Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
578912 | Journal of Hazardous Materials | 2011 | 8 Pages |
Abstract
Acid mine drainage (AMD) in Yunfu iron sulfide mine contain Fe2+, Fe3+, and Al3+ up to 8000, 1700 and 1200Â mg/L, respectively. Phosphorus removal from synthetic wastewater with 10Â mg/L of total phosphorus (TP) concentration and second municipal effluent with 3.5-4.0Â mg/L of TP concentration were conducted with the AMD by jar tests. Dosage of the AMD and initial pH of water are the two most important parameters affecting the performance of phosphorus removal of the AMD. The optimal phosphorus removal efficiency and residual iron ions (TFe) concentration are 97.0% and 3.0Â mg/L, respectively, at 1.61 Fe/P molar ratio and pH 8.03 for synthetic wastewater, and 92.1% and 0.32Â mg/L, respectively, for second municipal effluent at 1.41 Fe/P molar ratio and pH 7.3. Resultant heavy metal concentration in effluents and precipitate was very low, and the risk of resultant heavy metal contamination was very small. The phosphorus removal performance of the AMD was much similar to that of ferric sulfate (FS) and polyferric sulfate (PFS), and better than that of FeSO4. And residual TFe concentration in treated water arising from utilization of the AMD was similar to that of FeSO4, and higher than that of FS and PFS. The AMD could be used as coagulant for phosphorus removal from wastewater directly due to the presence of Fe2+, Fe3+, and Al3+ largely.
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Authors
Li Ruihua, Zhu Lin, Tao Tao, Liu Bo,