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Implementation of an automatic and miniature on-line multi-parameter water quality monitoring system and experimental determination of chemical oxygen demand and ammonia-nitrogen

机译:自动和微型在线多参数水质监测系统的实现以及化学需氧量和氨氮的实验测定

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摘要

An automatic, miniature and multi-parameter on-line water quality monitoring system based on a micro-spectrometer is designed and implemented. The system is integrated with the flow-batch analysis and spectrophotometric detection method. The effectiveness of the system is tested by measuring chemical oxygen demand (COD) and ammonia-nitrogen in water. The results show that the modified system provides a cost-effective, sensitive, reproducible and reliable way to measure COD and ammonia-nitrogen in water samples with automatic operation and low toxic chemical consumption. In addition, the experiment results show that the relative error of the system is less than 10%, the limit of detection is 2 mg/L COD and 0.032 mg/L ammonia-nitrogen, respectively, and the relative standard deviation was 6.6% at 15.0 mg/L COD (n = 7) and 5.0% at 0.300 mg/L ammonia-nitrogen (n = 7). Results from the newly designed system are consistent with the data collected through the Chinese national standard analysis methods.
机译:设计并实现了一种基于微谱仪的微型自动多参数在线水质监测系统。该系统集成了分流分析和分光光度检测方法。通过测量水中的化学需氧量(COD)和氨氮来测试该系统的有效性。结果表明,改进的系统提供了一种经济高效,灵敏,可重现且可靠的方法,可自动操作且毒性化学药品消耗低,可用于测量水中的COD和氨氮。另外,实验结果表明,该系统的相对误差小于10%,检出限分别为2 mg / L COD和0.032 mg / L氨氮,在10℃时相对标准偏差为6.6%。 15.0 mg / L的COD(n = 7)和5.0%的0.300 mg / L的氨氮(n = 7)。新设计系统的结果与通过中国国家标准分析方法收集的数据一致。

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