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BM2.7 13 Rolls Single-element Single-element Cell rack Hoses g TTieierorodds g Bussbarr Shoulder and inner collecting channel Brine and chlorine (anode side) as well as caustic soda and hydrogen (cathode side) are continuously transported from feed pipes at the bottom to the upper end of the compartments. This ensures that the mem- brane works optimally. Gas and liquid are separated completely in the collecting channel, ensuring two homo- geneous outlet phases and minimizing internal differential pressure fluctuations. This enhances membrane life even further. For maximum safety, both compartments remain flooded even in stand-by mode so hydrogen and chlorine gases cannot meet. Downcomer The downcomer has a special V-shape and utilizes the gas lift effect to create a high degree of internal brine circulation. This ensures an ideal distribution with uniform density and temperature within the anode compartment. The cathode compartment has no downcomer as caustic soda and hydrogen are easily separated and the difference between the inlet and outlet concentrations of the caustic soda are very small. - Roller suspension of each single-element ensures precise adjustment of contact pressure - Hard, long-wearing PTFE gaskets - Assembly and testing of elements in clean area outside cell house - Assembled elements can be stored for many months - Fast and simple replacement of elements with fully pre-tested elements - Only one type of element in one electrolyzer (no special end elements required) Header Smooth, safe operation BM2.7v6 benefits - Unique sealing and hose system, 100 % leakproof up to 4.7 barg (operating pressure: below 0.5 barg) By electrolyzing an aqueous solution of sodium chloride, the electrolyzer produces gaseous chlorine and sodium hydroxide as well as hydrogen, the principal by-product. Chlorine is pro- duced at the anodes and sodium hydroxide and hydrogen at the cathodes. The overall reaction is as follows: 2NaCl+2H2OgCl2+2NaOH+H2PDF Image | Chlor-Alkali Electrolysis
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