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Biosorption mechanisms of cationic and anionic dyes in a low-cost residue from brewer's spent grain

机译:啤酒花籽粒低成本残留物中阳离子和阴离子染料的生物吸附机制

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摘要

The brewer's spent grain (BSG) is a byproduct of the brewing industry produced in large quantities and with few ecological disposal options. The use of this low-cost residue was investigated for the removal of methylene blue (MB) and tartrazine yellow (TY) dyes. The BSG has been extensively characterized to obtain its physicochemical characteristics. Batch experiments were conducted to investigate the effects of biosorption parameters: initial pH, kinetics, equilibrium isotherms and adsorption thermodynamics. The characterization showed high carbon content and heterogeneous morphology with the presence of meso and macropores. The best experimental conditions were obtained as pH 11 for MB and pH 2 for TY. Kinetics resulted in an equilibrium time of 240 min for MB and 300 min for TY and was best represented by the pseudo-second order model. Different interaction mechanisms were suggested, such as electrostatic interactions, electron donors and electron acceptors, hydrogen bonds, pi-pi dispersion interactions and the dye molecules aggregation. Equilibrium data were better represented by Langmuir isotherm. The maximum adsorbed amount of MB and TY was 284.75 and 26.18 mg/g, respectively, in each better experimental condition. Through the thermodynamic analysis, it was observed that the adsorption of the dyes was spontaneous and favourable. MB is preferentially retained through chemisorption, whereas TY followed a physical process. Considering the characteristics and results found compared to the recent literature, it was verified that BSG can be used as an effective and innovative biosorbent for removal purposes of dyeing effluent.
机译:Brewer的花谷物(BSG)是大量生产的酿造行业的副产品,并少量生态处置选项。研究了使用这种低成本残留物,以除去亚甲基蓝(MB)和塔拉嗪黄(TY)染料。 BSG已被广泛表征以获得其物理化学特性。进行批量实验以研究生物吸附参数的影响:初始pH,动力学,平衡等温线和吸附热力学。表征显示了梅索和大孔的存在,表现出高碳含量和异质形态。获得最佳的实验条件是Mb和pH 2的pH 11,用于Ty。动力学导致MB和300分钟的240分钟的平衡时间,并且最好由伪二次阶模型代表。建议不同的相互作用机制,例如静电相互作用,电子供体和电子受体,氢键,PI-PI分散相互作用和染料分子聚集。 Langmuir等温线更好地代表均衡数据。每个更好的实验条件,分别在284.75和26.18mg / g中分别为284.75和26.18mg / g。通过热力学分析,观察到染料的吸附是自发性和有利的。 MB优先通过化学保留,而TY遵循物理过程。考虑到最近的文献相比发现的特征和结果,验证了BSG可用作用于去除染色流出物的有效和创新的生物吸附剂。

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