A Worldwide Hotspot Analysis on Food Loss and Waste, Associated Greenhouse Gas Emissions, and Protein Losses
Abstract
:1. Introduction
2. Materials and Methods
3. Results
3.1. Food Loss and Waste and the Associated GHG Emissions
3.2. Protein Losses
4. Discussion
4.1. Conclusions and Implications
4.2. Limitations and Future Research
Author Contributions
Funding
Acknowledgments
Conflicts of Interest
References
- FAO. Global Agriculture towards 2050; FAO: Rome, Italy, 2009. [Google Scholar]
- Fiore, M.; Contò, F.; Pellegrini, G. Reducing food losses: A (dis)-opportunity cost model. Riv. Di Studi Sulla Sostenibilita 2015, 1. [Google Scholar] [CrossRef]
- Fiore, M.; Pellegrini, G.; Sala, P.L.; Conte, A.; Liu, B. Attitude toward food waste reduction: The case of Italian consumers. Int. J. Glob. Small Bus. 2017, 9, 185–201. [Google Scholar] [CrossRef]
- Spada, A.; Conte, A.; Del Nobile, M.A. The influence of shelf life on food waste: A model-based approach by empirical market evidence. J. Clean. Prod. 2018, 172, 3410–3414. [Google Scholar] [CrossRef]
- Adamashvili, N.; Chiara, F.; Fiore, M. Food Loss and Waste, a global responsibility?! Econ. Agro Aliment. 2019, 825–846. [Google Scholar] [CrossRef]
- Pellegrini, G.; Sillani, S.; Gregori, M.; Spada, A. Household food waste reduction: Italian consumers’ analysis for improving food management. Br. Food J. 2019, 121, 1382–1397. [Google Scholar] [CrossRef]
- Vittuari, M.; De Menna, F.; García-Herrero, L.; Pagani, M.; Brenes-Peralta, L.; Segrè, A. Chapter 17—Food systems sustainability: The complex challenge of food loss and waste. In Sustainable Food Supply Chains; Accorsi, R., Manzini, R., Eds.; Academic Press: Cambridge, MA, USA, 2019; pp. 249–260. [Google Scholar]
- Vittuari, M.; Pagani, M.; Johnson, T.G.; De Menna, F. Impacts and costs of embodied and nutritional energy of food waste in the US food system: Distribution and consumption (Part B). J. Clean. Prod. 2020, 252, 119857. [Google Scholar] [CrossRef]
- Pagani, M.; De Menna, F.; Johnson, T.G.; Vittuari, M. Impacts and costs of embodied and nutritional energy of food losses in the US food system: Farming and processing (Part A). J. Clean. Prod. 2020, 244, 118730. [Google Scholar] [CrossRef]
- Ishangulyyev, R.; Kim, S.; Lee, S.H. Understanding food loss and waste—Why are we losing and wasting food? Foods 2019, 8, 297. [Google Scholar] [CrossRef] [Green Version]
- Springmann, M.; Clark, M.; Mason-D’Croz, D.; Wiebe, K.; Bodirsky, B.L.; Lassaletta, L.; De Vries, W.; Vermeulen, S.J.; Herrero, M.; Carlson, K.M. Options for keeping the food system within environmental limits. Nature 2018, 562, 519–525. [Google Scholar] [CrossRef]
- Hiç, C.; Pradhan, P.; Rybski, D.; Kropp, J.P. Food surplus and its climate burdens. Environ. Sci. Technol. 2016, 50, 4269–4277. [Google Scholar] [CrossRef] [Green Version]
- Porter, S.D.; Reay, D.S.; Higgins, P.; Bomberg, E. A half-century of production-phase greenhouse gas emissions from food loss & waste in the global food supply chain. Sci. Total Environ. 2016, 571, 721–729. [Google Scholar] [PubMed] [Green Version]
- Quested, T.; Ingle, R.; Parry, A. Household Food and Drink Waste in the United Kingdom 2012; WRAP: London, UK, 2013. [Google Scholar]
- Wenlock, R.; Buss, D. Wastage of edible food in the home: A preliminary study. J. Hum. Nutr. 1977, 31, 405–411. [Google Scholar] [PubMed]
- Wenlock, R.; Buss, D.; Derry, B.; Dixon, E. Household food wastage in Britain. Br. J. Nutr. 1980, 43, 53–70. [Google Scholar] [CrossRef] [PubMed] [Green Version]
- Buzby, J.C.; Hyman, J. Total and per capita value of food loss in the United States. Food Policy 2012, 37, 561–570. [Google Scholar] [CrossRef]
- Kantor, L.S.; Lipton, K.; Manchester, A.; Oliveira, V. Estimating and addressing America’s food losses. Food Rev. Natl. Food Rev. 1997, 20, 2–12. [Google Scholar]
- Xue, L.; Liu, G.; Parfitt, J.; Liu, X.; Van Herpen, E.; Stenmarck, Å.; O’Connor, C.; Östergren, K.; Cheng, S. Missing food, missing data? A critical review of global food losses and food waste data. Environ. Sci. Technol. 2017, 51, 6618–6633. [Google Scholar] [CrossRef]
- Kling, W. Food waste in distribution and use. J. Farm Econ. 1943, 25, 848–859. [Google Scholar] [CrossRef]
- Harrington, J.M.; Myers, R.A.; Rosenberg, A.A. Wasted fishery resources: Discarded by-catch in the USA. Fish Fish. 2005, 6, 350–361. [Google Scholar] [CrossRef]
- Engström, R.; Carlsson-Kanyama, A. Food losses in food service institutions Examples from Sweden. Food Policy 2004, 29, 203–213. [Google Scholar] [CrossRef]
- Williams, H.; Wikström, F.; Otterbring, T.; Löfgren, M.; Gustafsson, A. Reasons for household food waste with special attention to packaging. J. Clean. Prod. 2012, 24, 141–148. [Google Scholar] [CrossRef] [Green Version]
- Leal Filho, W.; Kovaleva, M. Food Waste and Sustainable Food Waste Management in the Baltic Sea Region; Springer: Berlin/Heidelberg, Germany, 2015. [Google Scholar]
- Hodges, R.J.; Buzby, J.C.; Bennett, B. Postharvest losses and waste in developed and less developed countries: Opportunities to improve resource use. J. Agric. Sci. 2011, 149 (Suppl. S1), 37–45. [Google Scholar] [CrossRef] [Green Version]
- Fehr, M.; Romão, D. Measurement of fruit and vegetable losses in Brazil: A case study. Environ. Dev. Sustain. 2001, 3, 253–263. [Google Scholar] [CrossRef]
- Jones, T.W. Using Contemporary Archaeology and Applied Anthropology to Understand Food Loss in the American Food System. Ph.D. Thesis, Bureau of Applied Research in Anthropology, University of Arizona, Tucson, AZ, USA, 2004. [Google Scholar]
- Loke, M.K.; Leung, P. Quantifying food waste in Hawaii’s food supply chain. Waste Manag. Res. 2015, 33, 1076–1083. [Google Scholar] [CrossRef] [PubMed]
- Stenmarck, Å.; Jörgen Hanssen, O.; Silvennoinen, K.; Katajajuuri, J.-M.; Werge, M. Initiatives on Prevention of Food Waste in the Retail and Wholesale Trades; Nordic Council of Ministers: Copenhagen, Denmark, 2011. [Google Scholar]
- Åhnberg, A.; Strid, I. When Food Turns into Waste—A Study on Practices and Handling of Losses of Fruit and Vegetables and Meat in Willys Södertälje Weda; Swedish University of Agricultural Sciences: Uppsala, Sweden, 2010. [Google Scholar]
- Beretta, C.; Stoessel, F.; Baier, U.; Hellweg, S. Quantifying food losses and the potential for reduction in Switzerland. Waste Manag. 2013, 33, 764–773. [Google Scholar] [CrossRef] [Green Version]
- Caldeira, C.; De Laurentiis, V.; Corrado, S.; van Holsteijn, F.; Sala, S. Quantification of food waste per product group along the food supply chain in the European Union: A mass flow analysis. Resour. Conserv. Recycl. 2019, 149, 479–488. [Google Scholar] [CrossRef] [PubMed]
- Lanfranchi, M.; Giannetto, C.; De Pascale, A. Analysis and models for the reduction of food waste in organized large-scale retail distribution in eastern Sicily. Am. J. Appl. Sci. 2014, 11, 1860. [Google Scholar] [CrossRef] [Green Version]
- Gustavsson, J.; Cederberg, C.; Sonesson, U.; van Otterdijk, R.; Meybeck, A. Global food losses and food waste: Extent, causes and prevention. In SAVE FOOD: An Initiative on Food Loss and Waste Reduction; FAO: Rome, Italy, 2011. [Google Scholar]
- FAO. Food Wastage Footprint: Impacts on Natural Resources; FAO: Rome, Italy, 2013. [Google Scholar]
- FAO. The State of Food and Agriculture: Moving Forward on Food Loss and Waste Reduction; FAO: Rome, Italy, 2019. [Google Scholar]
- FAO. Food Loss Index. Online Statistical Working System for Loss Calculations. 2019. Available online: http://www.fao.org/food-loss-and-food-waste/flw-data) (accessed on 19 July 2020).
- Alexander, P.; Brown, C.; Arneth, A.; Finnigan, J.; Moran, D.; Rounsevell, M.D. Losses, inefficiencies and waste in the global food system. Agric. Syst. 2017, 153, 190–200. [Google Scholar] [CrossRef]
- Scherhaufer, S.; Lebersorger, S.; Pertl, A.; Obersteiner, G.; Schneider, F.; Falasconi, L.; De Menna, F.; Vittuari, M.; Hartikainen, H.; Katajajuuri, J.-M. Criteria for and Baseline Assessment of Environmental and Socio-Economic Impacts of Food Waste; BOKU University of Natural Resources and Life Sciences, Institute of Waste Management: Vienna, Austria, 2015. [Google Scholar]
- Hamerschlag, K.; Venkat, K. Meat Eater’s Guide to Climate Change+ Health: Lifecycle Assessments: Methodology and Results 2011; Environmental Working Group: Washington, DC, USA, 2011. [Google Scholar]
- Cellura, M.; Longo, S.; Mistretta, M. Life Cycle Assessment (LCA) of protected crops: An Italian case study. J. Clean. Prod. 2012, 28, 56–62. [Google Scholar] [CrossRef]
- Sheane, R.; Lewis, K.; Hall, P.; Holmes-Ling, P.; Kerr, A.; Stewart, K.; Webb, D. Identifying Opportunities to Reduce the Carbon Footprint Associated with the Scottish Dairy Supply Chain—Main Report; Scottish Government: Edinburgh, UK, 2011. [Google Scholar]
- Shi, C.W.P.; Rugrungruang, F.; Yeo, Z.; Song, B. Carbon footprint analysis for energy improvement in flour milling production. In Glocalized Solutions for Sustainability in Manufacturing; Springer: Berlin/Heidelberg, Germany, 2011; pp. 246–251. [Google Scholar]
© 2020 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
Share and Cite
Guo, X.; Broeze, J.; Groot, J.J.; Axmann, H.; Vollebregt, M. A Worldwide Hotspot Analysis on Food Loss and Waste, Associated Greenhouse Gas Emissions, and Protein Losses. Sustainability 2020, 12, 7488. https://doi.org/10.3390/su12187488
Guo X, Broeze J, Groot JJ, Axmann H, Vollebregt M. A Worldwide Hotspot Analysis on Food Loss and Waste, Associated Greenhouse Gas Emissions, and Protein Losses. Sustainability. 2020; 12(18):7488. https://doi.org/10.3390/su12187488
Chicago/Turabian StyleGuo, Xuezhen, Jan Broeze, Jim J. Groot, Heike Axmann, and Martijntje Vollebregt. 2020. "A Worldwide Hotspot Analysis on Food Loss and Waste, Associated Greenhouse Gas Emissions, and Protein Losses" Sustainability 12, no. 18: 7488. https://doi.org/10.3390/su12187488
APA StyleGuo, X., Broeze, J., Groot, J. J., Axmann, H., & Vollebregt, M. (2020). A Worldwide Hotspot Analysis on Food Loss and Waste, Associated Greenhouse Gas Emissions, and Protein Losses. Sustainability, 12(18), 7488. https://doi.org/10.3390/su12187488