On-site Wastewater Treatment – Polonite and Other Filter Materials for Removal of Metals, Nitrogen and Phosphorus
نویسنده
چکیده
Bed filters using reactive materials are an emerging technology for on-site wastewater treatment. Chemical reactions transfer contaminants from the aqueous to the solid phase. Phosphorus is removed from domestic wastewater by sorption to filter materials, which can then be recycled to agriculture as fertilisers and soil amendments. This thesis presents long-term column and fieldscale studies of nine filter materials, particularly the novel product Polonite. Phosphorus, nitrogen and metals were removed by the mineral-based materials to varying degrees. Polonite and Nordkalk Filtra P demonstrated the largest phosphorus removal capacity, maintaining a PO4-P removal efficiency of >95%. Analysis of filter bed layers in columns with downward wastewater flow, showed that phosphorus, carbon and nitrogen content was vertically distributed, with decreasing values from surface to base layer. Polonite and Filtra P accumulated 1.9-19 g P kg. Nitrogen in wastewater was scarcely removed by the alkaline filter materials, but transformation from NH -N to NO 4 3-N was >90%. Pot experiments with barley (Hordeum vulgare L.) revealed that after wastewater treatment, slags and Polonite could increase plant production. Batch experiments and ATR-FTIR investigations indicated that amorphous tricalcium phosphate (ATCP) was formed in the materials, so some of the accumulated PO4-P was readily available to plants. Low heavy metal contents occurred in the materials, showing that they can be applied as soil amendments in agriculture without contamination risks. A full-scale treatment system using Polonite as filter material showed an average PO4-P removal efficiency of 89% for a 92-week period, indicating the robustness of the filter bed technology.
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