Assessment of temporal shifting of PM2.5, lockdown effect, and influences of seasonal meteorological factors over the fastestgrowing megacity, Dhaka

Dhaka is subjected to high pollution levels throughout the year, holding some relatively high amounts of pollution readings, making its air unhealthy to breathe. The study examined hourly, shifting, seasonal fluctuations in particulate matter (PM2.5), the effects of seasonal meteorological variables...

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Published inSpatial information research (Online) pp. 441 - 453
Main Authors Abdullah-Al- Faisal(Rajshahi University of Engineering & Technology, Abdulla - Al Kafy(Rajshahi University of Engineering & Technology, Md. Abdul Fattah, Dewan Md. Amir Jahir(Rajshahi University of Engineering & Technology, Abdullah Al Rakib(Rajshahi University of Engineering & Technology, Zullyadini A. Rahaman, Jannatul Ferdousi, Xiao Huang
Format Journal Article
LanguageEnglish
Published 대한공간정보학회 01.06.2022
Subjects
Online AccessGet full text
ISSN2366-3286
2366-3294
DOI10.1007/s41324-022-00441-w

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Abstract Dhaka is subjected to high pollution levels throughout the year, holding some relatively high amounts of pollution readings, making its air unhealthy to breathe. The study examined hourly, shifting, seasonal fluctuations in particulate matter (PM2.5), the effects of seasonal meteorological variables, and the lockdown effect over the megacity of Dhaka from 2019 to 2021 using data from AirNow. The results indicate the daily average PM2.5 concentration between 2019 and 2021 was 112.49 lg/m3, about four times higher than the WHO limit and two times higher than the Bangladesh standard. Daily PM2.5 concentrations was high during morning and evening pick-up hours, reaching a maximum hourly concentration of 472.9 lg/m3 in February 2020. The maximum average PM2.5 concentration was 211.23 lg/m3 in March 2021 (winter season), and the lowest average was 27.58 lg/m3 in August 2020 (rainy season). The Pearson correlation coefficient (r) between the PM2.5 and meteorological variables were inverse with rainfall (- 0.62), temperature (- 0.73), humidity (- 0.82), but positive with wind (0.09). Daily average Air Quality Index (AQI) concentrations improved from 108.53 to 67.99 lg/m3 during the lockdown period. Finally, the study recommended many mitigation strategies that might assist accountable authorities in lowering the number of life-threatening components in the air. KCI Citation Count: 0
AbstractList Dhaka is subjected to high pollution levels throughout the year, holding some relatively high amounts of pollution readings, making its air unhealthy to breathe. The study examined hourly, shifting, seasonal fluctuations in particulate matter (PM2.5), the effects of seasonal meteorological variables, and the lockdown effect over the megacity of Dhaka from 2019 to 2021 using data from AirNow. The results indicate the daily average PM2.5 concentration between 2019 and 2021 was 112.49 lg/m3, about four times higher than the WHO limit and two times higher than the Bangladesh standard. Daily PM2.5 concentrations was high during morning and evening pick-up hours, reaching a maximum hourly concentration of 472.9 lg/m3 in February 2020. The maximum average PM2.5 concentration was 211.23 lg/m3 in March 2021 (winter season), and the lowest average was 27.58 lg/m3 in August 2020 (rainy season). The Pearson correlation coefficient (r) between the PM2.5 and meteorological variables were inverse with rainfall (- 0.62), temperature (- 0.73), humidity (- 0.82), but positive with wind (0.09). Daily average Air Quality Index (AQI) concentrations improved from 108.53 to 67.99 lg/m3 during the lockdown period. Finally, the study recommended many mitigation strategies that might assist accountable authorities in lowering the number of life-threatening components in the air. KCI Citation Count: 0
Author Jannatul Ferdousi
Xiao Huang
Abdullah-Al- Faisal(Rajshahi University of Engineering & Technology
Md. Abdul Fattah
Zullyadini A. Rahaman
Abdulla - Al Kafy(Rajshahi University of Engineering & Technology
Dewan Md. Amir Jahir(Rajshahi University of Engineering & Technology
Abdullah Al Rakib(Rajshahi University of Engineering & Technology
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Title Assessment of temporal shifting of PM2.5, lockdown effect, and influences of seasonal meteorological factors over the fastestgrowing megacity, Dhaka
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