Oil and chemical spill tracking

Spills of oil and chemicals into freshwater and ocean environments have killed fish, degraded habitat, and led to closures of commercial, recreational, and Indigenous fisheries. Raincoast’s Healthy Waters Program is positioned to collect data at the scene of a spill and collaborate with various organizations and First Nations to understand the impact of a spill. 

Tracker will host a number of rugged analytical instruments, and enable the measurement of several contaminants in the field, including coliform bacteria, nutrients, metals, pesticides, and tracers of wastewater effluent.
Photo by Peter Ross.
Two sockeye salmon swimming in a river.
Photo by Fernando Lessa.

Spills happen

Spills originate from all manner of accidents. The 2005 train derailment that spilled caustic soda into the Cheakamus River that killed 500,000 fish, The 2015 spill of 3,000 L of Bunker C oil from the MV Marathassa into English Bay. The 2020 fire aboard the MV ZIM Kingston in Juan de Fuca Strait that resulted in the loss of 104 mixed cargo shipping containers into the ocean. Each and every accident is bad news, and threatens the health of fish and whales, and contributes to the degradation of their habitats.

Being prepared is key

Given the sudden and unpredictable nature of oil and chemical spills, our oil and chemical spill response work entails being agile and available for support to First Nations, government agencies, and industry during a major spill. We are developing science protocols, and acquiring sampling kits, field equipment, and safety gear, and are poised to deploy our team to the scene of a spill. 

Being prepared on all fronts is key to limiting the damage from a spill. We recognize that with spills, it’s not a matter of if, but when. Research and monitoring to confirm the origin of the spill, track the fate of the spilled product, and monitor the recovery of ecosystem components routinely fails to be a priority. We will deploy expert capacity where and when needed, and work to prevent harm to valued ecosystem components.

Two people working together to collect water samples in a farm field with the mountains in the background.
Photo by Alex Harris.
https://www.raincoast.org/reports/flood

Semá:th X̱ó:tsa (Sumas Lake) Floods of 2021

The catastrophic floods of late 2021 in southern British Columbia (Canada) and neighbouring Washington State (USA) destroyed homes, farms and businesses, with excess water spilling debris, animal carcasses and diesel fuel into historically productive fish habitat. 

We assembled a team to assess water quality in the former Semá:th X̱ó:tsa (Sumas Lake) area of the Fraser Valley over a seven-week period after the floods. We collected water samples from 11 surface water sites and four groundwater sites for comprehensive contaminant analysis and a subsequent risk-based evaluation. We measured 379 analytes (chemical components and bacteria), including 262 anthropogenic contaminants. We examined excess nutrients, metals, fecal coliform, hydrocarbons, pesticides, pharmaceuticals, and personal care products, perfluorinated compounds, sucralose, and tire-related chemicals.

Recent articles

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Juvenile Salmon Migration Mapping: A Pilot Study in Roscoe Inlet

The purpose of this pilot study was to investigate whether it is feasible to undertake a large-scale juvenile salmon migration mapping project on the central coast. View the report in .PDF
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Stable isotopic niche predicts fitness of prey in a wolf-deer system

Darimont, C.T., P.C. Paquet and T.E. Reimchen. 2007. Stable isotopic niche predicts fitness in a wolf-deer system. Biological Journal of the Linnaean Society. 90:125-137 Isotope niche predicts fitness. pdf
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Salmon in the Great Bear Rainforest

This popular summary gives an overview of the importance of salmon in the ecosystem and Raincoast’s work to protect the abundance and diversity of salmon. Salmon in the Great Bear Rainforest
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The influence of natural landscape fragmentation and resource availability on connectivity and distribution of marine gray wolf (Canis lupus) populations on the Central Coast, British Columbia, Canada

Paquet, P.C., S.M. Alexander, P.L. Swan, and C.T. Darimont. 2006. The influence of natural landscape fragmentation and resource availability on connectivity and distribution of marine gray wolf (Canis lupus) populations on the Central Coast, British Columbia, Canada. In Crooks, K. and M.A. Sanjayan (Eds.) Connectivity Conservation. Cambridge University Press. Cambridge, UK. Landscape fragmentation & wolves…
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Death by a Thousand Cuts: The importance of small streams on British Columbia’s central and north coasts (2005)

This report describes the role of small salmon runs in the overall structure and genetics of salmon populations. It is a response to the increased effort of federal monitoring of large salmon-bearing streams, at the expense and health of small runs. Death by a thousand cuts
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Early ontogenetic diet of wolves

Bryan, J., CT Darimont, T.E. Reimchen, and P.C. Paquet. 2006. Early ontogenetic diet of wolves. Canadian Field-Naturalist. 20:61-66 Wolf diet in pdf
A deer standing on a rock next to a body of water.

A Rainforest Awakening

by Chris Genovali January 2007 From Victoria, B.C. Last fall, Raincoast’s wolf team conducted a ten-day expedition on our research vessel Achiever.  We collected genetic samples from areas in the Great Bear Rainforest we had not yet visited and to re-visit wolf home sites we had previously identified. One evening, we anchored by a wolf hot spot….
Fish farms on the BC coast threaten wild salmon.

A Day to be Heard

A nation’s stand against open-net salmon farming and an appeal to BC’s Special Committee on Sustainable Aquaculture