ADVANCEMENTS IN TECHNOLOGIES FOR AIR POLLUTION MITIGATION

Authors

  • Nizomiddin Juraev PhD student Tashkent Institute of Chemical Technology, Uzbekistan Author
  • Nuriddin Mukhtorov DSc in Engineering, Deputy Head of the Oil Refining and Petrochemicals Department at “Uzbekneftegaz” JSC, Uzbekistan Author
  • Farrukh Khakimov PhD in Engineering, Senior lecturer at the Department of Oil and Gas Processing Technology, Fergana Polytechnical Institute, Uzbekistan Author

Keywords:

VOCs, PM2.5, adsorption, metal-organic frameworks, photocatalytic oxidation, catalysts, additives.

Abstract

Air pollution from volatile organic compounds (VOCs) and particulate matter (PM2.5) presents a complex environmental challenge shaped by multiple pollutants. Despite concerted efforts in the last twenty years, air quality continues to pose serious risks to both human health and environmental stability. Exposure to VOCs and PM2.5 indoors can lead to significant health issues, including respiratory illnesses, leukemia, birth defects, and miscarriages. Therefore, advancing indoor air purification technologies is essential to reduce these harmful effects. This article examines the latest trends, innovations, and potential future developments in indoor air purification methods.

References

Liu, P., Yu, Q., Xue, Y., Chen, J., Ma, F., 2020. Adsorption performance of u(vi) by amidoxime-based activated carbon. J. Radioanal . Nucl . Chem. 324, 813–822. DOI:10.1007/s10967-020-07111-x

Davis, ME, 2010. ChemInform abstract: new vistas in zeolite and molecular sieve catalysis. J. Chemin. 24, 111–115. DOI:10.1002/chin.199326276

Zhang, X., Gao, B., Zheng, Y., Hu, X., Creamer, AE, Annable, MD, 2017. Biochar for volatile organic compound (VOC) removal: Sorption performance and governing mechanisms. Bioresour. Technol. 245, 606–614 DOI: 10.1016/j.biortech.2017.09.025

Jawad, AH, Abdulhameed, AS, Mastuli , MS, 2020. Mesoporous crosslinked chitosan-activated charcoal composite for the removal of thionine cationic dye: comprehensive adsorption and mechanism study. J. Polym . Environ. 28, 1095–1105. DOI:10.1007/s10924-020-01671-5

Gallego, E., Roca, FJ, Perales, JF, Guardino, X., 2013. Experimental evaluation of VOC removal efficiency of a coconut shell activated carbon filter for indoor air quality enhancement. Build. Environ. 67, 14–25. https://doi.org/10.1016/j.buildenv.2013.05.003

Li, L.-q, Song, J.-f, Yao, X.-l, Huang, G.-j, Liu, Z., Tang, L., 2012. Adsorption of volatile organic compounds on three activated carbon samples : effect of pore structure . J. Cent. South Univ. 19, 3530–3539. DOI: 10.1007/s11771-012-1439-x

Yuanyuan Zhang, Shuai Yuan, Xiao Feng, Haiwei Li, Junwen Zhou, and Bo Wang* Preparation of Nanofibrous Metal−Organic Framework Filters for Efficient Air Pollution Control. DOI: 10.1021/jacs.6b02553

Guan B; Jean R; Lin H; Huang Z Review of the State-of-the-Art of Exhaust Particulate Filter Technology in Internal Combustion Engines. J. Environ. Manag 2015, 154, 22. http://dx.doi.org/10.1016/j.jenvman.2015.02.027

Giechaskiel B; Valverde V; Countess A; Molasses A; Martini G; Balazs A; Andersson J; Samaras Z; Dilara P Particle Number Emissions of a Euro 6d-Temp Gasoline Vehicle under Extreme Temperatures and Driving Conditions. Catalysts 2021, 11, 607. https://doi.org/10.3390/catal11050607

ME Gerlofs-Nijland | L. Groenewegen | FR Cassee Health effects of addition and combustion of fuel additives.

Farrukh Shokirjonovich Khakimov, Nuriddin Shamshidinovich Mukhtorov & Oytura Siddikovna Maksumova. Environmentally friendly synthesis route of terpolymers derived from alkyl acrylates and their performance as additives for liquid hydrocarbon products. Springer Link, Volume 27, article number 304, (2020). https://doi.org/10.1007/s10965-020-02268-1

Published

2024-10-31

How to Cite

ADVANCEMENTS IN TECHNOLOGIES FOR AIR POLLUTION MITIGATION. (2024). Young Scientists, 2(30), 51-56. https://in-academy.uz/index.php/YO/article/view/28475