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Replacing fossil fuels with bioenergy in district heating - Comparison of technology options

机译:用Bioenergy替换化石燃料在区供暖 - 技术选择比较

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摘要

We combine previously separate models of Northern European power markets, local district heating and cooling (DHC2) systems, and biomass supply in a single modelling framework to study local and system level impacts of bioenergy technologies in phasing out fossil fuels from a DHC system of the Finnish capital. We model multiple future scenarios and assess the impacts on energy security, flexibility provision, economic performance, and emissions. In the case of Helsinki, heat only boiler is a robust solution from economic and climate perspective, but reduces local electricity self-sufficiency. Combined heat and power solution is more valuable investment for the system than for the city indicating a conflict of interest and biased results in system level models. Bringing a biorefinery near the city to utilize excess heat would reduce emissions and increase investment's profitability, but biomass availability might be a bigger limiting factor. Our results show that the availability of domestic biomass resources constrains bio-based technologies in Southern Finland and further highlights the importance of considering both local and system level impacts. Novel option to boost biorefinery's production with hydrogen from excess electricity is beneficial with increasing shares of wind power. (C) 2021 The Author(s). Published by Elsevier Ltd.
机译:我们将先前单独的北欧电力市场,当地的地区供暖和冷却(DHC2)系统进行了分开的型号,以及在单一建模框架中进行生物量供应,以研究生物能源技术在逐步淘汰DHC系统中的化石燃料中的本地和系统水平影响芬兰首都。我们模拟了多个未来的情景,并评估了对能源安全,灵活性,经济绩效和排放的影响。在赫尔辛基的情况下,热量锅炉是一种从经济和气候观点的稳健解决方案,而是降低了当地的电力自给自足。组合的热量和电力解决方案对系统的投资更有宝贵的投资,而不是表明利益冲突和系统级模型的偏见结果。将靠近城市附近的生物术术来利用过量的热量将减少排放量,提高投资的盈利能力,但生物质可用性可能是一个更大的限制因素。我们的研究结果表明,国内生物质资源的可用性限制了芬兰南部的生物技术,并进一步凸显了考虑本地和系统水平影响的重要性。提升生物遗产的新选择与过量的电力氢气产生的生产是有益的,随着风电的份额增加。 (c)2021提交人。 elsevier有限公司出版

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