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Modelling drinking water chlorination at the Breakpoint: Ⅱ. Calculation of the chlorine and chloramine concentrations along municipal pipe

机译:断点饮用水加氯建模:Ⅱ。计算市政管道中氯和氯胺的浓度

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This study is focused on the determination of added chlorine dose in low ammoniacal concentration contained in distribution pipe of drinking water. The chlorine concentration in disinfected water varies between events of lack and excess that must be regularly controlled. The chlorine transport from the inlet to the outlet of pipe is carried out in turbulent flow where the phenomena of diffusion and convection are in charge to convey chlorine and chloramines formed along the polyvinylchloride pipe. The chlorine decay is principally due to ammonia consumption in the water bulk. The chlorine demand serves to generate inorganic chloramines and the formation of an uncertain intermediate, which helps to destruct them, and the reactions series of formation-destruction are referring to Breakpoint chlorination. The set of presented reactions at Breakpoint chlorination are not clear and the observed rate constants are not similar in the researchers found in the literature. Then, their choices are not easy because they cause large differences between the experimental profiles of disinfectants concentrations taken from literature and the predicted profiles of disinfectant concentrations investigated in the present paper. The set of differential equations are resolved simultaneously by the method of finite differences. Therefore the concentrations of free residual chlorine, ammonia, monochloramine, dichloramine, trichloramine, nitrogen hydroxide and total chlorine are calculated at different points constituted the municipal pipe.
机译:这项研究的重点是确定饮用水分配管中所含低氨浓度的氯的添加量。消毒水中的氯浓度在缺乏和过量事件之间变化,必须定期控制。从管道入口到出口的氯气是以湍流方式进行的,在其中湍流扩散和对流的现象使氯气和氯胺沿聚氯乙烯管道形成。氯的衰减主要是由于大量水中氨的消耗。对氯的需求用于产生无机氯胺和不确定的中间体的形成,这有助于破坏它们,而形成-破坏的反应系列指的是断点氯化。在文献中发现的研究人员中,在断点氯化反应中出现的反应集还不清楚,观察到的速率常数也不相似。然后,它们的选择并不容易,因为它们导致从文献中获得的消毒剂浓度的实验曲线与本文研究的消毒剂浓度的预测曲线之间存在很大差异。这组微分方程是通过有限差分法同时求解的。因此,在构成市政管道的不同点计算了游离残余氯,氨,一氯胺,二氯胺,三氯胺,氢氧化氮和总氯的浓度。

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