RAQAMLI IQTISODIYOT SHAROITIDA QISHLOQ XOʻJALIGI CHIQINDILARIDAN BIOPOLIMERLAR ISHLAB CHIQARISHNING INNOVATSION TEXNOLOGIYALARI VA EKOTIZIMI

Affiliation
Bukhara State University image/svg+xml
III Bioiqtisodiyot xalqaro forumi, Buxoro, 24-25-sentabr 2026

Abstract

The article examined agricultural waste conversion technologies for biopolymer production and opportunities for developing a collaborative ecosystem within the digital economy. Comparative analysis covered cotton stalks, wheat straw, corn stalks and fruit and vegetable residues. Hydrolysis, fermentation and low temperature pyrolysis were compared through product yields, processing costs and environmental indicators. Prospects for using cotton stalks and integrating technological processes were discussed. Digital platforms were proposed for waste accounting, logistics and coordination among market participants. Recommendations addressed pilot projects, scientific collaboration and financial support. The proposals focused on producing added value products from local feedstocks and improving resource efficiency in Uzbekistan.

Keywords

agricultural waste, biopolymers, cotton stalks, hydrolysis, fermentation, pyrolysis, digital platforms, circular economy


References

  1. Behle, E., & Raguin, A. (2021). Stochastic model of lignocellulosic material saccharification. PLOS Computational Biology, 17(9), e1009262. https://doi.org/10.1371/journal.pcbi.1009262
  2. FAO. (2020). Circular economy in agriculture: Global guidelines. Food and Agriculture Organization of the United Nations
  3. Hawkes, P. (2018). Biomass and sustainable energy in agriculture. Springer
  4. Ketels, C. (2018). Cluster policy and competitiveness. OECD Publishing
  5. Maraveas, C. (2020). Production of sustainable and biodegradable polymers from agricultural waste. Polymers, 12(5), 1127. https://doi.org/10.3390/polym12051127
  6. Mena-Chacon, L. M., Quispe-Sanchez, L., Chicana, F., Oblitas, R., Huaman- Pilco, A. F., Mori, S., Oliva, M., & Yoplac, I. (2025). Biopolymers extracted from agro-industrial wastes of lucuma, avocado and rice for production of biodegradable trays. Journal of Agriculture and Food Research, 23, 102231. https://doi.org/10.1016/j.jafr.2025.102231
  7. Mutuma, B. K., Sylla, N. F., Bubu, A., Ndiaye, N. M., Santoro, C., Brilloni, A., Poli, F., Manyala, N., & Soavi, F. (2021). Valorization of biodigestor plant waste in electrodes for supercapacitors and microbial fuel cells. Electrochimica Acta, 391, 138960. https://doi.org/10.1016/j.electacta.2021.138960
  8. Porter, M. (2019). Clusters and regional economic development. Harvard Business Review Press
  9. Sadh, P. K., Duhan, S., & Duhan, J. S. (2018). Agro-industrial wastes and their utilization using solid state fermentation: A review. Bioresources and Bioprocessing, 5, 1. https://doi.org/10.1186/s40643-017-0187-z
  10. Smith, R., & Lopez, J. (2019). Agro-waste to bioenergy: Global practices. Routledge
  11. Techawinyutham, L., Techawinyutham, W., Rangappa, S. M., & Siengchin, S. (2024). Lignocellulose based biofiller reinforced biopolymer composites from fruit peel wastes as natural pigment. International Journal of Biological Macromolecules, 257, 128767. https://doi.org/10.1016/j.ijbiomac.2023.128767
  12. Torres, M. (2020). Organic waste management and circular economy. Elsevier
  13. World Bank. (2021). Agricultural waste management and renewable energy in developing countries. World Bank
  14. Oʻzbekiston Respublikasi Prezidentining 2019-yil 30-oktyabr PF-5863-son “2030-yilgacha boʻlgan davrda Oʻzbekiston Respublikasining Atrof muhitni muhofaza qilish konsepsiyasini tasdiqlash toʻgʻrisida”gi Farmoni. https://lex.uz/docs/4574008
  15. 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
  16. Kasimova, R., & Sobirova, M. (2025). Biotechnology for the production of pectin from food waste. Journal of Contemporary World Studies, 3(3). https://doi.org/10.5281/zenodo.15043355
  17. Qarshiboyev, Z. Z., & Sobirova, M. B. (2023). Qishloq xoʻjaligida qoʻllanilgan istiqbolli nanobiotexnologiya. Educational Research in Universal Sciences, 2(16), 739-741
  18. Turobova, H., & Eshbekov, M. (2023). Pioneer: Journal of Advanced Research and Scientific Progress
  19. Turobova, H. R., & Eshbekov, M. U. (2025a). Qishloq xoʻjaligi chiqindilarini ekologik toza oʻgʻitga aylantirish va qishloq xoʻjaligi mahsulotlari tannarxiga taʼsiri. Agrobiznes, fan va texnologiyalar ilmiy-amaliy elektron jurnali, 246-250
  20. Turobova, H. R., & Eshbekov, M. U. (2025b). Qishloq xoʻjaligi chiqindilarini monetizatsiya qilish va sirkulyar iqtisodiyot sharoitida marketing strategiyalari. Journal of Universal Science Research, 3(4). https://doi.org/10.5281/zenodo.15336453

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