评价用克拉氏切喉鳟鱼进行环境监测的原位早期生命阶段试验——一个使用矿山废水的案例研究

IF 2 Q3 Environmental Science Water Quality Research Journal of Canada Pub Date : 2014-05-01 DOI:10.2166/WQRJC.2013.047
B. Chalmers, J. Elphick, G. Gilron, H. Bailey
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引用次数: 2

摘要

本研究评估了在加拿大金属矿山废水法规环境影响监测(EEM)项目中使用切喉鳟鱼进行的原位早期生命阶段试验。目前的现场监测方法侧重于成鱼调查或中游研究,但这两种方法都有固有的局限性,可能会影响它们在特定地点的适用性。本研究评估了另一种方法,即原位毒性试验,作为锌、铜、金矿EEM项目的一部分。装有切喉鳟鱼胚胎的孵化箱被放置在一条小溪中,该小溪接收矿山处理过的污水,并在游动阶段进行监测,以评估孵化成功率、存活率、正常发育和生长。该方法的优点是:暴露过程中不需要喂食,暴露位置固定,终点相关,统计灵敏度高。此外,延长的暴露期综合了长期暴露变量,包括低流量和新鲜事件。这一方法也适用于其他鲑鱼种类和排放类型。
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Evaluation of an in situ early life stage test with cutthroat trout, Oncorhynchus clarki, for environmental monitoring – a case study using mine effluent
This study evaluated an in situ early life stage test using cutthroat trout for potential use in Canada9s Metal Mines Effluent Regulations 9 Environmental Effects Monitoring (EEM) program. Current field monitoring approaches focus on either adult fish surveys or mesocosm studies, but both of these have inherent limitations that may affect their suitability on a site-specific basis. This study evaluated an alternative approach, namely an in situ toxicity test, as part of an EEM program for a zinc, copper and gold mine. Hatchboxes containing cutthroat trout embryos were placed in a creek that receives treated effluent from the mine, and monitored through the swim-up stage to evaluate hatching success, survival, normal development and growth. Advantages of the method include: no feeding requirement during exposure, fixed exposure locations, relevant endpoints and high statistical sensitivity. In addition, the extended exposure period integrated long-term exposure variables, including low-flow and freshet events. This approach also has application to other salmonid species and types of discharges.
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来源期刊
CiteScore
1.70
自引率
0.00%
发文量
18
审稿时长
>12 weeks
期刊介绍: The Water Quality Research Journal publishes peer-reviewed, scholarly articles on the following general subject areas: Impact of current and emerging contaminants on aquatic ecosystems Aquatic ecology (ecohydrology and ecohydraulics, invasive species, biodiversity, and aquatic species at risk) Conservation and protection of aquatic environments Responsible resource development and water quality (mining, forestry, hydropower, oil and gas) Drinking water, wastewater and stormwater treatment technologies and strategies Impacts and solutions of diffuse pollution (urban and agricultural run-off) on water quality Industrial water quality Used water: Reuse and resource recovery Groundwater quality (management, remediation, fracking, legacy contaminants) Assessment of surface and subsurface water quality Regulations, economics, strategies and policies related to water quality Social science issues in relation to water quality Water quality in remote areas Water quality in cold climates The Water Quality Research Journal is a quarterly publication. It is a forum for original research dealing with the aquatic environment, and should report new and significant findings that advance the understanding of the field. Critical review articles are especially encouraged.
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