Climate change

We use a comprehensive approach to inform actions that benefit salmon ecosystems in a changing climate.

Photo by Fernando Tessa.

Climate change is causing severe hydrological shifts in salmon streams through long-term reductions in snowpack, earlier spring melts, increased frequency of heat waves, atmospheric rivers and flood events, and increased drought frequency. These impacts create conditions unsuitable for wild salmon to recover and thrive.

Juvenile salmon in a fish viewfinder.
Photo by Alex Harris / Raincoast Conservation Foundation.
School of coho in a river.
Photo by Fernando Lessa.

Unsustainable land use is compounding the impacts of climate change

Unsustainable land use occurring throughout the province is making these conditions even worse. Clear-cut logging, mining, and water withdrawal for industry and agriculture alter salmon habitat, reduce streamflow, and increase water temperatures. Stream-type Chinook and coho salmon that spend a year in freshwater before migrating to the ocean are particularly vulnerable to degraded freshwater habitat caused by logged forests, fires, droughts, and floods.

Forestry degrades salmon habitat

Logging can alter the delivery and storage of water, nutrients, wood, and sediment in streams. This results in changes to the habitat, growth, and survival of juvenile salmon. Clear-cut logging can increase turbidity in salmon-bearing streams affecting survival of eggs and fry, while the conversion of old growth forest into plantation monocultures can lower summer stream flow and increase temperatures. The legacies of antiquated forest management that prioritizes harvestable timber above all other values confounds the effects of climate change on freshwater habitat quality and quantity for salmon.

A rivers running through the forest right next to a large clearcut area.
Four small salmon swimming near the bottom of the water.
Photo by Fernando Lessa.

Wildfires impact salmon

Recent wildfires in BC have brought climate-change related effects into focus: wildfires are getting larger, more intense, and more frequent. The suppression of wildfires can increase fuel load and the corresponding severity of wildfires, particularly in the drier and hotter regions of the province.

The loss of vegetation and alteration of soil properties from hot wildfires can dramatically change the way rainfall permeates soil, and can cause increased runoff, sedimentation, and landslides that can smother incubating salmon eggs. Additionally, fire retardants used to suppress fires contain compounds that are toxic to aquatic life and can increase fish mortality, particularly for young Chinook salmon. 

Floods impacting salmon

The forest management paradigm of British Columbia has increased the magnitude of and frequency of the biggest floods. In snow-dominant watersheds, such as those of the BC interior, reduced forest cover from logging leads to faster snowmelt and larger floods. Increased flood risk can degrade water quality through increased sedimentation and contaminants, and can kill incubating salmon eggs from riverbed scouring.

Underwater image of salmon swimming.
Photo by Fernando Lessa.
Coho salmon swimming in a river.
Photo by Fernando Lessa.

Engaging with decision-makers

Now is the time to improve federal and provincial land-use policies for the health and climate resiliency of ecosystems and to advance the recovery of at-risk salmon populations. These policies must support freshwater security at the community level and uplift the rights and priorities of Indigenous peoples.

Raincoast is engaging with decision-makers at all levels of government to advocate for science-based policy solutions that ensure wild salmon are resilient in a changing climate.   

Recent reports

Recent articles

Juvenile sockeye infected with sea lice as they migrate past fish farms in the Discovery Islands

Seeing is Believing

A personal understanding of the places we are trying to protect is requisite for working as a Raincoaster. In this spirit, members of our salmon aquaculture team climbed aboard the SV Achiever last month and embarked on a journey of the Great Bear Rainforest. Under the wing of Alexandra Morton, we skirted the shores of…
Nicola Temple holds up a ziploc with a small salmon fry in it during field work in the Great Bear Rainforest.

The Secret Life of Salmon

With each step my foot sinks into a thick mat of woven moss and with each step I wonder whether there is anything beneath this mat to support my weight. I step cautiously, just in case, but I’m also trying to keep up with my partner, Chester Starr (the Lone Wolf), who moves swiftly through…
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A critical assessment of the BC Central Coast Land & Resource Management Plan

This report is a critical assessment of protection for key wildlife & salmon habitats under the proposed BC Central Coast Land & Resource Management Plan undertaken by Dr. Paul Paquet, Dr. Chris Darimont, Dr. John Nelson and Katrina Bennett. The analysis focuses on salmon habitat, wolf homesites and deer winter range. The findings indicate that…
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Scientific Criteria for Evaluation and Establishment of Grizzly Bear Management Areas (2004)

Grizzly Bear Management Areas (GBMAs) have been a focal part of the British Columbia (BC) government’s Grizzly Bear Conservation Strategy since 1995, and the BC government’s Independent Scientific Panel again recommended in 2003 that they be implemented with provisions to maintain connectivity between populations. In order to develop a conservation biology based model for a…
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Scientific Criteria for Evaluation and Establishment of GBMAs: Exec Summary

Executive summary and recommendations only. View the report in .PDF
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Connectivity where the land meets the sea

Paquet, P.C., C.T. Darimont, F. M. Moola, and C. Genovali. 2005. Connectivity where the land meets the sea – preserving the last of the best. Wild Earth 14: 21-25 (Peer edited). View the paper in .PDF
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Range expansion by moose into coastal temperate rainforests of British Columbia, Canada

Darimont, C.T., P.C. Paquet, T.E. Reimchen, and V. Crichton. 2005. Range expansion by moose into coastal temperate rainforests of British Columbia, Canada. Diversity and Distributions 11: 235-239. View the paper in .PDF
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Predators in natural fragments: foraging ecology of wolves in British Columbia’s central and North Coast archipelago

Darimont, C.T., M.H.H. Price, N.N. Winchester, J. Gordon-Walker, and P.C. Paquet. 2004. Predators in natural fragments: foraging ecology of wolves of British Columbia’s central and north coast archipelago. Journal of Biogeography 31: 1867-1877. View the paper in .PDF