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Drone-Aided Particulate Monitoring System for Industrial Complex to Analyze the Dust Suppressing Capacity Cover

Drone-Aided Particulate Monitoring System for Industrial Complex to Analyze the Dust Suppressing Capacity

By: P. Kokate,  A. Middey and  S. Sadistap  
Open Access
|Dec 2023

References

  1. Alharbi, B.; Shareef, M. M.; Husain, T., 2015: Study of chemical characteristics of particulate matter concentrations in Riyadh, Saudi Arabia. Atmospheric Pollution Research., 6, 88–98.
  2. Ameen, M. H.; Jumaah, H. J.; Kalantar, B.; Ueda, N.; Halin, A. A.; Tais, A. S.; Jumaah, S. J., 2021: Evaluation of PM2.5 Particulate Matter and Noise Pollution in Tikrit University Based on GIS and Statistical Modeling. Sustainability., 13, 9571.
  3. Asif, K., 2014: Encroachment of agricultural land in urban fringe areas of Aligarh city, India – process and parameters. Asian Geographer., 31, 129–148.
  4. Assimakopoulos, M. N.; De Masi, R. F.; de Rossi, F.; Papadaki, D.; Ruggiero, S., 2020: Green Wall Design Approach Towards Energy Performance and Indoor Comfort Improvement: A Case Study in Athens. Sustainability., 12, 3772.
  5. Beevers, S. D.; Carslaw, D. C.; Dajnak, D.; Stewart, G. B.; Williams, M. L.; Kelly, J.; Kelly, F. J., 2016: Traffic management strategies for emissions reduction: recent experience in London. Energy and Emission Control Technologies., 4.
  6. Boman, B. C.; Forsberg, A. B.; Järvholm, B. G., 2003: Adverse health effects from ambient air pollution in relation to residential wood combustion in modern society. Scandinavian Journal of Work, Environment & Health., 29, 251–260.
  7. Bottalico, F.; Chirici, G.; Giannetti, F.; De Marco, A.; Nocentini, S.; Paoletti, E.; Salbitano, F.; Sanesi, G.; Serenelli, C.; Travaglini, D., 2016: Air Pollution Removal by Green Infrastructures and Urban Forests in the City of Florence. Agriculture and Agricultural Science Procedia., Florence “Sustainability of Well-Being International Forum”. 2015: Food for Sustainability and not just food, FlorenceSWIF2015, 8, 243–251.
  8. Bucur, E.; Motisan, R.; Vasile, A.; Tanase, G.; Pascu, L. F.; Lehr, C. B.; Cuciureanu, A., 2020: Assessment of the Accuracy of Analyzers for Automatic Determination of PM10 and PM2.5 Particulate Matter in Ambient Air. Revista de Chimie., 71, 83–87.
  9. Canada, G. of C. N. R. C., 2023, June: Evaluating rooftop and vertical gardens as an adaptation strategy for urban areas - NRC Publications Archive.
  10. Currie, B. A.; Bass, B., 2008: Estimates of air pollution mitigation with green plants and green roofs using the UFORE model. Urban Ecosystems., 11, 409–422.
  11. de Miranda, R. M.; de Fatima Andrade, M.; Dutra Ribeiro, F. N.; Mendonça Francisco, K. J.; Pérez-Martínez, P. J., 2018: Source apportionment of fine particulate matter by positive matrix factorization in the metropolitan area of São Paulo, Brazil. Journal of Cleaner Production., 202, 253–263.
  12. Edvardsson, K., 2009: Gravel Roads and Dust Suppression. Road Materials and Pavement Design., 10, 439–469.
  13. Hedworth, H.; Page, J.; Sohl, J.; Saad, T., 2022: Investigating Errors Observed during UAV-Based Vertical Measurements Using Computational Fluid Dynamics. Drones., 6, 253.
  14. Hofman, J.; Bartholomeus, H.; Calders, K.; Van Wittenberghe, S.; Wuyts, K.; Samson, R., 2014: On the relation between tree crown morphology and particulate matter deposition on urban tree leaves: A ground-based LiDAR approach. Atmospheric Environment., 99, 130–139.
  15. Irga, P. J.; Pettit, T. J.; Torpy, F. R., 2018: The phytoremediation of indoor air pollution: a review on the technology development from the potted plant through to functional green wall biofilters. Reviews in Environmental Science and Bio/Technology., 17, 395–415.
  16. Jumaah, H. J.; Kalantar, B.; Halin, A. A.; Mansor, S.; Ueda, N.; Jumaah, S. J., 2021: Development of UAV-Based PM2.5 Monitoring System. Drones., 5, 60.
  17. Lafaurie, B.; Nardone, C.; Scardovelli, R.; Zaleski, S.; Zanetti, G., 1994: Modelling Merging and Fragmentation in Multiphase Flows with SURFER. Journal of Computational Physics., 113, 134–147.
  18. Lee, L. S. H.; Jim, C. Y., 2017: Subtropical summer thermal effects of wirerope climber green walls with different air-gap depths. Building and Environment., 126, 1–12.
  19. Li, N.; Hao, M.; Phalen, R. F.; Hinds, W. C.; Nel, A. E., 2003: Particulate air pollutants and asthma: A paradigm for the role of oxidative stress in PM-induced adverse health effects. Clinical Immunology., 109, 250–265.
  20. Mishra, A.; Sarode, G.; Bhange, S.; Wathore, R.; Kokate, P. A., 2023: High-Resolution Machine Learning-Based Calibration Of A Low-Cost Particulate Matter Sensor Via Incorporation Of Environmental Parameters.
  21. Mukhopadhyay, M. K.; Adak, S.; Banerjee, P.; Skaria, V.; Bhattacharjee, P. K., 2020: Advances In Coal Mining Technology To Meet Requirements Of Environmental And Social Needs.
  22. Nasir, D., 2013: The Potential of Living Walls to Reduce Dust and Heat in Iraq and the Gulf Region (Thesis). ResearchSpace@Aucklandin thesisRetrieved from https://researchspace.auckland.ac.nz/handle/2292/21140.
  23. Norton, B. A.; Coutts, A. M.; Livesley, S. J.; Harris, R. J.; Hunter, A. M.; Williams, N. S. G., 2015: Planning for cooler cities: A framework to prioritise green infrastructure to mitigate high temperatures in urban landscapes. Landscape and Urban Planning., 134, 127–138.
  24. Putri, R. F.; Wibirama, S.; Giyarsih, S. R.; Pradana, A.; Kusmiati, Y., 2019: Landuse change monitoring and population density analysis of Penjaringan, Cengkareng, and Cakung Urban Area in Jakarta Province. E3S Web of Conferences., 76, 03004.
  25. Sarkar, U.; Hobbs, S. E.; Longhurst, P., 2003: Dispersion of odour: a case study with a municipal solid waste landfill site in North London, United Kingdom. Journal of Environmental Management., 68, 153–160.
  26. Saxena, N.; Geeta, G., 2013: AIR POLLUTION DUE TO ROAD TRANSPORTATION IN INDIA: A REVIEW OF ASSESSMENT AND REDUCTION STRATEGIES, 8.
  27. Shi, G.; Chen, Z.; Bi, C.; Wang, L.; Teng, J.; Li, Y.; Xu, S., 2011: A comparative study of health risk of potentially toxic metals in urban and suburban road dust in the most populated city of China. Atmospheric Environment. 45, 764–771.
  28. Vlasov, D.; Kosheleva, N.; Kasimov, N., 2021: Spatial distribution and sources of potentially toxic elements in road dust and its PM10 fraction of Moscow megacity. Science of The Total Environment., 761, 143267.
  29. Ysebaert, T.; Koch, K.; Samson, R.; Denys, S., 2021: Green walls for mitigating urban particulate matter pollution—A review. Urban Forestry & Urban Greening., 59, 127014.
Language: English
Page range: 237 - 242
Submitted on: Aug 8, 2023
Accepted on: Aug 14, 2023
Published on: Dec 6, 2023
Published by: University of Oradea, Civil Engineering and Architecture Faculty
In partnership with: Paradigm Publishing Services
Publication frequency: 2 issues per year

© 2023 P. Kokate, A. Middey, S. Sadistap, published by University of Oradea, Civil Engineering and Architecture Faculty
This work is licensed under the Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 License.