Physicochemical characteristics and biotoxicity of water-soluble acid mine wastes from the Dabaoshan mining district

Article


Wu, Yong-gui, Lin, Chu-xia, Liu, Yong and Lu, Wen-zhou. 2007. "Physicochemical characteristics and biotoxicity of water-soluble acid mine wastes from the Dabaoshan mining district." Acta Mineralogica Sinica. 27 (3/4), pp. 549-557.
Article Title

Physicochemical characteristics and biotoxicity of water-soluble acid mine wastes from the Dabaoshan mining district

Article CategoryArticle
AuthorsWu, Yong-gui (Author), Lin, Chu-xia (Author), Liu, Yong (Author) and Lu, Wen-zhou (Author)
Journal TitleActa Mineralogica Sinica
Journal Citation27 (3/4), pp. 549-557
Number of Pages9
Year2007
Place of PublicationGuizhou-sheng, China
Web Address (URL)http://www.cnki.net
Abstract

Physicochemical analysis and bioinstrumentation have been conducted to investigate the physicochemical characteristics
and biotoxicity of water-soluble acid mine wastes (AMW) in the soil layer from the Dabaoshan mining district. The
results showed that the composition of the minerals could be comparatively complicated, and the minerals contain a lot of reducing sulfides and other acid matter and heavy metals. The minerals are unstable and extremely easy to dissolve in water. The pH of the solution could be as low as 2.15 with high concentrations of the heavy metals, Fe and Mn, in the solution of AMW. The concentrations of Cu, Zn, Cd, Pb, Mn and Fe in the solution were 419.5 mg/L, 0. 974mg/L, 462.8 mg/L, 0.204 mg/L, 149000 mg/L and 174.4 mg/L, respectively. The biomonitoring results showed that there was severe biotoxicity to Daphnian in the solution of AMW. A survey found no animal even in case that the pH of the solution of AMW increased from 2.15 to 7.22 by ISO-water neutralization. This indicated that the toxicity of AMW is related mainly to acid, which was also influenced significantly by the concentrations of coexisting heavy metals. It seems reasonable to suggest that the AMW from the Dabaoshan mining district could cause severe damage to the downstream aquatic ecosystem.

Keywordsacide mine waste; AMW; heavy metal; biotoxicity; Daphnia carinata
ANZSRC Field of Research 2020410604. Soil chemistry and soil carbon sequestration (excl. carbon sequestration science)
370999. Physical geography and environmental geoscience not elsewhere classified
410601. Land capability and soil productivity
Public Notes

c. Kuangwu Xuebao. Text in Chinese.

Byline AffiliationsGuizhou University, China
South China Agricultural University, China
Institution of OriginUniversity of Southern Queensland
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