Midlatitude Asia (MLA), strongly influenced by westerlies-controlled climate, is a key source of global atmospheric dust, and plays a significant role in Earth's climate system . However, it remains unclear how the westerlies, MLA aridity, and dust flux from this region evolved over time. Here, we report a unique high-resolution eolian dust record covering the past 3.6 Ma, retrieved from the thickest loess borehole sequence (671 m) recovered to date, at the southern margin of the Taklimakan desert in the MLA interior. The results show that eolian dust accumulation, which is closely related to aridity and the westerlies, indicates existence of a dry climate, desert area, and stable land surface, promoting continuous loess deposition since at...
The response of surface processes to global climatic changes since the last glacial is critical to u...
Dust is important in the Earth environment system. However, the role of dust in climate change remai...
Across the Miocene-Pliocene boundary (MPB; 5.3 million years ago, Ma), late Miocene cooling gave way...
Midlatitude Asia (MLA), strongly influenced by westerlies-controlled climate, is a key source of glo...
Northern Tibetan Plateau uplift and global climate change are regarded as two important factors resp...
Eolian dust activity studies on the arid Central Asia (ACA), one of the world's largest dust sources...
Arid central Asia (ACA) is one of the most arid regions in the mid-latitudes and one of the main pot...
The production, transport, and deposition of mineral dust have a major influence on climate change a...
Knowledge of the interactions among atmospheric dynamics, dust emissions and climate system is essen...
The production, transport, and deposition of mineral dust exert major influences on climate change a...
Mid-latitude Central Asia is characterized by an extreme arid landscape. Among the Central Asian des...
The Pliocene-Pleistocene boundary marks a major change in global climate and East Asian monsoon dyna...
Dust storms occur frequently in arid central Asia (ACA) and greatly influence the regional ecology/e...
Thesis: Ph. D., Joint Program in Oceanography/Applied Ocean Science and Engineering (Massachusetts I...
Knowledge of the interactions among atmospheric dynamics, dust emissions and climate system is essen...
The response of surface processes to global climatic changes since the last glacial is critical to u...
Dust is important in the Earth environment system. However, the role of dust in climate change remai...
Across the Miocene-Pliocene boundary (MPB; 5.3 million years ago, Ma), late Miocene cooling gave way...
Midlatitude Asia (MLA), strongly influenced by westerlies-controlled climate, is a key source of glo...
Northern Tibetan Plateau uplift and global climate change are regarded as two important factors resp...
Eolian dust activity studies on the arid Central Asia (ACA), one of the world's largest dust sources...
Arid central Asia (ACA) is one of the most arid regions in the mid-latitudes and one of the main pot...
The production, transport, and deposition of mineral dust have a major influence on climate change a...
Knowledge of the interactions among atmospheric dynamics, dust emissions and climate system is essen...
The production, transport, and deposition of mineral dust exert major influences on climate change a...
Mid-latitude Central Asia is characterized by an extreme arid landscape. Among the Central Asian des...
The Pliocene-Pleistocene boundary marks a major change in global climate and East Asian monsoon dyna...
Dust storms occur frequently in arid central Asia (ACA) and greatly influence the regional ecology/e...
Thesis: Ph. D., Joint Program in Oceanography/Applied Ocean Science and Engineering (Massachusetts I...
Knowledge of the interactions among atmospheric dynamics, dust emissions and climate system is essen...
The response of surface processes to global climatic changes since the last glacial is critical to u...
Dust is important in the Earth environment system. However, the role of dust in climate change remai...
Across the Miocene-Pliocene boundary (MPB; 5.3 million years ago, Ma), late Miocene cooling gave way...