Multi-electrode-plate magnetic field type electrolytic cell
The utility model provides a multi-electrode-plate magnetic field type electrolytic cell. Relating to the technical field of oxyhydrogen generators, wherein the electrolysis electrode body comprises apair of electrode plates which are arranged in parallel and a plurality of middle electrode plates w...
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Zusammenfassung: | The utility model provides a multi-electrode-plate magnetic field type electrolytic cell. Relating to the technical field of oxyhydrogen generators, wherein the electrolysis electrode body comprises apair of electrode plates which are arranged in parallel and a plurality of middle electrode plates which are arranged in parallel; wherein the plurality of intermediate electrode plates are distributed between the pair of electrode plates in parallel at equal intervals, an electrolyte containing cavity is formed between the electrode plates and each intermediate electrode plate, the electrolyte adopts but is not limited to a potassium hydroxide aqueous solution, and a cooling water containing cavity is arranged inside the shell and outside the electrode plates; the cooling water accommodatingcavity is used for cooling the electrode plate; the cooling water is led out to the circulating water cooling device for cooling; sECURING COOLING EFFECT OF COOLING WATER, meanwhile, the electrolyteis led out to the circulating electrolyte cooling device to be cooled and then circularly sent back to the electrolyte containing cavity, so that the electrolyte in the electrolytic cell is controlledwithin a proper temperature range, hydrogen and oxygen are guaranteed, the corrosion speed of metal materials on the electrode plate is reduced, and the service life of the electrode plate is prolonged.
本申请提供了一种多电极板磁场式电解槽,涉及氢氧发生器技术领域,其中,电解极体包括一对平行排列的电极板和多个平行设置的中间电极板,多个中间电极板在一对电极板之间平行且等间隔分布,电极板和每个中间电极板之间形成电解液容腔,电解液采用但不限于氢氧化钾水溶液,壳体的内部且位于电极板的外部设置有冷却水容腔;由于采用了冷却水容腔对电极板进行冷却,并将冷却水引出至循环水冷却装置进行冷却,保证冷却水的冷却效果,同时将电解液引出到循环电解液冷却装置冷却后再循环送回电解液容腔,进而将电解槽内的电解液控制在适当的温度范围内,保证氢气和氧气的发生,同时减缓电极板上金属材料的腐蚀速度,延长电极板的使用寿命。 |
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