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Kinetic and equilibrium characterization of phenols adsorption onto a novel activated carbon in water treatment

机译:水中苯酚吸附到新型活性炭上的动力学和平衡特性

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摘要

The present study envisages the use of an aquatic plant material,water hyacinth to prepare a novel activated carbon for the removal of phenol,p-chlorophenol and p-nitrophenol from simulated wastewaters by adsorption process.The effect of pH,contact time,initial concentration of adsorbate and temperature on removal process was investigated.The maximum removal of phenols from their aqueous solutions occurred at pH 6.0.The applicability of the intraparticular mass transfer diffusion kinetic model in each case of phenol,p-chlorophenol and p-nitrophehol was studied separately at different concentrations and temperatures.Kinetic parameters as a function of concentration and temperature were evaluated to predict the nature of adsorption.The adsorption process was found to be exothermic and the adsorption of phenols was found to follow the order:p-nitrophenol > p-chlorophenol > phenol.Equilibrium adsorption data were correlated with Langmuir,Freundlich and Redlich-Peterson adsorption isotherm models.Freundlich isotherm model was found applicable to represent the adsorption data for all three adsorbates.The maximum adsorption capacity of activated carbon was found to be 1.20,1.28 and 1.35 mmol/g for phenol,p-chlorophenol and p-nitrophenol respectively.Adsorbed phenols on activated carbon were recovered(91.5-96.3%)using 0.05 M sodium hydroxide.The petroleum refinery industry wastewater sample was treated by activated carbon to demonstrate its efficiency in removing phenols from wastewaters.
机译:本研究设想使用水生植物风信子制备一种新型活性炭,用于通过吸附过程从模拟废水中去除苯酚,对氯苯酚和对硝基苯酚。pH,接触时间,初始浓度的影响研究了吸附剂和温度对去除过程的影响。在pH 6.0下最大程度地去除了酚类化合物。研究了分别在苯酚,对氯酚和对硝基苯酚中颗粒内传质扩散动力学模型的适用性。在不同的浓度和温度下,通过动力学参数评估浓度和温度,以预测吸附的性质,发现吸附过程是放热的,酚的吸附顺序为:对硝基苯酚>对-平衡吸附数据与Langmuir,Freundlich和Redlich-Peterson吸附等温线相关发现弗氏等温线模型可用于表示所有三种吸附物的吸附数据。活性炭对苯酚,对氯苯酚和对硝基苯酚的最大吸附容量分别为1.20、1.28和1.35 mmol / g。用0.05 M的氢氧化钠回收活性炭上的苯酚(91.5-96.3%)。用活性炭处理石油炼制工业废水样品以证明其去除废水中酚的效率。

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