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The Role of Bioenergy in Achieving the Carbon Neutrality Target in Finland by 2035—A Case Study of Student Surveyed at University in Finland

机译:生物能源在2035年在芬兰实现芬兰碳中立目标的作用为例,在芬兰大学调查的案例研究

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The largest share of renewable energy in Finland comes from bioenergy. In 2019, bioenergy accounted for 82 % (416 PJ, 116 TWh) of renewable energy in Finland. This study assesses the potential for increasing bioenergy in energy production by 2035 and what role it will play in achieving the carbon neutrality target in Finland. The role of different energy sources in the energy system was examined using existing scenarios developed for The National Long-Term Strategy. Two alternative low-emission scenarios have been developed to last until 2050 to meet the 2035 carbon neutrality target. In 2035, the amount of bioenergy has risen to 520 - 550 PJ (144 - 153 TWh), which is about 70 % of renewable energy consumption. This means, that the bioenergy resource has been fully deployed and the relative share of bioenergy in renewables has decreased slightly. The study also included a survey to university students to map out how likely a carbon neutrality target is to be considered by 2035. University students were unsure of achieving the carbon neutrality target by 2035. The schedule was considered challenging especially in the transport sector. Bioenergy was also seen as still playing an important role, especially in heat production. Achieving significant emission reductions will require significant electrification in all energy use sectors, as fossil fuels cannot be sustainably replaced by bioenergy on a sufficiently large scale.
机译:芬兰可再生能源的最大份额来自生物能源。 2019年,生物能源占82% (416 PJ,116 TWH)芬兰可再生能源。本研究评估了2035年通过2035年增加能源产量的生物能源的可能性以及它将在芬兰实现碳中性目标的作用。使用为国家长期战略开发的现有场景,研究了不同能源在能量系统中的作用。已经开发了两种替代的低排放场景,直到2050年才能满足2035个碳中性目标。在2035年,生物能量的量已上升至520 - 550 PJ(144 - 153 TWH),约为70%可再生能源消耗。这意味着,生物能源资源已经完全部署,生物能源在可再生能源中的相对份额略有下降。该研究还包括对大学生的一项调查,以绘制2035年碳中性目标的核算程度。大学生不确定到2035年的碳中性目标。计划被认为是挑战,特别是在运输部门挑战。生物能源也被视为仍然发挥重要作用,特别是在热量生产中。在所有能量使用扇区中实现显着的排放减少将需要显着的电气化,因为化石燃料不能被生物能量达到足够大规模的生物能量。

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