模型提供了最佳拟合。通过生物量的化学修饰极大地提高了MB的生物吸附能力和吸收动力学。被检查的生物吸附剂在从水溶液中去除MB的有效性可以按以下顺序排列:rLVB <aLVB <ccLVB。

著录项

  • 来源
    《Desalination and water treatment》 |2013年第36期|6871-6881|共11页
  • 作者单位

    Faculty of Science and Mathematics, Department of Chemistry, University of Nis, 33 Visegradska Street, Nis 18000, Serbia;

    Faculty of Science and Mathematics, Department of Chemistry, University of Nis, 33 Visegradska Street, Nis 18000, Serbia;

    Faculty of Science and Mathematics, Department of Chemistry, University of Nis, 33 Visegradska Street, Nis 18000, Serbia;

    Faculty of Science and Mathematics, Department of Chemistry, University of Nis, 33 Visegradska Street, Nis 18000, Serbia;

    Faculty of Science and Mathematics, Department of Chemistry, University of Nis, 33 Visegradska Street, Nis 18000, Serbia;

    Faculty of Science and Mathematics, Department of Chemistry, University of Nis, 33 Visegradska Street, Nis 18000, Serbia;

    Faculty of Science and Mathematics, Department of Chemistry, University of Nis, 33 Visegradska Street, Nis 18000, Serbia;

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

    Biosorption; Lagenaria vulgaris; Chemical modification; Mehylene blue; Kinetics; Isotherms;

    机译:生物吸附寻常的马鞭草化学改性;亚甲基蓝;动力学;等温线;

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