Energy and Buildings, Journal Year: 2022, Volume and Issue: 276, P. 112509 - 112509
Published: Oct. 1, 2022
Language: Английский
Energy and Buildings, Journal Year: 2022, Volume and Issue: 276, P. 112509 - 112509
Published: Oct. 1, 2022
Language: Английский
Nature Energy, Journal Year: 2018, Volume and Issue: 3(11), P. 978 - 984
Published: Oct. 3, 2018
Language: Английский
Citations
342Aerosol and Air Quality Research, Journal Year: 2020, Volume and Issue: 20(5), P. 915 - 929
Published: Jan. 1, 2020
In early 2020, the COVID-19 epidemic spread globally. This study investigated air quality of three cities in Hubei Province, Wuhan, Jingmen, and Enshi, central China, from January to March 2017–2020 analyze impact prevention control actions on quality. The results indicated that cities, during February when were taken, average concentrations atmospheric PM2.5, PM10, SO2, CO, NO2 46.1 µg m–3, 50.8 2.56 ppb, 0.60 ppm, 6.70 30.1%, 40.5%, 33.4%, 27.9%, 61.4% lower than levels 2017–2019, respectively. However, O3 concentration (23.1, 32.4, 40.2 ppb) 2020 did not show a significant decrease, even increased by 12.7%, 14.3%, 11.6% January, February, March, is because resulted constraints NO + reaction, could be effectively further depleted. addition, index (AQI) for 32.2%, 27.7%, 14.9% Based AQIs combined proportions Class I Ⅱ 24.8%, 4.3%, respectively, while proportion AQI Classes III, IV, V, VI was reduced 34.8% 15.8%. first months indicatory pollutants predominant following order: PM2.5 (72.0%), (16.4%), PM10 (8.3%), (2.9%), CO (0.4%). provides useful information establishing scientific pollution strategy valuable reference future research improving urban
Language: Английский
Citations
254Journal of Cleaner Production, Journal Year: 2017, Volume and Issue: 172, P. 2234 - 2245
Published: Nov. 24, 2017
Language: Английский
Citations
218Journal of Cleaner Production, Journal Year: 2019, Volume and Issue: 254, P. 119866 - 119866
Published: Dec. 28, 2019
Language: Английский
Citations
187Renewable and Sustainable Energy Reviews, Journal Year: 2020, Volume and Issue: 138, P. 110669 - 110669
Published: Dec. 29, 2020
In buildings, energy is primarily consumed by mechanical air conditioning systems. Low alternatives, such as natural ventilation, are needed. However, they need to be able cope with increasing heatwaves and pollution, particularly in warm climates. This review paper looked at the ability of ventilation provide adequate thermal comfort, resilience against heatwaves, good Indoor Air Quality Single-sided demonstrates poorest while cross highlights better performance terms reducing indoor temperatures compared outdoor. windcatchers solar chimneys displayed even producing relatively high rates. During future climatic scenarios, cross-ventilation, was not meet internal comfort standards. A potential low solution could combining or water evaporation cooling. critical synthesis literature suggests that these systems can generate rates keep around 8 °C cooler than outdoor weather (>35 °C). no studies were found testing climate further recommended. The supported being effective removing pollution generated indoors due using unfiltered for areas increase deposition harmful particulate matter. With urgently required investigate filter enabled chimney/windcatcher incorporated.
Language: Английский
Citations
185Building and Environment, Journal Year: 2017, Volume and Issue: 122, P. 386 - 396
Published: June 13, 2017
Language: Английский
Citations
181Journal of Cleaner Production, Journal Year: 2020, Volume and Issue: 254, P. 120012 - 120012
Published: Jan. 7, 2020
Language: Английский
Citations
158The Science of The Total Environment, Journal Year: 2020, Volume and Issue: 763, P. 144183 - 144183
Published: Dec. 17, 2020
Language: Английский
Citations
142Sustainable Cities and Society, Journal Year: 2021, Volume and Issue: 74, P. 103190 - 103190
Published: July 20, 2021
Language: Английский
Citations
112Applied Energy, Journal Year: 2021, Volume and Issue: 298, P. 117247 - 117247
Published: June 18, 2021
Language: Английский
Citations
106