Investigating the impact factors of dust emission efficiency over gobi with portable wind tunnel field experiments

Author:

Liang Linhao123ORCID,Ma Shaoxiu1,Zhang Weimin13,Tan Lihai13ORCID,Chen Shuyi123,Tsunekawa Atsushi45

Affiliation:

1. Northwest Institute of Eco‐Environment and Resources Chinese Academy of Sciences Lanzhou China

2. University of Chinese Academy of Sciences Beijing China

3. Dunhuang Gobi and Desert Ecology and Environment Research Station, Northwest Institute of Eco‐Environment and Resources Chinese Academy of Sciences Dunhuang China

4. International Platform for Dryland Research and Education Tottori University Tottori Japan

5. Arid Land Research Center Tottori University Tottori Japan

Abstract

AbstractThe contribution of the gobi to dust emission in arid northwestern China is largely uncertain due to the lack of studies on the surface properties of gobi. The dust emission efficiency ( ) as a comprehensive characterization of surface properties is an essential parameter for quantifying dust emission. However, the main influencing factors of dust emission efficiency are still unclear, as it is a big challenge to do a comprehensive field experiment and get the long‐term continuous field data in gobi due to its harsh environment. Here, we are aiming at quantitively identifying the main factors of dust emission efficiency by using a portable wind tunnel for field experiments over the gobi surface in Dunhuang Mogao grottoes. Results showed that (1) the abundance of bombardment sand regulates the relationship between and friction wind velocity ( ). The decreases as a power function with increasing , and the correlation is weak (R2 = 0.41, P < 0.05) in the shortage of bombardment sand. In contrast, increases with following a power function, and the correlation is strong (R2 = 0.91, P < 0.05) when bombardment sand is enriched. (2) The surface dust content of the gobi dominates the , which increases exponentially with the increased dust content. Relative to , the surface dust content has a bigger contribution to . (3) The gobi in Northwest China could be an underestimated dust source, as it has an enriched dust content and a higher than sandy desert. Therefore, the quantitative monitoring and further research of dust emissions in the gobi should be strengthened.

Funder

National Natural Science Foundation of China

Publisher

Wiley

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