[ARCHIVE] Global Ocean Primary Production time series and trend from Observations Reprocessing
'''This product has been archived'''
For operationnal and online products, please visit https://marine.copernicus.eu
'''DEFINITION'''
Marine primary production corresponds to the amount of inorganic carbon which is converted into organic matter during the photosynthesis, and which feeds upper trophic layers. The daily primary production is estimated from satellite observations with the Antoine and Morel algorithm (1996). This algorithm modelized the potential growth in function of the light and temperature conditions, and with the chlorophyll concentration as a biomass index.
The monthly area average is computed from monthly primary production weighted by the pixels size. The trend is computed from the deseasonalised time series (1998-2019), following the Vantrepotte and Mélin method. More details are provided in the Ocean State Reports 4 (Cossarini et al. ,2020).
'''CONTEXT'''
Marine primary production is at the basis of the marine food web and produce about 50% of the oxygen we breath every year (Behrenfeld et al., 2001). Study primary production is of paramount importance as ocean health and fisheries are directly linked to the primary production (Pauly and Christensen, 1995, Fee et al., 2019). Changes in primary production can have consequences on biogeochemical cycles, and specially on the carbon cycle, and impact the biological carbon pump intensity, and therefore climate (Chavez et al., 2011). Despite its importance for climate and socio-economics resources, primary production measurements are scarce and do not allow a deep investigation of the primary production evolution over decades. Satellites observations and modelling can fill this gap. However, depending of their parametrisation, models can predict an increase or a decrease in primary production by the end of the century (Laufkötter et al., 2015). Primary production from satellite observations present therefore the advantage to dispose an archive of more than two decades of global data. This archive can be assimilated in models, in addition to direct environmental analysis, to minimise models uncertainties (Gregg and Rousseaux, 2019). In the Ocean State Reports 4, primary production estimate from satellite and from modelling are compared at the scale of the Mediterranean Sea. This demonstrate the ability of such a comparison to deeply investigate physical and biogeochemical processes associated to the primary production evolution (Cossarini et al., 2020)
'''CMEMS KEY FINDINGS'''
The trend for the global ocean is negative over the period 1998-2019 with a decline in primary production of about 0.67 mgC.m-2.yr-1 or equivalently 0.2 %.yr-1.
Note: The key findings will be updated annually in November, in line with OMI evolutions.
'''DOI (product):'''
Simple
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- GLOBAL_OMI_HEALTH_carbon_pp_area_averaged_mean
- Date (Creation)
- 2019-11-28
- Edition
- 3.4
- Edition date
- 2019-11-28
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- a78600a4-a280-47b5-8ddd-0dc8b5e9c9d9
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- Annually
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- P0M0D0H/P0M0D0H
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- GEMET - INSPIRE themes, version 1.0
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- See Copernicus Marine Environment Monitoring Service Data commitments and licence at: http://marine.copernicus.eu/web/27-service-commitments-and-licence.php
- Access constraints
- Other restrictions
- Use constraints
- License
- Other constraints
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- Date (Creation)
- 2019-05-08
- Association Type
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- Initiative Type
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- Date (Creation)
- 2019-05-08
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Vertical extent
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- display priority: 53800
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- No
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-
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NetCDF-4
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Classic model
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NetCDF-4
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Classic model
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Distributor
- Hierarchy level
- Series
Conformance result
- Date (Publication)
- 2010-12-08
- Explanation
- See the referenced specification
- Statement
- The myOcean products depends on other products for production or validation. The detailed list of dependencies is given in ISO19115's aggregationInfo (ISO19139 Xpath = "gmd:MD_Metadata/gmd:identificationInfo/gmd:aggregationInfo[./gmd:MD_AggregateInformation/gmd:initiativeType/gmd:DS_InitiativeTypeCode/@codeListValue='upstream-validation' or 'upstream-production']")
- Attribute description
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- Included with dataset
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- Date stamp
- 2022-11-28T15:20:23.032Z
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