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SAPPI NETHERLANDS SERVICES B.V.

Country: Netherlands

SAPPI NETHERLANDS SERVICES B.V.

7 Projects, page 1 of 2
  • Funder: European Commission Project Code: 869192
    Overall Budget: 5,817,840 EURFunder Contribution: 5,817,840 EUR

    The quantitative potential, effectiveness and impacts of negative emission technologies and practices (NETPs), particularly taking into account relevant disciplines such as sustainability, socio-political and socio-economic sciences, are not so well understood. Based on a multi-discipline approach, with world-leading experts that can show proven track records in technological, economic and socio-political disciplines, NEGEM will go beyond the perspectives of climate physics and climate economics currently providing the basis for climate scenario modelling. The novel approach of NEGEM is the focus on a real-world perspective, where the theoretical potential of NETPs will be filtered through a range of key performance indicators relevant to biogeochemical cycles, ecosystems and planetary boundaries, resource economies, societal dimensions, social acceptability, technological opportunities and constraints, multi-level governance, and the sustainability transition. Through this, NEGEM will address to what extent NETPs are required to achieve climate neutrality and how their associated technical, economic and socio-political impacts potentially limit their contribution. The result is a comprehensive analysis of the realistic, sustainably deployable potential of NETPs supporting EU’s endeavours to implement the Paris Agreement within the frames of relevant UN Sustainable Development Goals. The NEGEM analysis will feed into a comprehensive framework with guidance on how to create, select, analyse and disseminate pathways with NETPs. This framework will be used to identify a set of pathways to achieve climate neutrality, which helps lay the basis for the medium-to-long term vision needed to support EU’s endeavours to implement the PA within the context of relevant SDGs. NEGEM will dedicate specific efforts to reaching out to key stakeholders, in particular to policymakers at national and EU levels, but also to key international stakeholders, including developing countries.

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  • Funder: European Commission Project Code: 101057992
    Overall Budget: 3,731,630 EURFunder Contribution: 3,731,630 EUR

    Human pathogens can persist on textiles and high-traffic surfaces for hours, days or even longer when protected in biofilms, increasing risk of infection spreading. Conventional cleaning has no lasting effect as contamination can re-occur almost immediately. Available antimicrobial coatings are based mainly on the release of silver ions and other biocides that present risks for resistance development and environmental damage. Inorganic nanoparticles are also a concern for human health. Nanocellulose is a versatile nanomaterial obtained from wood pulp or biotechnological methods, which has excellent physical properties for coatings, enabling controllable and standardised application of antimicrobial functionalities. In Triple-A-COAT the 3 forms of nanocellulose will be augmented for antimicrobial/antiviral activity through grafting/adsorption of novel, resistance-proof compounds with excellent activities against bacteria, fungi and/or viruses, and nanopatterning to create bio-inspired antimicrobial surfaces. Spray coating and thin film applications will be developed, optimising adherence to plastic, metal, textiles and glass. The most effective coatings will be evaluated for antimicrobial/antiviral activity, durability and non-toxicity using ISO standard tests, and in a simulation of a bus environment over 6 months to reach TRL6. A life cycle assessment of the platform will also be completed. The project consortium involves companies, academic and SME partners with leading expertise in novel antimicrobial and antiviral technology, nanocellulose production and functionalisation, coatings development and characterisation, as well as a bus manufacturer and an external User Committee. Within 5-10 years after the end of the project, the results will be commercialized for impact in the transportation and healthcare sectors, contributing to the better control of infectious disease, and boosting the competitiveness and research leadership of EU industry including SMEs.

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  • Funder: European Commission Project Code: 792021
    Overall Budget: 8,487,310 EURFunder Contribution: 6,549,150 EUR

    SUSFERT addresses the massive usage of mineral fertilisers in EU agriculture, which are largely based on non-renewable resources, but are required in intensive crop production for meeting demands for food and feed. SUSFERT will develop multifunctional fertilisers for phosphorus (P) and iron (Fe) supply, which will fit into existing production processes and common EU agricultural practice. The SUSFERT innovation combines bio-based and biodegradable coatings, probiotics, the renewable P-source struvite, and nutrigels in at least four novel sustainable P and Fe fertiliser products, which may partly or fully replace unsustainable and resource-intense conventional ones. SUSFERT will test novel organic formulations, microgranules, granules, soil improvers, nutrigels and liquid fertilizer products in field trials, evaluate them regarding economic potential and environmental sustainability, ensure regulatory compliance and establish industry-scale production processes (TRL 7-8). Technological concepts include 1) probiotics based on P and Fe solubilizing Bacilli and Actinobacteria; 2) microbial siderophore (Fe chelator) produced in a demonstration plant; 3) enzymatic modification of the by-product lignin for cost effective, biodegradable controlled release coatings and product stabilization and 4) demonstration of struvite, a renewable P-source from wastewater, as a partial substitute of mineral P. Five industrial, four SME and three academic partners will contribute expertise along the whole value chain in biotechnology, microbiology, large-scale fermentation, fertiliser production and sales. We will fit the SUSFERT products into the regulatory and policy context for conventional and organic agriculture in various pedo-climatic conditions in Europe and prepare rapid market entry post-project.

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  • Funder: European Commission Project Code: 211534
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  • Funder: European Commission Project Code: 211473
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