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Integration of deep geothermal energy and woody biomass conversion pathways in urban systems

机译:城市系统中深层地热能和木质生物质转化途径的整合

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Urban systems account for about two-thirds of global primary energy consumption and energy-related greenhouse gas emissions, with a projected increasing trend. Deep geothermal energy and woody biomass can be used for the production of heat, electricity and biofuels, thus constituting a renewable alternative to fossil fuels for all end-uses in cities: heating, cooling, electricity and mobility. This paper presents a methodology to assess the potential for integrating deep geothermal energy and woody biomass in an urban energy system. The city is modeled in its entirety as a multiperiod optimization problem with the total annual cost as an objective, assessing as well the environmental impact with a Life Cycle Assessment approach. For geothermal energy, deep aquifers and Enhanced Geothermal Systems are considered for stand-alone production of heat and electricity, and for cogeneration. For biomass, besides direct combustion and cogeneration, conversion to biofuels by a set of alternative processes (pyrolysis, Fischer-Tropsch synthesis and synthetic natural gas production) is studied. With a scenario based approach, all pathways are first individually evaluated. Secondly, all possible combinations between geothermal and biomass options are systematically compared, taking into account the possibility of hybrid systems. Results show that integrating these two resources generates configurations featuring both lower costs and environmental impacts. In particular, synergies are found in innovative hybrid systems using excess geothermal heat to increase the efficiency of biomass conversion processes. The application to a case study demonstrates the advantages of using a system approach for the analysis over a stand-alone comparison between options. (C) 2016 Elsevier Ltd. All rights reserved.
机译:城市系统约占全球一次能源消耗和与能源有关的温室气体排放量的三分之二,并有增加的趋势。深层地热能和木质生物质可用于生产热,电和生物燃料,因此构成了化石燃料的可再生替代品,可用于城市中所有最终用途:供热,制冷,电力和出行。本文提出了一种方法来评估在城市能源系统中整合深层地热能和木质生物质的潜力。整个城市以多周期优化问题为整体模型,以年度总成本为目标,并使用生命周期评估方法评估环境影响。对于地热能源,考虑将深层含水层和增强型地热系统用于独立的热力和电力生产以及热电联产。对于生物质,除了直接燃烧和热电联产外,还研究了通过一系列替代方法(热解,费托合成和合成天然气生产)转化为生物燃料的方法。使用基于方案的方法,首先要对所有途径进行单独评估。其次,系统地比较了地热和生物质选项之间的所有可能组合,同时考虑了混合系统的可能性。结果表明,将这两种资源整合在一起会产生具有较低成本和环境影响的配置。特别是,在利用过量地热来提高生物质转化过程效率的创新混合系统中发现了协同作用。案例研究的应用展示了使用系统方法进行分析的优势,而不是对选项之间的独立比较。 (C)2016 Elsevier Ltd.保留所有权利。

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