Smouldering to treat PFAS in sewage sludge
Fournie, T and Rashwan, T L and Switzer, C and Gerhard, J I (2023) Smouldering to treat PFAS in sewage sludge. Waste management, 164. pp. 219-227. ISSN 1879-2456 (https://doi.org/10.1016/j.wasman.2023.04.008)
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Abstract
Wastewater treatment plants are accumulation points for per- and polyfluoroalkyl substances (PFAS), and are threfore important facilities for PFAS treatment. This study explored using smouldering combustion to treat PFAS in sewage sludge. Base case experiments at the laboratory scale (LAB) used dried sludge mixed with sand. High moisture content (MC) LAB tests, 75% MC sludge by mass, explored impacts of MC on treatment and supplemented with granular activated carbon (GAC) to achieve sufficient temperatures for thermal destruction of PFAS. Additional LAB tests explored using calcium oxide (CaO) to support fluorine mineralization. Further tests performed at an oil-drum scale (DRUM) assessed scale on PFAS removal. Pre-treatment sludge and post-treatment ash samples from all tests were analyzed for 12 PFAS (2C–8C). Additional emissions samples were collected from all LAB tests and analyzed for 12 PFAS and hydrogen fluoride. Smouldering removed all monitored PFAS from DRUM tests, and 4–8 carbon chain length PFAS from LAB tests. For base case tests, PFOS and PFOA were completely removed from sludge; however, high contents in the emissions (79–94% of total PFAS by mass) showed volatilization without degradation. Smouldering high MC sludge at ∼ 900 °C (30 g GAC/kg sand) improved PFAS degradation compared to treatment below 800 °C (
ORCID iDs
Fournie, T, Rashwan, T L, Switzer, C ORCID: https://orcid.org/0000-0003-3679-7683 and Gerhard, J I;-
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Item type: Article ID code: 85420 Dates: DateEvent1 June 2023Published19 April 2023Published Online4 April 2023Accepted30 October 2022SubmittedSubjects: Technology > Environmental technology. Sanitary engineering Department: Faculty of Engineering > Civil and Environmental Engineering Depositing user: Pure Administrator Date deposited: 09 May 2023 12:54 Last modified: 18 Dec 2024 22:03 URI: https://strathprints.strath.ac.uk/id/eprint/85420