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Solutions for improving the energy efficiency in wastewater treatment plants based on solid oxide fuel cell technology

机译:基于固体氧化物燃料电池技术的污水处理厂能效提高解决方案

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摘要

Polygeneration configurations for small power generation systems offer significant potential for energy saving and reducing carbon emissions in wastewater treatment facilities. In this work, a biogas-fed solid oxide fuel cell system operating in a wastewater treatment plant (located in Turin, Italy) is analyzed in terms of its potential improvements through novel polygeneration systems. In its present combined heat and power configuration, along with electrical power, thermal energy from the exhaust gas is recovered to provide required heat to the plant's anaerobic digester. The analysis is focusing on different energy efficiency solutions for this type of plant by using solar thermal collectors, microturbines, a trilateral Rankine cycle, and an absorption chiller. Results reveal that, despite of higher efficiency for the trigeneration case using both trilateral Rankine cycle and absorption chiller (up to 88.4%), the solar integrated system results in the lowest natural gas consumption, which is 38.5% lower than the baseline scenario. This same scenario is also the worst in economic terms due to the high capital costs of solar collectors. In a short-term cost trajectory of the solid oxide fuel cell technology, the most economically favorable scenario is the microturbine integrated case in which the calculated levelized cost of electricity is 0.11 (sic)/kWh, lower than grid electricity price, and with payback time of 6.5 years. Long-term cost trajectory is indeed generating effective investments for all of the four scenarios with payback time between 3 and 5 years in all cases. The analysis has been developed to the entire European Union area: the most suitable market conditions are found in Germany, Denmark, Slovakia, and Italy. (C) 2019 Elsevier Ltd. All rights reserved.
机译:小型发电系统的多联产配置为节省能源和减少废水处理设施中的碳排放量提供了巨大潜力。在这项工作中,分析了在废水处理厂(位于意大利都灵)运行的沼气供气的固体氧化物燃料电池系统,通过新型多联产系统的潜在改进。在其目前的热电联产配置以及电力中,废气中的热能被回收,为工厂的厌氧消化池提供所需的热量。通过使用太阳能集热器,微型涡轮机,三边朗肯循环和吸收式冷却器,分析着重于针对此类工厂的不同能效解决方案。结果表明,尽管使用三边朗肯循环和吸收式制冷机的三代发电效率更高(高达88.4%),但太阳能集成系统的天然气消耗量最低,比基准情景低38.5%。由于太阳能收集器的高昂资本成本,从经济角度而言,这种情况也是最糟糕的。在固体氧化物燃料电池技术的短期成本轨迹中,最经济上有利的情况是微型涡轮机集成案例,其中计算出的平均电成本为0.11(sic)/ kWh,低于电网电价,并且有回报时间为6.5年。长期成本轨迹确实可以在所有四种情况下都产生有效的投资,所有情况下的投资回收期都在3至5年之间。分析已扩展到整个欧盟地区:最合适的市场条件在德国,丹麦,斯洛伐克和意大利。 (C)2019 Elsevier Ltd.保留所有权利。

著录项

  • 来源
    《Journal of Cleaner Production》 |2020年第20期|119080.1-119080.18|共18页
  • 作者

  • 作者单位

    Politecn Torino Dept Energy Turin Italy;

    Univ Bonab Dept Mech Engn Bonab Iran;

    Politecn Torino Dept Energy Turin Italy|Delft Univ Technol Fac Aerosp Engn Delft Netherlands;

    Politecn Torino Dept Energy Turin Italy|KTH Energitekn Stockholm Sweden|Univ Illinois Dept Mech & Ind Engn Chicago IL USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Solid oxide fuel cell; Solar thermal system; Microturbine; Trilateral rankine cycle; Biogas; Economic analysis;

    机译:固体氧化物燃料电池;太阳能热系统;微型涡轮机;三边朗肯循环;沼气经济分析;

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