Construction of a Robust Radiative Cooling Emitter for Efficient Food Storage and Transportation

Nowadays, food safety is still facing great challenges. During storage and transportation, perishable goods have to be kept at a low temperature. However, the current logistics still lack enough preservation ability to maintain a low temperature in the whole. Hence, considering the temperature fluct...

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Veröffentlicht in:ACS applied materials & interfaces 2024-04, Vol.16 (18), p.23885-23894
Hauptverfasser: Tao, Shuang, Cai, Weikang, Han, Jingtian, Shi, Chenjie, Fang, Zhenggang, Lu, Chunhua, Xu, Chao, Li, Wenjun, Xu, Zhongzi
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container_end_page 23894
container_issue 18
container_start_page 23885
container_title ACS applied materials & interfaces
container_volume 16
creator Tao, Shuang
Cai, Weikang
Han, Jingtian
Shi, Chenjie
Fang, Zhenggang
Lu, Chunhua
Xu, Chao
Li, Wenjun
Xu, Zhongzi
description Nowadays, food safety is still facing great challenges. During storage and transportation, perishable goods have to be kept at a low temperature. However, the current logistics still lack enough preservation ability to maintain a low temperature in the whole. Hence, considering the temperature fluctuation in logistics, in this work, the passive radiative cooling (RC) technology was applied to package to enhance the temperature control capability in food storage and transportation. The RC emitter with selective infrared emission property was fabricated by a facile coating method, and Al2O3 was added to improve the wear resistance. The sunlight reflectance and infrared emittance within atmospheric conditions could reach up to 0.92 and 0.84, respectively. After abrasion, the sunlight reflection only decreased by 0.01, and the infrared emission showed a negligible change, revealing excellent wear resistance. During outdoor measurement, the box assembled by RC emitters (RC box) was proved to achieve temperature drops of ∼9 and ∼4 °C compared with the corrugated box and foam box, respectively. Besides, the fruits stored in the RC box exhibited a lower decay rate. Additionally, after printing with patterns to meet the aesthetic requirements, the RC emitter could also maintain the cooling ability. Given the superior optical properties, wear resistance, and cooling capability, the emitter has great potential for obtaining a better temperature control ability in food storage and transportation.
doi_str_mv 10.1021/acsami.4c02298
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During outdoor measurement, the box assembled by RC emitters (RC box) was proved to achieve temperature drops of ∼9 and ∼4 °C compared with the corrugated box and foam box, respectively. Besides, the fruits stored in the RC box exhibited a lower decay rate. Additionally, after printing with patterns to meet the aesthetic requirements, the RC emitter could also maintain the cooling ability. 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title Construction of a Robust Radiative Cooling Emitter for Efficient Food Storage and Transportation
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