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首页> 外文期刊>Monatshefte fur Chemie >The sulfide-manganese dioxide battery and the electrochemical energy sources in the hypothesis of Wachtershauser concerning the origin of life [German]
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The sulfide-manganese dioxide battery and the electrochemical energy sources in the hypothesis of Wachtershauser concerning the origin of life [German]

机译:Wachtershauser假说中关于生命起源的硫化物-二氧化锰电池和电化学能源[德语]

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Recently we could show that elementary sulfur is an excellent cathode material at room temperature in zinc-sulfur batteries as it is reduced rapidly in aqueous solutions on the surface of iron sulfide electrodes [1]. In this context, the electrochemical reaction of solid elementary sulfur on iron sulfide surfaces in sea water was discussed which could have been one of the energy sources playing a role in the development of life. In the theory of Wachtershauser, the first energy source of life is the formation of pyrite from iron sulfide and hydrogen sulfide, and the first step is the reduction of carbon dioxide on iron sulfide surfaces. We could show that sulfide ions are oxidized rapidly to disulfide ions on the surface of iron sulfide. The capacity and the specific energy of a sulfide-manganese dioxide battery with an open cell voltage of about 0.8 V are comparable to those of commercially available zinc-manganese dioxide batteries. An electrochemical cell where sulfur is reduced on the surface of an iron sulfide cathode and sulfide ions are oxidized on the surface of an iron sulfide anode affords an open-cell voltage of about 0.4 V at 95 degreesC. [References: 13]
机译:最近,我们可以证明锌硫电池在室温下单质硫是一种极好的阴极材料,因为在硫化铁电极表面上的水溶液中硫会迅速还原[1]。在此背景下,讨论了固态元素硫在海水中硫化铁表面上的电化学反应,这可能是在生命发展中发挥作用的能源之一。在Wachtershauser理论中,生命的第一个能源是由硫化铁和硫化氢形成黄铁矿,而第一步是在硫化铁表面上还原二氧化碳。我们可以证明,硫化物离子在硫化铁的表面迅速被氧化为二硫化物离子。具有约0.8V的开孔电压的硫化物-二氧化锰电池的容量和比能与可商购的锌-二氧化锰电池的容量和比能量相当。在硫化铁的阴极表面上还原了硫且在硫化铁的阳极表面上氧化了硫化物离子的电化学电池在95℃下提供约0.4 V的开孔电压。 [参考:13]

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