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The production of electricity, heat and hydrogen with the thermal power plant in combination with alternative technologies

机译:与替代技术相结合的热电厂生产电力,热量和氢气

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摘要

Alternative technologies in combination with thermal power plant allow the production of heat, electricity and hydrogen using renewable energy sources in combination with gas or coal, as a very important energy source in traditional energy engineering in Slovenia. The technologies aim, inter alia, to reduce greenhouse gas emissions, increase the use of renewable energy sources and take a step forward to the production of hydrogen as an alternative energy source in numerous applications. In view of the estimated demand for heat, electricity and hydrogen in the Savinja-Salek region, Slovenia, the technologies to meet such demand are proposed in this article from a technical perspective. An energy and economic analysis of the operation of the Thermal Power Plant (TPP) will be done. The TPP is operating in a variable operating regime. The possibility of stationary operation of the power plant will be analysed, the surplus of produced electricity will be used for the hydrogen production. The process is based on the Rankine-Clausius cycle (RC) with dual superheating using water or steam as the working media. The idea in this article, is to generate in the above mentioned facility as much hydrogen, heat, cold and electricity as needed by the Savinja-Salek region in industry, transport, etc. Thus, the power plant could operate optimally, constantly at 100% of power, which would allow simultaneous production of electricity, heat and hydrogen. Hydrogen could be used for sale on the market or for the electricity production or for heating. Hydrogen could be produced via electrolysis or thermochemical process. In the second part of article, the analysis of RC with concentrated solar energy and wood chips was analysed. (C) 2020 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:替代技术与热电厂组合允许使用可再生能源的热,电力和氢气与气体或煤炭组合生产,作为斯洛文尼亚传统能源工程中的一个非常重要的能源。除其他外,技术旨在减少温室气体排放,增加可再生能源的使用,并在许多应用中将氢的生产进入氢气作为替代能源。鉴于在Savinja-Salek地区,斯洛文尼亚的估计对热量,电力和氢气的需求,从技术角度提出了在本文中提出了满足此类需求的技术。将完成热电厂(TPP)操作的能量和经济分析。 TPP在可变操作状态下运行。将分析电厂静止操作的可能性,生产电量的剩余将用于氢气生产。该过程基于Rankine-Clausius循环(RC),其使用水或蒸汽作为工作介质双重过热。本文中的想法是在上述设施中产生,根据萨尔尼岛苏达斯克地区在工业,运输等所需的情况下产生。因此,发电厂可以在100架上不断地运行功率的百分比,这将允许同时生产电力,热和氢气。氢气可用于市场上的销售或用于电力生产或供暖。氢可以通过电解或热化学方法生产。在物品的第二部分,分析了浓缩太阳能和木屑的RC分析。 (c)2020氢能源出版物LLC。 elsevier有限公司出版。保留所有权利。

著录项

  • 来源
    《International journal of hydrogen energy》 |2021年第16期|10072-10081|共10页
  • 作者单位

    Univ Maribor Fac Energy Technol Hocevarjev Trg 1 Krshko 8270 Slovenia;

    Josip Juraj Strossmayer Univ Osijek Mech Engn Fac Osijek Croatia;

    Univ Maribor Fac Energy Technol Hocevarjev Trg 1 Krshko 8270 Slovenia;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
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