Sentences with phrase «of terrestrial carbon»

What about the long - term strength of this terrestrial carbon sink?
This booklet describes how soils constitute the largest store of terrestrial carbon.
The question of whether accelerated carbon sinks on land can turn to accelerated carbon sources is something a lot of terrestrial carbon cycle modellers are interested in, but I couldn't give you an accurate read on the state of the art there, except that some models do show the land sink turning into a land source given sufficient warming.
«As a scientist, I chose to work with the American Carbon Registry because of the team's extensive knowledge of terrestrial carbon sequestration and science - based approach to ensure the environmental integrity of offsets,» said Dr. Sarah Mack, CEO of Tierra Resources.
«We selected American Carbon Registry because of the organization's extensive knowledge of terrestrial carbon sequestration, understanding of public lands issues, and focus on accountability,» said NFF president Bill Possiel.
Dargaville, R.J., et al., 2002: Evaluation of terrestrial carbon cycle models with atmospheric CO2 measurements: Results from transient simulations considering increasing CO2, climate, and land - use effects.
Dr. Poulter recently joined the Biospheric Sciences Division at NASA Goddard Space Flight Center as a Research Scientist working on global studies of the terrestrial carbon cycle.
«Estimates are that permafrost stores between 780 and 1,400 gigatons of terrestrial carbon.
Small ponds have a high perimeter - to - surface - area ratio, for example, and accumulate a higher load of terrestrial carbon — so - called «leaf litter,» sediment particles and other material.
Happily there is some literature directly addressing the impact of future ENSO on CO2 (eg Kim et al (2017) «Intensification of terrestrial carbon cycle related to El Niño — Southern Oscillation under greenhouse warming») although there is still quite basic work required doing (eg Chylek et al (2018) «The carbon cycle response to two El Nino types: an observational study» (Note the notorious co-author.)
Changes in vegetation carbon residence times can cause major shifts in the distribution of carbon between pools, overall fluxes, and the time constants of terrestrial carbon transitions, with consequences for the land carbon balance and the associated state of ecosystems.
Their solid measurements of a terrestrial carbon sink removing 0.3 Pg of carbon per year from the atmosphere in Africa's trees, combined with those of other tropical forests, can explain more than one third of the missing carbon sink (1.3 Pg carbon per year).
The research needs for predicting — across multiple scales — the impact of land use change and management practices to the future of terrestrial carbon storage and CDR potential
Efforts to ensure that production of bioenergy does not result in losses of terrestrial carbon through forest removal are critical if climate change objectives are to be achieved.
When reporting corporate - level greenhouse gas inventories, the accounting of terrestrial carbon stock changes associated with harvesting and combustion of biomass may fall within the organizational boundaries of different companies, i.e., the wood being burned is not cut on land owned by the company.
A significant amount of terrestrial carbon (1.7 PgC / year) is transported from soils to rivers.
Reducing atmospheric carbon dioxide concentrations by way of large - scale enhancement of terrestrial carbon sinks is one climate engineering strategy that requires comprehensive scrutiny given its complexity, say Thomas O'Halloran and Ryan Bright
He advises governments, multi-laterals project developers, and private investors on the design of terrestrial carbon finance opportunities.
This increase is predominantly due to the response of the terrestrial carbon cycle to El Niño — induced changes in weather patterns.
Soils constitute the largest store of terrestrial carbon.
Evaluation of the terrestrial carbon cycle, future plant geography and climate - carbon cycle feedbacks using five Dynamic Global Vegetation Models (DGVMs)
Prognostic models of terrestrial carbon cycle and terrestrial ecosystem processes are central for any consideration of the effects of environmental change and analysis of mitigation strategies; moreover, these demands will become even more significant as countries begin to adopt carbon emission targets.
IFOAM — Organics International participated in the Global Symposium on Soil Organic Carbon (GSOC17), a scientific meeting held 21 - 23 March 2017 at FAO headquarters in Rome with hundreds of participants from all geographical regions and countries of the world.Soils constitute the largest store of terrestrial carbon.
Understanding wood decay in forests is of special concern in the tropics because tropical forests are estimated to harbor 96 % of the world's tree diversity and about 25 % of terrestrial carbon, compared to the roughly 10 % of carbon held in temperate forests.
(US Department of Agriculture) ■ Soils contain 82 % of terrestrial carbon.
In other words, if all of the terrestrial carbon today (in forests, animals, soils, etc.) were converted to carbon dioxide and returned to the global inorganic carbon pool, the change in the global carbon isotopic ratio would only be a third as big as that observed during the PETM!
The decadal state of the terrestrial carbon cycle: Global retrievals of terrestrial carbon allocation, pools, and residence times
a b c d e f g h i j k l m n o p q r s t u v w x y z