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- W4380148788 abstract "Biological crusts grant stability to dust source areas by inhibiting dust emission, while few models have explicitly considered this inhibiting impact. This paper uses the China Meteorological Administration Unified Atmospheric Chemistry Environment/Dust model (CUACE/Dust), combined the retrieved biocrusts with two biocrusts inhibit schemes (the roughness length scheme and biocrust strength scheme), to numerically study the inhibiting effect on a strong dust storm in March 25∼30, 2018 in Central and East Asia. The inhibiting effect on dust emission is increasing with the coverage of biocrusts. The roughness length scheme can reduce the total dust emission by about 56.7%, while the biocrust strength scheme by 47.94% in average. In downstream sites in China, the roughness length scheme decreases the surface mass concentrations of PM10 by about 36% ∼ 57% and the biocrust strength scheme by about 24% ∼ 41%. When biocrusts are considered, the forecast of stations near the dust source area is much more improved and the forecast of stations far away from source area is less reasonable under the combing impacts of emission, transport and deposition." @default.
- W4380148788 created "2023-06-11" @default.
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- W4380148788 date "2023-06-01" @default.
- W4380148788 modified "2023-10-12" @default.
- W4380148788 title "Adding the impacts of biological crusts on sand and dust storm emission in Asia" @default.
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- W4380148788 doi "https://doi.org/10.1016/j.accre.2023.06.002" @default.
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