Cod, age 2 - landings and fishing mortality
Graphics from the year 2000 Baltic 21 biannual indicator-based status report on sustainable development in the Baltic Sea Region (Baltic 21 Series No 1/2000). This graphic shows landings and fishing mortality of cod, age 2.
10 Mar 2006 - by Philippe Rekacewicz, UNEP/GRID-Arendal
Herring - landings and fishing mortality
Graphics from the year 2000 Baltic 21 biannual indicator-based status report on sustainable development in the Baltic Sea Region (Baltic 21 Series No 1/2000). The graphic compares the landings and the fishing mortality of Herring.
10 Mar 2006 - by Philippe Rekacewicz, UNEP/GRID-Arendal
Herring - landings and fishing mortality
Graphics from the year 2000 Baltic 21 biannual indicator-based status report on sustainable development in the Baltic Sea Region (Baltic 21 Series No 1/2000). The graphic compares the landings and the fishing mortality of Herring.
10 Mar 2006 - by Philippe Rekacewicz, UNEP/GRID-Arendal
Sprat - landings and fishing mortality
Graphics from the year 2000 Baltic 21 biannual indicator-based status report on sustainable development in the Baltic Sea Region (Baltic 21 Series No 1/2000). This graphic shows landings and fishing mortality of Sprat.
10 Mar 2006 - by Philippe Rekacewicz, UNEP/GRID-Arendal
Sprat - landings and fishing mortality
Graphics from the year 2000 Baltic 21 biannual indicator-based status report on sustainable development in the Baltic Sea Region (Baltic 21 Series No 1/2000). This graphic shows landings and fishing mortality of Sprat.
10 Mar 2006 - by Philippe Rekacewicz, UNEP/GRID-Arendal
Impact of Sea Level Rise in Banjul, Gambia
Climate change is expected to cause a rise in sea level. Sea level rise will have a significant impact on coastal areas, especially coastal megacities such as Banjul, the Gambia. This graphic shows the expected sea level rise in metres for various parts of the city of Banjul, and the impacts of sea level rise on the city, its suburbs and main roads and its nearby mangrove swamps, which serve as spawning grounds for fish.
17 May 2005 - by Delphine Digout, UNEP/GRID-Arendal
Impact of Sea Level Rise in Banjul, Gambia
Climate change is expected to cause a rise in sea level. Sea level rise will have a significant impact on coastal areas, especially coastal megacities such as Banjul, the Gambia. This graphic shows the expected sea level rise in metres for various parts of the city of Banjul, and the impacts of sea level rise on the city, its suburbs and main roads and its nearby mangrove swamps, which serve as spawning grounds for fish.
17 May 2005 - by Delphine Digout, UNEP/GRID-Arendal
The World is Losing its Mangroves
Mangrove forests occur naturally in
intertidal zones along sheltered shorelines
and in deltas in tropical regions.
They are vital breeding grounds for fish
and shrimp and also provide a buffer
against coastal hazards such as storms,
cyclones, wind and salt spray by reducing
wind and wave action (Braatz et al.
2007).
20 Jun 2009 - by Philippe Rekacewicz assisted by Cecile Marin, Agnes Stienne, Guilio Frigieri, Riccardo Pravettoni, Laura Margueritte and Marion Lecoquierre.
The World is Losing its Mangroves
Mangrove forests occur naturally in
intertidal zones along sheltered shorelines
and in deltas in tropical regions.
They are vital breeding grounds for fish
and shrimp and also provide a buffer
against coastal hazards such as storms,
cyclones, wind and salt spray by reducing
wind and wave action (Braatz et al.
2007).
20 Jun 2009 - by Philippe Rekacewicz assisted by Cecile Marin, Agnes Stienne, Guilio Frigieri, Riccardo Pravettoni, Laura Margueritte and Marion Lecoquierre.
Sturgeons distribution in the Black Sea
Illustration in a set of graphics prepared for a pilot assessment report on the Black Sea drainage basin, for the UNEP Global Impact on Waters Assessment (GIWA). All data and information were prepared in close collaboration with the GIWA Black Sea team and the GIWA secretariat. The graphics were never not used in this form in the final report on the Black Sea, published in 2005.
25 Feb 2006 - by Philippe Rekacewicz, UNEP/GRID-Arendal
Turbot distribution in the Black Sea
Illustration in a set of graphics prepared for a pilot assessment report on the Black Sea drainage basin, for the UNEP Global Impact on Waters Assessment (GIWA). All data and information were prepared in close collaboration with the GIWA Black Sea team and the GIWA secretariat. The graphics were never not used in this form in the final report on the Black Sea, published in 2005.
25 Feb 2006 - by Philippe Rekacewicz, UNEP/GRID-Arendal
Fish catch in the Black Sea over the last 30 years, Turkey and USSR
Illustration in a set of graphics prepared for a pilot assessment report on the Black Sea drainage basin, for the UNEP Global Impact on Waters Assessment (GIWA). All data and information were prepared in close collaboration with the GIWA Black Sea team and the GIWA secretariat. The graphics were never not used in this form in the final report on the Black Sea, published in 2005.
Note for this graphic that the USSR consists of Russia, Ukraine and...
10 Mar 2006 - by Philippe Rekacewicz, UNEP/GRID-Arendal
Fish catch in the Black Sea over the last 30 years, Turkey and USSR
Illustration in a set of graphics prepared for a pilot assessment report on the Black Sea drainage basin, for the UNEP Global Impact on Waters Assessment (GIWA). All data and information were prepared in close collaboration with the GIWA Black Sea team and the GIWA secretariat. The graphics were never not used in this form in the final report on the Black Sea, published in 2005.
Note for this graphic that the USSR consists of Russia, Ukraine and...
10 Mar 2006 - by Philippe Rekacewicz, UNEP/GRID-Arendal
Changes in the spawning grounds of anchovy
Illustration in a set of graphics prepared for a pilot assessment report on the Black Sea drainage basin, for the UNEP Global Impact on Waters Assessment (GIWA). All data and information were prepared in close collaboration with the GIWA Black Sea team and the GIWA secretariat. The graphics were never not used in this form in the final report on the Black Sea, published in 2005.
25 Feb 2006 - by Philippe Rekacewicz, UNEP/GRID-Arendal
Fish catch in the Black Sea over the last 30 years
Illustration in a set of graphics prepared for a pilot assessment report on the Black Sea drainage basin, for the UNEP Global Impact on Waters Assessment (GIWA). All data and information were prepared in close collaboration with the GIWA Black Sea team and the GIWA secretariat. The graphics were not used in this form in the final report on the Black Sea, published in 2005.
07 Nov 2006 - by Philippe Rekacewicz, UNEP/GRID-Arendal
Relationship between the decrease in Turkish anchovy catch and the growth of Mnemiopsis, 1968-1990
Illustration in a set of graphics prepared for a pilot assessment report on the Black Sea drainage basin, for the UNEP Global Impact on Waters Assessment (GIWA). All data and information were prepared in close collaboration with the GIWA Black Sea team and the GIWA secretariat. The graphics were not used in this form in the final report on the Black Sea, published in 2005.
07 Nov 2006 - by Philippe Rekacewicz, UNEP/GRID-Arendal
World fisheries and aquaculture production
Shows the amount, in million tonnes, of fish taken by capture and aquaculture fisheries, between the years 1950-1999. Also included is a diagram showing the percentage of the different types of aquaculture in 1998.
28 Sep 2005 - by Philippe Rekacewicz, UNEP/GRID-Arendal
World fisheries and aquaculture production
Shows the amount, in million tonnes, of fish taken by capture and aquaculture fisheries, between the years 1950-1999. Also included is a diagram showing the percentage of the different types of aquaculture in 1998.
28 Sep 2005 - by Philippe Rekacewicz, UNEP/GRID-Arendal
Arctic pelagic food web
The marine animal food chain is very complex and multilayered as are most food chains. This is a quick reference to represent the complete food chain in regards to pelagic crustaceans and invertebrates.
28 Sep 2005 - by UNEP/GRID-Arendal
Arctic pelagic food web
The marine animal food chain is very complex and multilayered as are most food chains. This is a quick reference to represent the complete food chain in regards to pelagic crustaceans and invertebrates.
28 Sep 2005 - by UNEP/GRID-Arendal