4.7 Review

A review of the water-related energy consumption of the food system in nexus studies

期刊

JOURNAL OF CLEANER PRODUCTION
卷 279, 期 -, 页码 -

出版社

ELSEVIER SCI LTD
DOI: 10.1016/j.jclepro.2020.123414

关键词

Water-energy nexus; Water-energy-food nexus; Energy consumption; Climate-friendly food system; Agriculture; Food processing

资金

  1. University of Queensland Research Training Program (UQ RTP) scholarship
  2. Australian Research Council [DE100101322]
  3. Co-operative Research Centre for Water Sensitive Cities
  4. European Union's Horizon 2020 research and innovation program under the Marie Sklodowska-Curie grant [707404]

向作者/读者索取更多资源

This study reviewed and analyzed assessment research on water-related energy consumption in the food system, revealing different research trends and drivers in various countries. Most studies focused on irrigation energy consumption in the agricultural phase, while neglecting more energy-intensive processes such as food processing and cooking.
This study reviewed nexus researches, synthesize and discuss insights, methodological practices, and future outlook of water-related energy consumption assessment of the food system. For the first time, the study assessed: (i) the trends and drivers of water-related energy research in different countries, (ii) how water-related energy in the food system is being evaluated (objectives & scale, study dimension & analysis focus, and methods) and (iii) the significance of food-systemwater-related energy in comparison with other sectors. Of 686 nexus studies undertaken since 1990, 104 studies (15%) quantified water-related energy. Studies have generally broadened in scope through time. The USA, China, and Australia have conducted most studies representing 23%, 17%, 15% of total respectively. A few of the identified major drivers in these countries leading water-related energy assessment are: providing optimal solutions and avoiding problem-shifting, analyzing the challenges and opportunities to reduce water-related energy, and exploring the energy-saving benefits by saving water. Of the 104 water-related energy studies, 65 articles (similar to 60%) related to the food system, focussed on the agriculture phase for irrigation energy consumption. Existing nexus studies often ignored other phases such as food processing and cooking, which are more energy-intensive. Over 50% of studies used material flow analysis to evaluate water-related energy in the food system. Few of the nexus studies evaluated inter-regional flows or changes through time. Absence of a comprehensive study of the entire food system, and wide variations in study system boundary and definitions, make it difficult to compare sectoral significance. However, the order of sectoral water-related energy consumption (from highest to lowest) identified as industrial, residential, agriculture, and water and wastewater service. Our review demonstrates a tremendous opportunity and need for an overarching framework to enable systematic evaluation and benchmarking of water-related energy consumption of the food system. (c) 2020 Elsevier Ltd. All rights reserved.

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