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Assessing ocean alkalinity for carbon sequestration
Phil Renforth
*
, Gideon Henderson
*
Corresponding author for this work
School of Engineering & Physical Sciences
Institute of Mechanical, Process & Energy Engineering
Cardiff University
Research output
:
Contribution to journal
›
Article
›
peer-review
149
Citations (Scopus)
121
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Dive into the research topics of 'Assessing ocean alkalinity for carbon sequestration'. Together they form a unique fingerprint.
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Earth and Planetary Sciences
Addition
14%
Alkalinity
100%
Amount
14%
Anorthite
14%
Attention
14%
Average
14%
Bicarbonate
28%
Biological Activity
14%
Calcite
14%
Calcium
14%
Carbon
14%
Carbon Dioxide
14%
Carbon Sequestration
71%
Carbonate Mineral
28%
Cause
14%
Climate Change
14%
Condition
14%
Cost
14%
Dolomite
14%
Fossil Fuel
14%
Fuel Combustion
14%
Impact
28%
Increasing
14%
Ion
14%
Limestone
14%
Liming
14%
Magnesium
14%
Mineral
14%
Mole
14%
Need
14%
Ocean
100%
Ocean Acidification
14%
Ocean Surface
14%
Olivine
14%
Planetary Atmosphere
28%
Proposal
14%
Research
28%
Reservoir
14%
Response
14%
Rock
14%
Science and Technology
28%
Silicate Mineral
14%
Site
14%
State
14%
Weathering
57%
Wollastonite
14%