Figures for Final Report of SYNPOL Project · Aerobic bacterial'syngas usage Production of building...

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Figures for Final Report of SYNPOL Project: Fig. 1. The SYNPOL process - From different waste feedstocks to biopolymers. Fig. 2. Photograph of a PHA granules-accumulating Rhodospirillum strain (left) and short chain length PHA isolated from a bacterial culture (right).

Transcript of Figures for Final Report of SYNPOL Project · Aerobic bacterial'syngas usage Production of building...

Page 1: Figures for Final Report of SYNPOL Project · Aerobic bacterial'syngas usage Production of building blocks in different bacterial strains Systems Biology & Modelling of bacterial

Figures for Final Report of SYNPOL Project:

Fig. 1. The SYNPOL process - From different waste feedstocks to biopolymers.

Fig. 2. Photograph of a PHA granules-accumulating Rhodospirillum strain (left)

and short chain length PHA isolated from a bacterial culture (right).

Page 2: Figures for Final Report of SYNPOL Project · Aerobic bacterial'syngas usage Production of building blocks in different bacterial strains Systems Biology & Modelling of bacterial

Fig. 3. The SYNPOL roadmap.

Fig. 4. Bacterial culture of Rhodospirillum rubrum grown in the dark with (left)

and without (right) syngas as carbon source.

RRNCO +

RRNCO

OD600

OD600

Page 3: Figures for Final Report of SYNPOL Project · Aerobic bacterial'syngas usage Production of building blocks in different bacterial strains Systems Biology & Modelling of bacterial

Fig. 5. Safety installations implemented for carrying out safe bioprocesses with

syngas.

Fig. 6. LCA - System boundaries of SYNPOL project.

Page 4: Figures for Final Report of SYNPOL Project · Aerobic bacterial'syngas usage Production of building blocks in different bacterial strains Systems Biology & Modelling of bacterial

Fig. 7. Paper bag with cellulose film window made by utilizing the 100% biobased

adhesive (from SYNPOL biopolymers) for its assembling.

Fig. 8: SYNPOL – potential commercial outcomes.