2001, 2nd ed., ISBN 0120417553, xix, 556
Book
2009, ISBN 9780521144070, 118
Book
Nature Climate Change, ISSN 1758-678X, 04/2013, Volume 3, Issue 4, pp. 395 - 398
Soils are the largest repository of organic carbon (C) in the terrestrial biosphere and represent an important source of carbon dioxide (CO2) to the...
ENVIRONMENTAL SCIENCES | CARBON-CYCLE FEEDBACKS | COMMUNITY | BACTERIAL-GROWTH EFFICIENCY | RESPIRATION | ORGANIC-MATTER | DECOMPOSITION | MODEL | ENVIRONMENTAL STUDIES | METEOROLOGY & ATMOSPHERIC SCIENCES
ENVIRONMENTAL SCIENCES | CARBON-CYCLE FEEDBACKS | COMMUNITY | BACTERIAL-GROWTH EFFICIENCY | RESPIRATION | ORGANIC-MATTER | DECOMPOSITION | MODEL | ENVIRONMENTAL STUDIES | METEOROLOGY & ATMOSPHERIC SCIENCES
Journal Article
Science, ISSN 0036-8075, 12/2009, Volume 326, Issue 5958, pp. 1397 - 1399
A global biofuels program will lead to intense pressures on land supply and can increase greenhouse gas emissions from land-use changes. Using linked economic...
Pollutant emissions | Emissions policy | Land management | Carbon dioxide emissions | Climate change policy | Reports | Greenhouse gas emissions | Land economics | Biofuels | Carbon | Land use | ENERGY | NET PRIMARY PRODUCTION | MULTIDISCIPLINARY SCIENCES | CONSEQUENCES | OZONE | LAND-USE | CLIMATE-CHANGE | MODEL | CARBON SEQUESTRATION | CYCLE | Trees | Fossil Fuels | Models, Economic | Carbon Dioxide | Fertilizers | Climate Change | Time Factors | Atmosphere | Computer Simulation | Ecosystem | Nitrous Oxide | Agriculture | Conservation of Natural Resources | Biogeochemistry | Nitrogen fertilizers | Biomass energy | By-products | United States | Environmental aspects | Causes of | Research | Greenhouse gases | Geochemistry | Environmental impact | Biodiesel fuels | Greenhouse effect | Fertilizing | Air pollution | Emissions control | Mathematical models
Pollutant emissions | Emissions policy | Land management | Carbon dioxide emissions | Climate change policy | Reports | Greenhouse gas emissions | Land economics | Biofuels | Carbon | Land use | ENERGY | NET PRIMARY PRODUCTION | MULTIDISCIPLINARY SCIENCES | CONSEQUENCES | OZONE | LAND-USE | CLIMATE-CHANGE | MODEL | CARBON SEQUESTRATION | CYCLE | Trees | Fossil Fuels | Models, Economic | Carbon Dioxide | Fertilizers | Climate Change | Time Factors | Atmosphere | Computer Simulation | Ecosystem | Nitrous Oxide | Agriculture | Conservation of Natural Resources | Biogeochemistry | Nitrogen fertilizers | Biomass energy | By-products | United States | Environmental aspects | Causes of | Research | Greenhouse gases | Geochemistry | Environmental impact | Biodiesel fuels | Greenhouse effect | Fertilizing | Air pollution | Emissions control | Mathematical models
Journal Article
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Pattern and variation of C:N:P ratios in China's soils: a synthesis of observational data
Biogeochemistry, ISSN 0168-2563, 4/2010, Volume 98, Issue 1/3, pp. 139 - 151
Inspired by previous studies that have indicated consistent or even well-constrained (relatively low variability) relations among carbon (C), nitrogen (N) and...
Pedogenesis | Soil parent materials | Soil samples | Soil depth | Soil science | Climate models | Desert soils | Organic soils | Soil ecology | Forest soils | Stoichiometry | Phosphorus | Nitrogen | Carbon | China | STORAGE | N-P STOICHIOMETRY | ECOSYSTEM DEVELOPMENT | GLOBAL PATTERNS | NUTRIENT | ENVIRONMENTAL SCIENCES | GEOSCIENCES, MULTIDISCIPLINARY | ORGANIC-CARBON | DYNAMICS | PHOSPHORUS FRACTIONS | LATITUDE | Soils | Marine biology | Carbon content | Analysis | Chemical synthesis | Biological diversity
Pedogenesis | Soil parent materials | Soil samples | Soil depth | Soil science | Climate models | Desert soils | Organic soils | Soil ecology | Forest soils | Stoichiometry | Phosphorus | Nitrogen | Carbon | China | STORAGE | N-P STOICHIOMETRY | ECOSYSTEM DEVELOPMENT | GLOBAL PATTERNS | NUTRIENT | ENVIRONMENTAL SCIENCES | GEOSCIENCES, MULTIDISCIPLINARY | ORGANIC-CARBON | DYNAMICS | PHOSPHORUS FRACTIONS | LATITUDE | Soils | Marine biology | Carbon content | Analysis | Chemical synthesis | Biological diversity
Journal Article
Nature Climate Change, ISSN 1758-678X, 06/2012, Volume 2, Issue 6, pp. 410 - 416
Nitrous oxide (N2O) is an important anthropogenic greenhouse gas and agriculture represents its largest source. It is at the heart of debates over the efficacy...
GREENHOUSE-GAS EMISSIONS | SCENARIOS | DENITRIFICATION | CLIMATE-CHANGE | N2O | BIOFUELS | SOIL FERTILITY | ENVIRONMENTAL SCIENCES | MITIGATION | LAND-USE | SYSTEMS | ENVIRONMENTAL STUDIES | METEOROLOGY & ATMOSPHERIC SCIENCES
GREENHOUSE-GAS EMISSIONS | SCENARIOS | DENITRIFICATION | CLIMATE-CHANGE | N2O | BIOFUELS | SOIL FERTILITY | ENVIRONMENTAL SCIENCES | MITIGATION | LAND-USE | SYSTEMS | ENVIRONMENTAL STUDIES | METEOROLOGY & ATMOSPHERIC SCIENCES
Journal Article
Proceedings of the National Academy of Sciences of the United States of America, ISSN 0027-8424, 6/2011, Volume 108, Issue 23, pp. 9508 - 9512
Soil warming has the potential to alter both soil and plant processes that affect carbon storage in forest ecosystems. We have quantified these effects in a...
Global carbon budget | Soil heating | Vegetation | Forest ecosystems | Soil respiration | Nitrogen | Carbon sequestration | Deciduous forests | Forest soils | Soil ecology | Climate system feedbacks | Forest carbon budget | Global climate change | Ecological stoichiometry | Forest nitrogen budget | UNITED-STATES | LONG-TERM | climate system feedbacks | ROOT RESPIRATION | MULTIDISCIPLINARY SCIENCES | TERRESTRIAL ECOSYSTEMS | CLIMATE-CHANGE | ecological stoichiometry | SEQUESTRATION | RESPONSES | ATMOSPHERIC CO2 | CYCLE FEEDBACKS | forest carbon budget | global climate change | TEMPERATE FORESTS | forest nitrogen budget | Carbon - metabolism | Trees - metabolism | Nitrogen - metabolism | Temperature | Plant Development | Plant Roots - metabolism | Atmosphere - analysis | Soil Microbiology | Soil - analysis | Biomass | Trees - growth & development | Plants - metabolism | Models, Biological | Ecosystem | Soil - chemistry | Plant Roots - growth & development | Biological Sciences
Global carbon budget | Soil heating | Vegetation | Forest ecosystems | Soil respiration | Nitrogen | Carbon sequestration | Deciduous forests | Forest soils | Soil ecology | Climate system feedbacks | Forest carbon budget | Global climate change | Ecological stoichiometry | Forest nitrogen budget | UNITED-STATES | LONG-TERM | climate system feedbacks | ROOT RESPIRATION | MULTIDISCIPLINARY SCIENCES | TERRESTRIAL ECOSYSTEMS | CLIMATE-CHANGE | ecological stoichiometry | SEQUESTRATION | RESPONSES | ATMOSPHERIC CO2 | CYCLE FEEDBACKS | forest carbon budget | global climate change | TEMPERATE FORESTS | forest nitrogen budget | Carbon - metabolism | Trees - metabolism | Nitrogen - metabolism | Temperature | Plant Development | Plant Roots - metabolism | Atmosphere - analysis | Soil Microbiology | Soil - analysis | Biomass | Trees - growth & development | Plants - metabolism | Models, Biological | Ecosystem | Soil - chemistry | Plant Roots - growth & development | Biological Sciences
Journal Article
Journal of Climate, ISSN 0894-8755, 8/2008, Volume 21, Issue 15, pp. 3776 - 3796
The impact of carbon–nitrogen dynamics in terrestrial ecosystems on the interaction between the carbon cycle and climate is studied using an earth system model...
Climate change | Simulations | Terrestrial ecosystems | Ecosystem models | Atmospheric models | Carbon dioxide | Climate models | Nitrogen | Atmospherics | Carbon sequestration | UNITED-STATES | NET PRIMARY PRODUCTION | NO EMISSIONS | PROCESS-ORIENTED MODEL | GENERAL-CIRCULATION MODELS | GLOBAL CARBON | FOREST SOILS | TEMPERATE FOREST | PLANT-TISSUES | METEOROLOGY & ATMOSPHERIC SCIENCES | ELEVATED ATMOSPHERIC CO2 | Soils | Carbon
Climate change | Simulations | Terrestrial ecosystems | Ecosystem models | Atmospheric models | Carbon dioxide | Climate models | Nitrogen | Atmospherics | Carbon sequestration | UNITED-STATES | NET PRIMARY PRODUCTION | NO EMISSIONS | PROCESS-ORIENTED MODEL | GENERAL-CIRCULATION MODELS | GLOBAL CARBON | FOREST SOILS | TEMPERATE FOREST | PLANT-TISSUES | METEOROLOGY & ATMOSPHERIC SCIENCES | ELEVATED ATMOSPHERIC CO2 | Soils | Carbon
Journal Article
Global Biogeochemical Cycles, ISSN 0886-6236, 09/2011, Volume 25, Issue 3, p. n/a
Studies indicate that, historically, terrestrial ecosystems of the northern high‐latitude region may have been responsible for up to 60% of the global net...
modeling | carbon cycle | high‐latitude ecosystems | BOREAL FOREST | CLIMATE-CHANGE | TUNDRA ECOSYSTEMS | RUSSIAN FORESTS | PROJECTED CLIMATE | NET PRIMARY PRODUCTIVITY | ENVIRONMENTAL SCIENCES | ATMOSPHERIC CARBON-DIOXIDE | GEOSCIENCES, MULTIDISCIPLINARY | CANADA FORESTS | TERRESTRIAL BIOSPHERE | METEOROLOGY & ATMOSPHERIC SCIENCES | CYCLE | Earth | Climate change | Biogeochemistry | Geobiology | Carbon | boreal forests | CARBON CYCLE | CARBON SINKS | ARCTIC REGIONS | SOILS | DISTURBANCES | BOREAL REGIONS | STABILIZATION | CLIMATIC CHANGE | TERRESTRIAL ECOSYSTEMS | ORGANIC MATTER | GREENHOUSE EFFECT | TUNDRA | FORESTS | MODIFICATIONS | arctic tundra | fire | CARBON DIOXIDE | SURFACE AIR | ECOSYSTEMS | climate change
modeling | carbon cycle | high‐latitude ecosystems | BOREAL FOREST | CLIMATE-CHANGE | TUNDRA ECOSYSTEMS | RUSSIAN FORESTS | PROJECTED CLIMATE | NET PRIMARY PRODUCTIVITY | ENVIRONMENTAL SCIENCES | ATMOSPHERIC CARBON-DIOXIDE | GEOSCIENCES, MULTIDISCIPLINARY | CANADA FORESTS | TERRESTRIAL BIOSPHERE | METEOROLOGY & ATMOSPHERIC SCIENCES | CYCLE | Earth | Climate change | Biogeochemistry | Geobiology | Carbon | boreal forests | CARBON CYCLE | CARBON SINKS | ARCTIC REGIONS | SOILS | DISTURBANCES | BOREAL REGIONS | STABILIZATION | CLIMATIC CHANGE | TERRESTRIAL ECOSYSTEMS | ORGANIC MATTER | GREENHOUSE EFFECT | TUNDRA | FORESTS | MODIFICATIONS | arctic tundra | fire | CARBON DIOXIDE | SURFACE AIR | ECOSYSTEMS | climate change
Journal Article
Ecology Letters, ISSN 1461-023X, 12/2008, Volume 11, Issue 12, pp. 1316 - 1327
In the short‐term heterotrophic soil respiration is strongly and positively related to temperature. In the long‐term, its response to temperature is uncertain....
carbon cycling | microbial community | climate warming | CO2 | soil respiration | temperature | adaptation | thermal biology | Acclimation | climate change | Climate change | Temperature | Carbon cycling | Thermal biology | Climate warming | CO | Soil respiration | Microbial community | Adaptation | COMPENSATION | CARBON-CYCLE | SENSITIVITY | DECOMPOSITION | SEASONAL DYNAMICS | COMMUNITY COMPOSITION | DEPENDENCE | METABOLISM | NITROGEN | ECOLOGY | Regression Analysis | Soil Microbiology | Adaptation, Physiological - physiology | Soil - analysis | Biomass | Hot Temperature | Seasons | Natural resources | Soils | Carbon content | Global temperature changes | Evolutionary biology | Ecosystems | Soil heating | Marine biology | Earth sciences | Ecology | Forests | Soil microorganisms | Experiments
carbon cycling | microbial community | climate warming | CO2 | soil respiration | temperature | adaptation | thermal biology | Acclimation | climate change | Climate change | Temperature | Carbon cycling | Thermal biology | Climate warming | CO | Soil respiration | Microbial community | Adaptation | COMPENSATION | CARBON-CYCLE | SENSITIVITY | DECOMPOSITION | SEASONAL DYNAMICS | COMMUNITY COMPOSITION | DEPENDENCE | METABOLISM | NITROGEN | ECOLOGY | Regression Analysis | Soil Microbiology | Adaptation, Physiological - physiology | Soil - analysis | Biomass | Hot Temperature | Seasons | Natural resources | Soils | Carbon content | Global temperature changes | Evolutionary biology | Ecosystems | Soil heating | Marine biology | Earth sciences | Ecology | Forests | Soil microorganisms | Experiments
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Future nitrogen availability and its effect on carbon sequestration in Northern Eurasia
NATURE COMMUNICATIONS, ISSN 2041-1723, 07/2019, Volume 10, Issue 1, pp. 3024 - 19
Nitrogen (N) availability exerts strong control on carbon storage in the forests of Northern Eurasia. Here, using a process-based model, we explore how three...
STORAGE | NET PRIMARY PRODUCTIVITY | BOREAL | FOREST ECOSYSTEMS | DEPOSITION | MULTIDISCIPLINARY SCIENCES | CO2 | LAND | CLIMATE-CHANGE | SOIL-TEMPERATURE | RUSSIA | Availability | Trees | Forests | Regional analysis | Spatial analysis | Regrowth | Permafrost | Agricultural land | Abandonment | Nitrogen | Carbon sequestration | Carbon | Land use | Degradation | Storage | Intergovernmental Panel on Climate Change | Carbon capture and storage | Farmlands
STORAGE | NET PRIMARY PRODUCTIVITY | BOREAL | FOREST ECOSYSTEMS | DEPOSITION | MULTIDISCIPLINARY SCIENCES | CO2 | LAND | CLIMATE-CHANGE | SOIL-TEMPERATURE | RUSSIA | Availability | Trees | Forests | Regional analysis | Spatial analysis | Regrowth | Permafrost | Agricultural land | Abandonment | Nitrogen | Carbon sequestration | Carbon | Land use | Degradation | Storage | Intergovernmental Panel on Climate Change | Carbon capture and storage | Farmlands
Journal Article
Proceedings of the National Academy of Sciences of the United States of America, ISSN 0027-8424, 11/2016, Volume 113, Issue 48, pp. 13797 - 13802
The respiratory release of carbon dioxide (CO₂) from soil is a major yet poorly understood flux in the global carbon cycle. Climatic warming is hypothesized to...
Global environmental change | international | Climate change | Temperature sensitivity | Biome | Soil respiration | Experimental warming | METAANALYSIS | THERMAL-ACCLIMATION | MULTIDISCIPLINARY SCIENCES | CARBON-CYCLE | soil respiration | DECOMPOSITION | SENSITIVITY | CLIMATE-CHANGE | FEEDBACKS | experimental warming | MICROBIAL RESPIRATION | temperature sensitivity | biome | HETEROTROPHIC RESPIRATION | ECOSYSTEM | climate change | Biological Sciences | Physical Sciences
Global environmental change | international | Climate change | Temperature sensitivity | Biome | Soil respiration | Experimental warming | METAANALYSIS | THERMAL-ACCLIMATION | MULTIDISCIPLINARY SCIENCES | CARBON-CYCLE | soil respiration | DECOMPOSITION | SENSITIVITY | CLIMATE-CHANGE | FEEDBACKS | experimental warming | MICROBIAL RESPIRATION | temperature sensitivity | biome | HETEROTROPHIC RESPIRATION | ECOSYSTEM | climate change | Biological Sciences | Physical Sciences
Journal Article
1998, International Geosphere-Biosphere Programme book series, ISBN 9780521623438, Volume 3, xiv, 363
Book
Science, ISSN 0036-8075, 7/1997, Volume 277, Issue 5325, pp. 494 - 499
Human alteration of Earth is substantial and growing. Between one-third and one-half of the land surface has been transformed by human action; the carbon...
Human-Dominated Ecosystems | Extinct species | Terrestrial ecosystems | Humans | Carbon dioxide | Agroecosystems | Biological invasions | Marine ecosystems | Humanity | Freshwater ecosystems | Species | BIODIVERSITY | DEFORESTATION | BIOLOGICAL INVASIONS | MANAGEMENT | MULTIDISCIPLINARY SCIENCES | NITROGEN | CONSEQUENCES | DEPLETION | K RO MULTIDISCIPLINARY SCIENCES | GLOBAL CHANGE | FRAGMENTATION | ARAL SEA | Habitat (Ecology) | Modification | Influence on nature | Human beings | Ecosystems
Human-Dominated Ecosystems | Extinct species | Terrestrial ecosystems | Humans | Carbon dioxide | Agroecosystems | Biological invasions | Marine ecosystems | Humanity | Freshwater ecosystems | Species | BIODIVERSITY | DEFORESTATION | BIOLOGICAL INVASIONS | MANAGEMENT | MULTIDISCIPLINARY SCIENCES | NITROGEN | CONSEQUENCES | DEPLETION | K RO MULTIDISCIPLINARY SCIENCES | GLOBAL CHANGE | FRAGMENTATION | ARAL SEA | Habitat (Ecology) | Modification | Influence on nature | Human beings | Ecosystems
Journal Article