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Ruthenium Recovery from Acetic Acid Waste Solution by Using Pei-Coated Biomass-Chitosan Composite Fiber

机译:通过使用PEI涂覆的生物质 - 壳聚糖复合纤维从乙酸废液中回收钌

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Polyethylenimine (PEI)-coated biomass-chitosan composite fiber (PBCF) was fabricated to recover Ru from acetic acid waste solution. The present work aimed to understand the effects of molecular weight of chitosan and drying method on stability and sorption performance of the PBCF. For this, the PBCF was prepared by extruding the mixed solutions of chitosan and Corynebacterium glutamicum to form the composite fibers which were modified with ionic polymer, PEI. The degree of swelling of PBCFs prepared by hot-air, natural, and freeze drying methods were 1.25, 1.34, and 1.07%, respectively, indicating that the freeze-drying method was the best. Batch biosorption studies showed that the maximum Ru uptake could be achieved with PBCF prepared with medium molecular weight chitosan, and could reach 34.1 mg/g, which was 7.9 times higher than that of the commercial ion exchange resin, LEWATIT MonoPlus M 500 (4.3 mg/g). Therefore, PBCF can be considered as an alternative sorbent to synthetic resin for recovery of Ru form industrial acetic acid waste solution.
机译:制备聚乙烯菊氨酸(PEI)涂料的生物质 - 壳聚糖复合纤维(PBCF),以从乙酸废液中回收Ru。目前的作品旨在了解壳聚糖分子量和干燥方法对PBCF的稳定性和吸附性能的影响。为此,通过挤出壳聚糖和棒状杆菌的混合溶液来制备PBCF,以形成用离子聚合物,PEI改性的复合纤维。通过热空气,自然和冷冻干燥方法制备的PBCFs的溶胀程度分别为1.25,1.34和1.07%,表明冷冻干燥方法是最佳的。分批生物吸附研究表明,通过用中等分子量壳聚糖制备的PBCF可以实现最大RU吸收,并且可以达到34.1mg / g,其比商业离子交换树脂高7.9倍,Lewatit Monoplus M 500(4.3mg /G)。因此,PBCF可以被认为是合成树脂的替代吸附剂,用于回收Ru形成工业乙酸废物溶液。

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