Synthesis and application of environment friendly membranes of chitosan and chitosan-PTA for removal of copper (II) from wastewater

IF 0.9 Q4 ENGINEERING, CHEMICAL
Shivani S. Vedula, G. Yadav
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引用次数: 0

Abstract

ABSTRACT The development of environmental consciousness and practices is critically needed. Membranes have outperformed methods such as distillation and extraction in prominence. Technological development is essential for improving wastewater treatment methods. Renewable resources can be regarded as ideal materials for membrane production. It is critical to choose ecologically acceptable materials that are easy to use and have a high separation efficiency. This paper reports the preparation of adsorptive membranes of environmentally friendly chitosan and heteropolyacids. Membranes were prepared by a simple solvent evaporation technique and the effect of dodecatungstophosphoric acid on the composite membrane structure of chitosan were explored. The solution casting method was employed to prepare the membranes. The membrane films were characterised in terms of elemental composition, morphology, and structure using various analytical techniques like SEM-EDX, FTIR-ATR, TGA-DSC, and Universal Testing Machine. An aqueous solution of copper (C 0 = 100–2000 ppm) was adsorbed using these membranes. The effect of heteropolyacid on adsorption was studied. Adsorption above 90% was achieved and the adsorption followed pseudo 2nd order isotherm with R 2 > 0.99. The heteropolyacid acts as a dynamic ion exchanger in the process. The membranes were made from natural, non-toxic, cheap, and easily available materials and have a lot of potential. GRAPHICAL ABSTRACT
壳聚糖和壳聚糖- pta环境友好膜的合成与应用
环境意识和实践的发展是迫切需要的。膜的性能明显优于蒸馏和萃取等方法。技术发展对改善废水处理方法至关重要。可再生资源是膜生产的理想材料。选择易于使用且分离效率高的生态可接受材料至关重要。报道了环境友好型壳聚糖与杂多酸吸附膜的制备。采用简单的溶剂蒸发法制备了壳聚糖复合膜,探讨了十二钨磷酸对壳聚糖复合膜结构的影响。采用溶液铸造法制备膜。利用SEM-EDX、FTIR-ATR、TGA-DSC和通用试验机等多种分析技术,对膜的元素组成、形态和结构进行了表征。铜的水溶液(c0 = 100 - 2000ppm)被这些膜吸附。研究了杂多酸对吸附的影响。吸附率达到90%以上,吸附符合准二级等温线,吸附系数为0.99。在此过程中,杂多酸起着动态离子交换剂的作用。这种膜由天然、无毒、廉价、易得的材料制成,具有很大的潜力。图形抽象
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来源期刊
Indian Chemical Engineer
Indian Chemical Engineer ENGINEERING, CHEMICAL-
CiteScore
3.00
自引率
6.70%
发文量
33
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