Accelerated Weathering of Biosolid‐Amended Copper Mine Tailings
ABSTRACT Application of municipal biosolids to mine tailings can enhance revegetation success, but may cause adverse environmental impacts, such as increased leaching of NO−3 and metals to ground water. Kinetic weathering cells were used to simulate geochemical weathering to determine the effects of...
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Veröffentlicht in: | Journal of environmental quality 2005-07, Vol.34 (4), p.1293-1301 |
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Format: | Artikel |
Sprache: | eng |
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Zusammenfassung: | ABSTRACT
Application of municipal biosolids to mine tailings can enhance revegetation success, but may cause adverse environmental impacts, such as increased leaching of NO−3 and metals to ground water. Kinetic weathering cells were used to simulate geochemical weathering to determine the effects of biosolid amendment on (i) pH of leachate and tailings, (ii) leaching of NO−3 and SO42−, (iii) leaching and bioavailability (DTPA‐extractable) of selected metals, and (iv) changes in tailing mineralogy. Four Cu mine tailings from southern Arizona differing in initial pH (3.3–7.3) and degree of weathering were packed into triplicate weathering cells and were unamended and amended with two rates (equivalent to 134 and 200 Mg dry matter ha−1) of biosolids. Biosolid application to acid (pH 3.3) tailings resulted in pH values as high as 6.3 and leachate pH as high as 5.7, and biosolids applied to circumneutral tailings resulted in no change in tailing or leachate pH. Concentrations of NO−3–N of up to 23 mg L−1 occurred in leachates from circumneutral tailings. The low pH of the acidic tailing apparently inhibited nitrification, resulting in leachate NO−3–N of |
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ISSN: | 0047-2425 1537-2537 |
DOI: | 10.2134/jeq2004.0405 |