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The Ontario Climate Risk Workshop, held on October 30–31, 2024, brought together a diverse group of voices, including academics, government officials, private sector representatives, Indigenous leaders, NGOs, and community members, to collaborate and identify localized solutions for addressing climate risk.

A new technical brief from the Waterloo Climate Institute is urging policymakers to consider the full cycle of material use and associated services delivered by critical infrastructure —the “stock-flow-service” nexus—to ensure long-term sustainability and resilience for Small Island Developing States (SIDS).

Nancy Tapias Torrado, the newest member of the Waterloo Climate Institute, is part of a team of researchers that contributed to the “Advisory Opinion on Climate Emergency and Human Rights” of the Inter-American Court of Human Rights – a landmark decision on the obligations of States in the face of the climate emergency.

Environment and Arts student, Eloise Fan, reflects on how studying her twin passions led not only to a BES, but also to academic distinction. For Eloise Fan, studying at the University of Waterloo was never about choosing a single path — it was about creating one that merged her passions for theatre and climate change.  

A new technical brief from the Waterloo Climate Institute explores Direct Air Capture (DAC) as an innovative engineering approach to directly removing carbon dioxide (CO2) from the atmosphere. Contributing to the overall reduction of atmospheric CO2 levels, DAC has the potential to effectively mitigate climate change, when used in combination with permanent storage solutions. Authors Monica Ho, Vahid Barahimi and Climate Institute member Eric Croiset outline the current readiness of DAC technologies and acknowledge their limitations the latest brief.

In what could represent a milestone in ecological restoration, researchers have implemented a method capable of restoring peatlands at tens of thousands of oil and gas exploration sites in Western Canada. Researchers from the University of Waterloo led the project that involves lowering the surface of these decommissioned sites, known as well pads, and transplanting native moss onto them to effectively recreate peatlands.