FILTER is an innovative, CSIRO developed system for treating effluent using high rate land application and subsequent effluent recapture via a closely spaced, subsurface drainage network. We report on the summer performance of a FILTER system established in a subtropical environment on a relatively impermeable swelling clay soil underlain by a deep regional water table. Using secondary treated sewage effluent, the FILTER system produced effluent of tertiary nutrient standards (≤5 mg/L TN; ≤1 mg/L TP), with salinity levels suitable for subsequent irrigation reuse (EC ≤2.5 dS/m). Removal of faecal coliforms was considerably less effective. The hydraulic loading rate achieved was about two and a half times larger than conventional irrigation demand, but this was associated with high deep percolation losses (c 3 mm/day). Comparisons are made with the original FILTER system developed and tested by Jayawardane et al. in temperate Australia. Suggestions are made for modifications to, and further testing of FILTER in a subtropical environment.
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Research Article|
May 01 2001
The filter system for tertiary treatment of sewage effluent by land application - its performance in a subtropical environment
E. A. Gardner;
E. A. Gardner
1Department of Natural Resources, Indooroopilly, Queensland, Australia, 4068
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D. Morton;
D. Morton
1Department of Natural Resources, Indooroopilly, Queensland, Australia, 4068
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J. Sands;
J. Sands
2University of Queensland, Gatton Campus, Queensland, Australia, 4343
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P. Matthews;
P. Matthews
2University of Queensland, Gatton Campus, Queensland, Australia, 4343
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F. J. Cook;
F. J. Cook
3CSIRO Land and Water, Canberra, Australia, 2601
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N. S. Jayawardane
N. S. Jayawardane
3CSIRO Land and Water, Canberra, Australia, 2601
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Water Sci Technol (2001) 43 (10): 335–342.
Citation
E. A. Gardner, D. Morton, J. Sands, P. Matthews, F. J. Cook, N. S. Jayawardane; The filter system for tertiary treatment of sewage effluent by land application - its performance in a subtropical environment. Water Sci Technol 1 May 2001; 43 (10): 335–342. doi: https://doi.org/10.2166/wst.2001.0656
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