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Mangrove Trace Metal Biogeochemistry Response to Global Climate Change
Luiz Drude de Lacerda
, Raymond Ward
, Rebecca Borges
, Alexander Ferreira
School of Applied Sciences
Research output
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Contribution to journal
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Article
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peer-review
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Dive into the research topics of 'Mangrove Trace Metal Biogeochemistry Response to Global Climate Change'. Together they form a unique fingerprint.
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Keyphrases
Adaptation Strategies
16%
Atmospheric Temperature
16%
Bioaccumulation Factor
16%
Biogeochemical Processes
33%
Biomagnification
16%
Chalcophile
16%
Change Driven
50%
Climate Change
33%
Climate Change Impacts
16%
Coastal Fisheries
16%
Contaminant Levels
16%
Continental Shelf Sediments
16%
Deep-sea Sediment
16%
Environmental Impact
16%
Estuary
50%
Extreme Climatic Events
16%
Exudation
16%
Fisheries
16%
Geochemical Equilibrium
16%
Global Climate Change
100%
Global Context
16%
High Sedimentation Rate
16%
Human Dwellings
16%
Human Exposure
16%
Income Sources
16%
Land-ocean Interface
16%
Mangrove
100%
Mangrove Migration
16%
Mangrove Soil
16%
Metal Availability
16%
Metal Biogeochemistry
16%
Metal Concentration
16%
Metal Mobilization
16%
Metal Transfer
16%
Mitigation Strategies
16%
Observed Effects
16%
Oxyhydroxide
16%
Pore Water
16%
Positive Feedback
16%
Protein Source
16%
Rhizosphere
16%
Rising CO2
16%
Saline Intrusion
33%
Sea Border
16%
Sea Level Rise
33%
Sediment Layer
16%
Socio-economic Impact
16%
Spatial Gradient
16%
Sulfide
33%
Suspended Particles
16%
Trace Metal Biogeochemistry
100%
Trace Metals
33%
Water Column
16%
Earth and Planetary Sciences
Atmospherics
33%
Bioaccumulation
33%
Biomagnification
33%
Carbon Dioxide
33%
Climate Change
100%
Coastal Fishery
33%
Continental Shelf
33%
Global Climate Change
100%
Metal Biogeochemistry
100%
Porewater
33%
Positive Feedback
33%
Rhizosphere
33%
Saline Intrusion
66%
Sea Level Rise
66%
Sedimentation Rate
33%
Shelf Sediment
33%
Trace Metal
100%
Water Column
33%