碳中和
固碳
温室气体
具有碳捕获和储存功能的生物能源
环境科学
生物能源
大气碳循环
自然资源经济学
化石燃料
生物量(生态学)
碳汇
减缓气候变化
碳价格
可再生能源
环境经济学
气候变化
二氧化碳
生态学
经济
生物
作者
Hamed Kouchaki‐Penchah,Olivier Bahn,Kathleen Vaillancourt,Lucas Moreau,Évelyne Thiffault,Annie Levasseur
标识
DOI:10.1021/acs.est.3c00644
摘要
Global pathways limiting warming to 2 °C or below require deep carbon dioxide removal through a large-scale transformation of the land surface, an increase in forest cover, and the deployment of negative emission technologies (NETs). Government initiatives endorse bioenergy as an alternative, carbon-neutral energy source for fossil fuels. However, this carbon neutral assumption is increasingly being questioned, with several studies indicating that it may result in accounting errors and biased decision-making. To address this growing issue, we use a carbon budget model combined with an energy system model. We show that including forest sequestration in the energy system model alleviates the decarbonization effort. We discuss how a forest management strategy with a high sequestration capacity reduces the need for expensive negative emission technologies. This study indicates the necessity of establishing the most promising forest management strategy before investing in bioenergy with carbon capture and storage. Finally, we describe how a carbon neutrality assumption may lead to biased decision-making because it allows the model to use more biomass without being constrained by biogenic CO2 emissions. The risk of biased decision-making is higher for regions that have lower forest coverage, since available forest sequestration cannot sink biogenic emissions in the short term, and importing bioenergy could worsen the situation.
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