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Economics of carbon dioxide capture and utilization-a supply and demand perspective

机译:二氧化碳经济学捕获和利用 - 供需观点

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Lately, the technical research on carbon dioxide capture and utilization (CCU) has achieved important breakthroughs. While single CO2-based innovations are entering the markets, the possible economic effects of a large-scale CO2 utilization still remain unclear to policy makers and the public. Hence, this paper reviews the literature on CCU and provides insights on the motivations and potential of making use of recovered CO2 emissions as a commodity in the industrial production of materials and fuels. By analyzing data on current global CO2 supply from industrial sources, best practice benchmark capture costs and the demand potential of CO2 utilization and storage scenarios with comparative statics, conclusions can be drawn on the role of different CO2 sources. For near-term scenarios the demand for the commodity CO2 can be covered from industrial processes, that emit CO2 at a high purity and low benchmark capture cost of approximately 33 a,not sign/t. In the long-term, with synthetic fuel production and large-scale CO2 utilization, CO2 is likely to be available from a variety of processes at benchmark costs of approx. 65 a,not sign/t. Even if fossil-fired power generation is phased out, the CO2 emissions of current industrial processes would suffice for ambitious CCU demand scenarios. At current economic conditions, the business case for CO2 utilization is technology specific and depends on whether efficiency gains or substitution of volatile priced raw materials can be achieved. Overall, it is argued that CCU should be advanced complementary to mitigation technologies and can unfold its potential in creating local circular economy solutions.
机译:最近,对二氧化碳捕获和利用(CCU)的技术研究取得了重要的突破。虽然基于单一的CO2的创新正在进入市场,但大规模二氧化碳利用的可能经济影响仍然不清楚政策制定者和公众。因此,本文审查了CCU的文献,并提供了对利用恢复的二氧化碳排放作为材料生产材料和燃料的商品的动机和潜力的见解。通过分析工业来源的当前全球二氧化碳供应数据,最佳实践基准捕获成本和CO2利用率和存储场景的需求潜力与比较估计,结论可以绘制不同二氧化碳来源的作用。对于近期情景,可以从工业过程中覆盖对商品CO2的需求,该工业过程可以以高纯度和低基准捕获成本的高纯度和低基准捕获成本,而不是签名/吨。在长期的情况下,通过合成燃料生产和大规模的CO2利用,CO2可能从基准成本的各种过程中获得。 65 A,不签名/吨。即使淘汰了化石发电,当前工业流程的二氧化碳排放就足以满足雄心勃勃的CCU需求方案。在当前的经济条件下,二氧化碳利用商业案例是技术特异性,取决于是否可以实现挥发性原料的效率收益或替代。总体而言,认为CCU应该提前补充缓解技术,并且可以展开其在创造当地循环经济解决方案方面的潜力。

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