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Preparation and evaluation of adipic acid dihydrazide cross-linked carboxymethyl chitosan microspheres for copper ion adsorption

机译:己二酸二酰肼交联羧甲基壳聚糖微球的制备及评价

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摘要

Adipic acid dihydrazide (ADH) was used to cross-link carboxymethyl chitosan (CMCS) microspheres for Cu2+ removal from aqueous solution. SEM, FTIR, XPS and BET techniques were performed to characterize the ADH cross-linked CMCS (ADH-CMCS) microspheres. The effects on adsorption capacities of pH value, adsorption time, and initial Cu2+ concentration were investigated. The adsorption experiments demonstrated ADH-CMCS microspheres had high adsorption capacity for Cu2+ removal. Furthermore, in order to investigate the effect of ADH in ADH-CMCS microspheres on Cu2+ adsorption, cross-linking experiments and XPS tests were carried out to reveal the adsorption mechanism. The results suggested that ADH in ADH-CMCS microspheres had a compensation action on its consumption of binding sites for Cu2+ adsorption. The XPS etching results showed cross-linking reaction occurred mainly on the surfaces of the microspheres. The kinetics of Cu2+ adsorption on ADH-CMCS microspheres complied with the pseudo-second-order model, indicating a chemical reaction process. The adsorption data analysis using three different adsorption isotherm models indicated that ADH-CMCS microspheres were of heterogeneity surfaces. Moreover, the ADH-CMCS microspheres still exhibited good adsorption performances after the fifth adsorption-desorption cycle. (C) 2016 Elsevier B.V. All rights reserved.
机译:使用己二酸二酰肼(ADH)交联羧甲基壳聚糖(CMCS)微球,以从水溶液中去除Cu2 +。进行了SEM,FTIR,XPS和BET技术来表征ADH交联的CMCS(ADH-CMCS)微球。研究了pH值,吸附时间和初始Cu 2+浓度对吸附容量的影响。吸附实验表明,ADH-CMCS微球具有较高的去除Cu2 +的吸附能力。此外,为了研究ADH-CMCS微球中ADH对Cu 2+吸附的影响,进行了交联实验和XPS测试以揭示吸附机理。结果表明,ADH-CMCS微球中的ADH对其消耗的Cu2 +吸附结合位点具有补偿作用。 XPS蚀刻结果表明交联反应主要发生在微球表面。 ADH-CMCS微球上Cu2 +的吸附动力学符合拟二级模型,表明了化学反应过程。使用三种不同的吸附等温线模型进行的吸附数据分析表明,ADH-CMCS微球具有非均质表面。此外,在第五次吸附-解吸循环后,ADH-CMCS微球仍显示出良好的吸附性能。 (C)2016 Elsevier B.V.保留所有权利。

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