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8 Projects, page 1 of 2
  • Funder: European Commission Project Code: 289196
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  • Funder: European Commission Project Code: 792061
    Overall Budget: 43,233,700 EURFunder Contribution: 20,959,700 EUR

    The objective of the SWEETWOODS project is to demonstrate on an industrial level successful and profitable production of high purity lignin as well as C5 and C6 carbohydrates from hardwood by establishing a biorefinery having throughput capacity 80 bdton/day. Unlike existing biorefinery concepts, SWEETWOODS plant utilizes all the fractions of the biomass feedstock, with min. 95 % of its initial carbon content utilised. The current TRL of the selected fractionation technology is 7, aiming to reach TRL 9 by the end of the project. The efficient fractionation and conversion of biomass is enabled by novel enzymatic solutions. The dried solid lignin and depolymerized lignin are demonstrated in novel applications, namely in elastomer foams for tube insulation, rigid polyurethane foam panels for insulation, and polymer compounds intended for injection moulding. The high purity sugars (at least glucose, xylose and fructose) are demonstrated in novel end use cases, namely in production of bio-IBN, and xylitol production. The environmental and socio-economic performance of the SWEETWOODS plant operation and the developed products are evaluated by performing a Life Cycle Sustainability Assessment (LCSA), as well as a viability analysis.

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  • Funder: European Commission Project Code: 730398
    Overall Budget: 7,075,920 EURFunder Contribution: 5,871,900 EUR

    Water2REturn proposes a full-scale demonstration process for integrated nutrients recovery from wastewater from the slaughterhouse industry using biochemical and physical technologies and a positive balance in energy footprint. The project will not only produce a nitrates and phosphate concentrate available for use as organic fertiliser in agriculture, but its novelty rests on the use of an innovative fermentative process designed for sludge valorisation which results in a hydrolysed sludge (with a multiplied Biomethane Potential) and biostimultants products, with low development costs and high added value in plant nutrition and agriculture. This process is complemented by proven technologies such as biological aeration systems, membrane technologies, anaerobic processes for bio-methane production and algal technologies, all combined in a zero-waste-emission and an integrated monitoring control tool that will improve the quality of data on nutrient flows. The project will close the loop by demonstrating the benefits associated with nutrients recycling through the implementation of different business models for each final product. This will be done with a systemic and replicable approach that considers economic, governance and social acceptance aspects through the whole chain of water and targets essentially two market demands: 1) Demand for more efficient and sustainable production methods in the meat industry; and 2) Demand for new recycled products as a nutrient source for agriculture. As a summary, Water2REturn project adopts a Circular Economy approach where nutrients present in wastewaters from the meat industry can be recycled and injected back into the agricultural system as new raw materials. The project foster synergies between the food and sustainable agriculture industries and propose innovative business models for the resulting products that will open new market opportunities for the European industries and SMEs in two key economic sectors.

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  • Funder: European Commission Project Code: 211473
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  • Funder: European Commission Project Code: 604048
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