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Automatic waterworks quality monitoring system

机译:自动水厂质量监控系统

摘要

It include: a water collecting means the present invention provides automatic water factory's network (WSN) water quality monitor, the corresponding water factory's pipe connection and collecting sample water with water factory's network are measured; One pre-processing devices connecting with water collecting means accommodate simultaneously preparatory processing sample water, are collected by water collecting means; The device of one culture connecting with pre-processing devices cultivates sample water, passes through the pre-processing devices preparatory processing for a predetermined period of time; The parenchyma measuring tool connecting with the device of pre-processing devices and culture, measurement include the quantity of the parenchyma in sample water, and pre-processing devices and quantity preparatory processing by parenchyma pass through the device farming of culture in sample water; One control means, with water collecting means, pre-processing devices, culture device, and parenchyma measuring tool electrically couples, control sample water with flow to water collecting means, pre-processing devices, culture device, and parenchyma measuring tool, and the store files data measured by parenchyma measuring tool in real time. By a difference, the parenchyma for the sample water being collected first quantity and obtain sample water by an incubation step the quantity of parenchyma between, the concentration of assimilable organic carbon (AOC) is identified. Then, on the basis of the concentration of AOC, the stabilization of the microorganism of water is ensured that, secondary contamination can be controlled by chlorine means.
机译:它包括:一种集水装置,本发明提供了自动水厂网络(WSN)水质监测器,对相应的水厂的管道连接进行了测量,并利用水厂的网络收集了样品水。与集水装置连接的一台预处理装置同时容纳准备处理的样品水,由集水装置收集。一种与培养设备相连的培养设备,用于培养样品水,经过预处理设备预定的时间;薄壁组织测量工具与预处理装置和培养装置相连,测量包括样品水中薄壁组织的数量,薄壁组织的预处理装置和薄壁组织通过样品水中的培养进行的数量准备处理。一种控制装置,其具有集水装置,预处理装置,培养装置和薄壁组织测量工具,以电耦合方式控制样品水流向集水装置,预处理装置,培养装置和薄壁组织测量工具以及商店存档由薄壁组织测量工具实时测量的数据。通过区别,首先收集样品水的薄壁组织,并通过温育步骤获得薄壁组织之间的可吸收有机碳(AOC)浓度。然后,基于AOC的浓度,确保水微生物的稳定性,从而可以通过氯装置控制二次污染。

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