Results 201 to 210 of about 241,997 (241)
Effects of phosphorus addition on methane emission in a wet meadow on the Tibetan plateau. [PDF]
Wang H, Li K.
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Soil Inorganic Electron Acceptors and Carbon Substrates Hierarchically Govern Wetland Methanogenesis Temperature Response. [PDF]
Qiu S +6 more
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Spatio-Temporal Characteristics of Permafrost Evolution Based on Ground Surface Temperature Simulated by Random Forest Regression Model in the Source Area of the Yellow River. [PDF]
Xiong K, Han PF, Liang S, Yan D, Wan L.
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Feedbacks of Alpine Wetlands on the Tibetan Plateau to the Atmosphere
Wetlands, 2019The alpine wetlands of the Tibetan Plateau (TP) contribute 30%–40% of China’s natural wetlands, and they are experiencing changes in climate, i.e. warming of 0.26 °C 10 yr−1 (since the 1950s), as well as considerable human impacts. Consequently, alpine wetland extent show strong response to these impacts in most part, a reduction since the 1970s ...
Xiaodan Wang, Da Wei, Yahui Qi
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Spatial variations on methane emissions from Zoige alpine wetlands of Southwest China
This study was aimed to understand the spatial variation of CH(4) emissions from alpine wetlands in Southwest China on a field-scale in two phenological seasons, namely the peak growing season and the spring thaw. Methane emission rates were measured at 30 plots, which included three kinds of environmental types: dry hummock, Carex muliensis and ...
Huai, Chen +5 more
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Dynamic Changes of the Alpine Wetlands in Tibet, China
IGARSS 2018 - 2018 IEEE International Geoscience and Remote Sensing Symposium, 2018Based on the field investigation and long term remote sensing data, the dynamic changes of the alpine wetland in Tibet were studied. Results showed the alpine wetlands accounted for 13.99% of total wetlands in China in 2010. The area of lakes were 31653.16 km2, accounting for 58.79 % of total wetlands in Tibet.
Dong Liu, Mengjia Xu
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Science of The Total Environment, 2020
While the composition and diversity of soil microbial communities play a central and essential role in biogeochemical cycling of nutrients, they are known to be shaped by the physical and chemical properties of soils and various environmental factors.
Xiaojie Wang +5 more
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While the composition and diversity of soil microbial communities play a central and essential role in biogeochemical cycling of nutrients, they are known to be shaped by the physical and chemical properties of soils and various environmental factors.
Xiaojie Wang +5 more
openaire +2 more sources

