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A comparative assessment on hydrogen production from low- and high-temperature electrolysis

机译:低温和高温电解制氢的比较评估

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摘要

In this work a comparative analysis between low- and high-temperature electrolysis for hydrogen generation is assessed. A hydrogen production system based on Solid Oxide Electrolysis Cells (SOEC) is designed and modeled and compared to the performance of a more mature system based on PEM technology. The SOEC system mainly consists of an SOEC stack, a heat recovery system and a hydrogen compression section. Experimental data measured in steam electrolysis tests performed on single solid oxide cells were utilized into the model to characterize the stack performance. The model carries out a ther-modynamic analysis in order to calculate the energy efficiency and the exergetic consumption of the system; these performances are subsequently compared with those of a low-temperature hydrogen generation system evaluated from experimental data measured in test sessions performed on a complete BoP integrating a pressurized Proton Exchange Membrane (PEM) electrolyser. The comparison is carried out with the two electrolysis systems generating hydrogen at the same production rate and pressure. The results of this study show that the modeled SOEC hydrogen generation system can compete with the PEM electrolyser, achieving better performance than the low-temperature system at hydrogen production rate higher than 18.3 g h~1 (corresponding to 0.25 A cm~2) and showing an energy efficiency up to 14% higher than the PEM system at 1 A cm~2.
机译:在这项工作中,评估了在低温和高温电解过程中产生氢气的比较分析。设计并建模了基于固体氧化物电解池(SOEC)的制氢系统,并将其与基于PEM技术的更成熟系统的性能进行了比较。 SOEC系统主要由SOEC烟囱,热回收系统和氢气压缩段组成。在单个固体氧化物电池上进行的蒸汽电解测试中测得的实验数据被用于模型中以表征电池堆性能。该模型进行热力学分析,以计算系统的能源效率和大量消耗;随后将这些性能与低温氢气生成系统的性能进行比较,该系统是根据在集成了加压质子交换膜(PEM)电解器的完整BoP上进行的测试过程中测得的实验数据测得的。比较是使用两个以相同的生产率和压力产生氢气的电解系统进行的。研究结果表明,所模拟的SOEC制氢系统可以与PEM电解槽竞争,在制氢率高于18.3 gh〜1(相当于0.25 A cm〜2)时,其性能要优于低温系统。在1 A cm〜2的能量效率比PEM系统高14%。

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