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Relationship of chlorine decay and THMs formation to NOM size

机译:氯气衰变和THMs形成与NOM大小的关系

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Because of increasing concern about balancing health risks for pathogen control and disinfection by-product (DBP) formation in water supplies, utilities are forced to closely examine and optimize their disinfection practices. A better understanding of the relationship between the molecular weights of the natural organic matter (NOM), chlorine decay kinetics and THMs tbrmation can help the utilities to minimize the DBP concentrations, providing healthier and microbially safer water. The authors present data on chlorine decay kinetics and total trihalomethanes (TTHM) formation kinetics and modeling with different molecular weights NOM fractions of Mississippi River water. TTHM modeling results indicated that the TTHM formation in fractionated NOM was a function of chlorine consumption. TTHM yield coefficients ranged from 31 to 42 μg-TTHM/mg-Cl_2. As the molecular weight of the fractions decreased, TTHM yield coefficients increased.
机译:由于越来越担心平衡供水中病原体控制和消毒副产物(DBP)形成的健康风险,因此公用事业被迫密切检查和优化其消毒方法。更好地了解天然有机物(NOM)的分子量,氯的衰减动力学和THMs分解之间的关系可以帮助公用事业部门将DBP浓度降至最低,从而提供更健康和微生物更安全的水。作者介绍了密西西比河水中氯衰减动力学和总三卤甲烷(TTHM)形成动力学的数据,以及具有不同分子量NOM分数的模型。 TTHM建模结果表明,分级NOM中TTHM的形成是氯消耗的函数。 TTHM产率系数为31至42μg-TTHM/ mg-Cl_2。随着级分分子量的降低,TTHM产率系数增加。

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