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      Accelerated increase in vegetation carbon sequestration in China after 2010: A turning point resulting from climate and human interaction

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          ENSEMBLE EMPIRICAL MODE DECOMPOSITION: A NOISE-ASSISTED DATA ANALYSIS METHOD

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            Solutions for a cultivated planet.

            Increasing population and consumption are placing unprecedented demands on agriculture and natural resources. Today, approximately a billion people are chronically malnourished while our agricultural systems are concurrently degrading land, water, biodiversity and climate on a global scale. To meet the world's future food security and sustainability needs, food production must grow substantially while, at the same time, agriculture's environmental footprint must shrink dramatically. Here we analyse solutions to this dilemma, showing that tremendous progress could be made by halting agricultural expansion, closing 'yield gaps' on underperforming lands, increasing cropping efficiency, shifting diets and reducing waste. Together, these strategies could double food production while greatly reducing the environmental impacts of agriculture.
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              Is Open Access

              TerraClimate, a high-resolution global dataset of monthly climate and climatic water balance from 1958–2015

              We present TerraClimate, a dataset of high-spatial resolution (1/24°, ~4-km) monthly climate and climatic water balance for global terrestrial surfaces from 1958–2015. TerraClimate uses climatically aided interpolation, combining high-spatial resolution climatological normals from the WorldClim dataset, with coarser resolution time varying (i.e., monthly) data from other sources to produce a monthly dataset of precipitation, maximum and minimum temperature, wind speed, vapor pressure, and solar radiation. TerraClimate additionally produces monthly surface water balance datasets using a water balance model that incorporates reference evapotranspiration, precipitation, temperature, and interpolated plant extractable soil water capacity. These data provide important inputs for ecological and hydrological studies at global scales that require high spatial resolution and time varying climate and climatic water balance data. We validated spatiotemporal aspects of TerraClimate using annual temperature, precipitation, and calculated reference evapotranspiration from station data, as well as annual runoff from streamflow gauges. TerraClimate datasets showed noted improvement in overall mean absolute error and increased spatial realism relative to coarser resolution gridded datasets.
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                Author and article information

                Contributors
                Journal
                Global Change Biology
                Glob Change Biol
                Wiley
                1354-1013
                1365-2486
                November 2021
                August 30 2021
                November 2021
                : 27
                : 22
                : 5848-5864
                Affiliations
                [1 ]State Key Laboratory of Urban and Regional Ecology Research Center for Eco‐Environmental SciencesChinese Academy of Sciences Beijing PR China
                [2 ]College of Resources and Environment University of Chinese Academy of Sciences Beijing PR China
                [3 ]International Center for Climate and Global Change Research School of Forestry and Wildlife Sciences Auburn University Auburn Alabama USA
                [4 ]State Key Laboratory of Earth Surface Processes and Resource Ecology Faculty of Geographical Science Beijing Normal University Beijing PR China
                [5 ]College of Urban and Environmental Sciences Peking University Beijing China
                [6 ]Key Laboratory of Alpine Ecology and Biodiversity Institute of Tibetan Plateau Research Chinese Academy of Sciences Beijing China
                [7 ]Center for Excellence in Tibetan Earth Science Chinese Academy of Sciences Beijing China
                Article
                10.1111/gcb.15854
                9f8aac30-06de-4e33-bd66-1e9702000d6b
                © 2021

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                http://doi.wiley.com/10.1002/tdm_license_1.1

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