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Spatiotemporal variations of atmospheric black carbon concentration and its correlation with meteorological and environmental factors in Xinjiang, China, from 2010 to 2022. | LitMetric

Spatiotemporal variations of atmospheric black carbon concentration and its correlation with meteorological and environmental factors in Xinjiang, China, from 2010 to 2022.

PeerJ

Field Scientific Experiment Base of Akdala Atmospheric Background, China Meteorological Administration, Urumqi, China.

Published: November 2024

AI Article Synopsis

  • Black carbon (BC), a pollutant from fossil fuel and biomass combustion, significantly affects climate, air quality, and human health; this study investigates its atmospheric concentration variations in Xinjiang, China from 2010-2022 using MERRA-2 data and ground observations.
  • The average annual concentration of atmospheric BC in Xinjiang was 195.40 ng/m, with winter showing the highest levels, and notable spatial variations identified in the northern Tianshan Mountains and around Tarim Basin.
  • Meteorological and environmental factors like snow depth, surface temperature, humidity, NO, PM, and SO were found to strongly influence BC concentration, highlighting critical issues regarding climate change and public health related to BC pollution.

Article Abstract

Black carbon (BC) is a pollutant produced by the combustion of fossil fuels and biomass fuels, which has a huge impact on regional climate, atmospheric environment, and human health. In this study, based on MERRA-2 reanalysis data and ground-based observation data, the Mann-Kendall (MK) test and random forest (RF) model were used to explore the spatiotemporal variation characteristics of atmospheric BC concentration in Xinjiang, China and its correlation with meteorological and environmental covariates in 2010-2022. The results showed that the use of MERRA-2 reanalysis data to explore the spatiotemporal variation characteristics of BC concentration in Xinjiang had high reliability (relative average deviation (RAD) = 0.65). From 2010 to 2022, the annual average concentration of atmospheric BC in Xinjiang was 195.40 ± 15.55 ng/m, and the multi-year average change rate was -0.05%. The winter season had the highest atmospheric BC concentration (145.52 ± 39.31 ng/m), followed by autumn (124.95 ± 28.82 ng/m), spring (74.05 ± 9.96 ng/m), and summer (73.41 ± 5.69 ng/m). The atmospheric BC concentration had a significant spatial variation, showing two high-BC-concentration areas on the northern slope of the Tianshan Mountains (centered on Urumqi-Changji-Shihezi region) and the urban agglomeration around the Tarim Basin (centered on Kashgar). The RF model analysis showed that meteorological factors including snow depth, surface temperature, and humidity as well as environmental factors including NO, PM, and SO were the main factors affecting the BC concentration. This work is of great significance for clarifying the accumulation and spatial distribution characteristics of atmospheric BC in northwest China and the factors influencing the atmospheric BC concentration, and helps to raise public attention to the increasingly serious climate change and public health problems caused by BC.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC11550783PMC
http://dx.doi.org/10.7717/peerj.18187DOI Listing

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