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Competitive Adsorption of Dye Species onto Biomass Nanoporous Carbon in Single and Bicomponent Systems

机译:单组分和双组分系统中染料对生物质纳米多孔碳的竞争性吸附

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We first present a cost-effective approach to simultaneously dispose of rutaceae plant waste (the discarded peels of orange, finger citron, pomelo and lemon) to yield biomass nanoporous carbons (BNCs). The adsorption of orange II (OII) and acid chrome blue K (ACBK) from aqueous solutions in single and binary dye systems by four types of BNCs were studied in a batch adsorption system. The adsorption studies include both equilibrium adsorption isotherms and kinetics. Four adsorption models for predicting the multicomponent equilibrium sorption isotherms have been compared in order to determine which one is the best fit model to predict or correlate binary adsorption data. The kinetic data were well described by the pseudo-second-order kinetic model. It was found that the adsorption capacity of orange peel-based nanoporous carbon (OPC) is much higher than those of the other types of BNCs. In addition, OPC also shows higher OII uptake capacities from binary dye solutions. The four types of BNCs could be employed as a low-cost alternative for the removal of textile dyes from effluents.
机译:我们首先提出一种经济有效的方法,以同时处置芸香科植物废料(废弃的桔皮,手指香,柚子和柠檬皮),以产生生物质纳米孔碳(BNC)。在间歇式吸附系统中,研究了四种类型的BNC在单一和二元染料体系中对水溶液中的橙色II(OII)和酸性铬蓝K(ACBK)的吸附。吸附研究包括平衡吸附等温线和动力学。为了确定哪种是预测或关联二元吸附数据的最佳拟合模型,已经比较了四种用于预测多组分平衡吸附等温线的吸附模型。动力学数据很好地描述了伪二级动力学模型。发现基于橙皮的纳米孔碳(OPC)的吸附能力比其他类型的BNC的吸附能力高得多。此外,OPC还显示出二元染料溶液对OII的吸收能力更高。四种类型的BNC可以用作从废水中去除纺织品染料的低成本替代品。

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