TRLUP– Towards Net-Zero Emissions: Catalyzing Low-Cost Green Hydrogen

Green hydrogen is a cornerstone of the global clean energy transition, offering a zero-emission alternative to fossil fuels for sectors like heavy industry and transport. However, its adoption remains limited due to high production costs—typically $4–6 per kilogram compared to $1–2 for fossil-based hydrogen. Green hydrogen is produced by splitting water using an electrolyzer powered […]

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Développement de procédés de pulvérisation et structuration de résines à base de chitosane pour la microélectronique

Ce projet a pour objectif d’évaluer les performances de résines polymères biosourcées, fabriquées à partir de chitosane pour des applications de microfabrication de dispositifis et systèmes microélectroniques. Ces résines représentent une alternative écologique aux résines dérivées du pétrole et permettraient ainsi une diminution de l’impact environnemental de certains procédés de microfabrication

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Biocarbon from agricultural waste for energy storage

The proposed research focuses on the development of biocarbon materials from waste spent clay and soapstocks from vegetable oil processing. The biocarbon will be used as the filler in developing rubber composite material as a potential substitution for carbon black produced from petroleum sources. The intern will work with the team of graduate students and […]

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L2M – Scaling Sustainable Waste-to-Energy Solutions: Poultry Manure to Biofuels and Carbon Capture

The project “Scaling Sustainable Waste-to-Energy Solutions: Poultry Manure to Biofuels and Carbon Capture” focuses on commercializing an innovative pyrolysis-based technology that transforms poultry manure into bio-oil, biochar, and pyro-gas. This solution addresses both environmental and economic challenges in Canada’s poultry and renewable energy sectors by providing a sustainable alternative to traditional manure disposal methods, which […]

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L2M – Alaagi

Alaagi Inc. is developing an innovative seaweed-based bioplastic to tackle the growing problem of plastic pollution caused by single-use petroleum-based plastics. This project focuses on refining the bioplastic prototype to improve its durability, flexibility, and biodegradability while ensuring it is cost-effective and scalable for mass production. Additionally, it aims to assess market readiness by engaging […]

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L2M QC Spring 2025 | Nextdriv – An Integrated Decision-Support Platform for EV Fleet Transition and Optimization

Nextdriv is a user-friendly platform that helps fleet operators plan and manage the switch to electric vehicles. By using smart tools and data analysis, it makes it easier to choose the right vehicles, optimise daily operations, and even take advantage of energy market opportunities. For our partner organisation, this means a smoother, more cost-effective transition […]

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Modelling and experiments of supersonic ejectors

Ce projet vise à faire progresser le développement des éjecteurs à jet, une technologie prometteuse pour des solutions énergétiques durables. La recherche, dans le cadre d’une thèse de doctorat, explorera des méthodes permettant d’améliorer l’efficacité des éjecteurs, réduisant ainsi la consommation d’énergie et les émissions. En améliorant ces systèmes, le projet vise à contribuer à […]

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Refining Earth’s first exit from oxygenation

The first initial buildup of oxygen in the Earth’s atmosphere – the Great Oxidation Event – started around 2.5 billion years ago, where oxygen may have reached levels comparable to today’s atmosphere. Following its debut, atmospheric oxygen levels quickly crashed, coinciding with a contraction of the global biosphere. The geologic time period of the Orosirian […]

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Convection in porous structure for cooling heat sink

The proposed scientific collaboration is toward developing a new class of porous structure using mathematical design. The structure must be lightweight and capable of removing heat. This structure is advantageous in engineering, such as heat enhancement, heat exchangers, and biomedical engineering (hip, jaw, or femur replacement). The global importance of the proposed research is in […]

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Development of Sustainable Solar-Powered HVAC Systems

This project focuses on designing and developing solar-powered HVAC systems optimized for tropical climates. The objective is to integrate renewable energy into building energy systems, improving energy efficiency and reducing carbon emissions. By leveraging advanced modeling tools and real-world data from Vietnam, the research aims to create scalable solutions that support sustainable urban development.

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