4.7 Article

Dust emission and transport in the Aral Sea region

期刊

GEODERMA
卷 428, 期 -, 页码 -

出版社

ELSEVIER
DOI: 10.1016/j.geoderma.2022.116177

关键词

Dust emission; Dust transport; Dust deposition; Aral Sea; Wind erosion

资金

  1. Strategic Priority Research Program of the Chinese Academy of Sciences [XDA20030102]
  2. High-level Talent Cultivation Project from the Xinjiang Institute of Ecology and Geography, Chinese Academy of Sciences [E0500201]

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The rapid drying of the Aral Sea has caused complex environmental changes and a significant amount of aeolian dust to be released from the exposed bottom. This study used models to investigate the emission and transport characteristics of the Aral Sea dust. The results show that the dust emission is concentrated in the eastern Aral Sea basin and exhibits seasonal variation, with the highest value and widest spatial range in spring. The dust can be transported over 4,000 km and affect a land area of more than 38.5 x 106 km2, reaching as far as the Arctic Ocean, Iran, the Atlantic Ocean, and the Pacific Ocean.
The rapid drying of the Aral Sea has led to a series of complex environmental changes and a large amount of aeolian dust have been swept up from the exposed bottom. This study used a wind erosion model and the Hysplit model to investigate emission and transport characteristics of the Aral Sea dust. The spatial pattern of dust emission was determined by quantifying the surface conditions. The total source area in the Aral Sea region exceeds 27,000 km2, with annual average dust emission of up to 87.6 Tg from 2010 to 2020. The main source of dust was found to be in the eastern Aral Sea basin. The spatial pattern of dust emission in a year was seasonal and the highest value and the widest spatial range occurred in spring. Modeling of a dust event on March 22, 2020 showed that PM10 dust emitted from the Aral Sea region can be transported over 4,000 km, and the area of land surface affected was more than 6.21 x 106 km2. The potential impact area of the Aral Sea dust was mapped by the numerical simulations for the past 24 severe dust storms, which indicates that the Aral Sea dust can reach the Arctic Ocean, Iran, the Atlantic Ocean through France, and the Pacific Ocean through Japan, covering a land area of more than 38.5 x 106 km2.

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