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Accurate determination of low-level chemical oxygen demand using a multistep chemical oxidation digestion process for treating drinking water samples

机译:使用多步化学氧化消化工艺处理饮用水样品准确测定低水平的化学需氧量

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An improved automatic potentiometric titration method for the determination of the low-level chemical oxygen demand (COD) in drinking water was proposed and validated. In this method, a special digestion procedure that combines the advantages of both alkaline potassium permanganate and acidic potassium dichromate digestion mode was adopted. Under optimized operation conditions, the proposed method was successfully applied to determine the COD values of tap water and marketable bottled water samples with satisfactory results. Specifically, the tolerable interference concentration of chloride ions for a drinking sample was confirmed to be up to the level of 90 mg La?’1. Thus, for measuring the low-level COD values of drinking water, the new method offered several technical characteristics that include high degradation efficiency, good precision, less sampling volume (only 10.00 mL), short analysis time (about 25 min required per sample), use of the mercury-free catalysts, a low detection limit (0.11 mg O2 La?’1) and a broad linear range of COD values (0.2a€“25.0 mg O2 La?’1).
机译:提出并验证了一种改进的自动电位滴定法测定饮用水中低水平化学需氧量的方法。在这种方法中,采用了一种兼具碱性高锰酸钾和酸性重铬酸钾消化方式优点的特殊消化程序。在最佳操作条件下,该方法成功应用于自来水和可销售瓶装水样品的COD值测定,结果令人满意。具体而言,已证实饮用样品中氯离子的容许干扰浓度最高为90 mg La?1。因此,为了测量饮用水中的低水平COD值,该新方法提供了多种技术特征,包括降解效率高,精度高,样品量少(仅10.00 mL),分析时间短(每个样品大约需要25分钟)。 ,使用无汞催化剂,低检出限(0.11 mg O2 La?'1)和宽线性范围的COD值(0.2a?25.0 mg O2 La?'1)。

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