about
Carbon sequestration by Australian tidal marshesSeventy years of continuous encroachment substantially increases 'blue carbon' capacity as mangroves replace intertidal salt marshes.Converting beach-cast seagrass wrack into biochar: A climate-friendly solution to a coastal problem.Review of the ecosystem service implications of mangrove encroachment into salt marshes.Comparison of marine macrophytes for their contributions to blue carbon sequestration.Global patterns in mangrove soil carbon stocks and lossesLife stage influences the resistance and resilience of black mangrove forests to winter climate extremesSediment and carbon deposition vary among vegetation assemblages in a coastal salt marshCan we manage coastal ecosystems to sequester more blue carbon?Carbon isotope fractionation in the mangrove Avicennia marina has implications for food web and blue carbon researchSedimentary Factors are Key Predictors of Carbon Storage in SE Australian SaltmarshesBlue carbon potential of coastal wetland restoration varies with inundation and rainfallAustralian vegetated coastal ecosystems as global hotspots for climate change mitigationAuthor Correction: The future of Blue Carbon scienceMangrove dynamics and blue carbon sequestrationWetland carbon storage controlled by millennial-scale variation in relative sea-level riseThe future of Blue Carbon scienceThresholds of mangrove survival under rapid sea level rise
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P50
description
researcher
@en
wetenschapper
@nl
հետազոտող
@hy
name
Jeffrey Kelleway
@ast
Jeffrey Kelleway
@en
Jeffrey Kelleway
@es
Jeffrey Kelleway
@nl
type
label
Jeffrey Kelleway
@ast
Jeffrey Kelleway
@en
Jeffrey Kelleway
@es
Jeffrey Kelleway
@nl
prefLabel
Jeffrey Kelleway
@ast
Jeffrey Kelleway
@en
Jeffrey Kelleway
@es
Jeffrey Kelleway
@nl
P106
P1153
36008552200
P31
P496
0000-0002-5145-9466