Title of article :
Efficiency of acid sulphate soils reclamation in coal mining areas
Author/Authors :
Mitrakova ، Natalya V. Natural Science Institute - Perm State National Research University , Khayrulina ، Elena A. Natural Science Institute - Perm State National Research University , Blinov ، Sergei M. Natural Science Institute - Perm State National Research University , Perevoshchikova ، Anna A. Natural Science Institute - Perm State National Research University
From page :
266
To page :
278
Abstract :
During the development of coal deposits, acid mine waters flowing to the surface cause the formation of acid sulphate soils. We study the effectiveness of soil reclamation by agrochemical and geochemical methods at the site of acid mine water discharge in the Kizel Coal Basin, carried out in 2005 using alkaline waste from soda production and activated sludge. A technosol with a stable phytocenosis was detected on the reclaimed site, and soddy-podzolic soil buried under the technogenic soil layer with no vegetation on the non-reclaimed site. The buried soddy-podzolic soil retains a strong acid рН concentration Н2О = 3. A high content of organic matter (8-1.5 %) is caused by carbonaceous particles; the presence of sulphide minerals reaches a depth of 40 cm. Technosol has a slightly acid pH reaction H2O = 5.5, the content of organic matter due to the use of activated sludge is 19-65 %, the presence of sulphide minerals reaches a depth of 20-40 cm. The total iron content in the upper layers of the technosol did not change (190-200 g/kg), the excess over the background reaches 15 times. There is no contamination with heavy metals and trace elements, single elevated concentrations of Li, Se, B and V are found.
Keywords :
coal mining , discharge of mine waters , acid sulphate soils , technosol , reclamation , trace elements , total contamination index , index of geological accumulation of elements
Journal title :
Journal of Mining Institute
Journal title :
Journal of Mining Institute
Record number :
2776021
Link To Document :
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