4 edition of Stream-sediment geochemistry in mining-impacted streams found in the catalog.
Stream-sediment geochemistry in mining-impacted streams
Stephen E. Box
by U.S. Dept. of the Interior, U.S. Geological Survey, For sale by the U.S. Geological Survey Information Services in Reston, Va, Denver, CO
Written in English
|Other titles||Stream sediment geochemistry in mining impacted streams.|
|Statement||by Stephen E. Box, Arthur A. Bookstrom, and Mohammed Ikramuddin.|
|Series||Scientific investigations report -- 2005-5011., Scientific investigations report -- 2005-5011.|
|Contributions||Ikramuddin, Mohammed., Bookstrom, Arthur A., Geological Survey (U.S.)|
|The Physical Object|
|Pagination||iv, 51 p. :|
|Number of Pages||51|
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Get this from a library. Stream-sediment geochemistry in mining-impacted streams: sediment mobilized by floods in the Coeur d'Alene-Spokane River system, Idaho and Washington. [Stephen E Box; Mohammed Ikramuddin; Arthur A Bookstrom; Geological Survey (U.S.)].
Get this from a library. Stream-sediment geochemistry in mining-impacted streams: Prichard, Eagle, and Beaver Creeks, Northern Coeur d'Alene Mining District, northern Idaho. [Stephen E Box; United States.
Forest Service.; United States. Bureau of Land Management.; Geological Survey (U.S.);]. Stream-sediment geochemistry in mining-impacted streams: sediment mobilized by floods in the Coeur d'Alene-Spokane River system, Stream sediment geochemistry in mining impacted streams Shipping list no.: P.
Also available via Internet from the USGS web site. References Cited. Ackers, P., and White, W.R.,Sediment transport—New approach and analysis: Journal of Hydraulics, American Society of Civil Engineers, v.
99, no. HY11, p. – and Ikramuddin, M.,Stream-sediment geochemistry in mining-impacted streams—Sediment mobilized by floods in the Coeur d’Alene-Spokane. Discover Book Depository's huge selection of Steve Box books online. Free delivery worldwide on over 20 million Stream-sediment geochemistry in mining-impacted streams book.
Stream-Sediment Geochemistry in Mining-Impacted Streams. Stephen E Box. 07 Mar Paperback. US$ Stream-Sediment Geochemistry in Mining-Impacted Drainages of the Yankee Fork of the Salmon River, Custer County.
Stream-sediment geochemistry in mining-impacted streams: sediment mobilized by floods in the Coeur d'Alene-Spokane River system, Idaho and Washington / by: Box, Stephen E. Published: () Lancaster Ave., Villanova, PA Contact. Stream sediment geochemistry of the upper Cheyenne River watershed within the abandoned uranium mining region of the southern Black Hills, South Dakota, USA Article May Author: John Walther.
Stream sediment geochemistry of the upper Cheyenne River watershed within the abandoned uranium mining region of the southern Black Hills, South Dakota, USA Article in Environmental Earth Sciences. Baseline and historic depositional rates and lead concentrations, floodplain sediments, lower Coeur d'Alene River, Idaho / by: Bookstrom, Arthur A., Published: () Sediment transport data and related information for selected coarse-bed streams and rivers in Idaho Published: ().
Stream-sediment geochemistry in mining-impacted streams: Sediment mobilized by floods in the Coeur dߣAlene–Spokane river system, Idaho and Washington U.S. Geological Survey Scientific Investigations Report SIR –Cited by: 7.
The trace metals determined in AMD impacted stream sediment (SS6, SS8, SS9, SS12) show a large range of concentrations (– mg kg −1 As, – mg kg −1 Cd, – mg kg −1 Cu, – mg kg −1 Pb, – mg kg −1 Zn – Table 2) relative to background values measured upstream from the mines (SS3 and SS4 – Table Cited by: Stream-sediment geochemistry in mining-impacted streams: Prichard, Eagle, and Beaver Creeks, Northern Coeur d'Alene Mining District, northern Idaho Q1.S no «Previous.
Stream-sediment geochemistry in mining-impacted streams sediment mobilized by floods in the Coeur d'Alene-Spokane River system, Idaho and Washington Box, Stephen E.
I / 1. Introduction. Acid mine drainage (AMD) is a major cause of environmental degradation throughout the world (Cherry et al., ).AMD is caused by the biological and chemical oxidation of pyrite (FeS 2) or other sulfide minerals that are exposed to oxygenated water (Kelly,Boult et al.,DeNicola and Stapleton, ).Typically, AMD affected streams have low pH, high concentrations Cited by: geochemistry of water-rock interaction in the Recsk Deep (Somody and Jordan, ) and geochemistry of water and sediment pollution along the surface water courses (Jordan et al., ).
Since modeling has started for the Recsk study area, this site is presented here only. Convergent motion between the. Stream-Sediment Geochemistry in Mining-Impacted Streams: Sediment Mobilized by Floods in the Coeur d’Alene-Spokane River Drainage, Idaho and Washington.
USGS Scientific Investigation Report SIR. Fey, D.L., and Church, S.E.,Analytical results for forty-two fluvial tailings cores and seven stream sediment samples from High Ore Creek, northern Jefferson County, Montana: U.S.
Geological Survey Open-File Report49 p. Nordstrom, D.K.,Negative pH, efflorescent mineralogy, and the challenge of environmental restoration at the Iron Mountain Superfund mine site, or why not to plug a mine, in GIS - Geoscience Applications and Developments/Treatment technologies for mining impacted water -- Workshop at the Geological Institute of the Technical University of.
The Coeur d’Alene River basin is a large complicated system with tremendous topographic, hydrologic, and biological variability. This chapter summarizes the components of the Coeur d’Alene system that the committee considers most important in understanding the system and evaluating the likely effectiveness of proposals for the basin’s cleanup.
EPA and Hardrock Mining: A Source Book for Industry in the Northwest and Alaska EPA Expectations for Mining Impact Assessment 39 Impacts to Surface and Ground Water Hydrology 39 Surface Water Hydrology 40 Ground Water Hydrogeology 43 Impacts to Water Quality 45 Background and Existing Water Quality 47 Regional Hydrology and Hydrogeology 47.
Molecular diversity of prokaryotes in mining-impacted and non-impacted streams and bacteria and genes involved in arsenic speciation 47 Ecotoxicological assessment of soils around mining areas.As part of the EWRI sponsored World Water and Environmental Resources Congress, June, in Philadelphia, the Urban Streams Technical Committee of the Urban Water Resources Research Council (UWRRC) and the Urban Stream Restoration Technical Committee of the Watershed Council are co-sponsoring an international symposium on the restoration and protection of streams with .U.S.
EPA Proceedings of National Conference on Mining-Influenced Waters: Approaches for Characterization, Source Control and Treatment Edited by: Diana Bless Douglas Grosse EPA Number: EPA//R/ The U.S.
Environmental Protection Agency (EPA or the Agency), through its Office of Research and Development (ORD), sponsored a conference in Albuquerque, New Mexico on August .