SIRKULYAR BIOIQTISODIYOT ASOSIDA AHOLINI QISHLOQ XOʻJALIGI MAHSULOTLARI BILAN TAʼMINLASH SAMARADORLIGINI OSHIRISHNING USTUVOR YOʻNALISHLARI
Abstract
This article examines organizational, economic and environmental mechanisms for implementing circular bioeconomy principles in agriculture under conditions of global integration. The study reassesses the agricultural potential of Kashkadarya region, the efficiency of water and land resources, agricultural processing, logistics, digital technologies and environmental sustainability from the perspective of the circular bioeconomy. The research emphasizes repeated use of biological resources, conversion of agricultural waste into economic resources, integration of production, processing and consumption chains, and reduction of pressure on natural resources. The study proposes the establishment of a regional circular agro-economic monitoring system, development of cooperation for agricultural waste processing, implementation of a digital monitoring platform, and strengthening of international technological and investment integration. Integrating drip irrigation, smart farming, cold storage, processing facilities and ecological technologies into a unified circular system can increase food security and export potential while reducing environmental pressure.Keywords
circular bioeconomy, global integration, agriculture, bioresources, environmental sustainability, digital monitoring, processing, food security
References
- DʼAmato, D., Droste, N., Allen, B., Kettunen, M., Lähtinen, K., Korhonen, J., Leskinen, P., Matthies, B. D., & Toppinen, A. (2017). Green, circular, bio economy: A comparative analysis of sustainability avenues. Journal of Cleaner Production, 168, 716-734. https://doi.org/10.1016/j.jclepro.2017.09.053
- Food and Agriculture Organization of the United Nations. (2022). Sustainable and circular bioeconomy in the climate agenda: Opportunities to transform agrifood systems. FAO
- Gujarati, D. N., & Porter, D. C. (2009). Basic econometrics (5th ed.). McGraw- Hill/Irwin
- Hochman, G., Zilberman, D., Khanna, M., & Basso, B. (2026). Climate-smart technologies and food security in the context of a circular bioeconomy: From adaptation and resilience to mitigation. In Handbook of circular bioeconomy (pp. 237- 264). Springer. https://doi.org/10.1007/978-3-032-07112-5_13
- Kacprzak, A., Abueisa, T., & Arnés García, M. (2026). Case studies promoting bioeconomy through agricultural practices in Europe and Central Asia. FAO. https://doi.org/10.4060/cd7624en
- Khanna, M., Zilberman, D., Hochman, G., & Basso, B. (2024). An economic perspective of the circular bioeconomy in the food and agricultural sector. Communications Earth & Environment, 5, 507. https://doi.org/10.1038/s43247-024-01663-6
- Kirchherr, J., Reike, D., & Hekkert, M. (2017). Conceptualizing the circular economy: An analysis of 114 definitions. Resources, Conservation and Recycling, 127, 221-232. https://doi.org/10.1016/j.resconrec.2017.09.005
- Ma, W., Sauer, J., Rahut, D. B., & Sonobe, T. (2026). Circular bioeconomy for sustainable agriculture and food systems: An editorial introduction. Australian Journal of Agricultural and Resource Economics, 70(2), 277-283. https://doi.org/10.1111/1467-8489.70110
- Pugliese, G., Puvača, N., Passantino, L., Perillo, A., Laudadio, V., Tateo, A., Piemontese, L., Dimuccio, M. M., Lauriola, S., Tufarelli, V., & Losacco, C. (2026). Drawing a circle for the livestock and agrifood sector: Fundamentals to a sustainable supply chain. Frontiers in Animal Science, 7, 1765104. https://doi.org/10.3389/fanim.2026.1765104
- Stegmann, P., Londo, M., & Junginger, M. (2020). The circular bioeconomy: Its elements and role in European bioeconomy clusters. Resources, Conservation & Recycling: X, 6, 100029. https://doi.org/10.1016/j.rcrx.2019.100029
- Wolfert, S., Ge, L., Verdouw, C., & Bogaardt, M.-J. (2017). Big data in smart farming - A review. Agricultural Systems, 153, 69-80. https://doi.org/10.1016/j.agsy.2017.01.023
- Zheng, H., Ma, W., Rahut, D. B., Zhang, L., & Zhou, X. (2026). A small act towards circular bioeconomy: Adoption of integrated crop-livestock system and its impacts on fertiliser use. Australian Journal of Agricultural and Resource Economics, 70(2), 352-362. https://doi.org/10.1111/1467-8489.70094
- Oʻzbekiston Respublikasi Prezidentining 2019-yil 23-oktyabr PF-5853-son “Oʻzbekiston Respublikasi qishloq xoʻjaligini rivojlantirishning 2020-2030-yillarga moʻljallangan strategiyasini tasdiqlash toʻgʻrisida”gi Farmoni. https://lex.uz/docs/4567334
- Oʻzbekiston Respublikasi Prezidentining 16-fevral 2026-yil PF-21-son “Mamlakat taraqqiyotining 2030-yilgacha moʻljallangan ustuvor yoʻnalishlari doirasida islohotlarni izchil davom ettirish va yangi bosqichga olib chiqishning qoʻshimcha chora-tadbirlari toʻgʻrisida” Farmoni https://lex.uz/ru/docs/-8050769
- Oʻzbekiston Respublikasi Prezidentining 2019-yil 4-oktyabr PQ-4477-son “2019-2030-yillar davrida Oʻzbekiston Respublikasining “yashil” iqtisodiyotga oʻtish strategiyasini tasdiqlash toʻgʻrisida”gi Qarori. https://lex.uz/docs/4539502
- Oʻzbekiston Respublikasi Prezidentining 2023-yil 14-dekabr PQ-389-son “Qashqadaryo viloyatini 2024-2025-yillarda kompleks ijtimoiy-iqtisodiy rivojlantirish boʻyicha qoʻshimcha chora-tadbirlar toʻgʻrisida”gi Qarori. https://lex.uz/docs/6693577
- Oʻzbekiston Respublikasi Qishloq xoʻjaligi vazirligi. (2024). 2024-yil yanvar- sentabr oylari boʻyicha qishloq xoʻjaligining asosiy iqtisodiy koʻrsatkichlari tahlili. https://api-portal.gov.uz/uploads/a20f356f-49d8-21de-c4e1-9c220bd3e699_media_.pdf
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