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Potential of Power-to-Methane in the EU energy transition to a low carbon system using cost optimization

机译:利用成本优化技术,欧盟将甲烷能源转化为低碳系统的潜力

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摘要

Power-to-Methane (PtM) can provide flexibility to the electricity grid while aiding decarbonization of other sectors. This study focuses specifically on the methanation component of PtM in 2050. Scenarios with 80-95% CO2 reduction by 2050 (vs. 1990) are analyzed and barriers and drivers for methanation are identified. PtM arises for scenarios with 95% CO2 reduction, no CO2 underground storage and low CAPEX (75 (sic)/kW only for methanation). Capacity deployed across EU is 40 GW (8% of gas demand) for these conditions, which increases to 122 GW when liquefied methane gas (LMG) is used for marine transport. The simultaneous occurrence of all positive drivers for PtM, which include limited biomass potential, low Power-to-Liquid performance, use of PtM waste heat, among others, can increase this capacity to 546 GW (75% of gas demand). Gas demand is reduced to between 3.8 and 14 EJ (compared to similar to 20 EJ for 2015) with lower values corresponding to scenarios that are more restricted. Annual costs for PtM are between 2.5 and 10 bln(sic)/year with EU28's GDP being 15.3 trillion (sic)/year (2017). Results indicate that direct subsidy of the technology is more effective and specific than taxing the fossil alternative (natural gas) if the objective is to promote the technology. Studies with higher spatial resolution should be done to identify specific local conditions that could make PtM more attractive compared to an EU scale.
机译:沼气发电(PtM)可以为电网提供灵活性,同时帮助其他行业脱碳。这项研究专门针对2050年PtM的甲烷化成分。分析了到2050年CO2减少80-95%的情况(与1990年相比),并确定了甲烷化的障碍和驱动因素。在以下情况下会出现PtM:减少CO2达到95%,没有地下CO2的存储以及较低的CAPEX(仅甲烷化就需要75(标准差)/ kW)。在这些条件下,整个欧盟的部署容量为40吉瓦(占天然气需求的8%),当液化甲烷气(LMG)用于海上运输时,该容量将增加至122吉瓦。同时出现PtM的所有积极驱动因素,包括有限的生物质能,低的液化性能,使用PtM余热等,都可以将该容量增加到546 GW(占天然气需求的75%)。天然气需求降低到3.8到14 EJ(与2015年的20 EJ相似),较低的值对应于更受限制的情景。 PtM的年度成本在每年25至100亿(sic)之间,EU28的GDP为15.3万亿(sic)/年(2017年)。结果表明,如果目标是推广技术,则直接补贴技术比对化石替代品(天然气)征税更为有效和具体。应该进行更高空间分辨率的研究,以找出可以使PtM相比于欧盟规模更具吸引力的特定局部条件。

著录项

  • 来源
    《Applied Energy》 |2018年第15期|323-340|共18页
  • 作者单位

    Univ Groningen IVEM Ctr Energy & Environm Sci Nijenborgh 6 NL-9747 AG Groningen Netherlands;

    European Commiss Joint Res Ctr Directorate Energy Transport & Climate C Knowledge Energy Union Westerduinweg 3 NL-1755 LE Petten Netherlands;

    KIT EBI DVGW Res Ctr Karlsruhe Germany;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    TIMES; Energy system model; Power-to-gas; Hydrogen; CO2 utilization; Methanation;

    机译:时代;能源系统模型;天然气发电;氢;二氧化碳利用;甲烷化;

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