Zhou Xinchen, Xu Xiang, Huang Jiping
Department of Physics, Fudan University, Shanghai, 200438, China.
State Key Laboratory of Surface Physics, Fudan University, Shanghai, 200438, China.
Nat Commun. 2023 Sep 6;14(1):5449. doi: 10.1038/s41467-023-40988-2.
The transportation of essential items, such as food and vaccines, often requires adaptive multi-temperature control to maintain high safety and efficiency. While existing methods utilizing phase change materials have shown promise, challenges related to heat transfer and materials' physicochemical properties remain. In this study, we present an adaptive multi-temperature control system using liquid-solid phase transitions to achieve highly effective thermal management using a pair of heat and cold sources. By leveraging the properties of stearic acid and distilled water, we fabricated a multi-temperature maintenance container and demonstrated temperature variations of only 0.14-2.05% over a two-hour period, underscoring the efficacy of our approach. Our findings offer a practical solution to address critical challenges in reliable transportation of goods, with potential implications for various fields in physical, engineering, and life sciences.
食品和疫苗等必需品的运输通常需要适应性多温度控制,以保持高安全性和效率。虽然利用相变材料的现有方法已显示出前景,但与传热和材料物理化学性质相关的挑战仍然存在。在本研究中,我们提出了一种自适应多温度控制系统,该系统利用液-固相变,通过一对热源和冷源实现高效热管理。通过利用硬脂酸和蒸馏水的特性,我们制造了一个多温度维持容器,并证明在两小时内温度变化仅为0.14%-2.05%,突出了我们方法的有效性。我们的研究结果为解决货物可靠运输中的关键挑战提供了一个切实可行的解决方案,对物理、工程和生命科学的各个领域都有潜在影响。