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Publishing Language: Chinese | Open Access

Carbon Emission Calculation and Comparative Analysis during Last-mile Fresh Food Distribution Using Different Cooling Modes

Shouzheng Zhao1Zongsheng Zhu1( )Songsong Zhao1Bin Liu1Jinze Yu2Cunkun Chen2
Key Laboratory of Agricultural Products Low Carbon Cold Chain of Ministry of Agriculture and Rural Affairs, Tianjin Key Laboratory of Refrigeration Technology, Tianjin University of Commerce, Tianjin, 300134, China
Key Laboratory for Storage and Preservation of Agricultural Products, Tianjin, 300384, China
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Abstract

The rapid development of fresh food distribution is facing significant pressure to reduce global carbon emissions. Reducing carbon emissions from last-mile distribution is important for energy conservation, environmental protection, and economic benefits. In this study, six typical cities in China are selected to analyze and evaluate the carbon emissions from ice storage and photovoltaic refrigeration in fresh food distribution using the entire life cycle method. When the design temperature in the delivery box is -5 ℃, the results show that the carbon emission of six cities in the production stage for the photovoltaic refrigeration mode is higher than that of the ice storage mode. In the case of a 20-year life cycle, the total carbon emissions of the photovoltaic refrigeration mode in each city were reduced by 97.95%-98.78% compared with the total carbon emissions of the ice storage mode, and the emission reduction effect was significant. Among them, the carbon emissions from the use stage of the ice storage distribution mode contribute the most, and the carbon emissions from the production stage of the photovoltaic refrigeration distribution mode account for the most. Emission reduction benefits can be obtained in the decommissioning stage. When the design temperature in the distribution box increases from -5 ℃ to 0 ℃, the carbon emissions of each city in the photovoltaic refrigeration mode are reduced by 17.74%-19.31%, whereas the carbon emissions in the ice storage mode are reduced by 13.21-18.79%. When the design temperature in the distribution box is increased from 0 ℃ to 5 ℃, the carbon emissions of each city in the photovoltaic refrigeration mode are reduced by 17.03%-18.24%, whereas the carbon emissions in the ice storage mode are reduced by 15.22%-19.71%.

CLC number: TB61+1;U295 Document code: A Article ID: 0253-4339(2024)03-0150-10

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Journal of Refrigeration
Pages 150-159

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Cite this article:
Zhao S, Zhu Z, Zhao S, et al. Carbon Emission Calculation and Comparative Analysis during Last-mile Fresh Food Distribution Using Different Cooling Modes. Journal of Refrigeration, 2024, 45(3): 150-159. https://doi.org/10.3969/j.issn.0253-4339.2024.03.150

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Received: 13 April 2023
Revised: 13 June 2023
Accepted: 01 August 2023
Published: 16 June 2024
© 2024 The Editorial Office of Journal of Refrigeration

This is an open access article under the terms of the Creative Commons Attribution 4.0 International License (CC BY 4.0, http://creativecommons.org/licenses/by/4.0/).