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Selected emissions and efficiencies of energy systems based on logging and sawmill residues

机译:基于伐木和锯木厂残留物的能源系统的选定排放量和效率

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Bioenergy has an important role in the implementation of the Kyoto agreement in Finland. The main sources of wood residues for energy production are logging areas and sawmills. The use of forest chips can be of great significance in reducing carbon dioxide emissions by replacing fossil fuels. Increasing the use of forest chips has environmental benefits, but it also includes possible environmental disadvantages. Therefore, system research is needed to assess the forest chip utilisation prospects for their environmental quality to secure sustainable forest management. Life-cycle methodology was developed and applied to assess environmental burdens and impacts of the logging and sawmill residues throughout the whole fuel chain from the forest to energy production. According to the study, the energy efficiencies of the forest chip systems are quite high. Net CO_2 emissions of the systems are low owing to the low input of external primary energy required to operate the systems. Although wood energy is renewable, it has many similarities with fossil fuels, e.g. as the emissions of the conversion phase are significant.
机译:生物能源在芬兰执行《京都议定书》方面具有重要作用。用于能源生产的木材残余物的主要来源是伐木区和锯木厂。通过替代化石燃料,使用森林碎片对减少二氧化碳排放量具有重要意义。越来越多地使用森林碎片具有环境效益,但也包括可能的环境不利因素。因此,需要系统研究来评估森林碎片利用前景的环境质量,以确保可持续森林管理。开发了生命周期方法,并将其用于评估环境负担以及从森林到能源生产的整个燃料链中伐木和锯木厂残留物的影响。根据研究,森林碎片系统的能源效率很高。由于操作系统所需的外部一次能源输入量少,系统的净CO_2排放量较低。尽管木材能源是可再生的,但它与化石燃料有许多相似之处,例如因为转换阶段的排放量很大。

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