首页> 外文会议>NEA No.5308; Information Exchange Meeting; 20031002-03; Argonne,IL(US) >SYNERGISTIC PRODUCTION OF HYDROGEN USING FOSSIL FUELS AND NUCLEAR ENERGY APPLICATION OF NUCLEAR-HEATED MEMBRANE REFORMER
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SYNERGISTIC PRODUCTION OF HYDROGEN USING FOSSIL FUELS AND NUCLEAR ENERGY APPLICATION OF NUCLEAR-HEATED MEMBRANE REFORMER

机译:利用化石燃料协同生产氢气和核能膜重整器的核能应用

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Processes and technologies to produce hydrogen synergistically by the steam reforming reaction using fossil fuels and nuclear heat are reviewed. Formulas of chemical reactions, required heats for reactions, saving of fuel consumption or reduction of carbon dioxide emission, possible processes and other prospects are examined for such fossil fuels as natural gas, petroleum and coal. The "membrane reformer" steam reforming with recirculation of reaction products in a closed loop configuration is considered to be the most advantageous among various synergistic hydrogen production methods. Typical merits of this method are: nuclear heat supply at medium temperature below 600℃, compact plant size and membrane area for hydrogen production, efficient conversion of feed fuel, appreciable reduction of carbon dioxide emission, high purity hydrogen without any additional process, and ease of separating carbon dioxide for future sequestration requirements. With all these benefits, the synergistic production of hydrogen by membrane reformer using fossil fuels and nuclear energy can be an effective solution in this century for the world which has to use fossil fuels any way to some extent while reducing carbon dioxide emission. For both the fossil fuels industry and the nuclear industry, which are under constraint of resource, environment and economy, this production method will be a viable symbiosis strategy for the coming hydrogen economy era.
机译:综述了利用化石燃料和核能通过蒸汽重整反应协同生产氢的方法和技术。对于化石燃料,例如天然气,石油和煤炭,研究了化学反应的公式,反应所需的热量,节省的燃料消耗或减少的二氧化碳排放量,可能的工艺和其他前景。在各种协同制氢方法中,具有反应产物再循环的闭环构型的“膜重整器”蒸汽重整被认为是最有利的。该方法的典型优点是:在低于600℃的中等温度下提供核能供热,紧凑的工厂规模和用于制氢的膜面积,有效转化原料燃料,显着减少二氧化碳排放量,无需任何额外工艺即可获得高纯度氢气以及易于操作分离二氧化碳以满足将来的封存要求。具有所有这些好处,膜化重整器使用化石燃料和核能协同生产氢气可以成为本世纪世界的有效解决方案,因为世界必须在某种程度上以任何方式使用化石燃料,同时减少二氧化碳的排放。对于受资源,环境和经济约束的化石燃料行业和核工业而言,这种生产方法将是未来氢经济时代可行的共生策略。

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