Coal mining activities can have severe and long-term impacts on freshwater ecosystems. At the individual stream scale, these impacts have been well studied; however, few attempts have been made to determine the predictors of mine impacts at a regional scale. We investigated whether catchment-scale measures of mining impacts could be used to predict biological responses. We collated data from multiple studies and analyzed algae, benthic invertebrate, and fish community data from 186 stream sites, including un-mined streams, and those associated with 620 mines on the West Coast of the South Island, New Zealand. Algal, invertebrate, and fish richness responded to mine impacts and were significantly higher in un-mined compared to mine-impacted streams. Changes in community composition toward more acid- and metal-tolerant species were evident for algae and invertebrates, whereas changes in fish communities were significant and driven by a loss of nonmigratory native species. Consistent catchment-scale predictors of mining activities affecting biota included the time post mining (years), mining density (the number of mines upstream per catchment area), and mining intensity (tons of coal production per catchment area). Mining was associated with a decline in stream biodiversity irrespective of catchment size, and recovery was not evident until at least 30 years after mining activities have ceased. These catchment-scale predictors can provide managers and regulators with practical metrics to focus on management and remediation decisions.
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Univ Melbourne, Sch Ecosyst & Forest Sci, Waterway Ecosyst Res Grp, Burnley, Vic 3121, AustraliaUniv Melbourne, Sch Ecosyst & Forest Sci, Waterway Ecosyst Res Grp, Burnley, Vic 3121, Australia
Anim, Desmond O.
Fletcher, Tim D.
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Univ Melbourne, Sch Ecosyst & Forest Sci, Waterway Ecosyst Res Grp, Burnley, Vic 3121, AustraliaUniv Melbourne, Sch Ecosyst & Forest Sci, Waterway Ecosyst Res Grp, Burnley, Vic 3121, Australia
Fletcher, Tim D.
Pasternack, Gregory B.
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Univ Calif Davis, Land Air & Water Resources, Davis, CA 95616 USAUniv Melbourne, Sch Ecosyst & Forest Sci, Waterway Ecosyst Res Grp, Burnley, Vic 3121, Australia
Pasternack, Gregory B.
Vietz, Geoff J.
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Univ Melbourne, Sch Ecosyst & Forest Sci, Waterway Ecosyst Res Grp, Burnley, Vic 3121, AustraliaUniv Melbourne, Sch Ecosyst & Forest Sci, Waterway Ecosyst Res Grp, Burnley, Vic 3121, Australia
Vietz, Geoff J.
Duncan, Hugh P.
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Univ Melbourne, Sch Ecosyst & Forest Sci, Waterway Ecosyst Res Grp, Burnley, Vic 3121, Australia
Melbourne Water Corp, Docklands, Vic 3008, AustraliaUniv Melbourne, Sch Ecosyst & Forest Sci, Waterway Ecosyst Res Grp, Burnley, Vic 3121, Australia
Duncan, Hugh P.
Burns, Matthew J.
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Univ Melbourne, Sch Ecosyst & Forest Sci, Waterway Ecosyst Res Grp, Burnley, Vic 3121, AustraliaUniv Melbourne, Sch Ecosyst & Forest Sci, Waterway Ecosyst Res Grp, Burnley, Vic 3121, Australia