The work was supported by the National Natural Science Foundation of China (Grant No. 41971121 and 41572331), the Strategic Priority Research Program of the Chinese Academy of Sciences (Grant No. XDA19050103), and the Scientific Research Foundation for the Returned Overseas Chinese Scholars, State Education Ministry.Late Pleistocene-Holocene has been regarded as one of the most important periods in the history of climate change. The specific objectives of this study were to restore vegetation change and climatic evolution in the Ebinur Betula wetland of Xinjiang in China over the past 16,000 years based on 15 surface and 70 fossil pollen data. Research results revealed that a relatively humid climate existed from 12,230 to 9,260 cal. aBP, f...
Reconstructing environmental changes for the last glacial-interglacial cycles in central China plays...
High-resolution pollen and charcoal records from Chenghai Lake, northwestern Yunnan Province of Chin...
Large-scale palaeovegetation reconstruction plays a critical role in improving our understanding of ...
Late Pleistocene-Holocene has been regarded as one of the most important periods in the history of c...
The birch wetland is an important type of oasis ecosystem in Xinjiang, China, which is extremely vul...
Aims Climate change can significantly affect the vegetation worldwide. Thus, paleovegetation and pal...
This paper presents a multi-proxy reconstruction of the climate change in Caotanhu wetland using pol...
Climate change and human activities interact to affect the vegetation landscape. We examined the int...
Dajiuhu, a rare peatland in Central China, has attracted several studies. There are differences in t...
In this study, late Holocene vegetation, climate and human impacts were investigated using multiprox...
Pollen samples from peat sediments on the south bank of the Heilongjiang River in northern Northeast...
Knowledge of the past interactions between climate and human land use is essential for understanding...
A pollen diagram from a 6.62 m sediment sequence in Lake Erhai in northwest Yunnan, China was obtain...
This study provides a vegetation and climate history of an alpine wetland in the centre of China’s Q...
Congping is a wetland at about 2100 m asl in Chongqing Province. It is surrounded by a shrubby grass...
Reconstructing environmental changes for the last glacial-interglacial cycles in central China plays...
High-resolution pollen and charcoal records from Chenghai Lake, northwestern Yunnan Province of Chin...
Large-scale palaeovegetation reconstruction plays a critical role in improving our understanding of ...
Late Pleistocene-Holocene has been regarded as one of the most important periods in the history of c...
The birch wetland is an important type of oasis ecosystem in Xinjiang, China, which is extremely vul...
Aims Climate change can significantly affect the vegetation worldwide. Thus, paleovegetation and pal...
This paper presents a multi-proxy reconstruction of the climate change in Caotanhu wetland using pol...
Climate change and human activities interact to affect the vegetation landscape. We examined the int...
Dajiuhu, a rare peatland in Central China, has attracted several studies. There are differences in t...
In this study, late Holocene vegetation, climate and human impacts were investigated using multiprox...
Pollen samples from peat sediments on the south bank of the Heilongjiang River in northern Northeast...
Knowledge of the past interactions between climate and human land use is essential for understanding...
A pollen diagram from a 6.62 m sediment sequence in Lake Erhai in northwest Yunnan, China was obtain...
This study provides a vegetation and climate history of an alpine wetland in the centre of China’s Q...
Congping is a wetland at about 2100 m asl in Chongqing Province. It is surrounded by a shrubby grass...
Reconstructing environmental changes for the last glacial-interglacial cycles in central China plays...
High-resolution pollen and charcoal records from Chenghai Lake, northwestern Yunnan Province of Chin...
Large-scale palaeovegetation reconstruction plays a critical role in improving our understanding of ...