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首页> 外文期刊>International Journal of Exergy >Exergetic evaluation of a conceptual design for hydrogen production and seawater desalination using an advanced nuclear reactor as energy source
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Exergetic evaluation of a conceptual design for hydrogen production and seawater desalination using an advanced nuclear reactor as energy source

机译:使用先进核反应堆作为能源的制氢和海水淡化概念设计的充分评估

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摘要

In this work, a computational model to develop the conceptual design for hydrogen production and seawater desalination based on a modular nuclear reactor as an energy source is presented. The four-step copper-chlorine (Cu-Cl) process is used to produce hydrogen coupled to the gas turbine modular helium reactor (GT-MHR) nuclear system through a Brayton cycle for the electrical energy generation. A fraction of the thermal energy from the GT-MHR system is used to reach and maintain the temperature requirements in the Cu-Cl process. The rejected heat from the oxy-decomposition reaction is used to desalinate seawater through a multi-stage flash (MSF) process. It is employed a chemical process simulator in order to develop a computational model of the proposed system. The global energy and exergy efficiencies of the proposal are 32.47% and 52.20% respectively, producing 0.2190 kg/s of hydrogen and desalinating 4.9492 kg/s of seawater. It is made an estimate of the cost of hydrogen produced using HEEP (R), resulting in 2.77 $/kgH(2).
机译:在这项工作中,提出了一种计算模型,用于开发基于模块化核反应堆作为能源的制氢和海水淡化的概念设计。四步铜-氯(Cu-Cl)工艺用于通过布雷顿循环产生与燃气轮机模块化氦反应堆(GT-MHR)核系统耦合的氢,以产生电能。来自GT-MHR系统的一小部分热能用于达到和维持Cu-Cl工艺中的温度要求。氧分解反应产生的热量通过多级闪蒸(MSF)工艺用于海水淡化。为了开发所提出系统的计算模型,使用了化学过程模拟器。该提案的全球能源效率和火用效率分别为32.47%和52.20%,产生0.2190 kg / s的氢气和淡化4.9492 kg / s的海水。估计使用HEEP(R)产生的氢气成本,得出2.77 $ / kgH(2)。

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