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Chlor-Alkali Electrolysis

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Chlor-Alkali Electrolysis ( chlor-alkali-electrolysis )

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BiTAC 09 BiTAC element BiTAC element Hoses Celllrrack g Tie rods Tie rod Header Fine anode mesh with smooth surface The filter press technology utilized in the BiTAC series has specific advantages - Low sealing force required for gaskets, no bolts needed - Fast remembraning of complete electrolyzer - Smaller maintenance area required - Lower power consumption through joining anode and cathode compartments by explosion bonding The semi-fine anode mesh allows smoother gas release from the anode mesh surface and contributes to voltage reduction. A superior current distribution as well as less voltage drop over the metallic structure are the result. The new “no-dent spot welding” technique ensures a completely flat face over the whole anode mesh surface – for uniform contact with the ion-exchange membrane and an extended membrane lifespan. Downcomer The downcomer utilizes the gas lift effect to create a high degree of internal brine circula- tion. This ensures an ideal distribution with uniform density and temperature within the anode compartment. The cathode compartment has no downcomer as caustic soda and hydro- gen are easily separated and the difference between the inlet and outlet concentrations of the caustic soda are very small. 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 produced at the anodes, sodium hydroxide and hydrogen at the cathodes. The overall reaction is as follows: 2NaCl+2H2OgCl2+2NaOH+H2 g

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Chlor-Alkali Electrolysis

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