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Predictive Model for the Surface Tension Changes of Chemical Solutions Used in a Clean-in-Place System

机译:清理系统中使用的化学溶液表面张力变化的预测模型

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摘要

The paper presents the results concerning the influence of concentration and storage time on the equilibrium surface tension of chemical solutions used in a clean-in place (CIP) system. Standard cleaning solutions (prepared under laboratory conditions) and industrial solutions (used in a CIP system in a brewery) were subjected to tests. Solutions from the brewery were collected after being regenerated and changes in equilibrium surface tension were studied during a three-month storage. In the statistical analysis of the solutions, standard deviations were determined in relation to the averages, and a Tukey’s multiple comparison test was performed to determine the effect of dependent variables on the surface tension of solutions. From the results, a nonlinear regression model was developed that provided a mathematical description of the kinetics of changes in the wetting properties of the solutions during their storage. A linear–logarithmic function was adopted to describe the regeneration. Numerical calculations were performed based on the nonlinear least squares method using the Gauss–Newton algorithm. The adequacy of the regression models with respect to the empirical data was verified by the coefficient of determination R and the standard error of estimation Se. The results showed that as the concentration of the substance in the cleaning solution increased, its wetting properties decreased. The same effect was observed with increased storage time as the greatest changes occurred during the first eight weeks. The study also showed that the use of substances to stabilize the cleaning solutions prevented deterioration of their wetting properties, regardless of the concentration of the active substance or storage time.
机译:本文介绍了浓度和储存时间对清洁地(CIP)系统中使用的化学溶液平衡表面张力的影响的结果。进行标准清洁溶液(在实验室条件下制备)和工业溶液(用于啤酒厂中的CIP系统)进行测试。在再生后收集来自啤酒厂的解决方案,并且在三个月的储存期间研究了平衡表面张力的变化。在对解决方案的统计分析中,确定与平均值有关的标准偏差,并进行Tukey的多个比较测试以确定取决于变量对溶液表面张力的影响。从结果中,开发了非线性回归模型,其提供了在其储存期间溶液润湿性质的变化动力学的数学描述。采用线性对数函数来描述再生。基于使用Gauss-Newton算法的非线性最小二乘法进行数值计算。通过确定系数R和估计标准误差验证了回归模型相对于经验数据的充分性。结果表明,随着清洁溶液中物质的浓度增加,其润湿性能降低。随着在前八周内最大的变化发生的储存时间增加,观察到相同的效果。该研究还表明,无论活性物质或储存时间的浓度如何,使用物质稳定清洁溶液的使用阻止了它们的润湿性能。

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