首页> 外文期刊>Journal of Environmental Science and Health. A, Toxic/Hazardous Substances & Environmental Engineering >Optimization of process condition for the preparation of amine-impregnated activated carbon developed for CO2 capture and applied to methylene blue adsorption by response surface methodology
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Optimization of process condition for the preparation of amine-impregnated activated carbon developed for CO2 capture and applied to methylene blue adsorption by response surface methodology

机译:通过响应面法优化用于CO2捕集并用于亚甲基蓝吸附的胺浸渍活性炭制备工艺条件的优化

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The present research describes the optimal adsorption condition for methylene blue (MB). The adsorbent used here was monoethanol amine-impregnated activated carbon (MEA-AC) prepared from green coconut shell. Response surface methodology (RSM) is the multivariate statistical technique used for the optimization of the process variables. The central composite design is used to determine the effect of activation temperature, activation time and impregnation ratio on the MB removal. The percentage (%) MB adsorption by MEA-AC is evaluated as a response of the system. A quadratic model was developed for response. From the analysis of variance, the factor which was the most influential on the experimental design response has been identified. The optimum condition for the preparation of MEA-AC from green coconut shells is the temperature of activation 545.6 degrees C, activation time of 41.64min and impregnation ratio of 0.33 to achieve the maximum removal efficiency of 98.21%. At the same optimum parameter, the % MB removal from the textile-effluent industry was examined and found to be 96.44%.
机译:本研究描述了亚甲基蓝(MB)的最佳吸附条件。此处使用的吸附剂是由绿色椰子壳制得的单乙醇胺浸渍活性炭(MEA-AC)。响应面方法(RSM)是用于优化过程变量的多元统计技术。中央复合材料设计用于确定活化温度,活化时间和浸渍率对MB去除的影响。 MEA-AC对MB的吸附百分比(%)被评估为系统的响应。开发了用于响应的二次模型。通过方差分析,确定了对实验设计响应影响最大的因素。由青椰子壳制备MEA-AC的最佳条件是活化温度为545.6℃,活化时间为41.64min,浸渍比为0.33,最大去除效率为98.21%。在相同的最佳参数下,对纺织废水工业中的MB去除率进行了检测,结果为96.44%。

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