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Follow-up of the re-evaluation of sulfur dioxide (E 220), sodium sulfite (E 221), sodium bisulfite (E 222), sodium metabisulfite (E 223), potassium metabisulfite (E 224), calcium sulfite (E 226), calcium bisulfite (E 227) and potassium bisulfite (E 228).
EFSA Panel on Food Additives and Flavourings (FAF); Younes M, Aquilina G, Castle L, Engel KH, Fowler PJ, Frutos Fernandez MJ, Fürst P, Gundert-Remy U, Gürtler R, Husøy T, Manco M, Mennes W, Moldeus P, Passamonti S, Shah R, Waalkens-Berendsen I, Boon P, Cheyns K, Crebelli R, FitzGerald R, Lambré C, Mirat M, Ulbrich B, Vleminckx C, Mech A, Rincon AM, Tard A, Horvath Z, Wright M. EFSA Panel on Food Additives and Flavourings (FAF), et al. EFSA J. 2022 Nov 24;20(11):e07594. doi: 10.2903/j.efsa.2022.7594. eCollection 2022 Nov. EFSA J. 2022. PMID: 36440381 Free PMC article.
The Panel concluded that this raises a safety concern for both dietary exposure scenarios. The Panel also performed a risk assessment for toxic elements present in sulfur dioxide-sulfites (E 220-228), based on data submitted by IBOs, and concluded that the maximum limits i …
The Panel concluded that this raises a safety concern for both dietary exposure scenarios. The Panel also performed a risk assessment …
Hydration Mechanism of Solid Waste Gelling Materials Containing Semi-Dry Desulfurization Ash.
Li Y, Zhang S, Huang M, Yang G, Li J, Ma M, Hu W, Ni W. Li Y, et al. Gels. 2025 Mar 11;11(3):193. doi: 10.3390/gels11030193. Gels. 2025. PMID: 40136898 Free PMC article.
The hydration mechanism showed that the main hydration products formed were ettringite, C-S-H gel, AFm, and Friedel's salt. Calcium sulfite in DA was participated in the hydration, and a new hydration product, Ca(4)Al(2)O(6)SO(3).11H(2)O, was formed. ...
The hydration mechanism showed that the main hydration products formed were ettringite, C-S-H gel, AFm, and Friedel's salt. Calcium
Efficient removal of trace-level bisphenols in drinking water using the Mn(VII)/CaSO3 process.
Feng M, Wei B, Kuang H, Lian L, Dong H, Guan X. Feng M, et al. J Hazard Mater. 2025 Dec 5;500:140541. doi: 10.1016/j.jhazmat.2025.140541. Epub 2025 Nov 19. J Hazard Mater. 2025. PMID: 41273982
In this study, we investigated the performance and mechanism of removing 18 trace-level bisphenols from drinking water via a calcium sulfite (CaSO(3))-coupling permanganate (Mn(VII)/CaSO(3)) process. Trace-level bisphenols (1.0 mug/L) could be effectively removed by …
In this study, we investigated the performance and mechanism of removing 18 trace-level bisphenols from drinking water via a calcium