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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

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

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.

Tidal Energy » Technology

Development of High Performance Tidal Turbine Rotors

January 2013 – October 2015

This research investigated and informed novel and cost-effective engineering solutions to extract and deliver energy from tidal flows.

Tidal Energy » Infrastructure and Best Practices

Value Proposition for Tidal Energy Development in Nova Scotia, Atlantic Canada and Canada

January 2014 – April 2015

This study shows there is substantial potential economic opportunity in building a tidal energy industry in Canada. It indicates that tidal energy could reduce our dependence on fossil fuels and create a new industry offering significant socio-economic benefits.

Tidal Energy » Tidal Resource Characterization and Modelling

Turbulent Scale and Wake Modeling on a Horizontal Axis Turbine

January – April 2015

This project aimed to accurately simulate turbulent flow over a scaled horizontal axis tidal turbine to resolve turbulence in the near and far field regions.

Tidal Energy » Marine Life

Assessing Marine Mammal Presence in and near the FORCE Crown Lease Area during Winter and Early Spring

October 2013 – February 2015

This study closes the winter/spring baseline data gap via deployments of multiple, calibrated C-PODs and an icListenHF hydrophone, for the deepest sites at the FORCE Lease Area.

Tidal Energy » Tidal Resource Characterization and Modelling

Turbulence and Bottom Stress in Minas Passage and Grand Passage

September 2011 – February 2015

This project aimed to investigate turbulence and bottom stress at two sites being targeted for in-stream tidal power development in Nova Scotia: Minas Passage in the Upper Bay of Fundy and Grand Passage, located between Brier and Long Island in the lower Bay of Fundy.

Tidal Energy » Seabed, Sediment, and Benthic

Seasonal Erodibility of Sediment in the Upper Bay of Fundy

February 2012 – January 2015

This project developed methods for studying sedimentation to the macro-tidal flats of the upper Bay of Fundy. The researchers looked at seasonal variation in the erodibility of sediments in tidal creeks and flats using a Gust Erosion Chamber and repeated grain size surveys.