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首页> 外文期刊>Journal of Hazardous Materials >Preparation of oil palm empty fruit bunch-based activated carbon for removal of 2,4,6-trichlorophenol: Optimization using response surface methodology
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Preparation of oil palm empty fruit bunch-based activated carbon for removal of 2,4,6-trichlorophenol: Optimization using response surface methodology

机译:制备用于去除2,4,6-三氯苯酚的油棕空果束基活性炭的制备:使用响应面方法的优化

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摘要

The effects of three preparation variables: CO_2 activation temperature, CO_2 activation time and KOHxhar impregnation ratio (IR) on the 2,4,6-trichlorophenol (2,4,6-TCP) uptake and carbon yield of the activated carbon prepared from oil palm empty fruit bunch (EFB) were investigated. Based on the central composite design, two quadratic models were developed to correlate the three preparation variables to the two responses. The activated carbon preparation conditions were optimized using response surface methodology by maximizing both the 2,4,6-TCP uptake and activated carbon yield within the ranges studied. The optimum conditions for preparing activated carbon from EFB for adsorption of 2,4,6-TCP were found as follows: CO_2 activation temperature of 814 ℃, CO_2 activation time of 1.9 h and IR of 2.8, which resulted in 168.89 mg/g of 2,4,6-TCP uptake and 17.96% of activated carbon yield. The experimental results obtained agreed satisfactorily with the model predictions. The activated carbon prepared under optimum conditions was mesoporous with BET surface area of 1141 m~2/g, total pore volume of 0.6 cm~3/g and average pore diameter of 2.5 nm. The surface morphology and functional groups of the activated carbon were respectively determined from the scanning electron microscopy and Fourier transform infrared analysis.
机译:三种制备变量:CO_2活化温度,CO_2活化时间和KOHxhar浸渍比(IR)对油制备的活性炭2,4,6-三氯苯酚(2,4,6-TCP)吸收和碳产率的影响研究了棕榈空果束(EFB)。基于中央复合设计,开发了两个二次模型以将三个准备变量与两个响应相关联。活性炭的制备条件是使用响应表面方法通过在研究范围内最大限度地提高2,4,6-TCP吸收和活性炭收率来优化的。确定了由EFB制备吸附2,4,6-TCP的活性炭的最佳条件为:CO_2活化温度为814℃,CO_2活化时间为1.9h,IR为2.8,得到168.89 mg / g 2,4,6-TCP吸收和活性炭产率的17.96%。获得的实验结果与模型预测令人满意。在最佳条件下制备的活性炭是介孔的,BET表面积为1141m 2 / g,总孔体积为0.6cm 3 / g,平均孔径为2.5nm。活性炭的表面形态和官能团分别通过扫描电子显微镜和傅里叶变换红外分析确定。

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