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Memorial University of Newfoundland

Characterization and applications of biogenic nanomaterials from salmon aquaculture processing waste

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CAD 111,898.00

Reported federal agreement value. An agreement can cover several years; this is not the amount paid out.

Selected because the publisher reports recipient province NL; NL Ledger has not established the work, benefit or jurisdiction from this record; source fields are available below.

This is the whole reported commitment or notice value, not the amount paid or an NL allocation.

Agreement start
Sept. 1, 2021
Program
Collaborative Science, Technology and Innovation Program - Collaborative R&D Initiatives
Record type
Federal grant or contribution

Receipt

agreement 172-2021-2022-Q3-983518, amendment 0

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Source location evidence

Location review incomplete.

Reported address: country: CA; province: NL; city: St. John's|St. John's; postal code: A1C 5S7.

How counted: latest of 1 rows (department reports running totals). Start: 2021-09-01; end: 2026-02-28; reported: not stated. Amount: published value.

    Full source fields
    _id
    493677330
    ref_number
    172-2021-2022-Q3-983518
    amendment_number
    0
    amendment_date
    agreement_type
    G
    recipient_type
    S
    recipient_business_number
    107690273
    recipient_legal_name
    Memorial University of Newfoundland
    recipient_operating_name
    research_organization_name
    recipient_country
    CA
    recipient_province
    NL
    recipient_city
    St. John's|St. John's
    recipient_postal_code
    A1C 5S7
    federal_riding_name_en
    St. John's East
    federal_riding_name_fr
    St. John's-Est
    federal_riding_number
    10006
    prog_name_en
    Collaborative Science, Technology and Innovation Program - Collaborative R&D Initiatives
    prog_name_fr
    Programme de collaboration en science, en technologie et en innovation - Initiatives de collaboration en R-D
    prog_purpose_en
    Collaborate on multiparty research and development programs to catalyze transformative, high-risk, high-reward research with the potential for game-changing scientific discoveries and technological breakthroughs in priority areas.
    prog_purpose_fr
    Collaborer à des programmes multipartites de recherche-développement dans le but de profiter de la synergie entre la recherche transformatrice à haut risque et à haut rendement et le potentiel de découvertes scientifiques et de percées technologiques révolutionnaires dans des secteurs d’intervention prioritaires.
    agreement_title_en
    Characterization and applications of biogenic nanomaterials from salmon aquaculture processing waste
    agreement_title_fr
    Caractérisation et applications des nanomatériaux biogènes issus des déchets de transformation de l’aquaculture du saumon
    agreement_number
    983518
    agreement_value
    111898
    foreign_currency_type
    foreign_currency_value
    agreement_start_date
    2021-09-01
    agreement_end_date
    2026-02-28
    coverage
    description_en
    This project aims to valorize salmon processing waste into new environmentally-friendly functional materials for chemical catalysis, and the biomedical and energy sectors by developing a process that does not use hazardous reagents to access the nanoscale, biomineral crystals that make up fish bones. A broad range of characterization techniques will be used to characterize the nanomaterials and guide their use in different end sectors. The proposed technology will impact the triple bottom line as follows: increased profit for aquaculture/fish processing activities as secondary products are manufactured, increased employment opportunities in rural regions in a female-dominated industry, and reduced environmental pollution from biologically hazardous waste.
    description_fr
    Dans le cadre du projet, on tentera de valoriser les déchets de la transformation du saumon en nouveaux matériaux fonctionnels écologiques pour la catalyse chimique et les secteurs biomédical et énergétique en développant un procédé qui n’utilise aucun réactif dangereux pour accéder aux cristaux biominéraux, à l’échelle nanométrique, qui composent les arêtes de poisson. Un large éventail de techniques de caractérisation sera utilisé pour caractériser les nanomatériaux et guider leur utilisation dans différents secteurs finaux. La technologie proposée aura un impact sur le triple résultat comme suit : augmentation des bénéfices pour les activités d’aquaculture et de transformation du poisson grâce à la fabrication de produits secondaires; augmentation des possibilités d’emploi dans les régions rurales dans un secteur dominé par les femmes; et réduction de la pollution environnementale due aux déchets biologiquement dangereux.
    naics_identifier
    541710
    expected_results_en
    In the short term, anticipated outcomes will be strengthened collaborations across industry, academia, and government to support research excellence. In the medium term, anticipated outcomes will be the development of new and potentially disruptive technologies with collaborators. In the long term, find collaborative solutions to public policy challenges and create stronger innovation systems.
    expected_results_fr
    À court terme, les résultats prévus seront des collaborations renforcées entre l'industrie, le milieu universitaire et le gouvernement pour soutenir l'excellence en recherche. À moyen terme, les résultats attendus seront le développement de nouvelles technologies potentiellement perturbatrices avec des collaborateurs. À long terme, trouver des solutions collaboratives aux défis des politiques publiques et créer des systèmes d'innovation plus solides.
    additional_information_en
    additional_information_fr
    owner_org
    nrc-cnrc
    owner_org_title
    National Research Council Canada | Conseil national de recherches Canada

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