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Preparation of mesoporous activated carbon from palm-date pits: Optimization study on removal of bentazon, carbofuran, and 2,4-D using response surface methodology

机译:从棕枣核制备中孔活性炭:使用响应面法优化去除苯达松,呋喃丹和2,4-D的研究

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摘要

Palm-date pits were used to prepare activated carbon by physiochemical activation method, which consisted of potassium hydroxide (KOH) treatment and carbon dioxide (CO_2) gasification. The effects of variable parameters, activation temperature, activation time and chemical impregnation ratios (KOH: char by weight) on the preparation of activated carbon and for removal of pesticides: bentazon, carbofuran and 2,4-dichlorophenoxyacetic acid (2,4-D) were investigated. Based on the central composite design (CCD), two factor interaction (2FI) and quadratic models were respectively employed to correlate the effect of variable parameters on the preparation of activated carbon used for removal of pesticides with carbon yield. From the analysis of variance (ANOVA), the most influential factor on each experimental design response was identified. The optimum conditions for preparing activated carbon from palm-date pits were found to be: activation temperature of 850 WC, activation time of 3 h and chemical impregnation ratio of 3.75, which resulted in an activated carbon yield of 19.5% and bentazon, carbofuran, and 2,4-D removal of 84, 83, and 93%, respectively.
机译:棕榈枣核通过物理化学活化法制备活性炭,该方法由氢氧化钾(KOH)处理和二氧化碳(CO_2)气化组成。可变参数,活化温度,活化时间和化学浸渍比(KOH:重量炭)对活性炭制备和除草剂苯达松,呋喃丹和2,4-二氯苯氧基乙酸(2,4-D)的去除效果)进行了调查。基于中心复合设计(CCD),分别采用两个因素相互作用(2FI)模型和二次模型来关联变量参数对用于去除农药的活性炭的制备与碳收率的影响。通过方差分析(ANOVA),可以确定对每个实验设计响应的影响最大的因素。发现从棕枣核制备活性炭的最佳条件为:活化温度为850 WC,活化时间为3 h,化学浸渍比为3.75,活性炭产率为19.5%,苯达松,呋喃丹,和2,4-D去除率分别为84%,83%和93%。

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