Engineering
Microalgae
82%
Biorefineries
70%
Life Cycle Sustainability Assessment
70%
Bioeconomy
54%
Biofuel
38%
Global Warming Potential
23%
Operational Cost
16%
Primary Energy Demand
14%
Greenhouse Gas
14%
Investment Cost
11%
Land Use
11%
Full Scale
11%
Energy Production
11%
Albedo
11%
Climate Change
11%
Climatic Change
11%
Technological Development
11%
Fossil Fuel
10%
Step Process
10%
Conversion Process
10%
Bioenergy
9%
Algal Biomass
8%
Strain Improvement
7%
Control Model
7%
Insolation
7%
Mols
7%
Adaptive Control
7%
Biomass Resource
6%
Life Cycle Impact Assessment
6%
Proof-of-Concept
5%
Production Platforms
5%
Generation Biofuels
5%
Energy Input
5%
Energy Source
5%
Water Footprint
5%
Biomass Conversion
5%
High Growth Rate
5%
Continuous Process
5%
Life Cycle Analysis
5%
Flue Gas
5%
Biochemistry, Genetics and Molecular Biology
Triglyceride
39%
Starch
35%
Cell Division
35%
Diatom
35%
Proteome
35%
Metabolome
35%
Acutodesmus Obliquus
35%
Transcriptome
35%
Wild Type
17%
Light Dark Cycle
15%
Carbon Metabolism
14%
Metabolite
14%
Lipid
14%
Circadian Rhythm
11%
Triacylglycerol Lipase
7%
Pancreatic Lipase
7%
Lipogenesis
7%
Enzyme
7%
Lipid Storage
7%
Upregulation
7%
Microalga
7%
Steady State
7%
Strain Improvement
7%
Lipid Metabolism
7%
Nitrogen Assimilation
7%
Metabolic Pathway
7%
Protein Synthesis
7%
Isoform
7%
Tamsulosin
7%
Agricultural and Biological Sciences
Microalga
100%
Triglyceride
39%
Biofuel
36%
Phaeodactylum tricornutum
35%
Metabolite
35%
Cell Division
35%
Global Warming
23%
Biomass Production
19%
Membrane Lipid
17%
Diatom
17%
Environmental Sustainability
11%
Climate Change
11%
Land Use
11%
Greenhouse Gas
11%
Fossil Fuel
10%
Lignocellulose
5%
Immatures
5%
Water Footprint
5%
Life Cycle Engineering
5%
Photosynthetic Efficiency
5%
Rapeseed
5%
Mesterolone
5%