Estimation methods of wetland carbon sink and factors influencing wetland carbon cycle: A review

L Li, H Xu, Q Zhang, Z Zhan, X Liang, J **ng - Carbon Research, 2024 - Springer
In the global ecosystem, wetlands are vital carbon sinks, playing a crucial role in absorbing
greenhouse gases such as carbon dioxide and mitigating global warming. Accurate …

Quantitative assessment of the contributions of climate change and human activities on global grassland degradation

C Gang, W Zhou, Y Chen, Z Wang, Z Sun, J Li… - Environmental Earth …, 2014 - Springer
Grassland degradation received considerable concern because of its adverse impact on
agronomic productivity and its capacity to provide goods and service. Climate change and …

Quantitative assessment of the relative roles of climate change and human activities in desertification processes on the Qinghai-Tibet Plateau based on net primary …

Q Li, C Zhang, Y Shen, W Jia, J Li - Catena, 2016 - Elsevier
Accurately identifying the contributions of climate change and human activities to
desertification will support effective strategies for combating desertification. In this study, we …

The impacts of climate changes and human activities on net primary productivity vary across an ecotone zone in Northwest China

M Teng, L Zeng, W Hu, P Wang, Z Yan, W He… - Science of the Total …, 2020 - Elsevier
The variations in net primary productivity (NPP) and its controls are critical to understand the
mechanisms that maintain ecosystem services under ongoing climate change and human …

Evaluation of NPP using three models compared with MODIS-NPP data over China

J Sun, Y Yue, H Niu - PLoS One, 2021 - journals.plos.org
Estimating net primary productivity (NPP) is significant in global climate change research
and carbon cycle. However, there are many uncertainties in different NPP modeling results …

[HTML][HTML] Desertification in the Mu Us Sandy Land in China: Response to climate change and human activity from 2000 to 2020

X Wang, J Song, Z **ao, J Wang, F Hu - Geography and Sustainability, 2022 - Elsevier
China is a country largely affected by desertification. The main purpose of this article is to
analyze interannual and seasonal changes in fractional vegetation cover (FVC) in the Mu Us …

Spatio-temporal changes of vegetation net primary productivity and its driving factors on the Qinghai-Tibetan Plateau from 2001 to 2017

Y Zhang, Q Hu, F Zou - Remote Sensing, 2021 - mdpi.com
The Qinghai-Tibetan Plateau (QTP) is the highest plateau in the world. Under the
background of global change, it is of unique significance to study the net primary productivity …

Effects of climatic and grazing changes on desertification of alpine grasslands, Northern Tibet

J Sun, G Hou, M Liu, G Fu, TY Zhan, H Zhou… - Ecological …, 2019 - Elsevier
Alpine grasslands influence global climatic change and local economy in Northern Tibet.
There is some debate about whether the grassland desertification is related to climate or …

Modeling the impact of urbanization and climate changes on terrestrial vegetation productivity in China by a neighborhood substitution analysis

Z Qin, Z Sha - Ecological Modelling, 2023 - Elsevier
Vegetation plays a vital role in global carbon sink in terrestrial ecosystems and could be
affected by climate changes and human activities. In the current context of rapid urban …

Quantitative analysis of desertification-driving mechanisms in the Shiyang River Basin: Examining Interactive effects of Key factors through the Geographic detector …

M Ngabire, T Wang, J Liao, G Sahbeni - Remote Sensing, 2023 - mdpi.com
Desertification is a global eco-environmental hazard exacerbated by environmental and
anthropogenic factors. However, comprehensive quantification of each driving factor's …