Title of article :
Treatment of drinking water residuals: comparing sedimentation and dissolved air flotation performance with optimal cation ratios
Author/Authors :
J. C. Bourgeois، نويسنده , , M. E. Walsh، نويسنده , , G. A. Gagnon، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2004
Pages :
10
From page :
1173
To page :
1182
Abstract :
Spent filter backwash water (SFBW) and clarifier sludge generally comprise the majority of the waste residual volume generated and in relative terms, these can be collectively referred to as combined filter backwash water (CFBW). CFBW is essentially a low-solids wastewater with metal hydroxide flocs that are typically light and slow to settle. This study evaluates the impact of adding calcium and magnesium carbonates to CFBW in terms of assessing the impacts on the sedimentation and DAF separation processes. Representative CFBW samples were collected from two surface water treatment plants (WTP): Lake Major WTP (Dartmouth, Nova Scotia, Canada) and Victoria Park WTP (Truro, Nova Scotia, Canada). Bench-scale results indicated that improvements in the CFBW settled water quality could be achieved through the addition of the divalent cations, thereby adjusting the monovalent to divalent (M:D) ratios of the wastewater. In general, the DAF process required slightly higher M:D ratios than the sedimentation process. The optimum M:D ratios for DAF and sedimentation were determined to be 1:1 and 0.33:1, respectively. It was concluded that the optimisation of the cation balance between monovalent cations (e.g., Na+, K+) and added divalent cations (i.e., Ca2+, Mg2+) aided in the settling mechanism through charge neutralisation–precipitation. The increase in divalent cation concentrations within the waste residual stream promoted destabilisation of the negatively charged colour molecules within the CFBW, thereby causing the colloidal content to become more hydrophobic.
Keywords :
Spent filter backwash water , dissolved air flotation , Flocculent aids , Residual treatment
Journal title :
Water Research
Serial Year :
2004
Journal title :
Water Research
Record number :
768911
Link To Document :
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