Ontario Chlorophyll a Data: Turkey Lakes Watershed and Quinn Lake.

PURPOSE:

Chlorophyll a is a photosynthetic pigment common to aquatic algae, and its measurement can provide an estimate of free-floating algae abundance in an aquatic system. For more than 40 years, the Fisheries and Oceans Canada - Great Lakes Laboratory for Fisheries and Aquatic Sciences (DFO-GLLFAS) office in Sault Ste. Marie Ontario has collected water samples for chlorophyll a spectrophotometric analysis, producing data in the form of mg/m3. The collection of chlorophyll a data was generally conducted to assist in characterizing the aquatic systems level of primary productivity, since that can influence fish abundance. This was a supplementary measure of the quality of fish habitat in these systems for a variety of fish-related projects of relevance to DFO’s mandate. Consistency of data collection was dependent on the duration of each project and funding available.

DESCRIPTION:

The initial study collected chlorophyll a data from the five lakes in the Turkey Lakes Watershed (TLW – Upper and Lower Batchawana Lakes, Wishart Lake, Little Turkey Lake and Turkey Lake) as well as Quinn Lake which is located outside of the TLW (see Smokorowski et al. 2006) in partnership with Environment and Climate Change Canada (ECCC) and Natural Resources Canada (NRCAN), as part of Canada’s Acid Rain Initiative. The TLW study was established in 1979 to evaluate the impacts of acid rain on terrestrial and aquatic ecosystems. This dataset encompasses chlorophyll a data collected from five lakes in the TLW and Quinn Lake (data also collected by the Canadian Wildlife Service and Environment and Climate Change Canada) from 1983 - 2010 with some gaps of varying duration (Webster et al., 2021). Note that an experimental habitat removal took place in some TLW lakes and Quinn Lake in 1999 and 2000. Specifically, in autumn of 1999, 50% of the coarse woody material was removed from the shorelines of Little Turkey Lake and Quinn Lake, and in autumn of 2000, 50% of the course woody material was removed from Wishart Lake shoreline (details available in Smokorowski et al., 2006).

Methods Summary:

Sampling was only conducted during the open water season and the frequency and extent of sampling frequency in each waterbody varied and was project- and funding-dependent. There are no chlorophyll a data for the years 1986, 1989 – 1990, 1996 – 1997, 2006-2007 and 2009.

Sampling was accomplished by rinsing on site an appropriately-cleaned 1 L, brown-opaque polyethylene bottles at least three times. For hand draw samples, the bottle was immersed sub-surface (less than 0.5 meters) to collect the sample. Composite tube samples were collected using an integrated water sampling tube that collected epilimnion water from the entire water column to a depth of 5 meters. Up to five - 1 L (1000 mL) samples were collected per station and returned to the lab on ice. Each 1 L sample was filtered using glass fiber filters (Whatman GF/C, 42.5 mm) within one day of sampling, and then frozen prior to standard chlorophyll a analysis (American Public Health Association [APHA] 1985). From 1983-1998, Chlorophyll a concentrations (mg/L) was calculated based on APHA 1985; from 1998 to present the calculation was based on APHA (1998).

The sample dataset information includes the georeferenced sampling locations, the raw data for chlorophyll a calculations, and the calculated chlorophyll a concentrations using both the APHA (1985) and APHA (1998) methods.

This dataset was published in partnership with the Canadian Institute of Ecology and Evolution - Living Data Project, which was funded by a CREATE grant from the Natural Science and Engineering Research Council of Canada. We would like to recognize Caroline Dallstream for her effort in publishing this dataset.

SAMPLING METHODS:

Methods Summary:

Sampling was only conducted during the open water season and the frequency and extent of sampling frequency in each waterbody varied and was project- and funding-dependent. There are no chlorophyll a data for the years 1986, 1989 – 1990, 1996 – 1997, 2006-2007 and 2009. See

Sampling was accomplished by rinsing on site an appropriately-cleaned 1 L, brown-opaque polyethylene bottles at least three times. For hand draw samples, the bottle was immersed sub-surface (less than 0.5 meters) to collect the sample. Composite tube samples were collected using an integrated water sampling tube that collected epilimnion water from the entire water column to a depth of 5 meters. Up to five - 1 L (1000 mL) samples were collected per station and returned to the lab on ice. Each 1 L sample was filtered using glass fiber filters (Whatman GF/C, 42.5 mm) within one day of sampling, and then frozen prior to standard chlorophyll a analysis (American Public Health Association [APHA] 1985). From 1983-1998, Chlorophyll a concentrations (mg/L) was calculated based on APHA 1985; from 1998 to present the calculation was based on APHA (1998).

The sample dataset information includes the georeferenced sampling locations, the raw data for chlorophyll a calculations, and the calculated chlorophyll a concentrations using both the APHA (1985) and APHA (1998) methods.

USE LIMITATION:

To ensure scientific integrity and appropriate use of the data, we would encourage you to contact the data custodian.

Jeux de données disponibles au téléchargement

Informations supplémentaires

Champ Valeur
Dernière mise à jour octobre 20, 2025, 02:30 (TU)
Créé octobre 20, 2025, 02:30 (TU)
Domaine / Sujet
Domaine ou sujet du jeu de données catalogué.
Biota, Environment, Inland Waters
Titre
Titre du jeu de données.
Ontario Chlorophyll a Data: Turkey Lakes Watershed and Quinn Lake.
Description
Une description du jeu de données.

PURPOSE:

Chlorophyll a is a photosynthetic pigment common to aquatic algae, and its measurement can provide an estimate of free-floating algae abundance in an aquatic system. For more than 40 years, the Fisheries and Oceans Canada - Great Lakes Laboratory for Fisheries and Aquatic Sciences (DFO-GLLFAS) office in Sault Ste. Marie Ontario has collected water samples for chlorophyll a spectrophotometric analysis, producing data in the form of mg/m3. The collection of chlorophyll a data was generally conducted to assist in characterizing the aquatic systems level of primary productivity, since that can influence fish abundance. This was a supplementary measure of the quality of fish habitat in these systems for a variety of fish-related projects of relevance to DFO’s mandate. Consistency of data collection was dependent on the duration of each project and funding available.

DESCRIPTION:

The initial study collected chlorophyll a data from the five lakes in the Turkey Lakes Watershed (TLW – Upper and Lower Batchawana Lakes, Wishart Lake, Little Turkey Lake and Turkey Lake) as well as Quinn Lake which is located outside of the TLW (see Smokorowski et al. 2006) in partnership with Environment and Climate Change Canada (ECCC) and Natural Resources Canada (NRCAN), as part of Canada’s Acid Rain Initiative. The TLW study was established in 1979 to evaluate the impacts of acid rain on terrestrial and aquatic ecosystems. This dataset encompasses chlorophyll a data collected from five lakes in the TLW and Quinn Lake (data also collected by the Canadian Wildlife Service and Environment and Climate Change Canada) from 1983 - 2010 with some gaps of varying duration (Webster et al., 2021). Note that an experimental habitat removal took place in some TLW lakes and Quinn Lake in 1999 and 2000. Specifically, in autumn of 1999, 50% of the coarse woody material was removed from the shorelines of Little Turkey Lake and Quinn Lake, and in autumn of 2000, 50% of the course woody material was removed from Wishart Lake shoreline (details available in Smokorowski et al., 2006).

Methods Summary:

Sampling was only conducted during the open water season and the frequency and extent of sampling frequency in each waterbody varied and was project- and funding-dependent. There are no chlorophyll a data for the years 1986, 1989 – 1990, 1996 – 1997, 2006-2007 and 2009.

Sampling was accomplished by rinsing on site an appropriately-cleaned 1 L, brown-opaque polyethylene bottles at least three times. For hand draw samples, the bottle was immersed sub-surface (less than 0.5 meters) to collect the sample. Composite tube samples were collected using an integrated water sampling tube that collected epilimnion water from the entire water column to a depth of 5 meters. Up to five - 1 L (1000 mL) samples were collected per station and returned to the lab on ice. Each 1 L sample was filtered using glass fiber filters (Whatman GF/C, 42.5 mm) within one day of sampling, and then frozen prior to standard chlorophyll a analysis (American Public Health Association [APHA] 1985). From 1983-1998, Chlorophyll a concentrations (mg/L) was calculated based on APHA 1985; from 1998 to present the calculation was based on APHA (1998).

The sample dataset information includes the georeferenced sampling locations, the raw data for chlorophyll a calculations, and the calculated chlorophyll a concentrations using both the APHA (1985) and APHA (1998) methods.

This dataset was published in partnership with the Canadian Institute of Ecology and Evolution - Living Data Project, which was funded by a CREATE grant from the Natural Science and Engineering Research Council of Canada. We would like to recognize Caroline Dallstream for her effort in publishing this dataset.

SAMPLING METHODS:

Methods Summary:

Sampling was only conducted during the open water season and the frequency and extent of sampling frequency in each waterbody varied and was project- and funding-dependent. There are no chlorophyll a data for the years 1986, 1989 – 1990, 1996 – 1997, 2006-2007 and 2009. See

Sampling was accomplished by rinsing on site an appropriately-cleaned 1 L, brown-opaque polyethylene bottles at least three times. For hand draw samples, the bottle was immersed sub-surface (less than 0.5 meters) to collect the sample. Composite tube samples were collected using an integrated water sampling tube that collected epilimnion water from the entire water column to a depth of 5 meters. Up to five - 1 L (1000 mL) samples were collected per station and returned to the lab on ice. Each 1 L sample was filtered using glass fiber filters (Whatman GF/C, 42.5 mm) within one day of sampling, and then frozen prior to standard chlorophyll a analysis (American Public Health Association [APHA] 1985). From 1983-1998, Chlorophyll a concentrations (mg/L) was calculated based on APHA 1985; from 1998 to present the calculation was based on APHA (1998).

The sample dataset information includes the georeferenced sampling locations, the raw data for chlorophyll a calculations, and the calculated chlorophyll a concentrations using both the APHA (1985) and APHA (1998) methods.

USE LIMITATION:

To ensure scientific integrity and appropriate use of the data, we would encourage you to contact the data custodian.

Étiquettes / Mots-clés
Mots-clés/étiquettes catégorisant le jeu de données.
Format (CSV, XLS, TXT, PDF, etc.)
Format de fichier du jeu de données.
Taille du jeu de données
Taille du jeu de données en mégaoctets.
Identifiant des métadonnées
Identifiant des métadonnées — peut être utilisé comme identifiant unique pour l’entrée du catalogue.
Date de publication
Date de publication du jeu de données.
2025-04-15
Période temporelle des données (date de début)
Date de début des données dans le jeu de données.
Période temporelle des données (date de fin)
Date de fin des données temporelles du jeu de données.
Zone géospatiale couverte
Région spatiale ou lieu nommé couvert par le jeu de données.
Champ Valeur
Catégorie d’accès
Type d’accès accordé pour le jeu de données (ouvert, restreint, service, etc.).
Licence
Licence utilisée pour accéder au jeu de données.
Open Government Licence - Canada
Restrictions d’utilisation
Restrictions d’utilisation des données.
Emplacement
Emplacement du jeu de données.
https://open.canada.ca/data/en/dataset/7565f0e2-0e56-11f0-9b16-cdaf3d076dbf
Service de données
Service de données pour accéder à un jeu de données.
Propriétaire
Propriétaire du jeu de données.
Fisheries and Oceans Canada | Pêches et Océans Canada
Point de contact
Qui contacter concernant l’accès ?
Government of Canada; Fisheries and Oceans Canada; Great Lakes Laboratory for Fisheries and Aquatic Sciences, 705-206-1714, [email protected]
Courriel du point de contact
Courriel à utiliser pour l’accès ?
Éditeur
Éditeur du jeu de données.
Courriel de l’éditeur
Adresse courriel de l’éditeur.
[email protected]
Auteur
Auteur du jeu de données.
Courriel de l'auteur
Adresse courriel de l’auteur.
Date d’accès
Date à laquelle les données et métadonnées ont été consultées.
Champ Valeur
Identifiant
Identifiant unique du jeu de données.
Langue
Langue(s) du jeu de données
Lien vers la description du jeu de données
Une URL vers un document externe décrivant le jeu de données.
Identifiant persistant
Les données sont identifiées par un identifiant persistant.
Identifiant globalement unique
Les données sont identifiées par un identifiant persistant et globalement unique.
Contient des données sur des individus
Le jeu de données contient-il des données sur des individus ?
Contient des données identifiables sur des individus
Le jeu de données contient-il des données identifiables sur des individus ?
Contient des données autochtones
Le jeu de données contient-il des données sur des communautés autochtones ?
Type de portail
Type de plateforme du portail source.
Champ Valeur
Version
Version du jeu de données
None
Source
Source du jeu de données.
None
Notes de version
Notes de version à propos du jeu de données.
Est une version d’un autre jeu de données
Lien vers le jeu de données dont celui-ci est une version.
Autres versions
Lien vers les jeux de données qui en sont des versions.
Texte de provenance
Texte de provenance des données.
URL de provenance
URL de provenance des données.
Résolution temporelle
Décrit la granularité des données temporelles dans le jeu de données.
Résolution géospatiale en mètres
Décrit la granularité (en mètres) des données géospatiales dans le jeu de données.
Résolution géospatiale (par régions)
Décrit la granularité (par régions) des données géospatiales dans le jeu de données.
Champ Valeur
Permission de la communauté autochtone
Qui détient la permission de la communauté autochtone. Qui contacter pour l’accès à un jeu de données concernant des communautés autochtones.
Permission communautaire
Permission communautaire (qui a accordé la permission).
Les communautés autochtones concernées par le jeu de données
Communautés autochtones dont sont issues les données.
Champ Valeur
Nombre de lignes de données
Pour un jeu de données tabulaire, nombre total de lignes.
Nombre de colonnes de données
Pour un jeu de données tabulaire, nombre total de colonnes uniques.
Nombre de cellules de données
Pour un jeu de données tabulaire, nombre total de cellules contenant des données.
Nombre de relations de données
Pour un jeu de données RDF, nombre total de triplets.
Nombre d’entités
Pour un jeu de données RDF, nombre total d’entités.
Nombre de propriétés de données
Pour un jeu de données RDF, nombre total de propriétés uniques utilisées par les triplets.
Qualité des données
Décrit la qualité des données du jeu de données.
Métrique de qualité des données
Une métrique utilisée pour mesurer la qualité des données, telle que les valeurs manquantes ou les formats invalides.

0 Commentaires

Please login or register to comment.