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Adsorption of congo red dye onto antimicrobial terephthaloyl thiourea cross-linked chitosan hydrogels

机译:刚果红染料在抗菌苯二甲酰硫脲交联壳聚糖水凝胶中的吸附

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Adsorption capacity of three antimicrobial terephthaloyl thiourea cross-linked chitosan hydrogels for Congo red dye removal from its aqueous solution has been investigated for the first time in this work. These hydrogels were prepared by reacting chitosan with various amounts of terephthaloyl diisothiocyanate cross-linker. The effect of the hydrogel structural variations and several dye adsorption processing parameters to achieve the best adsorption capacity were investigated. The hydrogels' structural variations were obtained by varying their terephthaloyl thiourea moieties content. The processing variables included initial concentration of the dye solution, temperature and time of exposure to the dye. The adsorption kinetics and isotherms showed that the sorption processes were better fitted by the pseudo-second-order equation and the Langmuir equation, respectively. On the basis of the Langmuir analysis Congo red dye gave the maximum sorption capacity of 44.248 mg/g. The results obtained confirmed that the sorption phenomena are most likely to be controlled by chemisorption process. The adsorption reaction was endothermic and spontaneous according to the calculated results of adsorption thermodynamics.
机译:在这项工作中首次研究了来自其水溶液的三种抗菌对苯二甲酰硫脲硫脲交联壳聚糖水凝胶的吸附能力。通过用各种量对苯二甲酰二硫氰酸酯的交联剂使壳聚糖反应制备这些水凝胶。研究了水凝胶结构变化和几种染料吸附处理参数的效果,以实现最佳吸附能力。通过改变其对苯二甲酰硫脲部分含量来获得水凝胶的结构变化。处理变量包括染料溶液的初始浓度,温度和暴露于染料的时间。吸附动力学和等温物流量表明,分别由伪二阶方程和朗米尔方程装备吸附过程。在琅勃勃分析的基础上,刚果红染料得到了44.248mg / g的最大吸附能力。获得的结果证实,吸附现象最有可能通过化学吸取过程来控制。根据所计算的吸附热力学的结果,吸附反应吸热和自发。

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