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Preparation and heavy metal ions biosorption of graft copolymers from enzymatic hydrolysis lignin and amino acids

机译:酶促水解木质素与氨基酸的接枝共聚物制备及重金属离子的生物吸附

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摘要

Novel biosorbents, graft copolymers, were prepared via Mannich reaction from enzymatic hydrolysis lignin with glycine and cystine, respectively. The element content, FT-IR and fluorescence spectra, relative viscosity, and particle size of the copolymers were systematically investigated. Furthermore, effects of initial pH, ionic strength, temperature, contact time and initial metal ion concentration on the biosorption capacities of Cu(II) and Co(II) ions onto the copolymers were studied using batch sorption technique. It was found that the copolymers exhibited excellent biosorption characteristics for Cu(II) and Co(II) ions. The sorption kinetic data can be described well with a pseudo-second-order model, and the equilibrium data can be fitted well to the Langmuir and Freundlich isotherm for Cu(II) and Co(II) biosorption process, respectively. Surface complexation and ion-exchange modeling were performed to elucidate the biosorption mechanism involved because surfaces of the copolymers contained three main types of acid/base sites from the amino acid grafted copolymer units.
机译:经由曼尼希反应,分别由酶促水解木质素与甘氨酸和胱氨酸分别制备了新型生物吸附剂,即接枝共聚物。系统地研究了共聚物的元素含量,红外光谱和荧光光谱,相对粘度和粒径。此外,使用分批吸附技术研究了初始pH,离子强度,温度,接触时间和初始金属离子浓度对Cu(II)和Co(II)离子在共聚物上的生物吸附能力的影响。发现该共聚物对Cu(II)和Co(II)离子表现出优异的生物吸附特性。吸附动力学数据可以用伪二级模型很好地描述,平衡数据可以分别很好地拟合到Langmuir和Freundlich等温线,分别用于Cu(II)和Co(II)生物吸附过程。进行表面络合和离子交换模型以阐明涉及的生物吸附机理,因为共聚物的表面包含来自氨基酸接枝共聚物单元的三种主要类型的酸/碱位。

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