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Seasonal variation of assimilable organic carbon and its impact to the biostability of drinking water

机译:可吸收有机碳的季节变化及其对饮用水生物稳定性的影响

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摘要

The seasonal effects on the biostability of drinking water were investigated by comparing the seasonal variation of assimilable organic carbon (AOC) in full-scale water treatment process and adsorption of AOC by three filling materials in lab-scale column test. In full-scale, pre-chlorination and ozonation significantly increase AOC_(p17) (Pseudomonas fluorescens P17) and AOC_(nox) (Aquaspirillum sp. NOX), respectively. AOC formation by oxidation could increase with temperature, but the increased AOC could affect the biostability of the following processes more significantly in winter than in warm seasons due to the low biodegradation in the pipes and the processes at low temperature. AOC_(P17) was mainly removed by coagulation-sedimentation process, especially in cold season. Rapid filtration could effectively remove AOC only during warm seasons by primarily biodegradation, but biological activated carbon filtration could remove AOC in all seasons by biodegradation during warm season and by adsorption and bio-regeneration during cold season. The adsorption by granular activated carbon and anthracite showed inverse relationship with water temperature. The advanced treatment can contribute to enhance the biostability in the distribution system by reducing AOC formation potential and helping to maintain stable residual chlorine after post-chlorination.
机译:通过比较全规模水处理过程中同化有机碳(AOC)的季节变化和实验室规模柱试验中三种填充材料对AOC的吸附,研究了季节对饮用水生物稳定性的影响。全面地,预氯化和臭氧化分别显着增加AOC_(p17)(荧光假单胞菌P17)和AOC_(nox)(Aquaspirillum sp。NOX)。氧化形成的AOC随温度升高而增加,但是由于管道中的生物降解程度低和低温过程,与冬季相比,AOC升高对冬季后继过程的生物稳定性影响更大。 AOC_(P17)主要通过混凝沉淀工艺去除,尤其是在寒冷季节。快速过滤只能在温暖的季节通过主要的生物降解有效地去除AOC,而生物活性炭过滤可以在温暖的季节通过温暖的季节进行生物降解以及在寒冷季节通过吸附和生物再生来去除所有季节的AOC。颗粒状活性炭和无烟煤的吸附与水温呈反比关系。先进的处理可通过降低AOC的形成潜力并有助于在后氯化后保持稳定的残留氯来增强分配系统中的生物稳定性。

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