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SIMULATION OF THM SPECIES IN WATER DISTRIBUTION SYSTEMS

机译:配水系统中THM物种的模拟

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The Safe Drinking Water Act and its Amendments (SDWAA) may potentially limit each individual species of THM compounds in water distribution systems since the health risks associated with these species are not alike. A new approach to characterize and model the kinetics of THM species using nonlinear optimization was introduced in an earlier study. The approach combines site- specific water quality trends with stoichiometric expressions based on an average representative bromine content factor of the source. This paper incorporates the proposed kinetic approach in a full- dynamic water quality transport model. The model is capable of modeling chlorine, total THM, and the four THM species in water distribution systems subjected to different varying loading conditions. The model has been tested and verified by application to a portion of the Abu-Dhabi distribution system in the United Arab Emirates. High levels of bromoform and bromine incorporation factors were reported throughout the system. The quality trends of the bromide-rich desalinated water at the source were transmitted to different locations in the network using the proposed modeling approach. Overall agreement between the modeled and measured concentrations was reported. However, deviations at distant locations from the source indicate the degradation in the bromine incorporation factor under dynamic conditions and an increased tendency of the brominated THM compounds to hydrolyze. The model represents a useful and robust numerical tool to water utilities attempting to verify the SDWAA potential regulations regarding the THM species.
机译:《安全饮用水法》及其修正案(SDWAA)可能会限制配水系统中每种单独的THM化合物物种,因为与这些物种相关的健康风险并不相同。在较早的研究中,引入了使用非线性优化来表征THM物种动力学的新方法。该方法基于特定来源的平均溴含量因子,将特定地点的水质趋势与化学计量表达式结合在一起。本文将提出的动力学方法纳入了全动态水质传输模型中。该模型能够对氯,总THM和配水系统中四种THM种类进行建模,这些配水系统要承受不同的负载条件。该模型已通过应用于阿拉伯联合酋长国的阿布扎比​​分销系统的一部分进行了测试和验证。在整个系统中均报告了高水平的溴仿和溴结合因子。使用建议的建模方法,将源处富含溴化物的淡化水的质量趋势传输到网络中的不同位置。报告了建模浓度和测量浓度之间的总体一致性。但是,远离源的位置的偏离表明在动态条件下溴结合因子的降解以及溴化THM化合物水解的趋势增加。该模型为尝试验证SDWAA关于THM物种的潜在法规的自来水公司提供了有用且健壮的数值工具。

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