Biological Detoxification of Cyanide in Northern Environments

MERG (Mining Environment Research Group) and Viceroy's Brewery Creek Mine commissioned a study by Microbial Technologies Inc., to determine the viability of biological detoxification of spent heaps in Northern (Arctic) environments. This approach has been applied at a small number of mine sites in North America, but it remains a relatively unproven technology. In particular, the detoxifying ability of microorganisms indigenous to Northern mine sites remained to be demonstrated. This approach may be advantageous for the Yukon Territory because it relies on bacteria grown on site to destroy cyanide, as compared with importing (potentially large quantities) of hydrogen peroxide.

The study was designed to answer two questions:: 1) Is biological detoxification a feasible option for Brewery Creek Mine? 2) Is this process likely to be applicable to other similar operations in the Yukon Territory and other Northern locations?

There is virtually no information on the abundance and distribution of bacteria capable of degrading cyanide in the Arctic. It is known that different bacterial species degrade different metal-cyanide complexes, such as iron-cyanide or nickel-cyanide complexes. Thus, it is important to determine both the abundance and the metabolic diversity of micro-organisms metabolizing metal-cyanide complexes. The first phase of the study involved collecting, enumerating, and culturing such micro-organisms from the mine sites.

Cyanide-degrading bacteria may be present in the mine environment, but they may not be able to detoxify the ore from the spent heap. For example, they may be incapable of colonizing the ore or they may be inhibited by high cyanide concentrations or some toxicant in the ore (e.g., arsenic, mercury). Phase 2 of the study was a column study to determine if bacteria collected and grown in Phase 1 can detoxify spent ore collected from Brewery Creek's heap. Their ability to destroy cyanide was compared with that of hydrogen peroxide, the conventional chemical treatment of spent heaps.

Datasets available for download

Additional Info

Field Value
Last Updated October 20, 2025, 02:20 (UTC)
Created October 20, 2025, 02:20 (UTC)
Domain / Topic
Domain or topic of the dataset being cataloged.
Title
Title for the Dataset.
Biological Detoxification of Cyanide in Northern Environments
Description
A description of the dataset.

MERG (Mining Environment Research Group) and Viceroy's Brewery Creek Mine commissioned a study by Microbial Technologies Inc., to determine the viability of biological detoxification of spent heaps in Northern (Arctic) environments. This approach has been applied at a small number of mine sites in North America, but it remains a relatively unproven technology. In particular, the detoxifying ability of microorganisms indigenous to Northern mine sites remained to be demonstrated. This approach may be advantageous for the Yukon Territory because it relies on bacteria grown on site to destroy cyanide, as compared with importing (potentially large quantities) of hydrogen peroxide.

The study was designed to answer two questions:: 1) Is biological detoxification a feasible option for Brewery Creek Mine? 2) Is this process likely to be applicable to other similar operations in the Yukon Territory and other Northern locations?

There is virtually no information on the abundance and distribution of bacteria capable of degrading cyanide in the Arctic. It is known that different bacterial species degrade different metal-cyanide complexes, such as iron-cyanide or nickel-cyanide complexes. Thus, it is important to determine both the abundance and the metabolic diversity of micro-organisms metabolizing metal-cyanide complexes. The first phase of the study involved collecting, enumerating, and culturing such micro-organisms from the mine sites.

Cyanide-degrading bacteria may be present in the mine environment, but they may not be able to detoxify the ore from the spent heap. For example, they may be incapable of colonizing the ore or they may be inhibited by high cyanide concentrations or some toxicant in the ore (e.g., arsenic, mercury). Phase 2 of the study was a column study to determine if bacteria collected and grown in Phase 1 can detoxify spent ore collected from Brewery Creek's heap. Their ability to destroy cyanide was compared with that of hydrogen peroxide, the conventional chemical treatment of spent heaps.

Tags / Keywords
Keywords/tags categorizing the dataset.
Format (CSV, XLS, TXT, PDF, etc)
File format of the dataset.
Dataset Size
Dataset size in megabytes.
Metadata Identifier
Metadata identifier – can be used as the unique identifier for catalogue entry
Published Date
Published date of the dataset.
2011-04-04
Time Period Data Span (start date)
Start date of the data in the dataset.
Time Period Data Span (end date)
End date of time data in the dataset.
GeoSpatial Area Data Span
A spatial region or named place the dataset covers.
Field Value
Access category
Type of access granted for the dataset (open, closed, service, etc).
License
License used to access the dataset.
Open Government Licence - Yukon
Limits on use
Limits on use of data.
Location
Location of the dataset.
https://open.canada.ca/data/en/dataset/c4fe06bc-4175-4123-a6df-93acf2509272
Data Service
Data service for accessing a dataset.
Owner
Owner of the dataset.
Government of Yukon | Gouvernement du Yukon
Contact Point
Who to contact regarding access?
Yukon Geological Survey
Contact Point Email
The email to contact regarding access?
Publisher
Publisher of the dataset.
Publisher Email
Email of the publisher.
[email protected]
Author
Author of the dataset.
Author Email
Email of the author.
Accessed At
Date the data and metadata was accessed.
Field Value
Identifier
Unique identifier for the dataset.
Language
Language(s) of the dataset
Link to dataset description
A URL to an external document describing the dataset.
Persistent Identifier
Data is identified by a persistent identifier.
Globally Unique Identifier
Data is identified by a persistent and globally unique identifier.
Contains data about individuals
Does the data hold data about individuals?
Contains data about identifiable individuals
Does the data hold identifiable data about individual?
Contains Indigenous Data
Does the data hold data about Indigenous communities?
Portal Type
Platform type of the source portal.
Field Value
Version
Version of the datatset
None
Source
Source of the dataset.
None
Version notes
Version notes about the dataset.
Is version of another dataset
Link to dataset that it is a version of.
Other versions
Link to datasets that are versions of it.
Provenance Text
Provenance Text of the data.
Provenance URL
Provenance URL of the data.
Temporal resolution
Describes how granular the date/time data in the dataset is.
GeoSpatial resolution in meters
Describes how granular (in meters) geospatial data is in the dataset.
GeoSpatial resolution (in regions)
Describes how granular (in regions) geospatial data is in the dataset.
Field Value
Indigenous Community Permission
Who holds the Indigenous Community Permission. Who to contact regarding access to a dataset that has data about Indigenous communities.
Community Permission
Community permission (who gave permission).
The Indigenous communities the dataset is about
Indigenous communities from which data is derived.
Field Value
Number of data rows
If tabular dataset, total number of rows.
Number of data columns
If tabular dataset, total number of unique columns.
Number of data cells
If tabular dataset, total number of cells with data.
Number of data relations
If RDF dataset, total number of triples.
Number of entities
If RDF dataset, total number of entities.
Number of data properties
If RDF dataset, total number of unique properties used by the triples.
Data quality
Describes the quality of the data in the dataset.
Metric for data quality
A metric used to measure the quality of the data, such as missing values or invalid formats.

0 Comments

Please login or register to comment.