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CHP or biofuel production in Europe?

机译:欧洲的CHP或生物燃料生产?

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In this study, the opportunity to invest in combined heat and power (CHP) plants and second-generation biofuel production plants in Europe is investigated. To determine the number and type of production plants, a mixed integer linear model is used, based on minimization of the total cost of the whole supply chain. Different policy scenarios are studied with varying values of carbon cost and biofuel support. The study focuses on the type of technology to invest in and the CO2 emission substitution potential, at constant energy prices. The CHP plants and the biofuel production plants are competing for the same feedstock (forest biomass), which is available in limited quantities. The results show that CHP plants are preferred over biofuel production plants at high carbon costs (over 50 EUR/t_(CO2)) and low biofuel support (below 10 EUR/GJ), whereas more biofuel production plants would be set up at high biofuel support (over 15 EUR/GJ), irrespective of the carbon cost. Regarding the CO2 emission substitution potential, the highest potential can be reached at a high carbon cost and low biofuel support. It is concluded that there is a potential conflict of interest between policies promoting increased use of biofuels, and policies aiming at decreased CO2 emissions.
机译:在这项研究中,研究了欧洲综合发电和电力(CHP)植物和第二代生物燃料生产植物的机会。为了确定生产设备的数量和类型,基于最小化整个供应链的总成本的最小化,使用混合整数线性模型。使用不同的碳成本和生物燃料支持来研究不同的政策情景。该研究侧重于投资的技术类型和CO2排放替代潜力,处于恒定的能源价格。 CHP工厂和生物燃料生产植物正在竞争相同的原料(森林生物量),其数量有限。结果表明,CHP植物在高碳成本(超过50欧元/ T_(二氧化碳))和低生物燃料支援(低于10欧元/ GJ)的情况下,CHP工厂是优选的(超过10欧元),而更多的生物燃料生产设备将在高生物燃料中建立支持(超过15欧元/ GJ),无论碳成本如何。关于CO2排放替代潜力,可以以高碳成本和低生物燃料支持达到最高潜力。结论是,促进生物燃料的使用增加的政策之间存在潜在的利益冲突,以及旨在减少二氧化碳排放的政策。

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