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Clean Tech » Emerging Concepts and Technologies Research Program

Eco-Friendly Fisheries

September 2023 – September 2024

Eco-Friendly Fisheries project aims to substantially reduce the fuel consumption, optimize by-catch avoidance, reduce time for search of resources and impact on the seabed.

Clean Tech » Emerging Concepts and Technologies Research Program

A Feasibility Study for Nature-Based Carbon Dioxide Removal Solutions at Nova Scotia Power’s Hydroelectric Facilities

September 2023 – September 2024

Rapid and widespread reduction of emissions are needed to reduce the risk of severe climate change; however, emission reductions will not be enough.

Clean Tech » Emerging Concepts and Technologies Research Program

Two-step CO2 Capture and Storage Technology using Seawater and Mineral Carbonation of Mine Water Pool of Sydney Coalfields

September 2023 – September 2024

The goal of this project is to develop a point-source carbon capture and storage technology that: 1) uses a capture medium constituted from seawater; and 2) employs a technique that permanently sequesters the captured carbon as metal carbonates using the contaminated water of flooded former mines

Clean Tech » Emerging Concepts and Technologies Research Program

High-performance hydrogen sensors for leak detection in transportation and industrial applications

September 2023 – September 2024

This project will develop hydrogen sensors with superior sensitivity, selectivity, and response times for early leak detection in marine and ground transportation sectors.

Clean Tech » Emerging Concepts and Technologies Research Program

Design and Construction of an On-Demand, Submerged Combustion, Direct-Contact Water Heater operating on Hydrogen for use in the Agricultural Sector

September 2023 – September 2024

Transitioning to a green hydrogen economy requires end-use applications. Some water heating units that currently operate on propane or natural gas may be able to safely operate on hydrogen-enriched natural gas mixtures (HENG) with up to 20–30% hydrogen with no modification.

Clean Tech » Emerging Concepts and Technologies Research Program

Green ammonia derived membranes & sorbents for direct air capture of carbon dioxide

September 2023 – September 2024

Carbon dioxide (CO2) induced global warming is an existential threat, prompting efforts to reduce net emissions of this greenhouse gas (GHG) to zero. But as CO2 levels are already dangerously high, removal of CO2 remains necessary even once the net-zero target is achieved.

Clean Tech » Emerging Concepts and Technologies Research Program

Heat Pump and Phase Change Thermal Energy Storage Feasibility Study

September 2023 – September 2024

The Applied Energy Research Lab at NSCC will lead a consortium of private and public sector partners to develop and evaluate electricity demand response solutions using air source heat pumps (ASHP) with advanced phase change material thermal energy storage (PCM-TES).

Tidal Energy » Technology

Imaging Sonar Data Automation Feasibility Study

May 2021 – June 2022

Multibeam imaging sonars can be used to monitor fish and marine mammal presence and behaviours in the near-field of tidal turbine installations, including evaluating avoidance, evasion, and potential blade strikes.

Tidal Energy » Tidal Resource Characterization and Modelling

The Vectron2 Project: Turbulence Measurements for the In-stream Tidal Energy Industry

March 2019 – November 2021

The Vectron is a new sensor used for measuring turbulence velocity within a tidal turbine’s swept area.  The Vectron has been successfully prototyped, where next steps are to take the technology to the ‘industry-ready’ stage of development and the focus of this project.

Tidal Energy » Technology

The Pathway Program: Validating reliable environmental monitoring for ocean energy projects

April 2019 – October 2021

OERA created The Pathway Program to solve a critical problem impeding the in-stream tidal energy industry: a lack of reliable and validated technologies and methods to monitor and report fish-turbine interactions in high-flow, highly turbulent environments, leading to regulatory uncertainty and i