...
首页> 外文期刊>Energy Conversion & Management >Thermodynamic assessment of zero-emission power, hydrogen and methanol production using captured CO_2 from S-Graz oxy-fuel cycle and renewable hydrogen
【24h】

Thermodynamic assessment of zero-emission power, hydrogen and methanol production using captured CO_2 from S-Graz oxy-fuel cycle and renewable hydrogen

机译:使用从S-Graz含氧燃料循环中捕获的CO_2和可再生氢,对零排放功率,氢和甲醇生产进行热力学评估

获取原文
获取原文并翻译 | 示例
           

摘要

Thermodynamic analysis of a novel combined system, including geothermal driven dual fluid organic Rankine cycle (ORC), S-Graz cycle, proton exchange membrane electrolyzer (PEME) and methanol synthesis unit (MSU) are carried out using energy and exergy principles. The presented system produces zero emission power and hydrogen using oxy-fuel combustion technology and splitting water into hydrogen and oxygen in the PEME, which consumes the dual fluid ORC produced power. Then, methanol production from captured CO2 and produced H-2 is suggested to eliminate the captured CO2 from S-Graz cycle. The energy and exergy efficiencies and sustainability index of 14.7%, 42.43% and 1.737 are obtained for the presented cogeneration system, respectively. Also, results associated with the exergy destruction reveal that most of the destroyed exergy in the system is due to the dual fluid ORC in compare with the other units. Furthermore, it is observed that, within the dual fluid ORC, low pressure evaporator (LPE) is responsible for 33% of exergy destruction. Moreover, the results indicate that increasing higher pressure of the dual fluid ORC improves the system energetic and exergetic performance while an increment in geothermal hot water temperature leads to a reduction in system energy and exergy efficiencies.
机译:利用能量和火用原理对新型组合系统进行热力学分析,包括地热驱动的双流体有机朗肯循环(ORC),S-Graz循环,质子交换膜电解器(PEME)和甲醇合成装置(MSU)。提出的系统使用氧燃料燃烧技术产生零排放功率和氢气,并在PEME中将水分解为氢气和氧气,这消耗了双流体ORC产生的功率。然后,建议从捕获的CO2和生成的H-2中生产甲醇,以从S-Graz循环中消除捕获的CO2。提出的热电联产系统的能源和火用效率和可持续性指数分别为14.7%,42.43%和1.737。而且,与能级破坏相关的结果表明,与其他单元相比,系统中大部分被破坏的能级归因于双重流体ORC。此外,观察到在双流体ORC中,低压蒸发器(LPE)造成了33%的火用破坏。此外,结果表明,增加双流体ORC的较高压力会改善系统的能量和能量性能,而地热水温度的升高会导致系统能量和能量效率的降低。

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