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Observing novel soil conditioners for carbon emissions mitigation
A. Coles,
Kathleen Lewis
, R. Sims
School of Life and Medical Sciences
Agriculture and Environment Research Unit
Agriculture, Food and Veterinary Sciences
Centre for Climate Change Research (C3R)
Agriculture and Environmental Management Research
Department of Psychology, Sport and Geography
Research output
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Contribution to journal
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Article
›
peer-review
1
Citation (Scopus)
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Keyphrases
Biodiesel
20%
Bioenergy Systems
20%
Carbon Emission Mitigation
100%
Carbon Offsets
20%
Carbon Profile
20%
Carbon Sequestering
20%
Carbon Sequestration
40%
Carbon Sequestration Potential
20%
Charcoal
40%
Conditioner
20%
Design Methodology
20%
Emission Energy
20%
Energy Futures
20%
Government Commitment
20%
Ground Disturbance
20%
Incubation Chamber
40%
Low Emission
20%
Methanol
20%
New Zealand
20%
New Zealand Government
20%
Oil-paper
20%
Paper Mill
20%
Pulp
20%
Short Rotation Forestry
20%
Soil CO2 Flux
20%
Soil Conditioner
100%
Soil Organic Matter
20%
Soil Respiration
20%
Soil Type
20%
Vegetable Oil
20%
Whey
40%
Earth and Planetary Sciences
Biodiesel
33%
Bioenergy
33%
Carbon Dioxide
66%
Carbon Dioxide Emission
100%
Carbon Sequestration
100%
Emissions
33%
Form (Paper)
33%
Methyl Alcohol
33%
New Zealand
66%
Soil Organic Matter
33%
Soil Respiration
33%
Soils
33%
Vegetable Oil
33%
Social Sciences
Biodiesel
50%
Biomass Energy
50%
Carbon Dioxide
100%
Carbon Offset
50%
New Zealand
100%
Soils
50%
Vegetable Oil
50%
Engineering
Biodiesel
20%
Bioenergy
20%
Carbon Profile
20%
Carbon Sequestration
60%
Form Part
20%
Future Energy
20%
Limitations
20%
Microbial
20%
Paper Mill
20%
Soil Conditioner
100%
Agricultural and Biological Sciences
Biodiesel
20%
Bioenergy
20%
Carbon Sequestration
60%
Forestry
20%
Soil Conditioner
100%
Soil Organic Matter
20%
Soil Respiration
20%
Soils
20%
Vegetable Oil
20%
Material Science
Biodiesel
20%
Carbon Dioxide
40%
Paper Mill
20%
Soil Conditioner
100%