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Decomposition of hydrogen sulfide in non-thermal plasma aided by supported CdS and ZnS semiconductors

机译:负载型CdS和ZnS半导体辅助的非热等离子体中硫化氢的分解

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摘要

The decomposition of hydrogen sulfide (H2S) has attracted increasing attention because it produces hydrogen from a hazardous waste gas. However, the thermal equilibrium limitation in the decomposition gives rise to low H2S conversion and high energy costs for hydrogen production. In the present work, we demonstrate that alumina-supported CdS and ZnS significantly enhanced the conversion in the non-thermal plasma-induced decomposition of H2S, achieving full conversion at reasonably low energy consumption. It appears that the enhancement might be attributed to the conversion of H2S by its reaction with h~+ and e~ on the surface of the CdS and ZnS semiconductors, which are generated by the strong electric field and plasma-induced photons.
机译:硫化氢(H2S)的分解吸引了越来越多的关注,因为它会从有害废气中产生氢气。然而,分解中的热平衡限制导致低的H 2 S转化率和制氢的高能源成本。在目前的工作中,我们证明了氧化铝负载的CdS和ZnS显着提高了非热等离子体诱导的H2S分解中的转化率,在合理的低能耗下实现了完全转化。似乎这种增强可能归因于H2S与CdS和ZnS半导体表面上的h〜+和e〜的反应,这是由强电场和等离子体诱导的光子产生的。

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