首页> 外文会议>2nd international topical meeting on safety and technology of nuclear hydrogen production, control, and management 2010 >INTEGRATED OPERATION OF THE INL HYTEST SYSTEM AND HIGH-TEMPERATURE STEAM ELECTROLYSIS FOR SYNTHETIC NATURAL GAS PRODUCTION
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INTEGRATED OPERATION OF THE INL HYTEST SYSTEM AND HIGH-TEMPERATURE STEAM ELECTROLYSIS FOR SYNTHETIC NATURAL GAS PRODUCTION

机译:用于合成天然气生产的INL水解系统和高温蒸汽电解的集成操作

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The primary feedstock for synthetic fuel production is syngas, a mixture of carbon monoxide and hydrogen. Current hydrogen production technologies rely upon fossil fuels and produce significant quantities of greenhouse gases as a byproduct. This is not a sustainable means of satisfying future hydrogen demands, given the current projections for conventional world oil production and future targets for carbon emissions. For the past six years, the Idaho National Laboratory has been investigating the use of high-temperature steam electrolysis (HTSE) to produce the hydrogen feedstock required for synthetic fuel production. High-temperature electrolysis water-splitting technology, combined with non-carbon-emitting energy sources, can provide a sustainable, environmentally-friendly means of large-scale hydrogen production. Additionally, laboratory facilities are being developed at the INL for testing hybrid energy systems composed of several tightly-coupled chemical processes (HYTEST program). The first such test involved the coupling of HTSE, CO_2 separation membrane, reverse shift reaction, and methanation reaction to demonstrate synthetic natural gas production from a feedstock of water and either CO or a simulated flue gas containing CO_2- This paper will introduce the initial HTSE and HYTEST testing facilities, overall coupling of the technologies, testing results, and future plans.
机译:合成燃料生产的主要原料是合成气,即一氧化碳和氢气的混合物。当前的氢气生产技术依赖于化石燃料并产生大量的副产品温室气体。鉴于当前对常规世界石油生产的当前预测以及碳排放的未来目标,这不是满足未来氢需求的可持续手段。在过去的六年中,爱达荷州国家实验室一直在研究使用高温蒸汽电解(HTSE)来生产合成燃料生产所需的氢气原料。高温电解水分解技术与不排放碳的能源相结合,可以为大规模制氢提供可持续的,环境友好的方式。此外,INL正在开发实验室设施,以测试由几种紧密耦合的化学过程组成的混合能源系统(HYTEST计划)。第一个此类测试涉及HTSE,CO_2分离膜,逆向反应和甲烷化反应的偶联,以证明由水和一氧化碳或含CO_2的模拟烟道气原料生产合成天然气的方法。本文将介绍最初的HTSE和HYTEST测试设施,技术的整体耦合,测试结果和未来计划。

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