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Bioflocculation of Basic Dye onto Isolated Microbial Biopolymers

机译:将碱性染料生物絮凝到分离的微生物生物聚合物上

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Abstract Three purified biopolymers isolated from Bacillus velezensis (40B), Bacillus mojavensis (32A) and Pseudomonas (38A) strains were evaluated for dye decolourization as bioflocculants. The decolourization capacity of the three polymers was inspected using C.I 28 basic yellow dye as hazardous pollutant. The chemical compositions of these purified biopolymers were considered by HPLC and FTIR spectrum. The decolourization efficiency of the three purified biopolymers was determined using both real dye polluted wastewater (discharged from AKSA EGYPT acrylic fibres industry) and simulated synthetic wastewater. The maximum decolourization efficiencies of the purified biopolymers of the three studied strains (40B), (32A) and (38A) were 91, 89 and 88 %, respectively. The equilibrium of dye sorption process onto biopolymers was described using Langmuir isotherm equation. However, its kinetics follows the pseudo second order model. The thermodynamic examination investigated the exothermic and spontaneous nature of the decolourization process using the purified biopolymers. (This work is licensed under a Creative Commons Attribution 4.0 International License.)
机译:摘要评价了三种分离自velacensis(40B),mojavensis(32A)和Pseudomonas(38A)菌株的纯化生物聚合物作为生物絮凝剂的染料脱色性能。使用C.I 28碱性黄色染料作为有害污染物检查了这三种聚合物的脱色能力。通过HPLC和FTIR光谱考虑了这些纯化的生物聚合物的化学组成。使用纯染料污染的废水(从AKSA EGYPT丙烯酸纤维工业排放的废水)和模拟合成废水,测定了三种纯化的生物聚合物的脱色效率。三个研究菌株(40B),(32A)和(38A)的纯化生物聚合物的最大脱色效率分别为91%,89%和88%。使用Langmuir等温方程描述了染料在生物聚合物上的吸附过程的平衡。但是,其动力学遵循伪二阶模型。热力学检查使用纯化的生物聚合物研究了脱色过程的放热和自发性质。 (本作品根据知识共享署名4.0国际许可获得许可。)

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