...
首页> 外文期刊>Fuel >Solar hydrogen production via thermochemical magnesium oxide -Magnesium sulfate water splitting cycle
【24h】

Solar hydrogen production via thermochemical magnesium oxide -Magnesium sulfate water splitting cycle

机译:通过热化学氧化镁 - 硫酸镁水分裂循环产生太阳能氢气生产

获取原文
获取原文并翻译 | 示例

摘要

This investigation reports the thermodynamic scrutiny of the MgO/MgSO4 water-splitting cycle. At the initial stage, the thermal reduction temperature required for the commencement of the thermal dissociation of MgSO4 (in the absence of inert Ar) and the maximum temperature below which the water-splitting reaction is feasible is identified by performing thermodynamic equilibrium calculations. The influence of inert Ar as the carrier gas on the thermal reduction temperature is also explored. After identifying the required operating temperatures, the second law efficiency analysis predicts the process parameters of this cycle. Overall analysis confirms that although the rise in the molar flow rate of Ar from 1 to 50 mol/s results in a decrease in the thermal reduction temperature from 1490 K to 1282 K, the solar-to-fuel energy conversion efficiency is adversely affected and reduces from 47.7% to 18.1%. As per the analysis, this cycle achieved the highest solar-to-fuel energy conversion efficiency (47.7%) at the molar flow rate of Ar = 1 mol/s, thermal reduction temperature = 1490 K, and water splitting temperature = 475 K. Further increment in the solar-to-fuel energy conversion efficiency up to 62.5% is possible if 50% of the heat recuperation is applied.
机译:本研究报告了MgO / MgSO4水分裂循环的热力学审查。在初始阶段,通过进行热力学平衡计算,鉴定了MgSO4的热解离(在没有惰性AR的情况下)和最高温度的最高温度所需的热还原温度。还探讨了惰性AR作为载气对热还原温度的影响。在识别所需的操作温度后,第二律效率分析预测该循环的过程参数。总体分析证实,虽然AR的摩尔流速从1至50 mol / s的升高导致从1490 k到1282 k的热还原温度降低,但太阳能 - 燃料能量转换效率受到不利影响减少47.7%至18.1%。根据分析,该循环在Ar = 1mol / s的摩尔流速下实现了最高的太阳能燃料能量转换效率(47.7%),热还原温度= 1490 k,水分裂温度= 475k。如果应用50%的热量恢复,则在太阳能 - 燃料能量转换效率的进一步增量可达62.5%。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号