EXTRACTION AND DISPOSAL OF VALUABLE COMPOUNDS FROM DRIED LEAVES

Authors

  • Ubaydullaeva Saidakhon Bakhromjon kizi Assistant, Department of Chemistry, Fergana Polytechnic Institute, Fergana, Uzbekistan

Keywords:

Dried leaves, Enhanced Plant, absorption, absorption efficiency, soil pH.

Abstract

Mother Nature has always been a treasure trove of resources, offering mankind an abundance of materials and inspiration. Among the many gifts that nature gives us, dried leaves often go unnoticed and undervalued. However, recent innovations and discoveries have shed light on the enormous potential of dried leaves, revealing a world of beneficial products waiting to be exploited. From eco-friendly packaging to herbal medicines, the applications of dried leaves span a variety of industries and provide promising benefits to both the environment and society.

References

Stachowiak GW, Batchelor AW Engineering Tribology. Second. Oxford: Butterworth-Heinemann, 2001.

Myshkin NK, Petrokovets MI, Kovalev AV Tribology of polymers: Adhesion, friction, wear, and mass-transfer // Tribol. Int. 2005. Vol. 38, No. 11- 12 SPEC. ISS. P. 910–921.

Osswald TA, Turng LS, Gramman PJ Injection Molding Handbook. Munich: Hanser Publishers, 2002.

Friedrich K. Polymer composites for tribological applications // Adv. Ind. Eng.Polym. Res. Elsevier Ltd, 2018. Vol. 1, No. 1. P. 3–39.

Pesetskii SS, Bogdanovich SP, Myshkin NK Tribological behavior of polymer nanocomposites produced by dispersion of nanofillers in molten thermoplastics // Tribol. Polym. Nanocomposites Frict. Wear Bulk Mater. Coatings Second Ed. 2013. Vol. 28, No. 5. P. 119–162.

Voznyakovskii AP et al. Structure, mechanical, and tribological characteristics of polyurethane modified with nanodiamonds // Polym. Sci. Ser. A. 2010. Vol. 52, No. 10. P. 1044–1050.

Lancaster JK Polymer-based bearing materials // Tribology. 1972. Vol. 5, No. 6. P. 249–255.

Neitzel I. et al. Tribological properties of nanodiamond-epoxy composites // Tribol. Lett. 2012. Vol. 47, No. 2. P. 195–202.

Мирзаев, А. Н., Рахмонов, Д., & Буриева, З. Р. (2022). Влияния Режимных Параметров На Степень Очистки В Двухступенчатом Аппарате. Central Asian Journal of Theoretical and Applied Science, 3(5), 10-14.

Юлдашев К., Мансуров Ю.Н., Джураев А.И., Мирзаев Н.А. (2021). Современный катализатор на основе оксида церия. ISJ Теоретические и прикладные науки , 11 (103), 940.

Хамдамова Шохида Шерзодовна, & Мирзаев Навруз Абдуллаевич (2020). Взаимодействие компонентов в системе Mg(ClO3)2 - n(C2H4OH)3 - H2O. Universum: химия и биология, (1 (67)), 26-31.

Ergashev Dilmurod, Mirzayev Navruzbek, & Ergashev Oybek (2022). The effect of efficient development developments on efficiency. Universum: технические науки, (12-7 (105)), 49-53.

Abdugaffor M. Khurmamatov, Navruzbek A. Mirzayev, & Farxod A. Ibragimov. (2023). Results of optimizing the process of cleaning air from solid particles. International Journal of Advance Scientific Research, 3(06), 217–225. https://doi.org/10.37547/ijasr-03-06-38

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Published

2023-12-19

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Articles

How to Cite

EXTRACTION AND DISPOSAL OF VALUABLE COMPOUNDS FROM DRIED LEAVES. (2023). European Journal of Emerging Technology and Discoveries, 1(9), 53-56. https://europeanscience.org/index.php/1/article/view/359