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Effect of turbidity on water disinfection by chlorination with the emphasis on humic acids and chalk

机译:浊度对氯化水消毒对腐殖酸和粉笔的影响

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Chlorine is globally the most widely used chemical for water disinfection. Whereas disinfection efficiency is well known to depend on water pH and temperature, the effect of turbidity is less well studied. Although turbidity is measured online in most drinking water works and most countries where regulations exist have set limits of 1 NTU for water leaving the works, the composition of turbidity is typically unknown. Given the heterogeneous nature of substances contributing to turbidity, the aim of this work was to study the effect of selected compounds on chlorination efficacy. The effect of humic acids and chalk on the inactivation of the indicator bacteria Escherichia coli and Enterococcus faecalis was assessed at neutral pH at different turbidity levels using both plate counting and flow cytometry in combination with membrane integrity staining. For humic acids, a turbidity of 1 NTU (corresponding to 2 mg L-1) was identified as a critical threshold, which when exceeded was found to have a negative impact on chlorine disinfection. Chalk, on the other hand, had no measurable impact up to 5 NTU. The observation applied to both bacterial species with identical conclusions from the two diagnostic methods. Results corroborate that different turbidity causing substances affect chlorination efficiency to very different extents with chlorine demand by organic material probably being the most important determinant. In the case of turbidities 1 NTU, turbidity measurement benefits from the consideration of the organic content as mere NTU values do not allow predicting an impact on chlorination efficiency.[GRAPHICS].
机译:氯是全球最广泛使用的水消毒化学品。然而,众所周知,消毒效率依赖于水pH和温度,浊度的效果较小。尽管在大多数饮用水工作中在线测量浊度,但大多数国家的规定都有留下留下的水的限制,但浊度的组成通常是未知的。鉴于有助于浊度的物质的异质性质,这项工作的目的是研究所选化合物对氯化功效的影响。使用两个板计数和流式细胞术与膜完整性染色的不同浊度水平在不同浊度水平的中性pH下评估腐殖酸和粉笔对指标细菌大肠杆菌和肠球菌粪便的影响。对于腐殖酸,将1nTU的浊度(对应于2mg L-1)鉴定为临界阈值,当发现时被发现对氯消毒产生负面影响。另一方面,粉笔对5 NTU没有可测量的影响。观察到两种细菌种类,两种诊断方法的结论具有相同的结论。结果证实了不同浊度导致物质影响氯化效率与有机材料的氯需求的氯化效率可能是最重要的决定因素。在浊度> 1 NTU的情况下,从考虑有机含量的浊度测量益处,因为只有NTU值,不允许预测氯化效率的影响。[图形]。

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