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Research Article

Food loss and waste in community-supported agriculture in the region of Leipzig, Germany

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Article: 2242181 | Received 13 Jan 2023, Accepted 15 Jul 2023, Published online: 06 Aug 2023

References

  • Allen, J. E., Rossi, J., Woods, T. A., & Davis, A. F. (2017). Do community supported agriculture programmes encourage change to food lifestyle behaviours and health outcomes? New evidence from shareholders. International Journal of Agricultural Sustainability, 15(1), 70–82. https://doi.org/10.1080/14735903.2016.1177866
  • Baker, G. A., Gray, L. C., Harwood, M. J., Osland, T. J., & Tooley, J. B. C. (2019). On-farm food loss in northern and central California: Results of field survey measurements. Resources, Conservation and Recycling, 149, 541–549. https://doi.org/10.1016/j.resconrec.2019.03.022
  • Baker, N., Popay, S., Bennett, J., & Kneafsey, M. (2019). Net yield efficiency: Comparing salad and vegetable waste between community supported agriculture and supermarkets in the UK. Journal of Agriculture, Food Systems, and Community Development, 8(4), 1–14. https://doi.org/10.5304/jafscd.2019.084.013
  • Beausang, C., Hall, C., & Toma, L. (2017). Food waste and losses in primary production: Qualitative insights from horticulture. Resources, Conservation and Recycling, 126, 177–185. https://doi.org/10.1016/j.resconrec.2017.07.042
  • Beretta, C., Stoessel, F., Baier, U., & Hellweg, S. (2013). Quantifying food losses and the potential for reduction in Switzerland. Waste Management, 33(3), 764–773. https://doi.org/10.1016/j.wasman.2012.11.007
  • Blättel-Mink, B., Boddenberg, M., Gunkel, L., Schmitz, S., & Vaessen, F. (2017). Beyond the market-New practices of supply in times of crisis: The example community-supported agriculture. International Journal of Consumer Studies, 41(4), 415–421. https://doi.org/10.1111/ijcs.12351
  • Bloemmen, M., Bobulescu, R., Le, N. T., & Vitari, C. (2015). Microeconomic degrowth: The case of community supported agriculture. Ecological Economics, 112, 110–115. https://doi.org/10.1016/j.ecolecon.2015.02.013
  • BMEL. (2018). Ökologischer Landbau: Visualisierung der Strukturdaten zum ökologischen Landbau in Deutschland. https://www.bmel-statistik.de/landwirtschaft/oekologischer-landbau.
  • BMEL. (2019). Nationale Strategie zur Reduzierung der Lebensmittelverschwendung. https://www.bmel.de/SharedDocs/Downloads/DE/_Ernaehrung/Lebensmittelverschwendung/Nationale_Strategie_Lebensmittelverschwendung_2019.pdf;jsessionid = 46A1A5D4A41AD3C3E4240BF5C7BD8D44.live831?__blob = publicationFile&v = 3.
  • Bobulescu, R., Le, N. T., Vitari, C., & Whittingham, E. (2018). Socio-economic and ecological transition in community supported agriculture: From the ‘transitional’ to the ‘ideal’ CSA. International Journal of Agricultural Resources, Governance and Ecology, 14(2), Article 93990. 122. https://doi.org/10.1504/IJARGE.2018.093990
  • Bohnsack, R.. (2014). Documentary method. In U. Flick (Ed.), SAGE handbook of analyzing qualitative data (pp. 217–233). SAGE. https://doi.org/10.4135/9781446282243
  • Bohnsack, R. (2021). Rekonstruktive Sozialforschung. Einführung in qualitative Methoden (10th ed.). Barbara Budrich utb. https://doi.org/10.36198/9783838585543
  • Cattaneo, A., Sánchez, M. V., Torero, M., & Vos, R. (2021). Reducing food loss and waste: Five challenges for policy and research. Food Policy, 98, 101974. https://doi.org/10.1016/j.foodpol.2020.101974
  • Challinor, A. J., Watson, J., Lobell, D. B., Howden, S. M., Smith, D. R., & Chhetri, N. (2014). A meta-analysis of crop yield under climate change and adaptation. Nature Climate Change, 4(4), 287–291. https://doi.org/10.1038/nclimate2153
  • Chauhan, C., Dhir, A., Akram, M. U., & Salo, J. (2021). Food loss and waste in food supply chains. A systematic literature review and framework development approach. Journal of Cleaner Production, 295, 126438. https://doi.org/10.1016/j.jclepro.2021.126438
  • Chen, W. (2013). Perceived value of a community supported agriculture (CSA) working share. The construct and its dimensions. Appetite, 62, 37–49. https://doi.org/10.1016/j.appet.2012.11.014
  • Connor, D. J. (2008). Organic agriculture cannot feed the world. Field Crops Research, 106(2), 187–190. https://doi.org/10.1016/j.fcr.2007.11.010
  • Connor, D. J. (2013). Organically grown crops do not a cropping system make and nor can organic agriculture nearly feed the world. Field Crops Research, 144, 145–147. https://doi.org/10.1016/j.fcr.2012.12.013
  • Dresing, T., & Pehl, T. (2015). Praxisbuch Interview, Transkription & Analyse. Anleitungen und Regelsysteme für qualitativ Forschende (6th ed.). https://d-nb.info/1077320221/34
  • Egli, L., Rüschhoff, J., & Priess, J. (2023). A systematic review of the ecological, social and economic sustainability effects of community-supported agriculture. Frontiers in Sustainable Food Systems, 7, Article 1136866. https://doi.org/10.3389/fsufs.2023.1136866
  • Eriksson, M., Giovannini, S., & Ghosh, R. K. (2020). Is there a need for greater integration and shift in policy to tackle food waste? Insights from a review of European Union legislations. SN Applied Sciences, 2(8), 1347. https://doi.org/10.1007/s42452-020-3147-8
  • Falk, J., & Madsen, G. (2015). Solidarische Landwirtschaft (SoLaWi): Forschungsumfeld – Stand der Forschung und Forschungsbedarfe. http://orgprints.org/view/projects/int-conf-wita-2015.html.
  • FAO. (2019). The State of Food and Agriculture 2019. Moving forward on food loss and waste reduction. Rome, Italy. https://www.fao.org/3/ca6030en/ca6030en.pdf.
  • Farr-Wharton, G., Lyle, P., Hee-Jeong Choi, J., & Foth, M. (2012). Health matters for subscribers to community-supported agriculture. Food and Public Health, 2(6), 184–192. https://doi.org/10.5923/j.fph.20120206.01
  • Galt, R. E. (2013). The moral economy Is a double-edged sword: Explaining farmers’ earnings and self-exploitation in community-supported agriculture. Economic Geography, 89(4), 341–365. https://doi.org/10.1111/ecge.12015
  • Garbach, K., Milder, J. C., DeClerck, F. A., Montenegro de Wit, M., Driscoll, L., & Gemmill-Herren, B. (2017). Examining multi-functionality for crop yield and ecosystem services in five systems of agroecological intensification. International Journal of Agricultural Sustainability, 15(1), 11–28. https://doi.org/10.1080/14735903.2016.1174810
  • Göbel, C., Langen, N., Blumenthal, A., Teitscheid, P., & Ritter, G. (2015). Cutting food waste through cooperation along the food supply chain. Sustainability, 7(2), 1429–1445. https://doi.org/10.3390/su7021429
  • Göbel, C., Teitscheid, P., Ritter, G., Blumenthal, A., Friedrich, S., Frick, T., Grotstollen, L., Möllenbeck, C., Rottstegge, L., Pfeiffer, C., Baumkötter, D., Wetter, C., Uekötter, B., Burdick, B., Langen, N., Lettenmeier, M., & Rohn, H. (2012). Verringerung von Lebensmittelabfällen—Identifikation von Ursachen und Handlungsoptionen in Nordrhein-Westfalen. Studie für den Runden Tisch “Neue Wertschätzung von Lebensmitteln” des Minesteriums für Klimaschutz, Umwelt, Landwirtschaft, Natur- und Verbraucherschutz des Landes Nordrhein-Westfalen. https://www.fh-muenster.de/isun/downloads/Studie_Verringerung_von_Lebensmittelabfaellen.pdf
  • Goland, C. (2002). Community supported agriculture, food consumption patterns, and member commitment. Culture & Agriculture, 24(1), 14–25. https://doi.org/10.1525/cag.2002.24.1.14
  • Gustavsson, J., Cederberg, C., Sonesson, U., & van Otterdijk, R. (2011). Global food losses and food waste - Extent, causes and prevention. Rome, Italy. https://www.fao.org/3/i2697e/i2697e.pdf.
  • Haack, M., Engelhardt, H., Gascoigne, C., Schrode, A., Fienitz, M., & Meyer-Ohlendorf, L. (2020). Nischen des Ernährungssystems: Bewertung des Nachhaltigkeits- und Transformationspotenzials innovativer Nischen des Ernährungssystems in Deutschland. Dessau-Roßlau. https://www.umweltbundesamt.de/sites/default/files/medien/1410/publikationen/2020-07-02_texte_121-2020_nischen-ernaehrung-deutschland.pdf.
  • Henderson, E., & van En, R. (2007). Sharing the harvest: A citizen’s guide to community supported agriculture. Chelsea Green Publishing.
  • Kirchmann, H. (2019). Why organic farming is not the way forward. Outlook on Agriculture, 48(1), 22–27. https://doi.org/10.1177/0030727019831702
  • Kondoh, K. (2015). The alternative food movement in Japan: Challenges, limits, and resilience of the teikei system. Agriculture and Human Values, 32(1), 143–153. https://doi.org/10.1007/s10460-014-9539-x
  • Kremen, C., & Miles, A. (2012). Ecosystem services in biologically diversified versus conventional farming systems: Benefits, externalities, and trade-offs. Ecology and Society, 17(4), 40. https://doi.org/10.5751/ES-05035-170440
  • Kreutzberger, S. (2017). Die Gräben zwischen Bauern und Verbrauchern überwinden – Vernetzungsansätze in Deutschland. In S. Kost, & C. Kölking (Eds.), Transitorische Stadtlandschaften. Hybride Metropolen (pp. 41–54). Springer VS. https://doi.org/10.1007/978-3-658-13726-7_4
  • Kropp, C., & Stinner, S. (2018). Wie weit reicht die transformative Kraft der urbanen Ernährungsbewegung? Soziologie Und Nachhaltigkeit - Beiträge Zur Sozial-Ökologischen Transformationsforschung, 4(1), 26–50. https://doi.org/10.17879/sun-2018-2247
  • Krueger, R. A., & Casey, M. A. (2015). Focus groups: A practical guide for applied research (5th ed.). SAGE. ISBN: 9781483354095.
  • Lammerts van Bueren, E. T., Jones, S. S., Tamm, L., Murphy, K. M., Myers, J. R., Leifert, C., & Messmer, M. M. (2011). The need to breed crop varieties suitable for organic farming, using wheat, tomato and broccoli as examples: A review. NJAS - Wageningen Journal of Life Sciences, 58(3-4), 193–205. https://doi.org/10.1016/j.njas.2010.04.001
  • Lass, D., Stevenson, G. W., Hendickson, J., & Ruhf, K. (2003). CSA across the nation: Findings from the 1999 CSA Survey. Center for Integrated Agricultural Systems (CIAS). https://cias.wisc.edu/wp-content/uploads/sites/194/2008/07/csaacross1.pdf.
  • Lemaire, A., & Limbourg, S. (2019). How can food loss and waste management achieve sustainable development goals? Journal of Cleaner Production, 234, 1221–1234. https://doi.org/10.1016/j.jclepro.2019.06.226
  • Li, L., Li, S.-M., Sun, J.-H., Zhou, L.-L., Bao, X.-G., Zhang, H.-G., & Zhang, F.-S. (2007). Diversity enhances agricultural productivity via rhizosphere phosphorus facilitation on phosphorus-deficient soils. Proceedings of the National Academy of Sciences of the United States of America, 104(27), 11192–11196. https://doi.org/10.1073/pnas.0704591104
  • Lipinski, B., Hanson, C., Lomax, J., Kitinoja, L., Waite, R., & Searchinger, T. (2013). Reducing food loss and waste: Working paper, installment 2 of creating a sustainable food future. Washington DC. http://www.worldresourcesreport.org.
  • Liu, X., Yuan, Z., Liu, X., Zhang, Y., Hua, H., & Jiang, S. (2020). Historic trends and future prospects of waste generation and recycling in China’s phosphorus cycle. Environmental Science & Technology, 54(8), 5131–5139. https://doi.org/10.1021/acs.est.9b05120
  • Liu, X., Zhang, Y., Cheng, M., Jiang, S., & Yuan, Z. (2023). Recycling phosphorus from waste in China: Recycling methods and their environmental and resource consequences. Resources, Conservation and Recycling, 188, 106669. https://doi.org/10.1016/j.resconrec.2022.106669
  • Lotter, D. W., Seidel, R., & Liebhardt, W. (2003). The performance of organic and conventional cropping systems in an extreme climate year. American Journal of Alternative Agriculture, 18(3), 146–154. https://doi.org/10.1079/AJAA200345
  • Lülfs-Baden, F., Barrett, S., Schulze Höping, M., & Stahl, H. (2020). Situation der Bodenbearbeitung in Sachsen: Eine Analyse zur Verbreitung verschiedener Bodenbearbeitungsverfahren und der damit verbundenen technischen Ausstattung (Heft 5/2020). Schriftenreihe des Landesamtes für Umwelt, Landwirtschaft und Geologie. Sächsisches Landesamt für Umwelt, Landwirtschaft und Geologie. https://nbn-resolving.org/urn:nbn:de:bsz:14-qucosa2-714960.
  • MacMillan Uribe, A. L., Winham, D. M., & Wharton, C. M. (2012). Community supported agriculture membership in Arizona. An exploratory study of food and sustainability behaviours. Appetite, 59(2), 431–436. https://doi.org/10.1016/j.appet.2012.06.002
  • Mayer, J., & Mäder, P.. (2016). Langzeiversuche - Eine Analyse der Ertragsentwicklung. In B. Freyer (Ed.), Ökologischer Landbau. Grundlagen, Wissensstand und Herausforderungen (pp. 421–443). Haupt utb. https://doi.org/10.36198/9783838546391
  • Medici, M., Canavari, M., & Castellini, A. (2021). Exploring the economic, social, and environmental dimensions of community-supported agriculture in Italy. Journal of Cleaner Production, 316, 128233. https://doi.org/10.1016/j.jclepro.2021.128233
  • Mena, C., Adenso-Diaz, B., & Yurt, O. (2011). The causes of food waste in the supplier–retailer interface: Evidences from the UK and Spain. Resources, Conservation and Recycling, 55(6), 648–658. https://doi.org/10.1016/j.resconrec.2010.09.006
  • Muller, A., Schader, C., El-Hage Scialabba, N., Brüggemann, J., Isensee, A., Erb, K.-H., Smith, P., Klocke, P., Leiber, F., Stolze, M., & Niggli, U. (2017). Strategies for feeding the world more sustainably with organic agriculture. Nature Communications, 8(1), 1290. https://doi.org/10.1038/s41467-017-01410-w
  • Murphy, D. V., Stockdale, E. A., Poulton, P. R., Willison, T. W., & Goulding, K. W. T. (2007). Seasonal dynamics of carbon and nitrogen pools and fluxes under continuous arable and ley-arable rotations in a temperate environment. European Journal of Soil Science, 58(6), 1410–1424. https://doi.org/10.1111/j.1365-2389.2007.00946.x
  • Netzwerk Solidarische Landwirtschaft e.V. (2021). Bestehende Solawis und Solawis i.G. https://www.solidarische-landwirtschaft.org/solawis-finden/auflistung/solawis.
  • Ogunmoroti, A., Liu, M., Li, M., & Liu, W. (2022). Unraveling the environmental impact of current and future food waste and its management in Chinese provinces. Resources, Environment and Sustainability, 9, 100064. https://doi.org/10.1016/j.resenv.2022.100064
  • Parfitt, J., Croker, T., & Brockhaus, A. (2021). Global food loss and waste in primary production: A reassessment of Its scale and significance. Sustainability, 13(21), 12087. https://doi.org/10.3390/su132112087
  • Pigford, A.-A. E., Hickey, G. M., & Klerkx, L. (2018). Beyond agricultural innovation systems? Exploring an agricultural innovation ecosystems approach for niche design and development in sustainability transitions. Agricultural Systems, 164, 116–121. https://doi.org/10.1016/j.agsy.2018.04.007
  • Pimentel, D., Hepperly, P., Hanson, J., Seidel, R., & Douds, D. (2005). Organic and conventional farming systems: Environmental and economic issues. (Report 05-1). https://ecommons.cornell.edu/bitstream/handle/1813/2101/?sequence = 1.
  • Pole, A., & Kumar, A. (2015). Segmenting CSA members by motivation: Anything but two peas in a pod. British Food Journal, 117(5), 1488–1505. https://doi.org/10.1108/BFJ-12-2014-0405
  • Ponisio, L. C., M’Gonigle, L. K., Mace, K. C., Palomino, J., Valpine, P. d., & Kremen, C. (2015). Diversification practices reduce organic to conventional yield gap. Proceedings. Biological Sciences, 282(1799), 20141396. https://doi.org/10.1098/rspb.2014.1396
  • Ponti, T. d., Rijk, B., & van Ittersum, M. K. (2012). The crop yield gap between organic and conventional agriculture. Agricultural Systems, 108, 1–9. https://doi.org/10.1016/j.agsy.2011.12.004
  • Poore, J., & Nemecek, T. (2018). Reducing food’s environmental impacts through producers and consumers. Science, 360(6392), 987–992. https://doi.org/10.1126/science.aaq0216
  • Porter, S. D., Reay, D. S., Higgins, P., & Bomberg, E. (2016). A half-century of production-phase greenhouse gas emissions from food loss & waste in the global food supply chain. The Science of the Total Environment, 571, 721–729. https://doi.org/10.1016/j.scitotenv.2016.07.041
  • Priefer, C., Jörissen, J., & Bräutigam, K.-R. (2016). Food waste prevention in Europe – A cause-driven approach to identify the most relevant leverage points for action. Resources, Conservation and Recycling, 109, 155–165. https://doi.org/10.1016/J.RESCONREC.2016.03.004
  • Ray, D. K., Mueller, N. D., West, P. C., & Foley, J. A. (2013). Yield trends are insufficient to double global crop production by 2050. PloS One, 8(6), e66428. https://doi.org/10.1371/journal.pone.0066428
  • Read, Q. D., Brown, S., Cuéllar, A. D., Finn, S. M., Gephart, J. A., Marston, L. T., Meyer, E., Weitz, K. A., & Muth, M. K. (2020). Assessing the environmental impacts of halving food loss and waste along the food supply chain. The Science of the Total Environment, 712, 136255. https://doi.org/10.1016/j.scitotenv.2019.136255
  • Rossi, J., Allen, J. E., Woods, T. A., & Davis, A. F. (2017). CSA shareholder food lifestyle behaviors: A comparison across consumer groups. Agriculture and Human Values, 34(4), 855–869. https://doi.org/10.1007/s10460-017-9779-7
  • Russell, W. S., & Zepeda, L. (2008). The adaptive consumer: Shifting attitudes, behavior change and CSA membership renewal. Renewable Agriculture and Food Systems, 23(2), 136–148. https://doi.org/10.1017/S1742170507001962
  • Sánchez-Teba, E. M., Gemar, G., & Soler, I. P. (2021). From quantifying to managing food loss in the agri-food industry supply chain. Foods, 10(9), 2161. https://doi.org/10.3390/foods10092163
  • Schnell, S. M. (2013). Food miles, local eating, and community supported agriculture: Putting local food in its place. Agriculture and Human Values, 30(4), 615–628. https://doi.org/10.1007/s10460-013-9436-8
  • Schrama, M., Haan, J. J. d., Kroonen, M., Verstegen, H., & van der Putten, W. H. (2018). Crop yield gap and stability in organic and conventional farming systems. Agriculture, Ecosystems & Environment, 256, 123–130. https://doi.org/10.1016/j.agee.2017.12.023
  • Seppelt, R., Arndt, C., Beckmann, M., Martin, E. A., & Hertel, T. W. (2020). Deciphering the biodiversity-production mutualism in the global food security debate. Trends in Ecology & Evolution, 35(11), 1011–1020. https://doi.org/10.1016/j.tree.2020.06.012
  • Seufert, V. (2019). Comparing yields: Organic versus conventional agriculture. Encyclopedia of Food Security and Sustainability, 3, 196–208. https://doi.org/10.1016/B978-0-08-100596-5.22027-1
  • Seufert, V., & Ramankutty, N. (2017). Many shades of gray-The context-dependent performance of organic agriculture. Science Advances, 3(3), e1602638. https://doi.org/10.1126/sciadv.1602638
  • Seufert, V., Ramankutty, N., & Foley, J. A. (2012). Comparing the yields of organic and conventional agriculture. Nature, 485(7397), 229–232. https://doi.org/10.1038/nature11069
  • Shafiee-Jood, M., & Cai, X. (2016). Reducing food loss and waste to enhance food security and environmental sustainability. Environmental Science & Technology, 50(16), 8432–8443. https://doi.org/10.1021/acs.est.6b01993
  • Snapp, S., Aggarwal, V., & Chirwa, R. (1998). Note on phosphorus and cultivar enhancement of biological nitrogen fixation and productivity of maize/bean intercrops in Malawi. Field Crops Research, 58(3), 205–212. https://doi.org/10.1016/S0378-4290(98)00100-2
  • Soma, T., Kozhikode, R., & Krishnan, R. (2021). Tilling food under: Barriers and opportunities to address the loss of edible food at the farm-level in British Columbia, Canada. Resources, Conservation and Recycling, 170, 105571. https://doi.org/10.1016/j.resconrec.2021.105571
  • Spang, E. S., Moreno, L. C., Pace, S. A., Achmon, Y., Donis-Gonzalez, I., Gosliner, W. A., Jablonski-Sheffield, M. P., Momin, M. A., Quested, T. E., Winans, K. S., & Tomich, T. P. (2019). Food loss and waste: Measurement, drivers, and solutions. Annual Review of Environment and Resources, 44(1), 117–156. https://doi.org/10.1146/annurev-environ-101718-033228
  • Statistisches Landesamt des Freistaates Sachsen. (2022). Statistischer Bericht C I 3 - j/21: Anbau und Ernte von Gemüse und Erdbeeren im Freistaat Sachsen 2021. https://www.statistik.sachsen.de/html/statistische-berichte.html.
  • Sumner, J., Mair, H., & Nelson, E. (2010). Putting the culture back into agriculture: Civic engagement, community and the celebration of local food. International Journal of Agricultural Sustainability, 8(1-2), 54–61. https://doi.org/10.3763/ijas.2009.0454
  • Tang, H., Liu, Y., & Huang, G. (2019). Current status and development strategy for community-supported agriculture (CSA) in China. Sustainability, 11(11), 3008. https://doi.org/10.3390/su11113008
  • Terry, L. A., Mena, C., Williams, A., Jenney, N., & Whitehead, P. (2011). Fruit and vegetable resource maps: Mapping fruit and vegetable waste through the wholesale supply chain. WRAP, RC008. https://pdxscholar.library.pdx.edu/cgi/viewcontent.cgi?article = 1109&context = busadmin_fac.
  • Themen, D. (2014). Reduction of food losses and waste in Europe and Central Asia for improved food security and agrifood chain efficiency. https://www.fao.org/3/au844e/au844e.pdf.
  • Thornton, A. (2018). Space and food in the city: Cultivating social justice and urban governance through urban agriculture. Palgrave Macmillan.
  • Tilman, D., Balzer, C., Hill, J., & Befort, B. L. (2011). Global food demand and the sustainable intensification of agriculture. Proceedings of the National Academy of Sciences of the United States of America, 108(50), 20260–20264. https://doi.org/10.1073/pnas.1116437108
  • United Nations Environment Programme. (2021). Food Waste Index Report 2021.
  • Vandermeer, J. H. (2012). The ecology of intercropping. Cambridge University Press. https://doi.org/10.1017/CBO9780511623523
  • van Dooren, C., Janmaat, O., Snoek, J., & Schrijnen, M. (2019). Measuring food waste in Dutch households: A synthesis of three studies. Waste Management, 94, 153–164. https://doi.org/10.1016/j.wasman.2019.05.025
  • Wang, Y., Yuan, Z., & Tang, Y. (2021). Enhancing food security and environmental sustainability: A critical review of food loss and waste management. Resources, Environment and Sustainability, 4, 100023. https://doi.org/10.1016/j.resenv.2021.100023
  • Wellner, M. (2017). Community Supported Agriculture in Deutschland. Advance online publication. (Berichte über Landwirtschaft - Zeitschrift für Agrarpolitik und Landwirtschaft, Band 95, Heft 3, Dezember 2017). https://doi.org/10.12767/BUEL.V95I3.181
  • Willett, W., Rockström, J., Loken, B., Springmann, M., Lang, T., Vermeulen, S., Garnett, T., Tilman, D., DeClerck, F., Wood, A., Jonell, M., Clark, M., Gordon, L. J., Fanzo, J., Hawkes, C., Zurayk, R., Rivera, J. A., Vries, W. d., Majele Sibanda, L., … Murray, C. J. L. (2019). Food in the Anthropocene: The EAT-Lancet Commission on healthy diets from sustainable food systems. Lancet, 393(10170), 447–492. https://doi.org/10.1016/S0140-6736(18)31788-4
  • WRAP. (2009). Household food and drink waste in the UK: Final report. https://wrap.org.uk/sites/default/files/2020-12/Household-Food-and-Drink-Waste-in-the-UK-2009.pdf.
  • Yu, Y., & Jaenicke, E. C. (2021). The effect of sell-by dates on purchase volume and food waste. Food Policy, 98, 101879. https://doi.org/10.1016/j.foodpol.2020.101879
  • Yuan, Z., Jiang, S., Sheng, H., Liu, X., Hua, H., Liu, X., & Zhang, Y. (2018). Human perturbation of the global phosphorus cycle: Changes and consequences. Environmental Science & Technology, 52(5), 2438–2450. https://doi.org/10.1021/acs.est.7b03910