Strategi Pengurangan Sampah Makanan Menggunakan Analisis Data dan Teknologi
DOI:
https://doi.org/10.58812/jmws.v2i10.701Kata Kunci:
Sampah Makanan, Teknologi, Analisis BibliometrikAbstrak
Sampah makanan adalah masalah global utama yang berdampak pada ekonomi, lingkungan, dan masyarakat. Pendekatan inovatif diperlukan untuk mengatasi masalah ini, dan menggabungkan teknologi dan analisis data telah terbukti menjadi salah satu pendekatan yang tepat. Untuk menyelidiki lingkungan penelitian seputar inisiatif pengurangan sampah makanan dan hubungannya dengan teknologi dan analisis data, penelitian ini melakukan analisis bibliometrik. Kepenulisan bersama, kemunculan bersama kata kunci, dan jaringan kutipan bersama semuanya dianalisis, memperlihatkan kelompok penelitian dan area tematik yang penting. Dengan kelompok-kelompok yang mencakup pendekatan berbasis data untuk ketahanan pangan, kebijakan kota pintar, blockchain dan rantai pasokan makanan, pengolahan limbah organik, dan peran kecerdasan buatan dalam kelestarian lingkungan, hasilnya menyoroti sifat multidisiplin penelitian di bidang ini. Selain itu, analisis kejadian jangka panjang mengakui pengaturan lingkungan dan perkotaan yang lebih besar sambil menyoroti peran penting yang dimainkan oleh sampah, pengelolaan limbah, dan rantai pasokan makanan. Hasil penelitian ini menawarkan perspektif yang berharga bagi para akademisi dan pengambil keputusan, menyoroti pentingnya kerja sama multidisiplin, pendekatan berbasis data, dan penekanan pada aspek perkotaan dan lingkungan dalam mengatasi masalah rumit limbah makanan. Jalan studi yang prospektif mencakup melakukan evaluasi konten yang komprehensif, menyelidiki publikasi non-Inggris, dan mendorong solusi berbasis teknologi.
Referensi
Achieng, M. S. (2023). Digital Technologies for Integrated Food Loss and Waste Reduction in Agrifood Chains in Sub-Saharan Africa: A Scoping Review. 2023 IST-Africa Conference (IST-Africa), 1–11.
Ali, Y., Jokhio, D. H., Dojki, A. A., Rehman, O. U., Khan, F., & Salman, A. (2022). Adoption of circular economy for food waste management in the context of a developing country. Waste Management & Research, 40(6), 676–684.
Aziz, R., Fitria, D., & Ruslinda, Y. (2022). Environmental Impact Evaluation of Improved Market Waste Processing as Part of Municipal Solid Waste Management System Using Life Cycle Assessment Method. Ecological Engineering & Environmental Technology, 23.
Budiman, D., Iskandar, Y., & Jasuni, A. Y. (2022). Millennials’ Development Strategy Agri-Socio-Preneur in West Java. International Conference on Economics, Management and Accounting (ICEMAC 2021), 315–323.
Carey, E. A., & Subramanian, N. (2021). An exploratory study on blockchain application in a food processing supply chain to reduce waste. In Research Anthology on Blockchain Technology in Business, Healthcare, Education, and Government (pp. 1146–1164). IGI Global.
Cordell, D., Drangert, J.-O., & White, S. (2009). The story of phosphorus: global food security and food for thought. Global Environmental Change, 19(2), 292–305.
Cosbuc, E. L., Ungureanu-Comanita, E.-D., & Gavrilescu, M. (2021). Identification of the Risks Generated in the Environment by Food Waste. 2021 International Conference on E-Health and Bioengineering (EHB), 1–4.
da Costa, T. P., Gillespie, J., Cama-Moncunill, X., Ward, S., Condell, J., Ramanathan, R., & Murphy, F. (2022). A systematic review of real-time monitoring technologies and its potential application to reduce food loss and waste: Key elements of food supply chains and IoT technologies. Sustainability, 15(1), 614.
Dey, I. (2003). Qualitative data analysis: A user friendly guide for social scientists. Routledge.
Dou, Z., Ferguson, J. D., Galligan, D. T., Kelly, A. M., Finn, S. M., & Giegengack, R. (2016). Assessing US food wastage and opportunities for reduction. Global Food Security, 8, 19–26.
Felix, P. (2018). Data-driven retail food waste reduction: a comparison of demand forecasting techniques and dynamic pricing strategies. University of Twente.
Feng, H., Wang, X., Duan, Y., Zhang, J., & Zhang, X. (2020). Applying blockchain technology to improve agri-food traceability: A review of development methods, benefits and challenges. Journal of Cleaner Production, 260, 121031.
Foley, J. A., Ramankutty, N., Brauman, K. A., Cassidy, E. S., Gerber, J. S., Johnston, M., Mueller, N. D., O’Connell, C., Ray, D. K., & West, P. C. (2011). Solutions for a cultivated planet. Nature, 478(7369), 337–342.
Garske, B., Heyl, K., Ekardt, F., Weber, L. M., & Gradzka, W. (2020). Challenges of food waste governance: An assessment of European legislation on food waste and recommendations for improvement by economic instruments. Land, 9(7), 231.
Gkalfas, C. (2019). Studying the impact of a mobile application in food waste reduction, circular economy, and social interaction inside the community.
Godfray, H. C. J., Beddington, J. R., Crute, I. R., Haddad, L., Lawrence, D., Muir, J. F., Pretty, J., Robinson, S., Thomas, S. M., & Toulmin, C. (2010). Food security: the challenge of feeding 9 billion people. Science, 327(5967), 812–818.
Harvey, J., Smith, A., Goulding, J., & Illodo, I. B. (2020). Food sharing, redistribution, and waste reduction via mobile applications: A social network analysis. Industrial Marketing Management, 88, 437–448.
Iqbal, A., Zan, F., Siddiqui, M. A., Nizamuddin, S., & Chen, G. (2022). Integrated treatment of food waste with wastewater and sewage sludge: Energy and carbon footprint analysis with economic implications. Science of The Total Environment, 825, 154052.
Iskandar, Y., Joeliaty, J., Kaltum, U., & Hilmiana, H. (2021). Bibliometric Analysis on Social Entrepreneurship Specialized Journals. Journal: WSEAS TRANSACTIONS ON ENVIRONMENT AND DEVELOPMENT, 941–951. https://doi.org/10.37394/232015.2021.17.87
Iskandar, Y., & Kaltum, U. (2022). Exploring Human Resource and Organizational Factors That Influence the Performance of a Social Enterprise. Organizational Cultures: An International Journal, 22(2).
Iskandar, Y., & Sarastika, T. (2023). Study of Socio-Economic Aspect and Community Perception on The Development of The Agricultural Area Shrimp Ponds in Pasir mendit and Pasir Kadilangu. West Science Journal Economic and Entrepreneurship, 1(01), 28–36.
Jaman, U. B. (2022). Prospek Hak Kekayaan Intelektual (HKI) sebagai Jaminan Utang. Jurnal Hukum Dan HAM Wara Sains, 1(01), 15–20.
Jaman, U. B., Putri, G. R., & Anzani, T. A. (2021). Urgensi Perlindungan Hukum Terhadap Hak Cipta Karya Digital. Jurnal Rechten: Riset Hukum Dan Hak Asasi Manusia, 3(1), 9–17.
Kittichotsatsawat, Y., Jangkrajarng, V., & Tippayawong, K. Y. (2021). Enhancing coffee supply chain towards sustainable growth with big data and modern agricultural technologies. Sustainability, 13(8), 4593.
Kutty, A. A., & Abdella, G. M. (2020). Tools and techniques for food security and sustainability related assessments: a focus on the data and food waste management system. Proceedings of the 5th NA Conference on Industrial Engineering and Operations Management, 10–14.
Lal, R. (2004). Soil carbon sequestration impacts on global climate change and food security. Science, 304(5677), 1623–1627.
Mathison, S., Nagilla, R., & Kompella, U. B. (1998). Nasal route for direct delivery of solutes to the central nervous system: fact or fiction? Journal of Drug Targeting, 5(6), 415–441.
Matson, P. A., Parton, W. J., Power, A. G., & Swift, M. J. (1997). Agricultural intensification and ecosystem properties. Science, 277(5325), 504–509.
Melikoglu, M., Lin, C. S. K., & Webb, C. (2013). Analysing global food waste problem: pinpointing the facts and estimating the energy content. Central European Journal of Engineering, 3, 157–164.
Mokrane, S., Buonocore, E., Capone, R., & Franzese, P. P. (2023). Exploring the Global Scientific Literature on Food Waste and Loss. Sustainability, 15(6), 4757.
Mukherjee, U., Dutta, S., & Bandyopadhyay, S. K. (2021). Assembling Blockchain and IoT for Smart Food-Supply Chain. Asian Journal of Advances in Agricultural Research, 16(3), 49–58.
Nascimento, A. M., Queiroz, A., de Melo, V. V, & Meirelles, F. S. (2022). Applying Artificial Intelligence to Reduce Food Waste in Small Grocery Stores.
Nugrahanti, T. P. (2016). Risk assessment and earning management in banking of Indonesia: corporate governance mechanisms. Global Journal of Business and Social Science Review, 4(1), 1–9.
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.
Rusmayadi, G., Supriandi, S., & Pahrijal, R. (2023). Trends and Impact of Sustainable Energy Technologies in Mechanical Engineering: A Bibliometric Study. West Science Interdisciplinary Studies, 1(09), 831–841.
Shannon, M. A., Bohn, P. W., Elimelech, M., Georgiadis, J. G., Mariñas, B. J., & Mayes, A. M. (2008). Science and technology for water purification in the coming decades. Nature, 452(7185), 301–310.
Stojanović, S., & Sándor, R. B. (n.d.). STREFOWA-STRATEGIES TO REDUCE AND MANAGE FOOD WASTE IN HUNGARY.
Suparwata, D. O., & Djibran, M. (2018). Pemanfaatan pekarangan bero untuk usahatani buah naga. Journal of Agritech Science (JASc), 2(2), 72.
Svanes, E., Oestergaard, S., & Hanssen, O. J. (2018). Effects of packaging and food waste prevention by consumers on the environmental impact of production and consumption of bread in Norway. Sustainability, 11(1), 43.
Tutul, M. J. I., Alam, M., & Wadud, M. A. H. (2023). Smart Food Monitoring System Based on IoT and Machine Learning. 2023 International Conference on Next-Generation Computing, IoT and Machine Learning (NCIM), 1–6.
Vu, T. T., & Trinh, H. H. H. (2021). Blockchain technology for sustainable supply chains of agri-food in Vietnam: a SWOT analysis. VNUHCM Journal of Economics, Business and Law, 5(1), 1278–1289.
Wuana, R. A., & Okieimen, F. E. (2011). Heavy metals in contaminated soils: a review of sources, chemistry, risks and best available strategies for remediation. International Scholarly Research Notices, 2011.
Xue, J., Uchida, S., Rand, B. P., & Forrest, S. R. (2004). 4.2% efficient organic photovoltaic cells with low series resistances. Applied Physics Letters, 84(16), 3013–3015.
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