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A sorbent-focused techno-economic analysis of direct air capture

机译:直接空气捕获的以吸附剂为中心的技术经济分析

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摘要

Direct air capture, the removal of carbon dioxide from air, requires special sorbents, with high capture capacity, fast kinetics and long lifetime. Beyond that they also need to be affordable. However, since air capture is still in an early development stage, costs are still uncertain.We present a techno-economic model to value a sorbent based on the CO2 market price and the most important sorbent characteristics: cycle time, loading capacity, and rate of degradation. The model gives a net present value equation for any air capture sorbent, whether it uses a moisture swing, pressure swing or thermal swing for regeneration and makes it possible to estimate the maximum allowable budget for any air capture sorbent, i.e., the sorbent value.The analysis aims to focus the rapidly growing field of air capture sorbent development onto the most important parameters. The value of a sorbent is dramatically affected by its longevity. To be economically viable, the typical sorbent must survive tens if not hundreds of thousands of loading and unloading cycles. The model can also be used to investigate the interactions between different sorbent parameters. For example, the correlation between loading capacity and cycle time makes it possible to determine the cycle time that optimizes the economics of an air capture device.Our analysis highlights the significance of some neglected parameters in air capture cost analysis such as cycle duration and stability of the sorbent. Finally, the analysis can also be adapted to post-combustion flue gas sorbents.
机译:直接空气捕获,即从空气中去除二氧化碳,需要特殊的吸附剂,具有高捕获能力,快速动力学和长寿命。除此之外,它们还需要负担得起。但是,由于空气捕获仍处于早期开发阶段,成本仍然不确定。我们提出了一种技术经济模型,根据二氧化碳市场价格和最重要的吸附剂特性(周期时间,装载量和速率)对吸附剂进行估值退化。该模型给出了任何空气捕获吸附剂的净现值方程式,无论它是使用水分波动,压力波动还是热波动进行再生,并可以估算任何空气捕获吸附剂的最大允许预算,即吸附剂值。该分析旨在将快速发展的空气捕获吸附剂领域集中在最重要的参数上。吸附剂的价值受其使用寿命的影响很大。为了在经济上可行,典型的吸附剂必须承受数十万甚至数十万次的加载和卸载循环。该模型还可用于研究不同吸附剂参数之间的相互作用。例如,装载量与循环时间之间的相关性使得可以确定优化空气捕获设备经济性的循环时间。我们的分析突出了一些被忽略的参数在空气捕获成本分析中的重要性,例如循环持续时间和稳定性吸附剂。最后,该分析还可以适用于燃烧后烟气吸附剂。

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