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Funded Projects › H2020

BioCatPolymers · Sustainable and efficient bio-chemical catalytic cascade conversion of residual biomass to high quality biopolymers

H2020Status: CLOSED1 January 201830 June 2021EU funding €4,362,048Call H2020-NMBP-2016-2017

The overall objective of BioCatPolymers is to demonstrate a sustainable and efficient technological route to convert low quality residual biomass to high added-value biopolymers. The technology is based on an integrated hybrid bio-thermochemical process combining the best features of both. The biological step consists of the efficient conversion of biomass-derived sugars to mevalonolactone (MVL). MVL can be then converted to bio-monomers via highly selective chemocatalytic processes. BioCatPolymers is specifically aiming at the efficient and economic production of isoprene and 3-methyl 1,5-pentanediol (3MPD), two momoners with very large markets that can be further processed in the existing infrastructure for fossil-based polymers for the production of elastomers and polyurethanes, respectively. This ambitious target will be attained by optimizing and demonstrating the entire value chain on 0.5 ton of biomass/day scale, starting from the pretreatment of lignocellulosic biomass to hydrolysis and biological fermentation to MVL, separation of MVL from fermentation broth, selective catalytic conversion to the targeted monomer and finally purification to polymer grade quality. The novel approach we propose in this project surpasses the impediments of traditional solely bio-based approaches. It aims at producing bio-isoprene at 50% cost reduction and 3MPD at 70% cost reduction compared to average market prices, by optimizing the platform cell factories and all downstream processes and integrating the process modules, thereby increasing the competitiveness of biological processes in terms of economics. The BioCatPolymers consortium consists of highly qualified and experienced researchers with complementary expertise. Trans-disciplinary considerations are strongly involved in the project. The strong industrial leadership-driven innovation potential is reflected through the fact that the large majority of the partners are from industry.

Consortium · 10 organisations

coordinator

ETHNIKO KENTRO EREVNAS KAI TECHNOLOGIKIS ANAPTYXIS

EL · €1,316,250

thirdParty

KEUKEN & DE KONING BV

NL

participant

COVESTRO DEUTSCHLAND AG

DE · €64,750

participant

BIOPROCESS PILOT FACILITY BV

NL · €767,360

participant

SEKAB E-TECHNOLOGY AB

SE · €466,813

participant

VISOLIS TECHNOLOGIES LTD

UK

participant

VISOLIS BV

NL · €1,055,188

participant

Quantis Sarl

CH · €262,500

thirdParty

QUANTIS SRL

IT

participant

PROCESS DESIGN CENTER BV

NL · €429,188

Research fields

View the official record on CORDIS →

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Source: CORDIS, Publications Office of the European Union. Global Research Partnerships surfaces open EU research data to help you find collaborators; we are not affiliated with the European Union.