An adaptive monitoring device for water quality pollutants in urban water network
A monitoring device and technology for pollutants, applied in the field of self-adaptive monitoring devices for water quality pollutants in urban water networks, can solve the problems that affect the detection accuracy and sensitivity of electrodes, impurities are easily adhered to the surface of electrodes, and it is inconvenient to replace electrodes quickly. Improve maintenance efficiency, reduce downhole depth, and ensure smooth effect
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Embodiment 1
[0032] Such as Figures 1 to 7 As shown, the city water mesh water quality contaminant adaptive monitoring device includes the body 1 and the mount 11; the bottom of the body 1 slides to connect the rod 12, and there is a rack 13 in the top of the probe 12; The body 1 is rotated to the rack 13 corresponding to the rack 13, and the gear 14 is driven by a deceleration motor, and the gear 14 is engaged with the rack 13; the rod 12 is adjacent to the lower end position, one set of electrode 15 Each electrode 15 has a lead connection detection unit; the rod 12 is fixed from the side of the electrode 15, and the graphite rod 16 is connected to the detection unit by a wire; when working, the prior art When the monitoring device is mounted in the inner wall of the well, when the rod 12 is inserted into the bottom of the water pipe, the upper electrode 15 is detected in real time, and then the water flow information and sewage in the water supply are generated after the detection unit is pr...
Embodiment 2
[0041] Such as Figure 8 As shown, comparative examples, the rod 12 is made of hot melt plastic, and the rod 12 is adjacent to the lower end, and a set of annular grooves is disposed, and a heating ring 34 is provided in the annular groove; the electrode 15 is placed adjacent adjacent On the rod 12 between the annular grooves, and the electrode 15 extends outside the rod 12; in the probe rod 12, the secondary sliding hole 35, the secondary sliding hole 35 is slidably connected to the electrode 15. 36. The conductive spring 37 is fixed between the conductive rod 36 and the secondary sliding hole 35 hole bottom, and the conductive spring 37 is connected by a wire; the conductive rod 36 has a diameter of the insulator 38, which is less than the conductive rod 36, and electrode 15 at the bottom of the conductive rod 36. On the other side, the secondary sliding hole 35 is inherently secured, and the groove having a fitting with the insulator 38 is opened at the top of the static contact...
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