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Integrated Heat Pump Options for Heat Upgrading in Cu-Cl Cycle for Hydrogen Production.

机译:集成热泵选件,用于在制氢过程中进行Cu-Cl循环中的热量提升。

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摘要

he Copper Chlorine (Cu-Cl) hydrogen production cycle is a promising green method to meet the future demand for hydrogen. The Cu-Cl cycle has a number of endothermic reactions that take place at high temperature level. One of the highest temperature demanding components in the Cu-Cl cycle is the copper oxychloride decomposition reactor. This thesis proposes two potential methods to address this demand by using a cuprous chloride (CuCl) vapor compression heat pump cascaded with a mercury heat pump as a first option, and cascaded with a biphenyl heat pump as a second option. These cascaded heat pumps are meant to upgrade heat from nuclear power plants with a heat input of approximately 300°C or industrial waste heat to meet the copper oxychloride decomposition reactor demand. A comprehensive energetic, exergetic, and exergoeconomic assessment is made to understand the heat pump performance and costs.;The CuCl-mercury heat pump had an overall energetic coefficient of performance of 1.93 and an exergetic performance of 1.25. Its total estimated cost is US;The CuCl-biphenyl heat pump, on the other hand, also shows high coefficient of performance for certain operating conditions of compressors isentropic efficiencies, and excess CuCl feed temperature. Its base energetic and exergetic coefficient of performances are 1.76 and 1.15, respectively. Its estimated cost of
机译:铜氯(Cu-Cl)氢气生产周期是一种有前途的绿色方法,可以满足未来对氢气的需求。 Cu-Cl循环具有在高温水平下发生的许多吸热反应。 Cu-Cl循环中对温度要求最高的成分之一是氯氧化铜分解反应器。本文提出了两种潜在的方法来解决这一需求,方法是将氯化亚铜(CuCl)蒸气压缩热泵与汞热泵级联作为第一选择,而与联苯热泵作为级联选择。这些级联的热泵旨在提升输入功率约为300°C的核电厂的热量或工业废热,以满足氯氧化铜分解反应堆的需求。为了了解热泵的性能和成本,进行了全面的能量,能量和能效经济评估。CuCl-汞热泵的整体能量系数为1.93,能量性能为1.25。其总估算成本为美国;另一方面,对于压缩机的等熵效率和过高的CuCl进料温度,在某些工作条件下,CuCl-联苯热泵也显示出较高的性能系数。它的基本体能和体能表现系数分别为1.76和1.15。其估计费用为

著录项

  • 作者

    Almahdi, Mohamed.;

  • 作者单位

    University of Ontario Institute of Technology (Canada).;

  • 授予单位 University of Ontario Institute of Technology (Canada).;
  • 学科 Mechanical engineering.;Chemical engineering.
  • 学位 M.A.Sc.
  • 年度 2016
  • 页码 121 p.
  • 总页数 121
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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