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Analysis of the Kinetics of Swimming Pool Water Reaction in Analytical Device Reproducing Its Circulation on a Small Scale

机译:分析装置中游泳池水反应动力学分析其小规模循环的分析装置

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摘要

The most common cause of diseases in swimming pools is the lack of sanitary control of water quality; water may contain microbiological and chemical contaminants. Among the people most at risk of infection are children, pregnant women, and immunocompromised people. The origin of the problem is a need to develop a system that can predict the formation of chlorine water disinfection by-products, such as trihalomethanes (THMs). THMs are volatile organic compounds from the group of alkyl halides, carcinogenic, mutagenic, teratogenic, and bioaccumulating. Long-term exposure, even to low concentrations of THM in water and air, may result in damage to the liver, kidneys, thyroid gland, or nervous system. This article focuses on analysis of the kinetics of swimming pool water reaction in analytical device reproducing its circulation on a small scale. The designed and constructed analytical device is based on the SIMATIC S7-1200 PLC driver of SIEMENS Company. The HMI KPT panel of SIEMENS Company enables monitoring the process and control individual elements of device. Value of the reaction rate constant of free chlorine decomposition gives us qualitative information about water quality, it is also strictly connected to the kinetics of the reaction. Based on the experiment results, the value of reaction rate constant was determined as a linear change of the natural logarithm of free chlorine concentration over time. The experimental value of activation energy based on the directional coefficient is equal to 76.0 [kJ×mol−1]. These results indicate that changing water temperature does not cause any changes in the reaction rate, while it still affects the value of the reaction rate constant. Using the analytical device, it is possible to constantly monitor the values of reaction rate constant and activation energy, which can be used to develop a new way to assess pool water quality.
机译:游泳池中最常见的疾病原因是缺乏对水质的卫生控制;水可能含有微生物和化学污染物。患有感染风险的人中是儿童,孕妇和免疫功能性的人。问题的起源是一种能够开发一种能够预测氯含氯含氯的系统,例如三卤代甲烷(THM)。来自来自烷基卤化物,致癌,致突变,致畸和生物累计的挥发性有机化合物是挥发性有机化合物。长期暴露,甚至在水和空气中低浓度的THM,可能导致肝脏,肾脏,甲状腺或神经系统损坏。本文侧重于分析分析装置中游泳池水反应动力学的分析,在小规模上再现循环。设计和构造的分析装置基于Siemens公司的SIMATIC S7-1200 PLC驾驶员。西门子公司的HMI KPT面板可以监控过程和控制设备的各个元素。自由氯分解的反应速率常数的值为我们有关水质的定性信息,它也严格连接到反应的动力学。基于实验结果,反应速率常数的值被确定为自由对数随时间的自由对数的线性变化。基于方向系数的激活能量的实验值等于76.0 [kj×mol-1]。这些结果表明,改变水温不会导致反应速率的任何变化,而它仍然影响反应速率常数的值。使用分析装置,可以不断监测反应速率恒定和激活能量的值,这可以用于开发一种评估池水质量的新方法。

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