首页> 外文会议>3rd World Water Congress of the International Water Association Apr 7-12, 2002 Melbourne, Australia >Determination of chlorine demand in water and wastewater chlorination by oxidation-reduction potential
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Determination of chlorine demand in water and wastewater chlorination by oxidation-reduction potential

机译:氧化还原电位法测定水和废水氯化中的氯需求量

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Chlorination is the most practical way for the destruction of pathogenic and other harmful organisms in water and wastewater treatment plants. However, highly erratic concentrations of ammonia is contained in most water and wastewater treatment plants, which will react to chlorine and seriously alter the required chlorine dosages in the control of chlorination. The conventional control of chlorine dosage is widely practical throughout the batch breakpoint chlorination test in the laboratory, which is not feasible for the requirement of real-time regulation of the chlorine demands. In this study, a simple automatic oxidation-reduction potential (ORP) titration system was developed for on-line determination of the chlorine demand. The experimental results showed that different decrease tendencies on ORP slope profiles were found to correlate to the ammonia concentrations in samples. In addition, the required chlorine demands were found to correlate to ammonia concentrations with a linear relationship. The ORP control strategy was, therefore, developed for on-line determination of the chlorine demands. Applying this ORP control strategy, the required chlorine demands were precisely predicted, and good disinfection efficiency was obtained in the wastewater chlorination experiments.
机译:氯化是销毁水和废水处理厂中病原体和其他有害生物的最实用方法。但是,大多数水处理厂和废水处理厂中氨的浓度都不稳定,它们会与氯发生反应,并严重改变氯化控制中所需的氯剂量。在实验室的整个间歇断点氯化测试中,常规的氯剂量控制是广泛可行的,这对于实时调节氯需求量是不可行的。在这项研究中,开发了一种简单的自动氧化还原电位(ORP)滴定系统,用于在线确定氯的需求量。实验结果表明,ORP斜率曲线的下降趋势不同,与样品中的氨浓度相关。另外,发现所需的氯需求量与氨浓度呈线性关系。因此,开发了ORP控制策略以在线确定氯的需求量。应用这种ORP控制策略,可以精确预测所需的氯需求量,并且在废水氯化实验中获得了良好的消毒效率。

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