A holistic assessment of spatiotemporal variation, driving factors, and risks influencing river water quality in the northeastern Qinghai-Tibet Plateau

X Wang, X Liu, L Wang, J Yang, X Wan… - Science of The Total …, 2022 - Elsevier
Abstract The Qinghai-Tibet Plateau (QTP) is the source for many of the most important rivers
in Asia. It is also an essential ecological barrier in China and has the characteristic of …

Determining whether Qinghai–Tibet Plateau waterbodies have acted like carbon sinks or sources over the past 20 years

J Jia, K Sun, S Lü, M Li, Y Wang, G Yu, Y Gao - Science Bulletin, 2022 - Elsevier
Half of all of China's lakes are on the Qinghai–Tibet Plateau (QTP), which are mainly
distributed at altitudes above 4000 m asl. Being under conditions of progressively …

High-resolution maps of vegetation nitrogen density on the Tibetan Plateau: An intensive field-investigation

X Li, L Xu, M Li, N He - Science of The Total Environment, 2023 - Elsevier
Nitrogen (N) is a vital macronutrient in plant growth and development that plays a crucial
role in the regulation of numerous physiological processes. The Tibetan Plateau is among …

[HTML][HTML] Quantitative analysis of dissolved carbon sources in the farmland artificial ditch drainage-Lake UlanSuhai continuum in the Hetao Irrigation District's, Inner …

Y Wang, W Yang, Y Jiao, X Ma, W Qi - Journal of Hydrology: Regional …, 2024 - Elsevier
Abstract Study region Agricultural Irrigation and Drainage system-Ulansuhai Lake
Continuum, located in the Hetao Irrigation District, Inner Mongolia, China. Study focus In this …

[HTML][HTML] Decadal shifts in Qingzang Plateau lake carbon dynamics (1970–2020): From predominant carbon sources to emerging sinks

D Shen, Y Li, Y Wang, S Huo, Y Liu, J Jia… - Environmental Science …, 2024 - Elsevier
The evasion of carbon dioxide (CO 2) from lakes significantly influences the global carbon
equilibrium. Amidst global climatic transformations, the role of Qingzang Plateau (QZP) lakes …

[HTML][HTML] Evaluation of driving effects of carbon storage change in the source of the Yellow River: A perspective with CMIP6 future development scenarios

M Ling, Z Feng, Z Chen, Y Lan, X Li, H You, X Han… - Ecological …, 2024 - Elsevier
Understanding how future climate scenarios impact land use/cover (LUC) and carbon
storage (CS) is crucial for achieving carbon neutrality. However, research often overlooks …

[HTML][HTML] Carbon budgets of lakes on the Tibetan Plateau: Highlighting non-negligible carbon emissions from small lakes

X Si, X Chen, Z Yu, J Yin, T Shen, H Lin, T Nie, W Hu - Ecological Indicators, 2024 - Elsevier
The release of carbon dioxide (CO 2) from lakes is a critical element of carbon (C) emissions
from inland waters. Within the realm of climate change, the inquiries surrounding whether …

Changes in Dissolved Inorganic Carbon Across Yangtze River Regulated by Dam and River‐Lake Exchange

C Zhao, C Wang, J Li, L Meng, J Xue… - Global …, 2023 - Wiley Online Library
The boom in dam construction and continuous river‐lake exchange has had a profound
impact on the transmission and transformation of riverine dissolved inorganic carbon (DIC) …

[HTML][HTML] Determining whether an 18/16O technology threshold exists in estimating lake primary productivity and associated metabolism

Y Lu, Y Gao, J Jia, S Wang, X Ha, Z Li - Ecological Indicators, 2023 - Elsevier
To determine lake carbon (C) cycling storage, transport, and transformation functions, it is
necessary to understand metabolic lacustrine changes and associated drivers, all of which …

Terrestrial vegetation carbon sink analysis and driving mechanism identification in the Qinghai-Tibet Plateau

S Dong, S Du, XC Wang, X Dong - Journal of Environmental Management, 2024 - Elsevier
The estimation of terrestrial carbon sinks in the Qinghai-Tibet Plateau (QTP) still faces
significant uncertainties, and the spatiotemporal dynamics of terrestrial carbon sinks along …