Engineering
Bio-Based Material
100%
Endpoint
77%
Midpoint
77%
Biochar
66%
Global Warming Potential
44%
Global Temperature
44%
Life Cycle Assessment
44%
Life Cycle Impact Assessment
33%
Temperature Change
33%
Temperature Increase
22%
Polyhydroxyalkanoates
22%
Impact Category
22%
Sustainability Assessment
22%
Potential Loss
22%
Local Loss
11%
Carbon Dioxide
11%
Bio-Based Economy
11%
Starting Point
11%
Main Advantage
11%
Molasses
11%
Comparability
11%
Sustainable Development
11%
Product Life Cycle
11%
Ecosystems
11%
Biodegradability
11%
Threshold Temperature
11%
Harmonization
11%
Biomass
11%
Earth and Planetary Sciences
Greenhouse Gas Emission
55%
Hydrochar
44%
Proximity
33%
Sea Ice
22%
Translating
11%
Recolonization
11%
Residue
11%
Climate Change Mitigation
11%
Product Life Cycle
11%
Biomass
11%
Emission Inventory
11%
Nitrous Oxide
11%
Biodegradability
11%
Climate Change Impact
11%
Carbon Dioxide
11%
Molasse
11%
Ice Sheet
11%
Potential Temperature
11%
Carrying Capacity
11%
Atmospherics
11%
Feasibility
11%
Arctic Sea
11%
Characterization
11%
Ocean Circulation
11%
Environmental Impact Assessment
11%