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首页> 外文期刊>Angewandte Chemie >Continuous-Flow Extraction of Adjacent Metals-A Disruptive Economic Window for In Situ Resource Utilization of Asteroids?
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Continuous-Flow Extraction of Adjacent Metals-A Disruptive Economic Window for In Situ Resource Utilization of Asteroids?

机译:邻近金属的连续流动提取 - 用于小行星原位资源利用的破坏性经济窗口吗?

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摘要

For the in situ resource utilization (ISRU) of asteroids, the cost-mass conundrum needs to be solved, and technologies may need to be conceptualised from first principals. By using this approach, this Review seeks to illustrate how chemical process intensification can help with the development of disruptive technologies and business matters, how this might influence space-industry start-ups, and even industrial transformations on Earth. The disruptive technology considered is continuous microflow solvent extraction and, as another disruptive element therein, the use of ionic liquids. The space business considered is asteroid mining, as it is probably the most challenging resource site, and the focus is on its last step: the purification of adjacent metals (cobalt versus nickel). The key economic barrier is defined as the reduction in the amount of water used in the asteroid mining process. This Review suggests a pathway toward water savings up to the technological limit of the best Earth-based processes and their physical limits.
机译:对于小行星的原位资源利用(ISRU),需要解决成本-质量难题,可能需要从第一原理对技术进行概念化。通过使用这种方法,本综述试图说明化学过程强化如何有助于破坏性技术和商业事务的发展,这可能会如何影响航天工业初创企业,甚至地球上的工业转型。考虑的破坏性技术是连续微流溶剂萃取,以及离子液体的使用,作为其中的另一个破坏性元素。考虑的太空业务是小行星采矿,因为它可能是最具挑战性的资源地点,重点是其最后一步:净化相邻金属(钴与镍)。关键的经济障碍被定义为小行星采矿过程中使用水量的减少。这篇综述提出了一条节水的途径,达到了地球上最好的工艺及其物理极限的技术极限。

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