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首页> 外文期刊>Journal of hazardous, toxic and radioactive waste >Biosorption of Methylene Blue Dye from Textile-Industry Wastewater onto Sugarcane Bagasse: Response Surface Modeling, Isotherms, Kinetic and Thermodynamic Modeling
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Biosorption of Methylene Blue Dye from Textile-Industry Wastewater onto Sugarcane Bagasse: Response Surface Modeling, Isotherms, Kinetic and Thermodynamic Modeling

机译:从纺织工业废水中的亚甲基蓝染料生物吸附甘蔗蛋白饼干:响应面造型,等温,动力学和热力学造型

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摘要

This research focuses on the viability of removing basic dye methylene blue (MB) from water solutions by the application of sugarcane bagasse (SCB), an economic natural biosorbent. Batch experiments were conducted based on solution pH, contact period, initial adsorbate dye concentration, biosorbent amount, and temperature as independent variables by employing a central composite design approach of response surface methodology (RSM). With the use of RSM, the optimization of the MB biosorption process was carried out for maximum MB removal. The biosorption equilibrium of the dye solution was achieved after a contact time of 90 min and explained by the Langmuir and Freundlich isotherms. The biosorption data is employed for the kinetic modeling, from pseudo-first- and pseudo-second-order kinetic equation. Thermodynamic parameters (Enthalpy change ΔH, entropy change ΔS, and Gibbs free energy ΔG) were studied, which showed that biosorption is natural and endothermic in nature by reducing color randomness at the liquid and solid interface. Biosorbent characterization explained in this analysis is performed through Fourier-transform infrared spectroscopy before and after MB biosorption. Characteristic tests and separation factor proved that SCB was able to be used as an option to commercial biosorbents for the aqueous solution and removal of MB from wastewater.
机译:本研究侧重于通过应用甘蔗面包(SCB),经济天然生物吸附剂从水溶液中除去碱性染料亚甲基蓝(MB)的可行性。通过采用响应面方法(RSM)的中央复合设计方法(RSM),基于溶液pH,接触期,初始吸附染料浓度,生物吸附量和温度作为独立变量进行批量实验。随着RSM的使用,进行了MB生物吸附过程的优化,用于最大的MB去除。在90分钟的接触时间后达到染料溶液的生物吸收平衡,并由Langmuir和Freundlich等温线解释。生物吸附数据用于动力学建模,来自伪第一和伪二阶动力学方程。研究了热力学参数(焓变ΔH,熵改变ΔS和吉布斯自由能ΔG),这表明通过在液体和固体界面处减少色性随机性,生物吸附是自然的,本质上的吸热。在该分析中解释的生物吸附表征通过MB生物吸附之前和之后通过傅立叶变换红外光谱进行。特征试验和分离因子证明了SCB能够用作商业生物气体的选项,用于水溶液和从废水中除去MB。

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