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A new approach to the electrochemical decomposition of aqueous hydrogen sulfide solution into sulfur and hydrogen gas

机译:硫化氢水溶液电化学分解为硫和氢气的新方法

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A new approach to the electrochemical decomposition of aqueous hydrogen sulfide solution into elemental sulfur and hydrogen gas has been proposed; this approach can be used to get rid of anode passivation caused by sulfur precipitated on the anode surface. After all sulfides, including S-2, HS and H2S in the anodic compartment, have been mostly converted into polysulfide ions, hydrogen sulfide gas is bubbled through the anolyte until the pH of the solution remains approximately constant. Sulfur is removed from the reaction mixture, which is then returned to the anode compartment where the unreacted sulfides and undecomposed lower polysulfide ions continue to undergo electrolysis into polysulfide ions, and then their decomposition by H2S gas again takes place. This cyclic process will lead to a high current efficiency with which aqueous H2S is electrochemically decomposed into sulfur and hydrogen gas without anode passivation. Results of both equilibrium calculations and experiments show the viability of this new approach. [References: 16]
机译:提出了一种新的方法将硫化氢水溶液电化学分解为元素硫和氢气。该方法可用于消除由阳极表面沉淀的硫引起的阳极钝化。在所有的硫化物(包括阳极室中的S-2,HS和H2S)大部分已转化为多硫化物离子之后,将硫化氢气体鼓泡通过阳极电解液,直到溶液的pH值保持大致恒定为止。从反应混合物中除去硫,然后将其返回到阳极室,在阳极室中未反应的硫化物和未分解的低级多硫化物离子继续进行电解,变成多硫化物离子,然后再次被H2S气体分解。该循环过程将导致高电流效率,通过该电流,H2S水溶液可被电化学分解为硫和氢气而无需阳极钝化。平衡计算和实验的结果都表明了这种新方法的可行性。 [参考:16]

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