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Analysis of the Efficiency of Technologies for Extraction Carbon Dioxide from Combustion Products
Published 2022-12-01“…The results of numerical research that were obtained have shown that the highest degree of carbon dioxide extraction from combustion products is 97 %, and it is achieved in the optimal mode of implementation of chemical absorption technology. …”
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Optimization of 3D Printing Process Parameters of Polylactic Acid Filament Based on the Mechanical Test
Published 2022-01-01Get full text
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Tackling impurities in CCS pipelines: An optimization-based approach
Published 2025-06-01Get full text
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Detecting and measuring Microplastic pollution in Al Hoceima City's harbor, northern Morocco
Published 2025-06-01Get full text
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Trace Measurements of Ethylene Oxide Using Cavity-enhanced Absorption Spectrometry near 3066 cm−1
Published 2022-07-01Get full text
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Metformin and Fibrosis: A Review of Existing Evidence and Mechanisms
Published 2021-01-01Get full text
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Available land for cellulosic biofuel production: a supply chain centered comparison
Published 2025-01-01Get full text
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Do oversimplified durability metrics undervalue biochar carbon dioxide removal?
Published 2025-01-01Get full text
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Modelling the Current and Future Pollutant Emission from Non-Road Machinery: A Case Study in Shanghai
Published 2023-06-01Get full text
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Evaluating Concrete Strength Under Various Curing Conditions Using Artificial Neural Networks
Published 2024-12-01Get full text
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Spatial analysis of teen births near the New Bedford Harbor Superfund site
Published 2025-01-01Get full text
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Seasonal Variation and Sources of Elements in Urban Submicron and Fine Aerosol in Brno, Czech Republic
Published 2020-11-01Get full text
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Refined Source Apportionment of Atmospheric PM2.5 in a Typical City in Northwest China
Published 2020-09-01“…Organic carbon (18.2%), nitrate (17.0%), and sulfate (13.1%) were the main chemical components of PM2.5. A refined statistical assessment of sources was conducted using the CAS-HERM receptor model, and it showed that primary sources accounted for ~58.5% of the PM2.5 annual mass, of which dust accounted for 23.3% (road, construction, and soil dust accounted for 11.4%, 8.0% and 3.9%, respectively) while motor vehicles contributed 10.1% (diesels 8.7% and gasoline vehicles 1.4%). …”
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The Unignorable Near-ground PM2.5, UFP, PAHs, and BC Levels around a Traffic Prohibited Night Market
Published 2023-03-01“…Results indicated the concentration of PM2.5 was 7.26–58.6 mg m−3. In chemical analysis, secondary contents e.g., carbonaceous and ionic components accounted for ~60% of the PM2.5, supporting the importance of long-range transport. …”
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