Tod Creek watershed: Water quality report for the 2024-25 wet season

Ross, PS, Scott S and Noel M. 2026. Tod Creek watershed: Water quality report for the 2024-25 wet season. 3 of 4. Raincoast Conservation Foundation. https://doi.org/10.70766/42.6309

Team

  • Raincoast Healthy Waters: Sam Scott and Peter Ross
  • Friends of Tod Creek: Winona Pugh, Francis Pugh and Carmel Thomson
  • Tsartlip First Nation: Franklyn Sampson, Will Morris
  • CRD Hartland Landfill Staff

A watershed based approach to sampling

Published 2026 July 22.

Contributions by CRD Staff; Tsartlip First Nation: Franklyn Sampson and Will Morris; W̱SÁNEĆ Leadership Council: Joni Olsen; SGS Axys: Pam Mackenzie and Richard Grace; Fisheries and Oceans Canada: Xiangjun Liao, Andrew Ross, Neil Dangerfield; and Bonnie Lo.

Acknowledgements

We acknowledge the financial support of the Capital Regional District (Victoria). We thank CRD staff for feedback before and during sampling, and for helpful comments on earlier drafts of this report. We thank Joni Olsen at the W̱SÁNEĆ Leadership Council (WLC) and William Morris at Tsartlip First Nation for their support and guidance. We acknowledge the expert analytical support of Pam MacKenzie and Richard Grace at SGS-AXYS. We thank Xiangjun Liao, Andrew Ross and Neil Dangerfield at Fisheries and Oceans Canada for the provision of 6PPD-Q analysis. We thank Bonnie Lo for expert reviews. We thank Nicole Van Zutphen and Sherwin Arnott for report design. Photo credits: Sam Scott and Peter Ross. 

Executive summary

Water is essential for life, and steps are needed to understand, protect and restore its health in fish habitat throughout British Columbia. The Raincoast Healthy Waters program was launched in 2023 to establish community-oriented water pollution monitoring in select BC watersheds. Two Healthy Waters sampling events take place every year in each watershed: the dry season (summer), and the wet season (winter). This wet season report from winter 2024-25 highlights results from one sampling event: the third seasonal sampling, which followed the first dry season in 2024 and wet season 2023. This was carried out with the support and participation of the Capital Regional District (CRD) and Tsartlip First Nation. 

Briefly, the Healthy Waters team sampled the Tod Creek watershed on November 20, 2024. The team worked with CRD, Tsartlip First Nation and community volunteers to first determine basic water properties (temperature, conductivity, pH, dissolved oxygen and turbidity) in situ. Water samples were collected from six water categories, including source water (3 samples), stream and river water (3 samples), road runoff (3 samples), tap water (10 samples – 9 from the Sooke supply and 1 from groundwater were pooled into a single composite sample) and marine water (3 samples), alongside surface water samples collected in the areas surrounding the Hartland landfill (1 sample). The samples were pooled into composites by category and then analysed for coliform (3), nutrients (6), physical parameters, metals (37), pesticides (62), polycyclic aromatic hydrocarbons (PAHs; 76), pharmaceuticals and personal care products (PPCPs; 141), polychlorinated biphenyls (PCBs; 209), alkylphenol ethoxylates (APEs; 4), bisphenols (BPs; 6), per- and poly-fluoroalkyl substances (PFAS; 40), sucralose and 6PPD-Quinone.

We detected 105 contaminants out of 577 measured in the stream and river category – i.e. fish habitat – for the Tod Creek watershed, excluding nutrients, fecal coliform and physical parameters. This suggests that, overall, Tod Creek water quality during the wet season was moderate. Additional sampling and an integrated exploration of all data will provide additional insight into the activities that are impacting the health of this valued watershed.

Tod Creek watershed

Map with a green polygon outlining the Tod Creek watershed and various coloured stars defining sampling sites as Hartland, Marine, Stream and river, Road runoff, and Source.
The Tod Creek watershed runs north from Prospect Lake, along West Saanich Road down to Tod Inlet, and covers an area of 24 km2.  Sampling sites (detailed in Table 1 below) were distributed throughout the watershed in order to capture a wide spatial range for our assessment of the health of fish habitat (Map by Brooke Gerle / Raincoast Conservation Foundation). We only sampled one of the three Hartland sites due to dry weather conditions; this site was the Willis Point Rd site to the North of Hartland. This sample may be influenced by a combination of landfill and road runoff.

Key findings

  • This assessment of water quality in Tod Creek reflects the third of four site visits, and the second wet season sampling during the winter. Our understanding of water quality in the Tod Creek watershed is growing as we complete additional sampling, and explore the entire dataset.
  • Our study design was not designed to explicitly address the performance of Hartland Landfill, but rather to provide an integrated ‘snapshot’ of water quality in six categories of water in the Tod Creek watershed, including source, stream & river, road runoff, tap, marine and Hartland drainage samples.
  • The Hartland drainage water sample had the highest wet season 2024 concentrations of E. coli, nitrate, PCBs and PFAS. Some of these may be attributed to quarry activities and aggregate storage, with CRD working to address concerns that had been previously noted. Additional influences from vehicular and machine operations in the landfill may contribute to some of the water quality issues noted here.
  • The road runoff sample had the highest concentration of bisphenols, PPCPs, and sucralose. 
  • Stream and river water had the highest concentration of pesticides.
  • Source water had the highest concentration of APEs.
  • The pooled tap water sample had the highest concentrations of PAHs; there is currently DWQG for only one PAH and it was not exceeded. 
  • Tap water, source, stream and river, and marine water were less contaminated than the other water categories in the wet season.
  • Overall, the Tod Creek watershed had moderate water quality in the wet season:
  • There were 13 exceedances of Canadian Environmental Quality Guidelines for the protection of aquatic life.
    • Exceedances included:
      • PCBs, nitrate, aluminum, copper and iron for Hartland drainage; 
      • low dissolved oxygen and high iron for source; 
      • low dissolved oxygen for stream and River; 
      • low dissolved oxygen and high aluminum, copper and iron for road runoff; 
      • PCBs in marine water.
    • There was 1 exceedance of Health Canada Drinking Water Quality Guidelines.

Background

Raincoast’s Healthy Waters Program (https://www.raincoast.org/waters/) delivers high-resolution, community-oriented water quality analysis to watersheds across southern British Columbia. The goal of Healthy Waters is to empower communities with the understanding of the status of water quality in their watersheds, to allow for local advocacy regarding both point and nonpoint source pollution. 

The Capital Regional District (CRD) serves approximately 440,000 people from 13 municipalities and three electoral areas on southern Vancouver Island and the Gulf Islands.  The traditional territories of many First Nations span portions of the region and 11 of those Nations hold reserve lands throughout the capital region.  

Community and Indigenous concerns expressed about possible threats to water quality in Tod Creek sparked interest in this project, but Tod Creek is at the receiving end of numerous activities and potential contaminant sources. Of note is that local agriculture, the Heals Rifle Range as a federal contaminated site, domestic septic fields, the Hartland Landfill operation,  and other sectors also are likely to influence water quality in Tod Creek. Findings from this and future sampling events will provide insight into the potential for each of these sectors to explain any degradation of water quality – an important element of protection and restoration.

Tsartlip First Nation is one of two current members of the W̱SÁNEĆ Leadership Council (WLC); the second is Tseycum First Nation. The Tsartlip reserve is situated in Brentwood Bay, BC.  The WLC was formed to create a unified entity responsible for representing the common interests of the W̱SÁNEĆ Nations. The W̱SÁNEĆ Peoples have been responsible for stewardship of the land since time immemorial.

Illustration of a watershed from mountain source to urban city and sea, with icons pointing out source water, freshwater, urban runoff, tap water, and marine environment.

A watershed based approach to sampling

We collect samples from five different categories of water in each of our partner watersheds: from source water, upstream of human impacts, down to the marine environment. 

Source water serves as an upstream reference sample, allowing us to determine which contaminants are being introduced as water traces its path down through the watershed. 

Stream and river samples allow us to investigate the quality of fish habitat directly, by collecting samples from streams, creeks, and rivers used by salmon and other fish species (either currently or historically). 

Road runoff serves as an impacted sample category of current concern, as many contaminants, including  PAHs, metals, surfactants and chemicals such as 6-PPD quinone can be washed off roadways and into fish habitat during rain events. 

We include tap water samples in our analysis as a way to bring our homes into the conversation – we borrow water from the environment in the form of municipal or well water, and generally return it to aquatic habitats in a more-degraded state in the form of storm and sewage effluent (treated or untreated).

Marine water samples provide insight into those contaminants that may degrade fish and whale habitat in the ocean, and enable an understanding of the contribution of land-based pollutants from the adjacent watershed to the marine environment.

Collectively, the lessons learned from our partnering watersheds will contribute to a greater understanding of threats to water quality across British Columbia, and ultimately what policy changes can be implemented to preserve the quality of water for the future of salmon, whales, and people.