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首页> 外文期刊>Chemometrics and Intelligent Laboratory Systems >Strategy of screening and optimization of process parameters using experimental design: application to amoxicillin elimination by adsorption on activated carbon
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Strategy of screening and optimization of process parameters using experimental design: application to amoxicillin elimination by adsorption on activated carbon

机译:实验设计筛选和优化工艺参数的策略:通过吸附在活性炭上消除阿莫西林的应用

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摘要

A fractional factorial design (FFD) 2(7 - 3) was used as screening technique to verify the influence of the seven factors on the response variable (yield of Amoxicillin elimination: ye) by adsorption on activated carbon prepared from pedicels of dates. Factors studied are the impregnation ratio (r = 1.0-2.0), carbonization temperature (Tc = 300-500 degrees C), carbonization time (tc = 1.5-2.5 h), stirring rate (v = 200-400 rpm), dose of activated carbon ([AC] = 1-2 g.L-1), pollutant concentration ([AMX] = 50-100 mg.L-1), and medium temperature (T = 25-35 degrees C). As a result of FFD evaluation, the main influent factors are the Tc, [AC], [AMX] and T. The fitted quadratic regression model, including these parameters was developed using the central composite design (CCD) as the response surface methodology. Analysis of variance (ANOVA) of the preliminary fitted model was validated with a confidence level of >95%. The final model is established on the basis of additional statistical analysis using other statistical criteria (coefficient of variation, adequate precision, Mallow's Cp statistic), the convenient results obtained, ensuring a satisfactory quadratic regression model, including all main parameters and their quadratic terms. Optimal conditions were determined using an analytic method, stationary point of model was determined, and the deteiminant values of Hessian matrix showed that the response (yield of AMX elimination) agrees a maximum solution corresponding to optimal conditions, Tc = 488 degrees C, T = 33.6 degrees C, [AMX] = 58.5 mg.L-1 and [AC] 1.178 g.L-1, at which the predictive value of the response is y(e) = 100 +/- 3%. (C) 2016 Elsevier B.V. All rights reserved.
机译:分数阶乘设计(FFD)2(7-3)被用作筛选技术,通过吸附在由枣梗制成的活性炭上,验证了七个因素对响应变量(阿莫西林消除的产率:ye)的影响。研究的因素是浸渍率(r = 1.0-2.0),碳化温度(Tc = 300-500摄氏度),碳化时间(tc = 1.5-2.5 h),搅拌速度(v = 200-400 rpm),剂量活性炭([AC] = 1-2 gL-1),污染物浓度([AMX] = 50-100 mg.L-1)和中等温度(T = 25-35摄氏度)。作为FFD评估的结果,主要影响因素是Tc,[AC],[AMX]和T。使用中央复合设计(CCD)作为响应面方法,开发了包括这些参数的拟合二次回归模型。初步拟合模型的方差分析(ANOVA)已通过置信度> 95%进行了验证。在使用其他统计标准(变异系数,足够的精度,Mallow's Cp统计量)进行额外统计分析的基础上,建立最终模型,并获得便利的结果,从而确保获得令人满意的二次回归模型,包括所有主要参数及其二次项。使用分析方法确定最佳条件,确定模型的固定点,Hessian矩阵的确定值表明响应(消除AMX的产量)与对应于最佳条件的最大解一致,Tc = 488摄氏度,T =在33.6摄氏度下,[AMX] = 58.5 mg.L-1和[AC] 1.178 gL-1,此时响应的预测值为y(e)= 100 +/- 3%。 (C)2016 Elsevier B.V.保留所有权利。

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