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Chemical pretreatment of combined sewer overflows for improved UV disinfection

机译:化学预处理联合下水道溢流以改善紫外线消毒

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摘要

The aim of this research was to better understand chemical pre-treatment of combined sewer overflows (CSOs) for subsequent ultraviolet (UV) disinfection. Approximately 200 jar tests were completed. Alum (Al-2(SO4)(3)center dot 12H(2)O) resulted in a higher UV light transmission (UVT), and equivalent total suspended solids (TSS) removal, than ferric chloride (FeCl3). An alum dose of 20 mg/L increased the UVT of the raw CSO from 30 to 60% after settling. The addition of 100 mg/L of alum maximized UVT reaching approximately 85%. Flocculation did not increase UVT. However, it did improve the removal of TSS. Cationic polymers worked quickly compared with metal coagulants, but only reached a UVT of 60%. A high positive charge density on the polymer improved the removal of turbidity when compared with low charge, but did not affect UVT. If the goal is to maximise UVT, a very high alum dose may be preferred. If the goal is to minimize coagulant dose with moderate UV performance, cationic polymer at approximately 3 mg/L is recommended.
机译:这项研究的目的是为了更好地了解污水处理厂溢流口(CSO)的化学预处理,以进行后续的紫外线(UV)消毒。大约完成了200个罐子测试。明矾(Al-2(SO4)(3)中心点12H(2)O)比氯化三铁(FeCl3)产生更高的紫外线透射率(UVT)和等效的总悬浮固体(TSS)去除率。沉淀后,明矾剂量为20 mg / L可使原始CSO的UVT从30%增加到60%。添加100 mg / L的明矾可使UVT达到约85%。絮凝不增加UVT。但是,它确实改善了TSS的清除。与金属凝结剂相比,阳离子聚合物的工作速度很快,但UVT仅为60%。与低电荷相比,聚合物上的高正电荷密度可改善浊度的去除,但不会影响UVT。如果目标是使UVT最大化,则最好使用很高的明矾剂量。如果目标是在具有适度的紫外线性能的情况下最小化凝结剂剂量,则建议使用约3 mg / L的阳离子聚合物。

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