A semi-submerged algae removal device capable of generating flocculants
A semi-submerged and flocculant technology, applied in the field of water treatment, can solve the problems of power consumption, high cost and limited application, and achieve the effects of easy assembly, simple operation and simple structure
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specific Embodiment approach 1
[0025] Specific implementation mode one: see figure 1 Describe this embodiment, a semi-submerged algae removal device capable of generating flocculants described in this embodiment, which includes two anode plates 1, an air cathode 2, two cathode and anode spacers 3, and one cathode spacer 4 and float 5;
[0026] The air cathode 2 is a box with an upper opening structure; the cathode spacer 4 is a mesh structure;
[0027] The cathode spacer 4 is vertically arranged in the air cathode 2, and there is a gap between the bottom of the cathode spacer 4 and the bottom surface of the air cathode 2 to form a U-shaped air chamber 6,
[0028] Two anode plates 1 are arranged symmetrically on both sides of the air cathode 2, and a channel 7 is formed between each anode plate 1 and the air cathode 2,
[0029] A cathode and anode partition plate 3 is vertically arranged in each channel 7,
[0030] A load 8 is connected in series between the side wall of the air cathode 2 and the adjacent...
specific Embodiment approach 2
[0037] Specific implementation mode two: see figure 1 This embodiment is described. The difference between this embodiment and the semi-submerged algae removal device capable of generating flocculants described in the first embodiment is that the anode plate 1 and the air cathode 2 are arranged in parallel.
specific Embodiment approach 3
[0038] Embodiment 3: The difference between this embodiment and the semi-submerged algae removal device capable of generating flocculants described in Embodiment 1 is that the algae removal device is fixed by clamping, binding or bolting. Fix two anode plates 1, air cathode 2, two cathode and anode spacers 3 and one cathode spacer 4.
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