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The role of bioenergy for global deep decarbonization: CO2 removal or low-carbon energy?

机译:生物能源对全球深脱碳的作用:二氧化碳去除或低碳能量吗?

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Bioenergy is expected to have a prominent role in limiting global greenhouse emissions to meet the climate change target of the Paris Agreement. Many studies identify negative emissions from bioenergy generation with carbon capture and storage (BECCS) as its key contribution, but assume that no other CO2 removal technologies are available. We use a global integrated assessment model, TIAM-UCL, to investigate the role of bioenergy within the global energy system when direct air capture and afforestation are available as cost-competitive alternatives to BECCS. We find that the presence of other CO2 removal technologies does not reduce the pressure on biomass resources but changes the use of bioenergy for climate mitigation. While we confirm that when available BECCS offers cheaper decarbonization pathways, we also find that its use delays the phase-out of unabated fossil fuels in industry and transport. Furthermore, it displaces renewable electricity generation, potentially increasing the likelihood of missing the Paris Agreement target. We found that the most cost-effective solution is to invest in a basket of CO2 removal technologies. However, if these technologies rely on CCS, then urgent action is required to ramp up the necessary infrastructure. We conclude that a sustainable biomass supply is critical for decarbonizing the global energy system. Since only a few world regions carry the burden of producing the biomass resource and store CO2 in geological storage, adequate international collaboration, policies and standards will be needed to realize this resource while avoiding undesired land-use change.
机译:预计生物能源将在限制全球温室排放方面具有突出作用,以满足巴黎协定的气候变化目标。许多研究识别生物能源生成的负排放与碳捕获和储存(BECC)作为其关键贡献,但假设没有其他二氧化碳清除技术。我们使用全球综合评估模型TIAM-UCL,调查生物能源在全球能源系统中的作用,当直接空气捕获和造林作为BECCS的成本竞争替代品时。我们发现其他二氧化碳去除技术的存在不会降低生物质资源的压力,而是改变生物能源对气候缓解的影响。虽然我们确认当可用的BECCS提供更便宜的脱碳途径时,我们还发现它的使用延迟了在工业和运输中逐步淘汰的化石燃料。此外,它取代了可再生发电,可能增加了缺少巴黎协议目标的可能性。我们发现最具成本效益的解决方案是投资一篮子二氧化碳拆除技术。但是,如果这些技术依赖于CCS,则需要紧急行动来加速必要的基础设施。我们得出结论,可持续的生物质供应对于脱碳至全球能源系统至关重要。由于只有少数世界地区承担生产生物量资源并在地质储存中储存二氧化碳的负担,因此需要充分的国际合作,政策和标准来实现这一资源,同时避免不期望的土地使用变化。

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