ANALISIS EKONOMI, SOSIAL DEMOGRAFI DAN LINGKUNGAN DARI FOOD LOSS/ WASTE (FLW) DI INDONESIA

Authors

  • Neli Nurhasanah
  • Budiono Budiono
  • Wawan Hermawan Universitas Padjadjaran

DOI:

https://doi.org/10.26593/3d17pg37

Keywords:

: Food Loss/Waste, FLW, Economic, Socio-Demographic, Panel Data, SDGs

Abstract

Food waste, also known as food loss/waste (FLW), is an important issue in Indonesia due to its huge impact on food security, the economy, and the environment. Almost half (41.7 percent) of waste in Indonesia comes from food waste, making the country the second largest contributor to food waste globally. Each individual contributes to an average of 300kg of food waste annually in Indonesia. This analysis aims to understand the economic and socio-demographic dimensions associated with FLW in Indonesia. The study analyzed panel data in Indonesia from 34 provinces over 4 years (2019-2022) using quadratic regression models and Ordinary Least Square (OLS) estimation methods. The analysis found that GRDP per capita, Consumer Price Index (CPI), population aged 15-64 years, and population aged over 65 years had a significant effect on FLW per capita in Indonesia over the period 2019-2022. In Indonesia, there is no significant influence between the variables of average monthly per capita expenditure on food, the proportion of male and female population, and average years of schooling on per capita food waste generation. The peak point shows that the maximum value of FLW per capita is around 40.85kg/capita/year at the level of GRDP per capita of IDR 89,296,130/capita/year. This research opens up opportunities for further studies on other factors contributing to FLW in Indonesia such as psychological, environmental, and cultural.

References

Badan Perencanaan dan Pembangunan Nasional. 2020. SDGs Dashboard. Retrieve from http://sdgs.bappenas.go.id/dashboard.

Ananda, J., Karunasena, G. G., Mitsis, A., Kansal, M., & Pearson, D. (2021). Analysing behavioural and socio-demographic factors and practices influencing Australian household food waste. Journal of Cleaner Production, 306, 127280. https://doi.org/10.1016/j.jclepro.2021.127280

Bank, W. (2020a). Global economic prospects, June 2020. The World Bank.

Bank, W. (2020b). Poverty and shared prosperity 2020: Reversals of fortune. The World Bank.

Bravi, L., Francioni, B., Murmura, F., & Savelli, E. (2020). Factors affecting household food waste among young consumers and actions to prevent it. A comparison among UK, Spain and Italy. Resources, Conservation and Recycling, 153, 104586. https://doi.org/10.1016/j.resconrec.2019.104586

Buonocore, E., Picone, F., Russo, G. F., & Franzese, P. P. (2018). The Scientific Research On Natural Capital: A Bibliometric Network Analysis. Journal of Environmental Accounting and Management, 6(4), 381–391. https://doi.org/10.5890/JEAM.2018.12.010

Chen, C., Chaudhary, A., & Mathys, A. (2020). Nutritional and environmental losses embedded in global food waste. Resources, Conservation and Recycling, 160, 104912. https://doi.org/10.1016/j.resconrec.2020.104912

Conrad, Z., & Blackstone, N. T. (2021). Identifying the links between consumer food waste, nutrition, and environmental sustainability: a narrative review. Nutrition Reviews, 79(3), 301–314. https://doi.org/10.1093/nutrit/nuaa035

FAO, E. (2019). Moving forward on food loss and waste reduction. In The State of Food and Agriculture 2019. FAO Rome, Italy.

Food, F. A. O. S. (2014). Global initiative on food loss and waste reduction. Definitional framework of food loss. FAO: Rome, Italy.

Göbel, C., Langen, N., Blumenthal, A., Teitscheid, P., & Ritter, G. (2015a). Cutting Food Waste through Cooperation along the Food Supply Chain. Sustainability, 7(2), 1429–1445. https://doi.org/10.3390/su7021429

Göbel, C., Langen, N., Blumenthal, A., Teitscheid, P., & Ritter, G. (2015b). Cutting Food Waste through Cooperation along the Food Supply Chain. Sustainability, 7(2), 1429–1445. https://doi.org/10.3390/su7021429

Goodman-Smith, F., Mirosa, M., & Skeaff, S. (2020). A mixed-methods study of retail food waste in New Zealand. Food Policy, 92, 101845. https://doi.org/10.1016/j.foodpol.2020.101845

Grasso, A. C., Olthof, M. R., Boevé, A. J., van Dooren, C., Lähteenmäki, L., & Brouwer, I. A. (2019). Socio-Demographic Predictors of Food Waste Behavior in Denmark and Spain. Sustainability, 11(12), 3244. https://doi.org/10.3390/su11123244

Gustavsson, J., Cederberg, C., Sonesson, U., Van Otterdijk, R., & Meybeck, A. (2011). Global food losses and food waste. FAO Rome.

Handayani, W., Simamora, L., & Zebua, D. D. N. (n.d.). DAN PENGELOLAANNYA.

Hendriadi, A., & Ariani, M. (2020). Pengentasan rumah tangga rawan pangan dan gizi: besaran, penyebab, dampak, dan kebijakan. Forum Penelitian Agro Ekonomi, 38(1), 13–27.

Hermanu, B. (2022). Pengelolaan Limbah Makanan (Food Waste) Berwawasan Lingkungan Environmentally Friendly Food Waste Management. Jurnal Agrifoodtech, 1(1), 1–11.

Ilakovac, B., Voca, N., Pezo, L., & Cerjak, M. (2020). Quantification and determination of household food waste and its relation to sociodemographic characteristics in Croatia. Waste Management, 102, 231–240. https://doi.org/10.1016/j.wasman.2019.10.042

Jamaludin, H., Elmaky, H. S. E., & Sulaiman, S. (2022). The future of food waste: Application of circular economy. Energy Nexus, 7, 100098. https://doi.org/10.1016/j.nexus.2022.100098

Khoerunisa, N., & Noorikhsan, F. F. (2021). Perbandingan Tata Kelola Penanganan Pandemi Covid 19 di Indonesia dan India. Journal of Political Issues, 2(2), 89–101.

Krishnan, R., Agarwal, R., Bajada, C., & Arshinder, K. (2020). Redesigning a food supply chain for environmental sustainability – An analysis of resource use and recovery. Journal of Cleaner Production, 242, 118374. https://doi.org/10.1016/j.jclepro.2019.118374

Lemaire, A., & Limbourg, S. (2019). How can food loss and waste management achieve sustainable development goals? Journal of Cleaner Production, 234, 1221–1234.

Li, Y., Wang, L., Liu, G., & Cheng, S. (2021). Rural household food waste characteristics and driving factors in China. Resources, Conservation and Recycling, 164, 105209. https://doi.org/10.1016/j.resconrec.2020.105209

Lins, M., Puppin Zandonadi, R., Raposo, A., & Ginani, V. C. (2021). Food Waste on Foodservice: An Overview through the Perspective of Sustainable Dimensions. Foods, 10(6), 1175. https://doi.org/10.3390/foods10061175

Messner, R., Johnson, H., & Richards, C. (2021). From surplus-to-waste: A study of systemic overproduction, surplus and food waste in horticultural supply chains. Journal of Cleaner Production, 278, 123952. https://doi.org/10.1016/j.jclepro.2020.123952

Movilla-Pateiro, L., Mahou-Lago, X. M., Doval, M. I., & Simal-Gandara, J. (2021). Toward a sustainable metric and indicators for the goal of sustainability in agricultural and food production. Critical Reviews in Food Science and Nutrition, 61(7), 1108–1129. https://doi.org/10.1080/10408398.2020.1754161

Muth, M. K., Birney, C., Cuéllar, A., Finn, S. M., Freeman, M., Galloway, J. N., Gee, I., Gephart, J., Jones, K., Low, L., Meyer, E., Read, Q., Smith, T., Weitz, K., & Zoubek, S. (2019). A systems approach to assessing environmental and economic effects of food loss and waste interventions in the United States. Science of The Total Environment, 685, 1240–1254. https://doi.org/10.1016/j.scitotenv.2019.06.230

Principato, L., Ruini, L., Guidi, M., & Secondi, L. (2019). Adopting the circular economy approach on food loss and waste: The case of Italian pasta production. Resources, Conservation and Recycling, 144, 82–89. https://doi.org/10.1016/j.resconrec.2019.01.025

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. Science of The Total Environment, 712, 136255. https://doi.org/10.1016/j.scitotenv.2019.136255

Robert S. Pindyck, & Daniel L. Rubinfield. (2009). Microeconomics (7th ed.). Pearson.

Schanes, K., Dobernig, K., & Gözet, B. (2018). Food waste matters-A systematic review of household food waste practices and their policy implications. Journal of Cleaner Production, 182, 978–991.

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

Skaf, L., Buonocore, E., Dumontet, S., Capone, R., & Franzese, P. P. (2019). Food security and sustainable agriculture in Lebanon: An environmental accounting framework. Journal of Cleaner Production, 209, 1025–1032.

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. (2018). Options for keeping the food system within environmental limits. Nature, 562(7728), 519–525.

Stephen, S., Raymond, R., & Santoso, H. (2019). Applikasi Convolution Neural Network Untuk Mendeteksi Jenis-jenis Sampah. Explore: Jurnal Sistem Informasi Dan Telematika (Telekomunikasi, Multimedia Dan Informatika), 10(2).

Teigiserova, D. A., Hamelin, L., & Thomsen, M. (2020). Towards transparent valorization of food surplus, waste and loss: Clarifying definitions, food waste hierarchy, and role in the circular economy. Science of The Total Environment, 706, 136033. https://doi.org/10.1016/j.scitotenv.2019.136033

Waluyo, & Kharisma, D. B. (2023). Circular economy and food waste problems in Indonesia: Lessons from the policies of leading Countries. Cogent Social Sciences, 9(1). https://doi.org/10.1080/23311886.2023.2202938

Willett, W., Rockström, J., Loken, B., Springmann, M., Lang, T., Vermeulen, S., Garnett, T., Tilman, D., DeClerck, F., & Wood, A. (2019). Food in the Anthropocene: the EAT–Lancet Commission on healthy diets from sustainable food systems. The Lancet, 393(10170), 447–492.

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Published

2025-10-01

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