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戊二醛交联壳聚糖共聚物树脂对钯(II)的吸附特性

Pd(II) adsorption characteristics of glutaraldehyde cross-linked chitosan copolymer resin.

作者信息

Nagireddi Srinu, Katiyar Vimal, Uppaluri Ramgopal

机构信息

Department of Chemical Engineering, Indian Institute of Technology Guwahati, Guwahati 781039, Assam, India.

Department of Chemical Engineering, Indian Institute of Technology Guwahati, Guwahati 781039, Assam, India.

出版信息

Int J Biol Macromol. 2017 Jan;94(Pt A):72-84. doi: 10.1016/j.ijbiomac.2016.09.088. Epub 2016 Sep 27.

Abstract

Deliberating upon the role of solution chemistry in influencing the Pd(II) adsorption and desorption characteristics using chitosan based resins, this work addresses the competence of glutaraldehyde cross-linked chitosan (GCC) co-polymer resin for the removal and recovery of Pd(II) from synthetic electroless plating solutions. GCC copolymer adsorbent was prepared by grafting of fixed weight ratio (1/17) of medium molecular weight chitosan and glutaraldehyde (25% in HO). Within the adsorption parametric range of 2-10pH, 60-300min contact time, 10-50mg adsorbent dosage and 50-500mg/L initial Pd(II) concentration, the solution chemistry associated to synthetic ELP solution has been evaluated to strongly reduce the adsorption capacity of the GCC resin. Batch equilibrium adsorption studies inferred upon the fitness of Langmuir isotherm with a monolayer adsorption capacity of 166.67mg/g. Adsorption kinetics and thermodynamic parametric evaluations affirmed pseudo-second-order kinetics and spontaneous exothermic Pd(II) adsorption on the resin. Further, speciation analysis provided valuable insights by indicating greater favourability of Pd(NH) species (at pH=8) than PdEDTA (at lower pH) to foster chemisorption with the GCC resin. In summary, the observations affirmed that solution chemistry needs to be addressed in laboratory investigations to further industrial application and competitiveness of alternate resins.

摘要

在探讨溶液化学对使用壳聚糖基树脂的钯(II)吸附和解吸特性的影响作用时,本研究探讨了戊二醛交联壳聚糖(GCC)共聚物树脂从化学镀合成溶液中去除和回收钯(II)的能力。GCC共聚物吸附剂通过接枝固定重量比(1/17)的中分子量壳聚糖和戊二醛(在水中为25%)制备而成。在2 - 10pH、60 - 300分钟接触时间、10 - 50mg吸附剂用量和50 - 500mg/L初始钯(II)浓度的吸附参数范围内,已评估与化学镀合成溶液相关的溶液化学会大幅降低GCC树脂的吸附容量。批量平衡吸附研究推断朗缪尔等温线适用,单层吸附容量为166.67mg/g。吸附动力学和热力学参数评估证实了伪二级动力学以及钯(II)在树脂上的自发放热吸附。此外,形态分析提供了有价值的见解,表明在pH = 8时,Pd(NH)物种比在较低pH时的PdEDTA更有利于与GCC树脂发生化学吸附。总之,这些观察结果证实,在实验室研究中需要考虑溶液化学,以促进替代树脂的进一步工业应用和竞争力。

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