Blockchain Papers

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5 papersLast indexed Aug 31, 2026
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Jun 2, 2025·Ecotoxicology and Environmental Safety
18 cites
Blockchain-secured IoT-federated learning for industrial air pollution monitoring: A mechanistic approach to exposure prediction and environmental safety

Montaser N.A. Ramadan, Mohammed A. H. Ali, Hadi Jaber, Mohammad Alkhedher

Air pollution in industrial zones significantly impacts environmental safety and worker health. This paper presents a novel decentralized IoT-federated learning (FL) framework, uniquely integrated with blockchain security, designed to provide a mechanistic understanding and accurate predictive modeling of air pollutant exposure in industrial environments. The novelty lies in the integration of a hybrid EMD-Transformer-BiLSTM prediction model with a blockchain-backed federated learning mechanism, providing secure, tamper-proof decentralized model updates. Three IoT-based sensing units, deployed across an industrial facility for five months, continuously monitored pollutants (PM2.5, PM10, CO₂, VOCs, CH₂O, CO, and O₃) and environmental factors (temperature, humidity). The innovative model improved prediction accuracy from 83.12 % to 92.5 % for short-term (5-minute) forecasts, stabilizing at 84.7 % for 60-minute predictions after 15 FL rounds. Model validation indicated strong predictive reliability (R² = 0.89), significantly reducing prediction errors (Mean Absolute Error and Root Mean Square Error). Blockchain integration successfully ensured data integrity, identifying and rejecting over 98.7 % of unauthorized updates. Additionally, a swarm intelligence approach optimized decentralized model aggregation, minimizing communication overhead despite increased security latency (FL rounds increased from 7.5 s to 13.5 s for 500 clients). Real-time RGB-based air quality index visualization and cloud-based spatio-temporal mapping provided actionable insights into pollutant dynamics. This study demonstrates a distinct advancement in air pollution monitoring by combining federated learning, blockchain technology, and real-time adaptive visualization for enhanced environmental safety in industrial settings.

Open access
Air Quality Monitoring and Forecasting
Air Quality and Health Impacts
Traffic Prediction and Management Techniques
Original source
Apr 24, 2025·Nature Communications
13 cites
Blockchain-based isotopic big data-driven tracing of global PM sources and interventions

Yuming Huang, Xiangyu Li, Yuehan Wu, Chaoyang Xue · 14 authors

Abstract Tracing sources and assessing intervention effectiveness are crucial for controlling atmospheric particulate matter (PM) pollution. Isotopic techniques enable precise top-down tracing, but the absence of long-term, global-scale multi-compound isotopic data limits comprehensive analysis. Here, we establish a blockchain-based isotopic database, compiling 34,815 isotopic fingerprints of global PM and its emissions from 1,890 pollution events across 66 countries. This allows retrospective analysis and predictions, revealing that PM sources are distinct, dynamically changing over time, and often asynchronous with interventions. Additionally, we estimate source contributions to PM 2.5 and its compounds, highlighting the increasing impact of biomass burning. Furthermore, projections indicate that by 2100, PM levels may decline to 5.38 ± 0.16 μg/m³ in the Americas and 13.9 ± 1.82 μg/m³ in Asia under climate mitigation scenarios but will still exceed WHO guidelines without further controls on natural emissions. Guiding future interventions with isotopic big data is essential for addressing air pollution challenges.

Open access
Atmospheric chemistry and aerosols
Air Quality and Health Impacts
Atmospheric and Environmental Gas Dynamics
Original source
Feb 25, 2023·Environmental Development
58 cites
Can green finance improve China's haze pollution reduction? The role of energy efficiency

Hao Zhang, Ye Duan, Jun Yang, Han Zeng-lin · 5 authors

Green finance is crucial to advancing the decrease of haze pollution in my nation as a new kind of environmental governance. This research constructs a comprehensive evaluation system of green finance to analyze the impact of green finance on haze pollution reduction and to consider the mediating role of energy efficiency in 30 provinces and regions in China. Through a series of robustness tests, the mechanism and path of green finance on haze pollution reduction are confirmed. The main conclusions are as follows: First, the development of green finance has a positive effect on haze pollution reduction. Second, the upgrading of industrial structure and the improvement of technological level are important paths for green finance to promote haze pollution reduction, and can also have an indirect impact through energy efficiency. The moderating and mediating effects of energy efficiency and green finance can effectively promote the reduction of haze pollution. In other words, the development of green finance can achieve the goal of reducing haze pollution by improving energy efficiency. Third, there is regional heterogeneity in green finance for haze pollution reduction, and regions with high levels of green finance are more effective in reducing haze pollution. Fourth, environmental Supervision, environmental decentralization and average wind speed can promote haze pollution reduction, economic development to some extent exacerbated the haze pollution. Based on the above research conclusions, this paper puts forward corresponding countermeasures and suggestions.

Open access
Energy, Environment, Economic Growth
Air Quality and Health Impacts
Energy and Environment Impacts
Original source
Oct 17, 2020·Journal of Sensor and Actuator Networks
29 cites
Novel Air Pollution Measurement System Based on Ethereum Blockchain

Daniele Sofia, Nicoletta Lotrecchiano, Paolo Trucillo, Aristide Giuliano · 5 authors

The need to protect sensitive data is growing, and environmental data are now considered sensitive. The application of last-generation procedures such as blockchains coupled with the implementation of new air quality monitoring technology allows the data protection and validation. In this work, the use of a blockchain applied to air pollution data is proposed. A blockchain procedure has been designed and tested. An Internet of Things (IoT)-based sensor network provides air quality data in terms of particulate matter of two different diameters, particulate matter (PM)10 and PM2.5, volatile organic compounds (VOC), and nitrogen dioxide (NO2) concentrations. The dataset also includes meteorological parameters and vehicular traffic information. This work foresees that the data, recovered from traditional Not Structured Query Language (NoSQL) database, and organized according to some specifications, are sent to the Ethereum blockchain daily automatically and with the possibility to choose the period of interest manually. There was also the development of a transaction management and recovery system aimed at retrieving data, formatting it according to the specifications and organizing it into files of various formats. The blockchain procedure has therefore been used to track data provided by air quality monitoring networks unequivocally.

Open access
Air Quality Monitoring and Forecasting
Blockchain Technology Applications and Security
Air Quality and Health Impacts
Original source
Sep 25, 2019·Sensors
84 cites
Indoor Air-Quality Data-Monitoring System: Long-Term Monitoring Benefits

Shengjing Sun, Xiaochen Zheng, Javier Villalba-Díez, Joaquín Ordieres‐Meré

Indoor air pollution has been ranked among the top five environmental risks to public health. Indoor Air Quality (IAQ) is proven to have significant impacts on people's comfort, health, and performance. Through a systematic literature review in the area of IAQ, two gaps have been identified by this study: short-term monitoring bias and IAQ data-monitoring solution challenges. The study addresses those gaps by proposing an Internet of Things (IoT) and Distributed Ledger Technologies (DLT)-based IAQ data-monitoring system. The developed data-monitoring solution allows for the possibility of low-cost, long-term, real-time, and summarized IAQ information benefiting all stakeholders contributing to define a rich context for Industry 4.0. The solution helps the penetration of Industrial Internet of Things (IIoT)-based monitoring strategies in the specific case of Occupational Safety Health (OSH). The study discussed the corresponding benefits OSH regulation, IAQ managerial, and transparency perspectives based on two case studies conducted in Spain.

Open access
Air Quality Monitoring and Forecasting
Air Quality and Health Impacts
Advanced Chemical Sensor Technologies
Original source