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Kinetics and equilibrium of Cu(II) adsorption onto chemically modified orange peel cellulose biosorbents

机译:化学改性的橙皮纤维素生物吸附剂上Cu(II)吸附的动力学和平衡

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A series of orange peel cellulose biosorbents has been specifically prepared by different chemical modifications to understand the mechanism of copper adsorption from chloride solutions. The different biosorbents and raw orange peels were characterized using elemental analysis and Fourier transform infrared spectroscopy (FTIR). The acidic and basic sites and pH of zero charge were also determined. The influences of pH, contact time, initial copper concentration and solid/liquid ratio on copper removal were examined. The maximum adsorption capacity of copper was 1.22 mol/kg, using orange peel esterified by 0.6 mol/L citric acid at 80 deg C after 0.1 mol/L NaOH saponification. A comparison of different isotherm models revealed that the combination of Langmuir and Freundlich (L-F) isotherm model fitted the experimental data best. Results indicate that the chemically modified orange peel cellulose can provide an efficient and cost-effective technology for eliminating copper from aqueous solution.
机译:通过不同的化学修饰,专门制备了一系列橙皮纤维素生物吸附剂,以了解氯化物溶液中铜的吸附机理。使用元素分析和傅里叶变换红外光谱(FTIR)对不同的生物吸附剂和原始的橙皮进行表征。还确定了酸性和碱性位点以及零电荷的pH。研究了pH,接触时间,初始铜浓度和固/液比对铜去除的影响。使用0.1 mol / L NaOH皂化后,在80℃下用0.6 mol / L柠檬酸酯化的橙皮,铜的最大吸附容量为1.22 mol / kg。比较不同的等温线模型,发现Langmuir和Freundlich(L-F)等温线模型的组合最适合实验数据。结果表明,化学改性的橙皮纤维素可以提供一种从水溶液中去除铜的有效且具有成本效益的技术。

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