Ocean carbon pump decomposition and its application to CMIP5 earth system model simulations
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- Material Type
- 記事
- Author/Editor
- Akira Oka
- Publication, Distribution, etc.
- Publication Date
- 2020-06-11
- Publication Date (W3CDTF)
- 2020-06-11
- Periodical title
- Progress in earth and planetary science
- No. or year of volume/issue
- 7(25)
- Volume
- 7(25)
- ISSN (Periodical Title)
- 2197-4284
- ISSN-L (Periodical Title)
- 2197-4284
- Text Language Code
- eng
- DOI
- 10.1186/s40645-020-00338-y
- Persistent ID (NDL)
- info:ndljp/pid/11520575
- Collection
- Collection (Materials For Handicapped People:1)
- Collection (particular)
- 国立国会図書館デジタルコレクション > 電子書籍・電子雑誌 > その他
- Acquisition Basis
- オンライン資料収集制度
- Date Accepted (W3CDTF)
- 2020-08-03T12:00:21+09:00
- Date Captured (W3CDTF)
- 2020-08-03
- Format (IMT)
- application/pdf
- Access Restrictions
- 国立国会図書館内限定公開
- Service for the Digitized Contents Transmission Service
- 図書館・個人送信対象外
- Availability of remote photoduplication service
- 可
- Periodical Title (URI)
- Periodical Title (Persistent ID (NDL))
- info:ndljp/pid/11467724
- Data Provider (Database)
- 国立国会図書館 : 国立国会図書館デジタルコレクション
- Summary, etc.
- コレクション : 国立国会図書館デジタルコレクション > 電子書籍・電子雑誌 > その他
- DOI
- 10.1186/s40645-020-00338-y
- Access Restrictions
- インターネット公開
- Related Material (URI)
- Is Referenced By
- 海洋学の10年展望2021:深層
- References
- Glacial CO<sub>2</sub> decrease and deep-water deoxygenation by iron fertilization from glaciogenic dustLong-term response of oceanic carbon uptake to global warming via physical and biological pumpsRole of the ocean in controlling atmospheric CO2 concentration in the course of global glaciationsResponse of Atmospheric <b><i>p</i></b><b>CO</b><sub><b>2</b></sub> to Glacial Changes in the Southern Ocean Amplified by Carbonate CompensationDevelopment and evaluation of an Earth-System model – HadGEM2A global ocean carbon climatology: Results from Global Data Analysis Project (GLODAP)Optimization and sensitivity of a global biogeochemistry ocean model using combined in situ DIC, alkalinity, and phosphate dataMechanisms controlling export production at the LGM: Effects of changes in oceanic physical fields and atmospheric dust depositionQuantifying the ocean's role in glacial CO <sub>2</sub> reductionsOcean Biogeochemical DynamicsRedfield ratios of remineralization determined by nutrient data analysisThermodynamics of the carbon dioxide system in the oceansRole of Southern Ocean stratification in glacial atmospheric CO<sub>2</sub> reduction evaluated by a three-dimensional ocean general circulation modelAn Overview of CMIP5 and the Experiment DesignThe Norwegian Earth System Model, NorESM1-M – Part 1: Description and basic evaluation of the physical climatePreindustrial-Control and Twentieth-Century Carbon Cycle Experiments with the Earth System Model CESM1(BGC)Simulated response of the ocean carbon cycle to anthropogenic climate warmingEvaluation of continental precipitation in 20th century climate simulations: The utility of multimodel statisticsMultiple stressors of ocean ecosystems in the 21st century: projections with CMIP5 modelsDrivers of future seasonal cycle changes in oceanic <i>p</i> CO <sub>2</sub>The role of the vertical fluxes of particulate organic matter and calcite in the oceanic carbon cycle: Studies using an ocean biogeochemical general circulation modelClimate change impacts on net primary production (NPP) and export production (EP) regulated by increasing stratification and phytoplankton community structure in the CMIP5 modelsGlacial/interglacial variations in atmospheric carbon dioxideEarth system models: an overviewSinks for Anthropogenic CarbonClimate and carbon cycle changes from 1850 to 2100 in MPI‐ESM simulations for the Coupled Model Intercomparison Project phase 5Air-sea disequilibrium enhances ocean carbon storage during glacial periodsMechanisms of millennial-scale atmospheric CO2 change in numerical model simulationsThe polar ocean and glacial cycles in atmospheric CO2 concentrationEvaluating effect of ballast mineral on deep‐ocean nutrient concentration by using an ocean general circulation modelGFDL’s ESM2 Global Coupled Climate–Carbon Earth System Models. Part II: Carbon System Formulation and Baseline Simulation Characteristics*Preformed phosphate, soft tissue pump and atmospheric CO<SUB>2</SUB>North Atlantic ventilation of “southern‐sourced” deep water in the glacial oceanHow does ocean biology affect atmospheric <i>p</i>CO<sub>2</sub>? Theory and modelsPotential impact of climate change on marine export productionClimate change projections using the IPSL-CM5 Earth System Model: from CMIP3 to CMIP5One possible uncertainty in CMIP5 projections of low‐oxygen water volume in the Eastern Tropical PacificThe impact of remineralization depth on the air–sea carbon balanceGeographical distribution of the feedback between future climate change and the carbon cycleCarbon‐cycle feedbacks of changes in the Atlantic meridional overturning circulation under future atmospheric CO<sub>2</sub>The effect of model bias on Atlantic freshwater transport and implications for AMOC bi-stabilityA factorial analysis of the marine carbon cycle and ocean circulation controls on atmospheric CO<sub>2</sub>CMIP5 model analysis of future changes in ocean net primary production focusing on differences among individual oceans and models
- Data Provider (Database)
- 国立情報学研究所 : CiNii Research
- Original Data Provider (Database)
- 雑誌記事索引データベースCrossref科学研究費助成事業データベースCrossref
- Bibliographic ID (NDL)
- 11520575