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2 Phylogeny and systematics of microalgae: An overview
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Kapitel in diesem Buch
- Frontmatter i
- Preface v
- Contents vii
- 1 Introduction – Discovering Microalgae as Source for Sustainable Biomass 1
-
The biological potential of microalgae
- 2 Phylogeny and systematics of microalgae: An overview 11
- 3 Balancing the conversion efficiency from photon to biomass 39
- 4 Algae symbiosis with eukaryotic partners 55
- 5 Genetic engineering, methods and targets 87
- 6 Algenics: Providing microalgal technologies for biological drugs 107
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Technical Means for Algae Production
- 7 Raceways-based production of algal crude oil 113
- 8 Cellana LLC: Algae-based products for a sustainable future 147
- 9 Principles of photobioreactor design 151
- 10 Knowledge models for the engineering and optimization of photobioreactors 181
- 11 Construction and assessment parameters of photobioreactors 225
- 12 Autotrophic, industrial cultivation of photosynthetic microorganisms using flue gas as carbon source and Subitec’s flat-panel-airlift (FPA) cultivation system 237
- 13 Case study: Microalgae production in the selfsupported ProviAPT vertical flat-panel photobioreactor system 243
- 14 Case study: Biomass from open ponds 247
- 15 Case study: Spiral plate technology for totally dewatering algae alive 253
- Index 259
Kapitel in diesem Buch
- Frontmatter i
- Preface v
- Contents vii
- 1 Introduction – Discovering Microalgae as Source for Sustainable Biomass 1
-
The biological potential of microalgae
- 2 Phylogeny and systematics of microalgae: An overview 11
- 3 Balancing the conversion efficiency from photon to biomass 39
- 4 Algae symbiosis with eukaryotic partners 55
- 5 Genetic engineering, methods and targets 87
- 6 Algenics: Providing microalgal technologies for biological drugs 107
-
Technical Means for Algae Production
- 7 Raceways-based production of algal crude oil 113
- 8 Cellana LLC: Algae-based products for a sustainable future 147
- 9 Principles of photobioreactor design 151
- 10 Knowledge models for the engineering and optimization of photobioreactors 181
- 11 Construction and assessment parameters of photobioreactors 225
- 12 Autotrophic, industrial cultivation of photosynthetic microorganisms using flue gas as carbon source and Subitec’s flat-panel-airlift (FPA) cultivation system 237
- 13 Case study: Microalgae production in the selfsupported ProviAPT vertical flat-panel photobioreactor system 243
- 14 Case study: Biomass from open ponds 247
- 15 Case study: Spiral plate technology for totally dewatering algae alive 253
- Index 259