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Predictability by Box-Behnken model for carbaryl adsorption by soils of Indian origin

机译:基于Box-Behnken模型的印度源性土壤对西维因吸附的可预测性

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This study was undertaken to investigate the adsorption capacity of carbaryl on four Indian soils with different physiochemical properties. A batch adsorption study was carried out in order to evaluate the maximum adsorption capacity of carbaryl using a Response Surface Methodology (RSM). The effects of operating parameter such as initial carbaryl concentration (1-20 mgL~(-1)), adsorbent dosage (0.5-6 g) and contact time (10-180 min) were examined. The proposed quadratic model for Box-Behnken design fits very well to the experimental data because it may be used to navigate design space according to ANOVA results. The regression co-efficient (R~2) of the models developed and the results of validation experiments conducted at optimal conditions strongly suggests that the predicted values are in good agreement with experimental results. Contour and response surface plots are used to determine the interactions effects of main factors and optimal conditions of the process. The experiment can be utilized as a guideline for better understanding of carbaryl adsorption onto soil under different operating conditions. The results show that the forest soil is most efficient in binding carbaryl (Sevin) than the other types of soil tested.
机译:进行了这项研究以调查西维因在四种具有不同理化特性的印度土壤上的吸附能力。进行了分批吸附研究,以便使用响应表面方法(RSM)评估甲萘威的最大吸附容量。研究了操作参数的影响,如初始西维因浓度(1-20 mgL〜(-1)),吸附剂用量(0.5-6 g)和接触时间(10-180分钟)。针对Box-Behnken设计提出的二次模型非常适合实验数据,因为它可以根据ANOVA结果用于导航设计空间。建立的模型的回归系数(R〜2)和在最佳条件下进行的验证实验结果强烈表明,预测值与实验结果吻合良好。等高线和响应面图用于确定主要因素和最佳工艺条件的相互作用。该实验可作为指导,以更好地了解在不同操作条件下西芳基在土壤上的吸附情况。结果表明,与其他类型的土壤相比,森林土壤最有效的结合西维因(Sevin)。

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