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AuthorShahid, Imran
AuthorShahzad, M. Imran
AuthorTutsak, Ersin
AuthorMahfouz, Mohamed M. K.
AuthorAl Adba, Maryam S.
AuthorAbbasi, Saddam A.
AuthorRathore, Hassaan Anwer
AuthorAsif, Zunaira
AuthorChen, Zhi
Available date2024-08-14T06:25:16Z
Publication Date2024
Publication NameFrontiers in Chemistry
ResourceScopus
ISSN22962646
URIhttp://dx.doi.org/10.3389/fchem.2024.1391409
URIhttp://hdl.handle.net/10576/57703
AbstractIoT-based Sensors networks play a pivotal role in improving air quality monitoring in the Middle East. They provide real-time data, enabling precise tracking of pollution trends, informed decision-making, and increased public awareness. Air quality and dust pollution in the Middle East region may leads to various health issues, particularly among vulnerable populations. IoT-based Sensors networks help mitigate health risks by offering timely and accurate air quality data. Air pollution affects not only human health but also the region's ecosystems and contributes to climate change. The economic implications of deteriorated air quality include healthcare costs and decreased productivity, underscore the need for effective monitoring and mitigation. IoT-based data can guide policymakers to align with Sustainable Development Goals (SDGs) related to health, clean water, and climate action. The conventional monitor based standard air quality instruments provide limited spatial coverage so there is strong need to continue research integrated with low-cost sensor technologies to make air quality monitoring more accessible, even in resource-constrained regions. IoT-based Sensors networks monitoring helps in understanding these environmental impacts. Among these IoT-based Sensors networks, sensors are of vital importance. With the evolution of sensors technologies, different types of sensors materials are available. Among this carbon based sensors are widely used for air quality monitoring. Carbon nanomaterial-based sensors (CNS) and carbon nanotubes (CNTs) as adsorbents exhibit unique capabilities in the measurement of air pollutants. These sensors are used to detect gaseous pollutants that includes oxides of nitrogen and Sulphur, and ozone, and volatile organic compounds (VOCs). This study provides comprehensive review of integration of carbon nanomaterials based sensors in IoT based network for better air quality monitoring and exploring the potential of machine learning and artificial intelligence for advanced data analysis, pollution source identification, integration of satellite and ground-based networks and future forecasting to design effective mitigation strategies. By prioritizing these recommendations, the Middle East and other regions, can further leverage IoT-based systems to improve air quality monitoring, safeguard public health, protect the environment, and contribute to sustainable development in the region.
SponsorThe author(s) declare that financial support was received for the research, authorship, and/or publication of this article. The funding for this work is provided by Qatar University by IRCC grant # IRCC-2023-152.
Languageen
PublisherFrontiers Media SA
Subjectair quality
carbon nanotubes
IoT sensors network
nanomaterials
sensors
TitleCarbon based sensors for air quality monitoring networks; middle east perspective
TypeArticle Review
Volume Number12
dc.accessType Open Access


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