过程强化的自然启发化学工程。

IF 7.6 2区 工程技术 Q1 CHEMISTRY, APPLIED Annual review of chemical and biomolecular engineering Pub Date : 2021-06-07 Epub Date: 2021-03-31 DOI:10.1146/annurev-chembioeng-060718-030249
Marc-Olivier Coppens
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引用次数: 12

摘要

提出了一种自然启发的解决方案(NIS)方法,作为一个系统的创新平台,并为应对包括可持续发展在内的重大挑战所需的变革性技术提供信息。可伸缩性、效率和弹性对于自然是必不可少的,就像它们对于工程过程一样。它们是通过支撑基本机制实现的,这些机制在NIS方法中被归类为反复出现的主题:分层运输网络、力量平衡、动态自组织和生态系统属性。为了利用这些通用机制,并将它们有效地整合到工程设计中,可能需要调整以适应不同的自然环境和工程应用程序。受自然启发的化学工程利用NIS方法进行过程强化,如在流化,催化,燃料电池工程和膜分离中所展示的那样,通过严格采用自然优化的概念,可以实现更高的性能。同样的方法也适用于其他应用,从生物医学工程到信息技术和建筑。
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Nature-Inspired Chemical Engineering for Process Intensification.

A nature-inspired solution (NIS) methodology is proposed as a systematic platform for innovation and to inform transformative technology required to address Grand Challenges, including sustainable development. Scalability, efficiency, and resilience are essential to nature, as they are to engineering processes. They are achieved through underpinning fundamental mechanisms, which are grouped as recurring themes in the NIS approach: hierarchical transport networks, force balancing, dynamic self-organization, and ecosystem properties. To leverage these universal mechanisms, and incorporate them effectively into engineering design, adaptations may be needed to accommodate the different contexts of nature and engineering applications. Nature-inspired chemical engineering takes advantage of the NIS methodology for process intensification, as demonstrated here in fluidization, catalysis, fuel cell engineering, and membrane separations, where much higher performance is achieved by rigorously employing concepts optimized in nature. The same approach lends itself to other applications, from biomedical engineering to information technology and architecture.

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来源期刊
Annual review of chemical and biomolecular engineering
Annual review of chemical and biomolecular engineering CHEMISTRY, APPLIED-ENGINEERING, CHEMICAL
CiteScore
16.00
自引率
0.00%
发文量
25
期刊介绍: The Annual Review of Chemical and Biomolecular Engineering aims to provide a perspective on the broad field of chemical (and related) engineering. The journal draws from disciplines as diverse as biology, physics, and engineering, with development of chemical products and processes as the unifying theme.
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