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Global advanced bioenergy potential under environmental protection policies and societal transformation measures

机译:环境保护政策和社会转型措施下的全球先进的生物能源潜力

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Bioenergy plays an important role in low greenhouse gas stabilization scenarios. Among various possible sources of bioenergy, dedicated bio‐crops could contribute to most of the potential. However, large scale bio‐crop deployment raises sustainability concerns. Policies to alleviate the pressure of bio‐crops on the terrestrial environment can affect bioenergy potential and production costs. Here, we estimated the maximum bioenergy potential under environmental protection policies (biodiversity and soil protection) and societal transformation measures from demand and supply side (demand‐side policy includes sustainable diet; supply‐side policy includes advanced technology and trade openness for food) by using an integrated assessment modelling framework, which consists of a general equilibrium model (Asian‐Pacific Integrated Model/Computable General Equilibrium) and a spatial land use allocation model (Asian‐Pacific Integrated Model/Platform for Land‐Use and Environmental Model). We found that the global advanced bioenergy potential under no policy was 245 EJ/year and that 192 EJ/year could be produced under US$5/GJ. These figures were 149 EJ/year and 110 EJ/year, respectively, under a full environmental policy. Biodiversity protection has a greater impact than soil protection due to its larger coverage and stronger implementation. Societal transformation measures effectively increase them to 186 EJ/year and 143 EJ/year, respectively, even under full environmental policies. These results imply that the large‐scale bioenergy deployment possibly needed for the climate target to limit the global mean temperature increase well below 2°C compared to the preindustrial level might face a trade‐off with environmental protection targets and that possible mitigation pathways in harmony with other environmental issues need to be explored.
机译:生物能源在低温室气体稳定场景中起着重要作用。在各种可能的生物能源来源中,专用生物作物可能导致大多数潜力。但是,大规模生物作物部署提高了可持续性问题。减轻陆地环境对生物作物压力的政策会影响生物能源的潜在和生产成本。在这里,我们估计了环境保护政策下的最大生物能源潜力(生物多样性和土壤保护)以及来自需求和供应方的社会转型措施(需求方政策包括可持续饮食;供应方政策包括先进的技术和贸易开放性)使用综合评估建模框架,该框架包括一般均衡模型(亚太地区集成型号/可计算一般均衡)和空间土地利用分配模型(亚太地区集成模型/土地利用和环境模型平台)。我们发现,在没有政策下的全球高级生物能源潜力为245欧元/年,192年的EJ /年可以在5美元/ GJ以下。这些数字分别在全面环境政策下为149欧元/年,110欧元/年。由于其更大的覆盖范围和更强的实施,生物多样性保护具有比土壤保护更大的影响。即使在全面的环境政策下,社会转型措施也有效地将其增加到186欧二/年和143欧委员会/年度。这些结果意味着与预工业水平相比,气候目标可能需要极大地限制全球平均温度的大规模生物能量部署可能面临着环境保护目标的权衡,并且和谐可能的缓解途径可能面临折衷。需要探索其他环境问题。

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