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Using photovoltaic thermal technology to enhance biomethane generation via biogas upgrading in anaerobic digestion

机译:利用光伏热技术通过在厌氧消化中通过沼气升级来增强生物甲烷的产生

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摘要

Anaerobic Digestion (AD) is identified to be a promising method to address the dilemma of solid waste recycling, and biogas produced from AD has also been identified as an important alternative to fossil fuels, pertaining to energy crisis and climate change. As the applied technology of anaerobic digestion is fixed, required thermal energy for biogas production in an anaerobic digester varies dramatically with the ambient temperature. The conventional way is to combust the biogas on the spot for heat preservation in the digester, and the additional natural gas will be needed for supplement in colder area. To mitigate the consumption of fossil fuel and increase the amount of available biogas for bio-methane production, a hybrid system by integration of Concentrated PhotoVoltaic Thermal (CPVT) collectors and biogas upgrading technology is proposed. The heat produced from CPVT collectors is for heat preservation in the digester, and generated electric power is used in the biogas plant and biogas upgrading unit for bio-methane production. The annual performance analysis indicates that, comparing with the conventional design, the new design saves 2.6% amount of natural gas consumption, reduces 48.38% amount of electricity from power grid and increases 86.08% amount of biomethane production. Besides, the new design can supply 829.4 MWh electricity to the power grid in a year. This research provides a new way to utilize biogas by integration with solar utilization technologies.
机译:鉴定Anaerobic消化(AD)是一种有望的方法,用于解决固体废物回收的困境,并且来自广告产生的沼气也被鉴定为化石燃料的重要替代品,与能源危机和气候变化有关。由于固定了厌氧消化的应用技术,厌氧消化器中的沼气生产的所需热能随着环境温度而变化显着变化。常规方式是在蒸煮器中燃烧沼气的斑点,并且需要额外的天然气来补充较冷的区域。为了减轻化石燃料的消耗并增加生物甲烷生产的可用沼气量,提出了一种通过集中光伏热(CPVT)收集器和沼气升级技术的混合动力系统。 CPVT收集器产生的热量用于蒸煮器中的保温,并且产生的电力用于生物植物和生物甲烷生产的沼气升级单元。年度绩效分析表明,与传统设计相比,新设计可节省2.6%的天然气消耗量,从电网降低48.38%的电力量,增加了86.08%的生物甲烷生产量。此外,新设计可以在一年内向电网供电829.4 MWH电力。本研究提供了一种通过与太阳能利用技术集成来利用沼气的新方法。

著录项

  • 来源
    《Energy Conversion & Management》 |2021年第5期|113965.1-113965.11|共11页
  • 作者单位

    Jimei Univ Coll Mech & Energy Engn Xiamen 361021 Peoples R China|Fujian Prov Key Lab Energy Cleaning Utilizat & De Xiamen 361021 Peoples R China|Fujian Prov Cleaning Combust & Energy Utilizat Re Xiamen 361021 Peoples R China|Fujian Prov Key Lab Ocean Renewable Energy Equipm Xiamen 361021 Peoples R China;

    Wuhan Univ Sch Power & Mech Engn Minist Educ MOE Key Lab Hydrodynam Machinery Transients Wuhan 430072 Hubei Peoples R China;

    Jimei Univ Coll Mech & Energy Engn Xiamen 361021 Peoples R China|Fujian Prov Key Lab Energy Cleaning Utilizat & De Xiamen 361021 Peoples R China|Fujian Prov Cleaning Combust & Energy Utilizat Re Xiamen 361021 Peoples R China|Fujian Prov Key Lab Ocean Renewable Energy Equipm Xiamen 361021 Peoples R China;

    Jimei Univ Coll Mech & Energy Engn Xiamen 361021 Peoples R China|Fujian Prov Key Lab Energy Cleaning Utilizat & De Xiamen 361021 Peoples R China|Fujian Prov Cleaning Combust & Energy Utilizat Re Xiamen 361021 Peoples R China|Fujian Prov Key Lab Ocean Renewable Energy Equipm Xiamen 361021 Peoples R China;

    Jimei Univ Coll Mech & Energy Engn Xiamen 361021 Peoples R China|Fujian Prov Key Lab Energy Cleaning Utilizat & De Xiamen 361021 Peoples R China|Fujian Prov Cleaning Combust & Energy Utilizat Re Xiamen 361021 Peoples R China|Fujian Prov Key Lab Ocean Renewable Energy Equipm Xiamen 361021 Peoples R China;

  • 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

    Photovoltaic thermal collector; Biomethane production; Annual performance analysis; Multi-energy complement;

    机译:光伏热收集器;生物甲烷生产;年度绩效分析;多能量补充;

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