water dispenser
A water dispenser and water container technology, applied in water/sewage treatment, multi-stage water/sewage treatment, oxidized water/sewage treatment, etc., can solve the problems of bacteria and microorganisms exceeding the standard, affecting water quality, odor and odor, etc. Toxic effects
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Embodiment 1
[0062] The water dispenser of this embodiment, see figure 1, including at least one pair of cathode electrodes 22 and anode electrodes 23, an electrolysis power supply and a water container 1 for supplying power to the cathode and anode electrodes, and a water-permeable diaphragm 21 is arranged between the pair of cathode electrodes 22 and anode electrodes 23.
[0063] A window is opened on the side wall of the water container 1 , and the water-permeable diaphragm 21 is fully covered on the window. The water container 1 is provided with a float valve 11 for controlling the water intake. The water container 1 is provided with a water inlet and a water outlet, and the water inlet and the water outlet are all provided with filter elements 12 . In use, the cathode electrode 22 is in contact with the water in the water container 1 , and the anode electrode 23 is in contact with the permeated water in the water container 1 through the water-permeable membrane 21 .
[0064] In this...
Embodiment 2
[0087] The water dispenser of this embodiment is an improvement on the basis of Embodiment 1. The difference from Embodiment 1 is that in this embodiment, the water container 1 is filled with tap water, and the municipal tap water in Dalian, China is still taken as an example. , the electrolytic power supply adopts an alternating pulse power supply whose forward voltage level is greater than the reverse voltage level, the average voltage is 15V, the water-permeable diaphragm 21 adopts a microfiltration membrane, and the distance between the microfiltration membrane and the anode electrode 23 located on the outside of the membrane δ is 15 mm.
Embodiment 3
[0089] The water dispenser of this embodiment is an improvement on the basis of Embodiment 1. The difference from Embodiment 1 is that in this embodiment, there are several through holes on the positive electrode 23 located outside the water-permeable diaphragm 21, and the water-permeable diaphragm 21 using nanofiltration membranes.
[0090] In this embodiment, the municipal tap water in Dalian, China is still taken as an example, and the distance δ between the water-permeable diaphragm 21 and the anode electrode 23 located outside the diaphragm is 0 mm and 10 mm, respectively.
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