Projets novateurs réalisés

Explorez des milliers de projets réussis issus de la collaboration entre organisations et talents postsecondaires.

30 508 projets complétés

2882
AB
5105
C.-B.
825
MB
681
NL
860
SK
9051
ON
9491
QC
97
PE
586
NB
1141
NS

Projets par catégorie

Interaction entre les facteurs permanents et temporels qui déterminent la productivité du Tremble

Le bois léger et souple du peuplier faux-tremble lui confère une place de choix dans l’industrie des produits forestiers. Son bois est utilisé pour la fabrication de panneau de grandes particules orientées, de lamibois de haute qualité, et de pâte à papier. C’est aussi le feuillu le plus répandu au Canada et aux États-Unis. Sa présence est essentielle pour le maintien de la biodiversité et pour le fonctionnement de l’écosystème boréal. Une baisse de la croissance et un fort taux de mortalité de l’espèce ont été signalés dans les Prairies à cause de la sécheresse. Dans l’est du Canada, les précipitations ont également une influence sur la croissance du peuplier faux-tremble dans la mesure où des baisses de croissance ont été observées dans les sites plus secs. Étant donné que les changements climatiques pourraient conduire à un réchauffement amplifié aux latitudes nordiques et une augmentation des précipitations, la compréhension des effets des précipitations sur la croissance du tremble est primordiale pour comprendre les comportements du tremble face aux changements climatiques. Cette étude vise donc à prévoir la productivité du tremble le long d’un gradient de précipitations qui diminue d’est en ouest. To be CONT’D

Voir la description complète du projet
Superviseur du corps professoral :

Yves Bergeron

Étudiant :

Partenaire :

Norbord Inc (La Sarre, QC);Université du Québec en Abitibi-Témiscamingue

Discipline :

Life Sciences

Secteur :

Agriculture

Université :

Université du Québec en Abitibi-Témiscamingue

Programme :

Accelerate

Software development for composite structures health monitoring

Composite structures are very popular in industries due to their lightweight and high strength. They degrade and cause huge economic losses or even serious disasters. Structure health monitoring has a great significance in the operation and maintenance of industrial assets. Current commercial software for structural health monitoring uses traditional and common methods which are only effective in constant loading conditions and require a large amount of historical data to train models. The intern has developed an unsupervised structural damage detection technique. We have done some preliminary tests and the results are promising. In this project, we will perform more validation tests to further evaluate our algorithm’s effectiveness under varying loading conditions. Then, we will convert our algorithm to software with a user-friendly interface. It is a big step to foster the growth and commercialization of innovative technologies through the Lab2Market program.

Voir la description complète du projet
Superviseur du corps professoral :

Xihui Liang

Étudiant :

Partenaire :

North Forge

Discipline :

Engineering

Secteur :

Education; Management of companies and enterprises; Professional, scientific and technical services

Université :

University of Manitoba

Programme :

Accelerate

Ice-melting performance and environmental impacts of various de-icer salts

The application of road salt to our roads, parking lots and sidewalks, is causing long-term corrosion to infrastructure and vehicles, and damage to the environment. Various alternative de-icing salts have been proposed but a holistic understanding of their ice-melting performance, corrosion effects and environmental impacts is limited. The goal of the broader project is to compare the environmental and corrosion effects of various salts, including two new proprietary salts, along with their working performance. This sub-project will comprehensively assess the ice-melting and ice-penetration capacity of these salts, which is crucial to ensure that the alternatives still provide safe and passable roads/sidewalk first and foremost, no matter how much they may reduce damage to infrastructure and the environment. The partner organization are a global leader in innovative environmental dust control and road stabilization solutions, and the proposed internships will see the intern work alongside them to design and develop state-of-the-art testing methods for these salts in both the laboratory and field.

Voir la description complète du projet
Superviseur du corps professoral :

Christopher Power;Yolanda Hedberg

Étudiant :

Partenaire :

Cypher Environmental

Discipline :

Engineering

Secteur :

Mining; Professional, scientific and technical services

Université :

The University of Western Ontario

Programme :

Accelerate

Novel Protein Cages for Biotherapeutic Delivery

Currently, drug delivery systems used in clinical applications are limited to liposome and polymer-based systems. Although these methods have been shown to be sufficient for most applications, they have limited targeting of specific areas in the body and have a low effectiveness for efficient drug administration. To compensate, higher and multiple dosages are required, drastically increasing costs of production and administration. Many drug delivery technologies that are being developed can also cause immune responses, causing adverse effects and/or a decrease of retainment of the drug in the body. These issues can lead to disparities and complications in treatments for diseases such as cancer. Our product uses novel protein cages, to provide an improved protein drug delivery platform. This drug delivery strategy has the potential to be safer, more effective, and more modular for specific disease targeting. The intern for the purpose of this Mitacs proposal and Lab2Market program will participate in the development of the technology and focus most of their efforts towards refining the technology and its industrial use by building a business plan and interacting with end users in the drug delivery industry sector.

Voir la description complète du projet
Superviseur du corps professoral :

Trushar Patel;Hans-Joachim Wieden

Étudiant :

Partenaire :

North Forge

Discipline :

Life Sciences

Secteur :

Education; Management of companies and enterprises; Professional, scientific and technical services

Université :

University of Lethbridge; University of Manitoba

Programme :

Accelerate

Pour une écologie sonore urbaine à travers la diffusion d’oeuvres originales dans l’espace publique

Cette recherche-création vise à sensibiliser les habitant·e·s à l’écoute de leur environnement sonore à travers la diffusion d’oeuvres sonores originales dans l’espace public. Grâce au dispositif de diffusion “Essaim” conçu spécialement pour la diffusion prolongée en extérieur, les oeuvres sonores à caractère écologique pourront être entendues dans des parcs, des passages ou des places publiques. Des ateliers de médiations seront organisés avec des artistes sonores afin de susciter un intérêt croissant pour l’écologie sonore en milieu urbain et augmenter la visibilité des artistes et concepteurs·trices sonores d’Audiotopie. L’objectif à moyen terme est de créer des installations sonores permanentes et de proposer une programmation d’environnements sonores au fil du temps.

Voir la description complète du projet
Superviseur du corps professoral :

Nicolas Bernier;Olivier Robin

Étudiant :

Partenaire :

Audiotopie Coop;Sporobole

Discipline :

Sociology

Secteur :

Information and cultural industries

Université :

Université de Montréal; Université de Sherbrooke

Programme :

Accelerate

Comparative analysis of the COVID-19 pandemic response in BC and Alberta

The project aims to compare and analyse the response of BC and Alberta during the COVID-19 pandemic. The research is scheduled to be conducted into 5 main areas: the situation of the healthcare system before the pandemic, the policies set in place during the pandemic, the outcomes of such policies and interventions, the unintended consequences of these policies and interventions and lastly, the effectiveness of the communication with the public. This project will shed light into the best practices used among the two provinces and provide a benchmark of interventions for future pandemics in Canada and abroad. Primary and secondary data from health agencies as well as both qualitative and quantitative data will be utilized.

Voir la description complète du projet
Superviseur du corps professoral :

Craig Mitton;Boris Sobolev

Étudiant :

Partenaire :

Vancouver Coastal Health

Discipline :

Sociology

Secteur :

Health and Related Sciences & Technology

Université :

The University of British Columbia

Programme :

Accelerate

Développement d’un système électrochimique optimisé sous forme de modules pour transformer du CO2 capturé en sel de formate pour l’utiliser comme agent déglaçant

Electro Carbon est une entreprise spécialisée dans le développement de technologies de rupture et innovantes orientées vers la valorisation du dioxyde de carbone (CO2). Toujours soucieux de la protection de l’environnement, Electro Carbon agit pour répondre aux besoins mondiaux en matière de réduction des émissions de gaz à effet de serre et de lutte contre le changement climatique. Pour ce faire, Electro Carbon développe des électrolyseurs de CO2 commerciaux. Le CO2 est converti en un composé à valeur ajoutée, le formate de potassium. Cette technologie pourrait aider à atteindre les objectifs de réduction des émissions, tout en générant un produit stratégique et de grande valeur utilisant un procédé économiquement viable.
Le projet comprendra la récupération, la purification et la caractérisation du formate de potassium en tant qu’agent de déglaçage. Les performances électrochimiques du système seront optimisées tandis que les formulations d’agent de déglaçage seront testées en termes de normes commerciales.

Voir la description complète du projet
Superviseur du corps professoral :

Antonio Avalos Ramirez

Étudiant :

Partenaire :

Electro Carbon

Discipline :

Engineering

Secteur :

Manufacturing; Professional, scientific and technical services

Université :

Cégep de Shawinigan

Programme :

Accelerate

Fabrication, characterization and modeling of novel CMOS-compatible polymer-based redox memory structures

A cross-disciplinary collaboration between investigators in Electrical Engineering and Chemistry has lead to the discovery of a promising new material system for nanoelectronics. This material system is a conducting polymer / inorganic metal oxide heterojunction, electrochemically grown onto a crossbar structure. This heterojunction produces transient current-voltage characteristics that can be controlled by electric fields and exhibits memory effects. Building on the proof-of-principle research, one concrete goal of this project is to demonstrate an 8×8 memory array based on field-modulated polymer/metal oxide heterojunctions, fabricated through CMOS-compatible processes. In collaboration with our industry partner (MOSAID), CMOS-compatible read/write circuitry will be designed for the structure and a detailed circuit model will also be developed for system-level simulation of the device. Since a key element of MOSAID’s strategy is to expand its patent portfolio through academic collaborations, this project will be beneficial to their core business mission.

Voir la description complète du projet
Superviseur du corps professoral :

Michael Freund;Cyrus Shafai;Michael Freund

Étudiant :

Partenaire :

MOSAID Technologies Inc

Discipline :

Physics

Secteur :

Nanotechnology; Technology; Technology

Université :

University of Manitoba

Programme :

Accelerate

Impacts of wildfire and windfarm construction on the herpetological community of eastern Georgian Bay.

Understanding the degree to which habitat disturbance affects fragile and biodiverse herpetological communities is critical to mitigating damage from future anthropogenic and natural environmental disturbances. This is especially true if the disturbances are an ever-growing green energy source in the energy sector, wind energy, and an increasing natural disturbance, wildfire. Few studies have examined how such combined disturbances impact herpetological communities. Our study aims to quantify the abundance, diversity and health of anuran, snake, and turtle individuals and populations in the areas affected by the construction of a windfarm and wildfire. This research involves various herpetofauna survey techniques and diversity and health analysis techniques to capture the effects on species at risk as well as more common species. Our findings will inform implementation of mitigation strategies for future largescale windfarm development projects, especially in areas prone to wildfires.

Voir la description complète du projet
Superviseur du corps professoral :

Jacqueline Litzgus

Étudiant :

Partenaire :

Blazing Star Environmental

Discipline :

Life Sciences

Secteur :

Professional, scientific and technical services

Université :

Laurentian University

Programme :

Accelerate

Developing a Database of Canadian Climate Policy and Programs

This project fills a data gap by creating key research inputs in the climate policy space: an online climate policy database and stringency index. We organize and classify government actions related to climate change in Canada by key criteria of interest including economic sector, target outcome, type of initiative (pricing system, performance regulations, incentives, innovation programs, etc.), and type of action (mitigation, adaptation, etc.), amongst others. A Canadian database will provide researchers with a comprehensive and current list of climate policies and programs, while facilitating comparisons along key criteria such as jurisdiction, policy or program type and targeted sector or emissions source. We use the OECD’s national Environmental Policy Stringency Index as a model to create a sub-national climate policy stringency index for Canadian provinces and territories for the year 2021.

Voir la description complète du projet
Superviseur du corps professoral :

Jennifer Winter

Étudiant :

Partenaire :

Canadian Institute for Climate Choices

Discipline :

Sociology

Secteur :

Professional, scientific and technical services

Université :

University of Calgary

Programme :

Accelerate

Siksika Nation Climate Change and Renewable Energy: Mitigation, Adaptation, Resilience, Food Security, Economic Development

This project is a cooperative arrangement with Siksika economic development. University of Lethbridge
researchers are evaluating a range of economic development options for consideration by Siksika. These options
are focussed on renewable energy, sustainability, and food security for the nation, and for economic development
to further Nation participating in the Alberta and Canadian economies. Siksika has a valuable land base within a
few kilometres of the city of Calgary, the largest market economy in Alberta. This joint project is looking at the
viability of developing a range of renewable electricity generation options, and developing new technology
greenhouses that use that renewable energy base for sustainable food production, and quite possibly in phase 2,
food production for markets in the city of Calgary, and beyond.

Voir la description complète du projet
Superviseur du corps professoral :

James Byrne;Paul Hazendonk;Dan Johnson;Paul Hazendonk;James Byrne

Étudiant :

Partenaire :

SRDL Business Group

Discipline :

Life Sciences

Secteur :

Agriculture; Professional, scientific and technical services; Utilities

Université :

University of Lethbridge

Programme :

Accelerate

Identifying Exposure Risk of Aerial Insectivores under threat of Agricultural Intensification and Pesticides

Farmland covers 6.8% of the surface area of Canada and hosts 313 species of birds, or 69% of all breeding bird species, and Canadian farmland overlaps with the range of 90% of our species at risk. Aerial insectivores including birds and bats are common in these areas and are declining at an alarming rate. Simplification of the landscapes coupled with widespread use of pesticides threaten Canada’s wildlife in our farmlands. This project will explore risks to birds and bats in the prairie agricultural regions and assess how agricultural threats may impact the quality of insects that are important food sources.

Voir la description complète du projet
Superviseur du corps professoral :

Christy Morrissey;Jeffrey Lane

Étudiant :

Partenaire :

Canadian Wildlife Federation

Discipline :

Life Sciences

Secteur :

Agriculture; Other services (except public administration); Professional, scientific and technical services

Université :

University of Saskatchewan

Programme :

Accelerate