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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Hydrogen supply chain design

The research focuses on designing and optimizing hydrogen supply chains (HSC), from production to consumption, to enhance the flexibility, efficiency, and cost-effectiveness, contributing to the global energy transition towards renewable sources. The project will develop and refine mathematical models, validate these models with real-life data, and integrate sustainability metrics to ensure environmental and economic viability. […]

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Metallogeny of Rare Earth Element deposits in Quebec

The one-year project will investigate the geological, geochemical and geophysical properties of three Rare Earth Element (REE) deposits in Québec. Each of the selected deposit is representative of a class of REE mineral deposits. The project will provide new insights in the origin of the three types of REE mineral deposits. This new understanding of […]

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Preparation of Molecular Dye-Sensitized Photoelectrode for Light-Driven Processes under Low-Intensity Light Conditions

This project focuses on preparing photoelectrodes by designing molecular dye sensitizers, nanostructured substrates, integrating them and finally characterizing the photoelectrochemical properties of the photoelectrode under low-light conditions. By developing and optimizing the design of the photoelectrode, the project aims to enhance solar to chemical energy conversion processes for green fuel or high-added value products. The […]

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Design, synthesis and charaterization of new p-AQM macromolecules for electronics applications

This project focuses on synthesizing a new class of conjugated polymers incorporating stable, quinoidal units that enhance electronic properties, targeting applications in organic field-effect transistors (OFETs), organic solar cells, and organic electrochemical transistors (OECTs). By designing polymers that feature reduced bond-length alternation, these materials exhibit lower band gaps and high charge carrier mobilities, essential for […]

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Métallooligomères à base de porphyrines et de diketopyrrolopyrroles pour des applications de cellules solaires

Ce projet vise à fabriquer deux nouveaux polymères qui offrent des propriétés supérieures en vue de construire des cellules solaires plastiques. Ces propriétés consistent d’un meilleur empilement et d’une meilleure géométrie planaire pour améliorer le transport des charges, et de composantes judicieusement choisies pour améliorer la vitesse du photo-transfert du premier électron afin de minimiser […]

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Optimization and Control of A Piezoelectric Vibration Energy Harvester Integrated with A Non-Linear Flexible Manipulator

This project proposes the development of an innovative robotic system that utilizes piezoelectric energy harvesting to convert vibrations into usable energy. The system will be integrated with flexible robotic arms, enhancing their efficiency and sustainability. Collaborative simulations and experimental studies will be conducted at The University of the West Indies (UWI) and the University of […]

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Potential of Adapting the Novel Hydrothermal Carbonization Process as a Suitable Waste to Energy Technology

This Mitacs project focuses on evaluating the potential of adapting the novel Hydrothermal Carbonization technology as a suitable waste-to-energy (WtE) technology for various regions. A review of relevant literature has revealed that there is little to no research or comparative study conducted to identify the optimal conditions for energy recovery using the new Hydrothermal Carbonization […]

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Comprehensive analysis of the production of green hydrogen from selected biomass (cocoa pod husk, rice husk, coconut husk, sawdust, etc.) resources for assessment of the economic viability of the process.

This study seeks to conduct a comprehensive analysis to investigate the optimum process parameters for generating green hydrogen from waste materials (cocoa pod husk, rice husk, coconut husk, sawdust, etc.) and to assess the economic viability of the process. The use of the selected biomass as feedstock would provide a clearer scientific understanding of green […]

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ÉTUDE COMPARATIVE DU COUPLAGE DE COLLECTEURS SOLAIRES AVEC UNE THERMOPOMPE

Près de 98 % de l’énergie électrique québécoise provient de l’hydro-électricité, une source d’énergie propre et renouvelable. Il apparaît donc important d’utiliser au mieux cette énergie. Dans cette optique, le Québec devrait favoriser l’utilisation de pompes à chaleur qui possèdent des performances supérieures à celles des plinthes électriques. Leurs performances sont toutefois affectées à mesure […]

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L2M – A power converter for hybrid renewable energy systems consisting of wave, wind and solar energy to power remote communities in Newfoundland.

The government of Canada has been developing the Clean Electricity Regulations, which aims to reduce CO2 emissions to 45 percent below 2005 levels by 2030 and net-zero emissions by 2050. One main sustainability goal in the global power sector is to generate clean electricity using renewable energy sources. Hydro, Newfoundland and Labrador’s primary electricity generation […]

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L2M – SolarSail (Dual Axis Solar Tracking System for Marine Vessels)

Dual Axis Solar Tracking System for Marine Environments is a project that aims to integrate a solar tracking technology onboard a marine vessel. By integrating 2 different tracking methods in one system for improving the efficiency of tracking, further leading to improvement in energy production, this project aims to make this technology economically and technically […]

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