Land surface temperature (LST) is an important parameter to evaluate environmental changes. In this paper, time series analysis was conducted to estimate the interannual variations in global LST from 2001 to 2016 based on moderate resolution imaging spectroradiometer (MODIS) LST, and normalized difference vegetation index (NDVI) products and fine particulate matter (PM2.5) data from the Atmospheric Composition Analysis Group. The results showed that LST, seasonally integrated normalized difference vegetation index (SINDVI), and PM2.5 increased by 0.17 K, 0.04, and 1.02 μg/m3 in the period of 2001–2016, respectively. During the past 16 years, LST showed an increasing trend in most areas, with two peaks of 1.58 K and 1.85 K at 72°N and 48°S, ...
The arctic regions are highly vulnerable to climate change. Climate models predict an increase in gl...
The arctic regions are highly vulnerable to climate change. Climate models predict an increase in gl...
The arctic regions are highly vulnerable to climate change. Climate models predict an increase in gl...
Global surface temperature has been setting new record highs in the recent decades, imposing increas...
The study of changes in phenology and, in particular, land surface phenology (LSP) provides an impor...
Diurnal variations of land surface temperature (LST) play a vital role in a wide range of applicatio...
Although the way in which vegetation phenology mediates the feedback of vegetation to climate system...
The accelerated warming of the Arctic climate may alter the local and regional surface energy balanc...
Changes in land surface temperature (LST) affect human society and the natural environment, especial...
Graduation date:2018The Earth’s surface is experiencing unprecedented change. Humanity’s growing pop...
Accurate estimates of long-term land surface temperature (T-s) and near-surface air temperature (T-a...
Land surface temperature (LST) and surface air temperature (SAT) are important environmental variabl...
Widespread anthropogenic land cover change over the last five centuries has influenced the global cl...
The global land-surface temperature (LST) and normalized difference vegetation index (NDVI) products...
Widespread anthropogenic land cover change over the last five centuries has influenced the global cl...
The arctic regions are highly vulnerable to climate change. Climate models predict an increase in gl...
The arctic regions are highly vulnerable to climate change. Climate models predict an increase in gl...
The arctic regions are highly vulnerable to climate change. Climate models predict an increase in gl...
Global surface temperature has been setting new record highs in the recent decades, imposing increas...
The study of changes in phenology and, in particular, land surface phenology (LSP) provides an impor...
Diurnal variations of land surface temperature (LST) play a vital role in a wide range of applicatio...
Although the way in which vegetation phenology mediates the feedback of vegetation to climate system...
The accelerated warming of the Arctic climate may alter the local and regional surface energy balanc...
Changes in land surface temperature (LST) affect human society and the natural environment, especial...
Graduation date:2018The Earth’s surface is experiencing unprecedented change. Humanity’s growing pop...
Accurate estimates of long-term land surface temperature (T-s) and near-surface air temperature (T-a...
Land surface temperature (LST) and surface air temperature (SAT) are important environmental variabl...
Widespread anthropogenic land cover change over the last five centuries has influenced the global cl...
The global land-surface temperature (LST) and normalized difference vegetation index (NDVI) products...
Widespread anthropogenic land cover change over the last five centuries has influenced the global cl...
The arctic regions are highly vulnerable to climate change. Climate models predict an increase in gl...
The arctic regions are highly vulnerable to climate change. Climate models predict an increase in gl...
The arctic regions are highly vulnerable to climate change. Climate models predict an increase in gl...