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Optimization of Adiponitrile Hydrolysis in Subcritical Water Using an Orthogonal Array Design

机译:正交阵列设计优化亚临界水中己二腈的水解

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A study of the hydrolysis of adiponitrile (ADN) was performed in subcritical water to research the dependence on experimental conditions. An L25(56) orthogonal array design (OAD) with six factors at five levels using statistical analysis was employed to optimize the experimental conditions for each product in which the interactions between the variables were temporarily neglected. The six factors were adiponitrile concentration (ADN c, wt%), temperature (T ), time (t h), percentage of additives (reactant/additive, wt/wt%), additives (A), and pressure (p, MPa). The effects of these parameters were investigated using the analysis of variance (ANOVA) to determine the relationship between experimental conditions and yield levels of different products. The results showed that (ADN c) and T had a significant influence on the yields of adipamide, adipamic acid, and adipic acid at p <0.05. Time was the statistically significant factor for the yield of 5-cyanovalermic acid at p < 0.05 and (ADN c) was the significant factor for the yield of 5-cyanovaleramide at p < 0.1. Finally, five supplementary experiments were conducted under optimized conditions predicted by the Taguchi method; the results showed that the yield obtained of each product was no lower than that of the highest in the 25 experiments. Carbon balance was calculated to demonstrate the validity of the experimental technique and the reliability of the results. Based on the experimental results, a possible reaction mechanism was proposed.
机译:在亚临界水中进行了己二腈(ADN)水解的研究,以研究对实验条件的依赖性。 L25(56)正交数组设计(OAD)具有五个使用统计分析的五个级别的因素,用于优化每种产品的实验条件,其中暂时忽略了变量之间的相互作用。六个因素是己二腈浓度(ADN c,wt%),温度(T),时间(th),添加剂的百分比(反应物/添加剂,wt / wt%),添加剂(A)和压力(p,MPa) 。使用方差分析(ANOVA)研究了这些参数的影响,以确定实验条件与不同产品的产量水平之间的关系。结果表明(ADN c)和T对己二酰胺,己二酸和己二酸的收率有显着影响,p <0.05。时间是p <0.05时5-氰基戊二酸产率的统计显着性因子,而(ADN c)是p <0.1时5-氰基戊酰胺的产率显着性因子。最后,在Taguchi方法预测的最佳条件下进行了五个补充实验。结果表明,每种产品的收率均不低于25个实验中的最高收率。计算碳平衡以证明实验技术的有效性和结果的可靠性。根据实验结果,提出了可能的反应机理。

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