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人体循环/呼吸综合空气净化系统。

Human Circulatory/Respiratory-Inspired Comprehensive Air Purification System.

机构信息

Applied Nano and Thermal Science Lab, Department of Mechanical Engineering, Seoul National University, 1 Gwanak-ro, Gwanak-gu, Seoul, 151-742, South Korea.

Molecular Recognition Research Center, Korea Institute of Science and Technology (KIST), Seoul, 02792, South Korea.

出版信息

Adv Mater. 2024 Oct;36(41):e2405568. doi: 10.1002/adma.202405568. Epub 2024 Aug 14.

Abstract

The circulatory and respiratory systems in humans are marvels of biological engineering that exhibit competence in maintaining homeostasis. These systems not only shield the organism from external contaminants but also orchestrate the vital gases via the bloodstream to sustain cellular respiration and metabolic processes across diverse tissues. It is noticed that spaces inhabited encounter challenges akin to those of the human body: protecting the indoor air from external pollutants while removing anthropogenic byproducts like carbon dioxide (CO), particulate matters (PM), and volatile organic compounds (VOCs) tooutside. A biomimetic approach, composed of a microbubble-based gas exchanger and circulating liquid inspired by alveoli, capillary beds, and bloodstream of the human circulatory/respiratory system, offer an innovative solution for comprehensive air purification of hermetic spaces. Circulatory/respiratory-inspired air purification system (CAPS) ensure both continuous removal of PM and exchange of gas species between indoor and outdoor environments to maintain homeostasis. The effectiveness of this system is also supported by animal behavior experiments with and without CAPS, showing an effect of reducing CO concentration by 30% and increasing mice locomotor activity by 53%. CAPS is expected to evolve into robust and comprehensive air purification schemes through the networked integration of plural internal and external environments.

摘要

人体的循环和呼吸系统是生物工程的奇迹,它们在维持体内平衡方面表现出色。这些系统不仅能保护生物体免受外部污染物的侵害,还能通过血液流来调节重要气体,以维持不同组织的细胞呼吸和新陈代谢过程。值得注意的是,居住的空间会遇到类似于人体所面临的挑战:保护室内空气免受外部污染物的侵害,同时将二氧化碳(CO)、颗粒物(PM)和挥发性有机化合物(VOCs)等人为副产品排出室外。一种仿生方法,由基于微泡的气体交换器和受人体循环/呼吸系统中的肺泡、毛细血管床和血流启发的循环液体组成,为密封空间的全面空气净化提供了一种创新的解决方案。循环/呼吸启发的空气净化系统(CAPS)确保了持续去除 PM 和室内外环境之间的气体交换,以维持体内平衡。动物行为实验也支持了该系统的有效性,实验结果表明,该系统可将 CO 浓度降低 30%,并将老鼠的活动量增加 53%。CAPS 有望通过多元内部和外部环境的网络集成,发展成为强大而全面的空气净化方案。

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