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CORDIS - Risultati della ricerca dell’UE
CORDIS

A Complete Transformation PAth for C-C backboned plastic wastes to high-value Chemicals and materials

CORDIS fornisce collegamenti ai risultati finali pubblici e alle pubblicazioni dei progetti ORIZZONTE.

I link ai risultati e alle pubblicazioni dei progetti del 7° PQ, così come i link ad alcuni tipi di risultati specifici come dataset e software, sono recuperati dinamicamente da .OpenAIRE .

Risultati finali

Production of 3 polyesters through an organometallic route at the gram scale (si apre in una nuova finestra)

Bulk polymerization of the mixtures of diols and diacids (at the stoichiometry of the reactive functions) will be first implemented at high temperatures above the melting points of the monomer blends in the presence of efficient classical organometallic catalysts like ((Ti(OBu)4) to produce 3 polyesters at few g scale. The processes of polymerization will be also investigated by comparing conventional mechanical stirring to extrusion process with the objective to achieve full conversion.TASK 6.1

Results on characterization of CYP153 orthologs for their capacity of C6-C12 alkane to α, ω-diol and -diacid transformation (si apre in una nuova finestra)

After activity and selectivity screening (chain length and regioselectivity) of 6-8 different CYP153 enzyme orthologs (enzymes from different organisms), we will choose the best 2-3 orthologs that can either alone or in cascade produce α, ω-diols and diacids from C6-C12 alkanes efficiently (i.e. high substrate loading, high TTN, high overall STY, high stability). The data on best orthologs will be instrumental for protein engineering efforts in Task 3.2.TASK 3.1

Methods established for the polycondensation of the developed long chain monomers (si apre in una nuova finestra)

Polymer synthesis methodologies for the enzymatic (using lipase and cutinase enzymes) polycondensation of biobased building blocks (C6-C18 diacids/diols), which will be carried out in either a one-step or a two-step melt or solution polycondensation procedure, depending on the type of monomer and catalyst used. The choice of catalyst and exact procedure will depend on the co-monomer composition.TASK 8.1.

Successful genetic engineering of ATCC 20962 towards efficient diacid production (si apre in una nuova finestra)

The genetic engineering tools for C. viswanathii (e.g. transformation, CRISPR-Cas) will be optimized for efficient genetic engineering. Targets for further optimisation such as CYP enzymes will be identified to realise an efficient conversion of specifically long chain alkanes.TASK 4.1

Successfully designed alkane converting bacterial strains for mid to long-chain diol production (si apre in una nuova finestra)

Mainly the promising Gram-positive bacterial strain Paenibacillus polymyxa will be genetically engineered towards a mid to long-chain alkane conversion strain, but also other promsisng candidates will be evaluatet. Thus, the design of a novel bacterial strain to produce long-chain diols from alkanes will be completed.TASK 4.2

Initiation of project’s electronic communication tools (si apre in una nuova finestra)

Website and social media accounts for the project will become active with introductory materials.TASK 13.2

Data management plan (initial) (si apre in una nuova finestra)

A comprehensive initial data management plan for the handling/(re)use of data to be produced during the course of the project.TASK 13.4

Pubblicazioni

De Novo Synthesis of Perdeuterated Phosphoinositide by Installing a Non-native Phospholipid Biopathway in <i>E. coli</i> (si apre in una nuova finestra)

Autori: Aske Merrild, Niels Krabbe Johnsen, Mingliang Zhang, Oliver Bogojevic, Yi Ouyang, Zheng Guo
Pubblicato in: ACS Synthetic Biology, Numero 13, 2024, ISSN 2161-5063
Editore: American Chemical Society (ACS)
DOI: 10.1021/ACSSYNBIO.4C00413

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