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首页> 外文期刊>Journal of the Taiwan Institute of Chemical Engineers >Utilisation of Cymbopogon citratus (lemon grass) as biosorbent for the sequestration of nickel ions from aqueous solution: Equilibrium, kinetic, thermodynamics and mechanism studies
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Utilisation of Cymbopogon citratus (lemon grass) as biosorbent for the sequestration of nickel ions from aqueous solution: Equilibrium, kinetic, thermodynamics and mechanism studies

机译:利用柠檬柏(柠檬草)作为生物吸附剂从水溶液中螯合镍离子:平衡,动力学,热力学和机理研究

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摘要

This study explored the potential of Cymbopogon citratus (C. citratus) as a new biosorbent for the removal of nickel (Ni~(2+)) from aqueous media. The effects of biosorbent concentration, initial pH, initial concentration, contact time and temperature on Ni~(2+) biosorption were investigated. It was found that pH has a significant impact on the metal ion removal. Increasing biosorbent concentration up to 1 g/L, temperature up to 45 ℃, initial concentration up to 150 mg/L and contact time up to 1 h resulted in the increase in Ni~(2+) biosorption. FTIR analysis demonstrated that hydroxyl, carbonyl, and alkyl halides groups present on C. citratus surface were involved in Ni~(2+) biosorption. The equilibrium data were fitted well by the Temkin model exhibiting lowest Chi-square, Marquardt's percent standard deviation and residual root mean square errors. The kinetic data were better represented by the pseudo-second-order than the pseudo-first-order kinetic model. Further data analysis by the intra-particle kinetic and Boyd models suggested that the biosorption rate was affected by Ni~(2+) transport across the boundary layer and intra-particle diffusion. Thermodynamic studies showed that the process was endothermic and nonspontaneous within the temperature range studied (25-45 ℃). The results of this investigation suggest that C. citratus is an effective alternative biosorbent for Ni~(2+) removal.
机译:这项研究探索了柠檬柏(Cymbopogon citratus)(C。citratus)作为从水性介质中去除镍(Ni〜(2+))的新型生物吸附剂的潜力。研究了生物吸附剂浓度,初始pH,初始浓度,接触时间和温度对Ni〜(2+)生物吸附的影响。发现pH对金属离子的去除具有显着影响。增加生物吸附剂的浓度至1 g / L,温度达到45℃,初始浓度至150 mg / L和接触时间长达1 h导致Ni〜(2+)的生物吸附增加。 FTIR分析表明,柠檬衣梭菌表面存在的羟基,羰基和烷基卤化物基团与Ni〜(2+)的生物吸附有关。 Temkin模型很好地拟合了平衡数据,该模型显示出最低的卡方,马夸特百分比标准偏差和残留均方根误差。动力学数据比拟一阶动力学模型更好地由拟二阶动力学表示。通过粒子内动力学和Boyd模型的进一步数据分析表明,生物吸附速率受Ni〜(2+)跨边界层传输和粒子内扩散的影响。热力学研究表明,该过程在所研究的温度范围(25-45℃)内是吸热的且非自发的。这项研究的结果表明,柠檬衣梭菌是一种有效的替代生物吸附剂,用于去除Ni〜(2+)。

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