Suppr超能文献

用于空气质量监测网络的碳基传感器:中东视角

Carbon based sensors for air quality monitoring networks; middle east perspective.

作者信息

Shahid Imran, Shahzad M Imran, Tutsak Ersin, Mahfouz Mohamed M K, Al Adba Maryam S, Abbasi Saddam A, Rathore Hassaan Anwer, Asif Zunaira, Chen Zhi

机构信息

Environmental Science Centre, Qatar University, Doha, Qatar.

Department of Meteorology, COMSATS University Islamabad, Islamabad, Pakistan.

出版信息

Front Chem. 2024 May 20;12:1391409. doi: 10.3389/fchem.2024.1391409. eCollection 2024.

Abstract

IoT-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.

摘要

基于物联网的传感器网络在改善中东地区的空气质量监测方面发挥着关键作用。它们提供实时数据,能够精确追踪污染趋势,助力做出明智决策,并提高公众意识。中东地区的空气质量和沙尘污染可能导致各种健康问题,尤其是在弱势群体中。基于物联网的传感器网络通过提供及时准确的空气质量数据,有助于降低健康风险。空气污染不仅影响人类健康,还会对该地区的生态系统造成影响,并加剧气候变化。空气质量恶化带来的经济影响包括医疗成本增加和生产力下降,这凸显了有效监测和缓解措施的必要性。基于物联网的数据可以指导政策制定者与与健康、清洁水和气候行动相关的可持续发展目标保持一致。传统的基于监测器的标准空气质量仪器提供的空间覆盖范围有限,因此迫切需要继续开展与低成本传感器技术相结合的研究,以使空气质量监测更加普及,即使在资源有限的地区也是如此。基于物联网的传感器网络监测有助于了解这些环境影响。在这些基于物联网的传感器网络中,传感器至关重要。随着传感器技术的发展,有了不同类型的传感材料。其中,碳基传感器被广泛用于空气质量监测。基于碳纳米材料的传感器(CNS)和作为吸附剂的碳纳米管(CNT)在空气污染物测量方面具有独特能力。这些传感器用于检测气态污染物,包括氮氧化物、硫氧化物、臭氧和挥发性有机化合物(VOC)。本研究全面综述了基于碳纳米材料的传感器在基于物联网的网络中的集成,以实现更好的空气质量监测,并探索机器学习和人工智能在高级数据分析、污染源识别、卫星与地面网络集成以及未来预测方面的潜力,以设计有效的缓解策略。通过优先考虑这些建议,中东和其他地区可以进一步利用基于物联网的系统来改善空气质量监测、保障公众健康、保护环境,并为该地区的可持续发展做出贡献。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7930/11144860/def5ebf53936/fchem-12-1391409-g001.jpg

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验