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首页> 外文期刊>Journal of power sources >Two-dimensional Simulation And Critical Efficiency Analysis Of High-temperature Steam Electrolysis System For Hydrogen Production
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Two-dimensional Simulation And Critical Efficiency Analysis Of High-temperature Steam Electrolysis System For Hydrogen Production

机译:制氢用高温蒸汽电解系统的二维模拟及临界效率分析

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High-temperature steam electrolysis (HTSE) is a promising method for highly efficient large-scale hydrogen production. The HTSE process not only reduces the amount of thermodynamic electrical energy requirement but also decreases the polarization losses, which improves the overall efficiency of hydrogen production. In this paper, a two-dimensional simulation method of the efficiency of the HTSE system integrated with high-temperature gas-cooled nuclear reactor (HTGR), which changes two parameters simultaneously in a reasonable range while keeping one parameter constant, was presented. Compared with one-dimensional analysis method, the effects of electrical efficiency (η_(el)), electrolysis efficiency (η_(es,)), and thermal efficiency (η_(th)) on overall efficiency (η_(overall)) were investigated more objectively and accurately. Moreover, the critical concepts of η_(es) and η_(th) were put forward originally, which were very important to determine the optimum electrolysis voltages and operation temperatures in the actual HTSE processes. The calculated critical value of η_(es) was ΔG(T)/ ΔH(T) and the actual η_(es) should be higher than the theoretically calculated one in order to maintain the high hydrogen production efficiency of HTSE system. Also, it was very interesting to find that the critical η_(es) was the theoretical maximum efficiency in SOFC mode. Furthermore, the critical value of η_(th) was equal to the value of η_(el), which means the overall efficiency decreases with the η_(es) increasing if the η_(th) in the actual HTSE process is less than the critical value of η_(th). Therefore, it is very important to control the η_(th) higher than the critical value in the actual HTSE process to get high overall system efficiency.
机译:高温蒸汽电解(HTSE)是高效大规模生产氢气的有前途的方法。 HTSE工艺不仅减少了热力学电能需求量,而且减少了极化损耗,从而提高了制氢的整体效率。提出了一种结合高温气冷核反应堆(HTGR)的HTSE系统效率的二维仿真方法,该方法在合理范围内同时改变两个参数,同时保持一个参数不变。与一维分析方法相比,研究了电效率(η_(el)),电解效率(η_(es,))和热效率(η_(th))对总效率(η_(overall))的影响更客观和准确。此外,最初提出了η_(es)和η_(th)的关键概念,这对于确定实际HTSE工艺中的最佳电解电压和操作温度非常重要。 η_(es)的计算临界值为ΔG(T)/ΔH(T),实际η_(es)应当高于理论计算的临界值,以保持HTSE系统的高产氢效率。同样,发现临界η_(es)是SOFC模式下的理论最大效率也非常有趣。此外,η_(th)的临界值等于η_(el)的值,这意味着,如果实际HTSE过程中的η_(th)小于临界值,则总体效率会随着η_(es)的增加而降低。值η_(th)。因此,在实际的HTSE过程中将η_(th)控制为高于临界值对于获得较高的整体系统效率非常重要。

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