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Development of the once-through hybrid sulfur process for nuclear hydrogen production

机译:开发用于核氢生产的一次性混合硫工艺

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摘要

The Once-through Hybrid Sulfur (Ot-HyS) process, proposed in this work, produces hydrogen using the same Sulfur dioxide Depolarized water Electrolysis (SDE) process found in the original Hybrid Sulfur cycle (HyS). In the process proposed here, the Sulfuric Acid Decomposition (SAD) process in the HyS procedure is replaced with the well-established sulfur combustion process. First, a flow sheet for the Ot-HyS process was developed by referring to existing facilities and to the work done by the Savannah River National Laboratory (SRNL) under their reasonable assumptions. The process was then simulated using Aspen Plus with appropriate thermodynamic models. It was demonstrated that the Ot-HyS process has higher net thermal efficiency, as well as other advantages, over competing benchmark processes. The net thermal efficiency of the Ot-HyS process is 47.1% (based on LHV) and 55.7% (based on HHV) assuming 33.3% thermal-to-electric conversion efficiency of a nuclear power plant with no consideration given to the work for the air separation. Hydrogen produced through the Ot-HyS process would be used as off-peak electricity storage, to relieve the burden of load-following and could help to expand applications of nuclear energy, which is regarded as a 'sustainable development' technology.
机译:这项工作中提出的直流混合硫(Ot-HyS)工艺使用与原始混合硫循环(HyS)中相同的二氧化硫去极化水电解(SDE)工艺产生氢气。在此处提出的过程中,HyS过程中的硫酸分解(SAD)过程被完善的硫燃烧过程所取代。首先,通过参考现有设施以及萨凡纳河国家实验室(SRNL)在合理的假设下所做的工作,制定了Ot-HyS工艺流程图。然后使用具有适当热力学模型的Aspen Plus模拟该过程。结果表明,与竞争基准工艺相比,Ot-HyS工艺具有更高的净热效率以及其他优势。假设核电厂的热电转换效率为33.3%,则Ot-HyS工艺的净热效率为47.1%(基于LHV)和55.7%(基于HHV),不考虑核电厂的工作。空气分离。通过Ot-HyS工艺产生的氢气将被用作非高峰期的电力存储,以减轻负荷负担,并有助于扩大核能的应用,这被认为是“可持续发展”技术。

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