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Design of a solar-driven methanol steam reforming receiver/reactor with a thermal storage medium and its performance analysis

机译:具有热存储介质的太阳能驱动甲醇蒸汽重整接收器/反应器的设计及其性能分析

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摘要

A novel method of triple line focused on solar-powered receiver/reactor with a thermal storage medium for methanol steam reforming (MSR) hydrogen production is proposed in this paper. The photo-thermal-chemical energy conversion and coupling equations of the receiver/reactor are established, and the dynamic regularity between solar radiation and the hydrogen production characteristics is obtained by numerical simulation. The results show that a high solar radiation intensity helps to stabilize the duration of the reaction. For every 100 W m(-2) increase in the solar radiation intensity, the duration of the reaction maintained at the phase change point temperature of the phase change material (PCM) increases by approximately 11%. The daily hydrogen production performance of the system in Kunming (102 degrees 43'E and 25 degrees 02'N) during typical solar days is studied. The average annual total hydrogen production per unit of the lighting area is approximately 1300 m(3). This research can guide similar issues related to solar thermochemical technology . (c) 2020 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:本文提出了一种专注于具有热存储介质的太阳能接收器/反应器的三线的新方法,提出了本文的热存储介质(MSR)氢气产生。建立了接收器/反应器的光热化学能量转换和耦合方程,通过数值模拟获得了太阳辐射与氢生产特性之间的动态规律性。结果表明,高太阳辐射强度有助于稳定反应的持续时间。对于每100 W m(-2)的升压增大,在相变材料(PCM)的相变点温度下保持的反应的持续时间增加约11%。研究了典型太阳日内昆明(102度43'e和25度)的系统的每日氢气生产性能。每单位照明面积的年度总氢气产量约为1300米(3)。该研究可以指导与太阳能热化学技术有关的类似问题。 (c)2020氢能源出版物LLC。 elsevier有限公司出版。保留所有权利。

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