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Dynamic Biogas Upgrading for Integration of Renewable Energy from Wind, Biomass and Solar

机译:动态沼气升级整合风能,生物质能和太阳能可再生能源

摘要

The Sabatier process is investigated as a storage scheme for renewable energy. Hydrogen derived from fluctuating renewable energy sources like wind and solar is converted to methane by the hydrogenation/methanation of carbon oxides. Biogas from anaerobic digestion is considered in this study as a high concentrated source of carbon dioxide. By using the Sabatier process, the CO2 content of the biogas is converted to CH4, which is a new upgrading process for biogas. By switching between (i) this upgrading process during periods of extensive electricity production from wind and solar, and (ii) combined heat and power production from biogas during periods of electricity demand, bioenergy utilization becomes a dynamic process. In such a process scheme, biomass, wind, and solar could be integrated in a local context.This thesis aims to demonstrate the feasibility of the dynamic biogas upgrading as a sustainable process for electricity storage and system integration in Northern Germany, i. e. the state of Schleswig-Holstein. A feasibility study was conducted to analyze the energy system in this region and the potential for this process. Process simulation tools were used to prove the product gas properties and the degree of efficiency of the system. Lab-scale and bench-scale experiments where further applied to demonstrate the utilization of industrial waste water for biogas production and the general applicability of biogas in the Sabatier process.
机译:Sabatier过程被研究为可再生能源的存储方案。源自波动性可再生能源(例如风能和太阳能)的氢通过碳氧化物的加氢/甲烷化作用转化为甲烷。在这项研究中,厌氧消化产生的沼气被认为是二氧化碳的高浓度来源。通过使用Sabatier工艺,沼气的CO2含量转化为CH4,这是一种新的沼气升级工艺。通过在(i)风能和太阳能大量发电期间的升级过程,以及(ii)电力需求期间由沼气产生的热电联产之间切换,生物能利用成为一个动态过程。在这种工艺方案中,生物质,风能和太阳能可以在当地进行整合。本文旨在证明动态沼气升级作为德国北部电力存储和系统集成的可持续过程的可行性。 e。石勒苏益格-荷尔斯泰因州。进行了可行性研究,以分析该地区的能源系统以及该过程的潜力。使用过程模拟工具来证明产品气的性质和系统的效率。进一步进行实验室规模和实验室规模的实验,以证明利用工业废水生产沼气以及在Sabatier工艺中沼气的一般适用性。

著录项

  • 作者

    Jurgensen Lars;

  • 作者单位
  • 年度 2015
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
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