Sinan Abi Farraj, Mathieu Lapointe, Rafael S. Kurusu, Zhen Liu, Benoit Barbeau et Nathalie Tufenkji
Article de revue (2024)
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With growing concerns over plastic accumulation in the environment, it is imperative to quantify nanoplastic and microplastic release to water bodies via water treatment plant effluent streams. Current methodological limitations present a major challenge for continuous monitoring of nanosized pollutants in effluent streams. In this work, a novel correlation was established between removal of nanoplastics and total suspended solids (TSS) during aggregation-based wastewater treatment. The established correlation successfully predicted nanoplastic removal for a wide range of relevant nanoplastic properties, including polymer type, size, surface functionalization and ageing history, under 41 different physico-chemical and activated sludge treatment conditions (R2 = 0.92; n = 117). The results of our correlation reveal a predicted nanoplastic removal between 39% and 69% for typical water treatment effluent streams governed by current TSS regulations in North America. The study also reveals the potential of using TSS as a simple metric to estimate microfibre, microsphere and microfragment removal.
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| Département: | Département des génies civil, géologique et des mines |
| Organismes subventionnaires: | McGill University, Canada Foundation for Innovation, Canada Research Chairs, Killam Trusts, Natural Sciences and Engineering Research Council of Canada, Fonds de recherche du Québec – Nature et technologies |
| Numéro de subvention: | RGPIN/04519-2019, CRC-2016-00205, 7025-19-0049, 36368, 40070 |
| URL de PolyPublie: | https://publications.polymtl.ca/59695/ |
| Titre de la revue: | Nature Water (vol. 2, no 1) |
| DOI: | 10.1038/s44221-023-00177-3 |
| URL officielle: | https://doi.org/10.1038/s44221-023-00177-3 |
| Date du dépôt: | 19 nov. 2024 11:21 |
| Dernière modification: | 27 janv. 2026 10:46 |
| Citer en APA 7: | Farraj, S. A., Lapointe, M., Kurusu, R. S., Liu, Z., Barbeau, B., & Tufenkji, N. (2024). Targeting nanoplastic and microplastic removal in treated wastewater with a simple indicator. Nature Water, 2(1), 72-83. https://doi.org/10.1038/s44221-023-00177-3 |
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