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Regularities of the effects of the nature of polysaccharide materials on distribution of heavy metal ions in a heterophase biosorbent-water solution system

机译:异质性生物吸附剂-水溶液系统中多糖材料性质对重金属离子分布的影响规律

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The possibility of using cellulose-containing biosorbents obtained on the basis of agro-industrial wastes and byproducts to recover heavy metal ions from aqueous solutions was considered. The influence of the nature of sorbents (composition of biopolymers, content of carboxyl groups, specific surface, pore diameter and pore volume, swelling) on the kinetics and thermodynamics of distribution of heavy metal ions in a heterophase system consisting of water and biopolymer sorbent was determined. It was established that cellulose-based sorbents act as cationites at pH of 1-7, being inferior in their kinetic characteristics and sorption properties to commercial sorbents. Relying on literature data and the experimental results, it was found that the Langmuir, Freundlich, and TVFM models and other theories describe reasonably well the process (the correlation coefficients were 0.99); however, the Langmuir model provided the most exact determination of maximum sorption capacity of sorbents. It was concluded that, despite the comparatively low equilibriumkinetic characteristics, the cellulosic sorbents have received greater attention from researchers around the world due to their clear advantages with respect to ecological cleanliness, availability, and renewability of raw materials.
机译:考虑了使用基于农用工业废料和副产物获得的含纤维素的生物吸附剂从水溶液中回收重金属离子的可能性。吸附剂的性质(生物聚合物的组成,羧基含量,比表面积,孔径和孔体积,溶胀)对由水和生物聚合物吸附剂组成的多相系统中重金属离子分布的动力学和热力学的影响为决心。已经确定,基于纤维素的吸附剂在pH 1-7时起阳离子作用,其动力学特性和吸附性能均不如市售吸附剂。根据文献数据和实验结果,发现Langmuir,Freundlich和TVFM模型以及其他理论对过程进行了较好的描述(相关系数为0.99)。但是,Langmuir模型提供了最精确的吸附剂最大吸附容量测定方法。结论是,尽管平衡动力学特性相对较低,但是纤维素吸附剂由于在生态清洁度,原材料的可获得性和可再生性方面的明显优势而受到了全世界研究人员的更多关注。

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