4.7 Article

Elimination of micropollutants from municipal wastewater by adsorption on powdered activated carbon and separation by innovative precoat filtration Part 1: Adsorption capacity of activated carbons and initial filtration investigations

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DOI: 10.1016/j.seppur.2021.119052

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Powdered activated carbon; Removal of micropollutants; Advanced wastewater treatment; UVA254; Precoat filtration

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Powdered activated carbon in combination with precoat filtration is effective in removing anthropogenic trace substances from municipal wastewater, with smaller particle sizes showing better removal efficiency. The selectivity of activated carbons towards trace substances may vary, and continuous filtration systems like pressurized filter cells can improve separation performance.
Anthropogenic trace substances are residues from pharmaceuticals, detergents, care products and other areas of everyday use. Municipal wastewater treatment plants (WWTPs) are unable to remove these substances adequately and are therefore among the main emitters. The treatment of municipal wastewater with powdered activated carbon in combination with precoat filtration is a suitable downstream stage. Within the scope of this work, four powdered activated carbons (PACs) with different particle sizes in the range of 10-200 mu m are compared (#1-#4). The sum parameters UV absorption at 254 nm (UVA254), dissolved organic carbon (DOC), chemical oxygen demand (COD), as well as the analysis of seven trace substances, characterize the removal performance of the activated carbons. As result, only the PAC #4 with the smallest particle size (x50.3 approximate to 10 mu m) shows a target-oriented reduction of the parameters from a concentration of 30 mg center dot l- 1 and a contact time of 30 min. The other carbons with higher particle size do not achieve sufficient removal rates. Due to the selectivity of the activated carbons towards trace substances, a correlation of trace substance removal is not given for every PAC. Besides, investigations on a continuously operated pressurized filter cell (PFC) for filtration of an activated carbon show the separation performance. A precoat of cellulose supplies the filtration process and can improve the backwashing application.

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