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Metsäperäisten biopolttoaineiden vaikutukset hiilijalanjälkeen, Case: Integroitu LWC-paperitehdas

机译:森林生物燃料对碳足迹的影响,案例:LWC综合造纸厂

摘要

International energy and climate strategies also set Finland’s commitments to increasing the use of renewable energy sources and reducing greenhouse gas emissions. The target can be achieved by, for example, increasing the use of energy wood. Finland’s forest biomass potential is significant compared with current use. Increased use will change forest management and wood harvesting methods however. The thesis examined the potential for integrated pulp and paper mills to increase bioenergy production. The effects of two bioenergy production technologies on the carbon footprint of an integrated LWC mill were studied at mill level and from the cradle-to-customer approach. The LignoBoost process and FT diesel production were chosen as bioenergy cases. The data for the LignoBoost process were obtained from Metso and for the FT diesel process from Neste Oil. The rest of the information is based on the literature and databases of the KCL-ECO life-cycle computer program and Ecoinvent. In both case studies, the carbon footprint was reduced. From the results, it can be concluded that it is possible to achieve a fossil-fuel-free pulp mill with the LignoBoost process. By using steam from the FT diesel process, the amount of auxiliary fuel can be reduced considerably and the bark boiler can be replaced. With a choice of auxiliary fuels for use in heat production in the paper mill and the production methods for purchased electricity, it is possible to affect the carbon footprints even more in both cases.
机译:国际能源和气候战略也设定了芬兰在增加使用可再生能源和减少温室气体排放方面的承诺。该目标可以通过例如增加能量木材的使用来实现。与目前的使用相比,芬兰的森林生物质潜力十分可观。但是,增加使用量将改变森林管理和木材采伐方式。论文研究了纸浆和造纸厂一体化提高生物能源产量的潜力。在工厂层面以及从摇篮到客户的方法中,研究了两种生物能源生产技术对综合LWC磨煤机碳足迹的影响。选择LignoBoost工艺和FT柴油生产作为生物能源案例。 LignoBoost工艺的数据来自美卓,FT柴油工艺则来自Neste Oil。其余信息基于KCL-ECO生命周期计算机程序和Ecoinvent的文献资料和数据库。在这两个案例研究中,碳足迹都减少了。从结果可以得出结论,可以使用LignoBoost工艺实现无化石燃料的纸浆厂。通过使用FT柴油工艺中的蒸汽,可以大大减少辅助燃料的量,并且可以更换树皮锅炉。通过选择用于造纸厂供热的辅助燃料和购买电力的生产方法,在两种情况下,对碳足迹的影响都可能更大。

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    Manninen Kaisa;

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  • 年度 2010
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