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Combined permeable pavement and photocatalytic titanium dioxide oxidation system for urban run-off treatment and disinfection

机译:结合透水路面和光催化二氧化钛氧化系统,用于城市径流处理和消毒

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摘要

Permeable pavement systems (PP5) are frequently associated with high removal efficiencies for water quality parameters. Their effluent can, therefore, be recycled, for example, for sprinkling onto gardens. Nevertheless, some stakeholders fear that potentially pathogenic organisms within the treated run-off could be too high, and therefore they request disinfection before recycling. The aim of this paper is, therefore, to assess the efficiency of a batch flow combined titanium dioxide (TiO_2) and ultraviolet (UV) light photocatalytic reactor in removing water-borne microbial contaminants from the effluent of PPS. Combined TiO_2 and UV photocatalytic reaction times between 80 and 100 min were required for the complete removal of Escherichia coli, total coliforms and faecal Streptococci, which had mean initial counts of 1.5 × 10~7, 4.4 × 10~6 and 6.9 × 10~5 colony-forming units (CFU) per 100 mL, respectively. In comparison, UV disinfection-alone resulted in insignificant microbial removal. Suspended TiO_2 powder was more effective than small immobilised TiO_2 crystals.
机译:渗透性路面系统(PP5)通常与水质参数的高去除效率相关。因此,它们的废液可以回收利用,例如洒到花园上。然而,一些利益相关者担心,经过处理的径流中的潜在致病生物可能太高,因此他们要求在回收之前进行消毒。因此,本文的目的是评估组合式二氧化钛(TiO_2)和紫外线(UV)光催化反应器从PPS废水中去除水生微生物污染物的效率。完全去除大肠杆菌,总大肠菌和粪便链球菌所需的TiO_2和UV光催化反应时间在80至100分钟之间,平均初始计数为1.5×10〜7、4.4×10〜6和6.9×10〜。每100 mL中分别有5个菌落形成单位(CFU)。相比之下,仅使用紫外线消毒就可以去除微不足道的微生物。悬浮的TiO_2粉末比小的固定TiO_2晶体更有效。

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