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Author Kuyucak, N.
Title Improved lime neutralization process Type Journal Article
Year 1995 Publication Sudbury '95 – Mining and the Environment, Conference Proceedings, Vols 1-3 Abbreviated Journal
Volume Issue Pages 129-137
Keywords (up) mine water treatment
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Notes Improved lime neutralization process; Isip:A1995bg39j00014; Times Cited: 0; ISI Web of Science Approved no
Call Number CBU @ c.wolke @ 8882 Serial 143
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Author Kuyucak, N.
Title Conventional and new methods for treating acid mine drainage Type Journal Article
Year 1995 Publication Cami'95 – Computer Applications in the Mineral Industry Abbreviated Journal
Volume Issue Pages 863-872
Keywords (up) mine water treatment
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Notes Conventional and new methods for treating acid mine drainage; Isip:A1995bg01c00099; Times Cited: 0; ISI Web of Science Approved no
Call Number CBU @ c.wolke @ 8880 Serial 144
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Author Carland, R.M.
Title Use of natural sedimentary zeolites for metal ion recovery from hydrometallurgical solutions and for the environmental remediation of acid mine drainage Type Journal Article
Year 1995 Publication Proceedings of the Xix International Mineral Processing Congress, Vol 4 Abbreviated Journal
Volume Issue Pages 95-100
Keywords (up) mine water treatment
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Notes Use of natural sedimentary zeolites for metal ion recovery from hydrometallurgical solutions and for the environmental remediation of acid mine drainage; Isip:A1995be33e00020; Times Cited: 0; ISI Web of Science Approved no
Call Number CBU @ c.wolke @ 17179 Serial 145
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Author Gusek, J.J.
Title Passive-treatment of acid rock drainage: what is the potential bottom line? Type Journal Article
Year 1995 Publication Min. Eng. Abbreviated Journal
Volume 47 Issue 3 Pages 250-253
Keywords (up) mining acid drainage passive treatment system 3 Geology
Abstract Passive-treatment systems that mitigate acid-rock drainage from coal mines have been operating since the mid-1980s. Large systems at metal mines are being contemplated. A typical man-made passive-treatment-system can mimic a natural wetland by employing the same geochemical principles. Passive-treatment systems, however, are engineered to optimize the biogeochemical processes occurring in a natural wetland ecosystem. The passive-treatment methodology holds promise over chemical neutralization because large volumes of sludge are not generated. Metals may be precipitated as oxides, sulfides or carbonates in the passive-treatment system substrate. The key goal of a passive-treatment system is the long-term immobilization of metals in the substrate materials. The passive-treatment technique may not be applicable in all mine-drainage situations. -from Author
Address Knight-Piesold & Co, 1050 17th St., Suite 500, Denver, CO, 80265- 0550, USA
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Notes Passive-treatment of acid rock drainage: what is the potential bottom line?; (1121863); 95k-12693; Using Smart Source Parsing pp; Geobase Approved no
Call Number CBU @ c.wolke @ 17638 Serial 365
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Author Evangelou, V.P.
Title Type Book Whole
Year 1995 Publication Abbreviated Journal
Volume Issue Pages 293 pp
Keywords (up) solution chemistry surface chemistry acid mine drainage (AMD) molecular oxidation mechanics microbial role, kinetics, control, ameliorates and limitations microencapsulation
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Series Editor Series Title Pyrite oxidation and its control: solution chemistry, surface chemistry, acid mine drainage (AMD), molecular oxidation mechanisms, microbial role, kinetics, control, ameliorates and limitations, microencapsulation Abbreviated Series Title
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ISSN ISBN 0-8493-4732-7 Medium
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Notes Pyrite oxidation and its control: solution chemistry, surface chemistry, acid mine drainage (AMD), molecular oxidation mechanisms, microbial role, kinetics, control, ameliorates and limitations, microencapsulation; Boca Raton, Fla. : CRC Press, cop. 1995; Opac Approved no
Call Number CBU @ c.wolke @ 6935 Serial 385
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