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首页> 外文期刊>Journal of the Taiwan Institute of Chemical Engineers >Nitrate removal from water by new polymeric adsorbent modified with amino and quaternary ammonium groups: Batch and column adsorption study
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Nitrate removal from water by new polymeric adsorbent modified with amino and quaternary ammonium groups: Batch and column adsorption study

机译:用氨基和季铵基团改性的新型聚合物吸附剂从水中去除硝酸盐:分批和柱吸附研究

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摘要

A new polymeric adsorbent (NDQ) modified with amino and quaternary ammonium groups was synthesized for the purpose of nitrate removal from water. Sorption kinetic and isotherm experiments were carried out in a series of batch experiments. Batch adsorption isotherms indicated that the maximum mono layer adsorption capacity of NDQ for nitrate was 221.8 mg/g which was higher than that of many other adsorbents reported in literature. Both ion-exchange and hydrogen bond played important roles in nitrate removal. The enthalpy change (-12.32 to-9.65 kiimol) and free energy change (-2.7 to-0.76 kJ/mop indicated an exothermic and spontaneous adsorption process. Moreover batch adsorption kinetic curves indicated that both film and intra-particle diffusion processes were rate-limiting in the nitrate adsorption. It was observed that the adverse effect of co-existing anions on nitrate removal followed the order of 'SO42- > HCO3- > Cl-. In order to quantify the influence of operational conditions on the treatment efficiency, a series of fixed bed column experiments were conducted at different bed heights, flow rates and influent concentrations, and the breakthrough curves at various operational conditions were simulated and analyzed using different mathematical models. Finally, the adsorption-desorption assay showed a promising reusability of the NDQ. (C) 2016 Taiwan Institute of Chemical Engineers. Published by Elsevier B.V. All rights reserved.
机译:合成了一种用氨基和季铵基团改性的新型聚合物吸附剂(NDQ),目的是从水中去除硝酸盐。吸附动力学和等温线实验在一系列分批实验中进行。间歇吸附等温线表明,NDQ对硝酸盐的最大单层吸附容量为221.8 mg / g,高于文献中报道的许多其他吸附剂。离子交换和氢键在硝酸盐去除中均起重要作用。焓变(-12.32至-9.65 kiimol)和自由能变化(-2.7至-0.76 kJ / mop)表明放热和自发吸附过程,而且批吸附动力学曲线表明膜和颗粒内扩散过程均为速率-观察到,共存阴离子对硝酸盐去除的不利影响遵循'SO42-> HCO3-> Cl-的顺序。为了量化操作条件对处理效率的影响,在不同的床高,流速和进水浓度下进行了一系列固定床柱实验,并使用不同的数学模型模拟和分析了在各种操作条件下的穿透曲线,最后,吸附-解吸试验表明了NDQ的可重复使用性(C)2016台湾化学工程师学会,Elsevier BV出版,保留所有权利。

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