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Decarbonizing Heat: Are Air-Source Heat Pumps the Solution for Canada?

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Innehåll tillhandahållet av ARC ENERGY RESEARCH INSTITUTE. Allt poddinnehåll inklusive avsnitt, grafik och podcastbeskrivningar laddas upp och tillhandahålls direkt av ARC ENERGY RESEARCH INSTITUTE eller deras podcastplattformspartner. Om du tror att någon använder ditt upphovsrättsskyddade verk utan din tillåtelse kan du följa processen som beskrivs här https://sv.player.fm/legal.

According to the IEA, heat accounts for almost half of final global energy consumption, with approximately two-thirds currently sourced from hydrocarbons. Net zero energy scenarios anticipate that heating can be predominantly electrified.

In pursuit of lower-carbon buildings, high-efficiency air-source heat pumps offer a promising decarbonization and energy reduction solution. Further, the Canadian federal government and some provinces support the transition to air-source heat pumps by subsidizing their purchases.
In this episode, Jackie and Peter review the ARC Energy Research Institute’s analysis of heat pumps for northern climates like Canada. Danielle Vitoff, Director of Energy Transition, Sustainability, and Infrastructure at Guidehouse, a global consulting firm, joins the discussion.

Key questions covered in this podcast include: How do air-source heat pumps operate, and what makes them so efficient? Why does the efficiency of a heat pump decline in colder temperatures? How do heat pumps' upfront capital and operating costs compare to alternatives like natural gas or fuel oil furnaces? How could broad-scale switching to electric heat pumps affect the electricity grid? Considering the cold climate, are air-source heat pumps a good fit for Canada?
Content referenced in this podcast:

Please review our disclaimer at: https://www.arcenergyinstitute.com/disclaimer/
Check us out on social media:
X (Twitter): @arcenergyinst
LinkedIn: @ARC Energy Research Institute

Subscribe to ARC Energy Ideas Podcast
Apple Podcasts
Amazon Music
Spotify

  continue reading

264 episoder

Artwork
iconDela
 
Manage episode 423066035 series 2452325
Innehåll tillhandahållet av ARC ENERGY RESEARCH INSTITUTE. Allt poddinnehåll inklusive avsnitt, grafik och podcastbeskrivningar laddas upp och tillhandahålls direkt av ARC ENERGY RESEARCH INSTITUTE eller deras podcastplattformspartner. Om du tror att någon använder ditt upphovsrättsskyddade verk utan din tillåtelse kan du följa processen som beskrivs här https://sv.player.fm/legal.

According to the IEA, heat accounts for almost half of final global energy consumption, with approximately two-thirds currently sourced from hydrocarbons. Net zero energy scenarios anticipate that heating can be predominantly electrified.

In pursuit of lower-carbon buildings, high-efficiency air-source heat pumps offer a promising decarbonization and energy reduction solution. Further, the Canadian federal government and some provinces support the transition to air-source heat pumps by subsidizing their purchases.
In this episode, Jackie and Peter review the ARC Energy Research Institute’s analysis of heat pumps for northern climates like Canada. Danielle Vitoff, Director of Energy Transition, Sustainability, and Infrastructure at Guidehouse, a global consulting firm, joins the discussion.

Key questions covered in this podcast include: How do air-source heat pumps operate, and what makes them so efficient? Why does the efficiency of a heat pump decline in colder temperatures? How do heat pumps' upfront capital and operating costs compare to alternatives like natural gas or fuel oil furnaces? How could broad-scale switching to electric heat pumps affect the electricity grid? Considering the cold climate, are air-source heat pumps a good fit for Canada?
Content referenced in this podcast:

Please review our disclaimer at: https://www.arcenergyinstitute.com/disclaimer/
Check us out on social media:
X (Twitter): @arcenergyinst
LinkedIn: @ARC Energy Research Institute

Subscribe to ARC Energy Ideas Podcast
Apple Podcasts
Amazon Music
Spotify

  continue reading

264 episoder

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