CAS 375-95-1
:Perfluornonansäure
- 2,2,3,3,4,4,5,5,6,6,7,7,8,8,9,9,9-Heptadecafluorononanoic acid
- C 1800
- Heptadecafluorononanoic Acid
- Nonanoic acid, 2,2,3,3,4,4,5,5,6,6,7,7,8,8,9,9,9-heptadecafluoro-
- Nonanoic acid, heptadecafluoro-
- Perfluoro-n-nonanoic acid
- Perfluorononanoic acid
- Perfluoropelargonic acid
- Perfluorononan-1-oic acid
EPA Method 1633 PFAS Mixture 10 µg/mL in Methanol:Water
CAS:Kontrolliertes Produkt- 113507-82-7
- 1260224-54-1
- 13252-13-6
- 151772-58-6
- 1691-99-2
- 1763-23-1
- 2058-94-8
- 2355-31-9
- 24448-09-7
- 2706-90-3
- 2706-91-4
- 27619-97-2
- 2991-50-6
- 307-24-4
- 307-55-1
- 31506-32-8
- 335-67-1
- 335-76-2
- 335-77-3
- 355-46-4
- 356-02-5
- 375-22-4
- 375-73-5
- 375-85-9
- 375-92-8
- 375-95-1
- 376-06-7
- 377-73-1
- 39108-34-4
- 4151-50-2
- 72629-94-8
- 73606-19-6
- 754-91-6
- 757124-72-4
- 812-70-4
- 83329-89-9
- 863090-89-5
- 914637-49-3
- 919005-14-4
- 98789-57-2
Farbe und Form:MixturePFCA (C4-C14) Native Mixture 2 µg/mL in Methanol:Water
CAS:Kontrolliertes ProduktFarbe und Form:MixturePFAS EF-28 Native Mixture 1 µg/mL in Methanol:Water
CAS:Kontrolliertes Produkt- 120226-60-0
- 16517-11-6
- 1763-23-1
- 2058-94-8
- 2355-31-9
- 2706-90-3
- 2706-91-4
- 27619-97-2
- 2991-50-6
- 307-24-4
- 307-55-1
- 31506-32-8
- 335-67-1
- 335-76-2
- 335-77-3
- 355-46-4
- 375-22-4
- 375-73-5
- 375-85-9
- 375-92-8
- 375-95-1
- 376-06-7
- 39108-34-4
- 678-41-1
- 67905-19-5
- 72629-94-8
- 754-91-6
- 757124-72-4
Farbe und Form:MixturePFAS Superfund Mixture 2 µg/mL in Methanol:Water
CAS:Kontrolliertes Produkt- 120226-60-0
- 13252-13-6
- 16517-11-6
- 1763-23-1
- 2058-94-8
- 2355-31-9
- 2706-90-3
- 27619-97-2
- 2991-50-6
- 307-24-4
- 307-55-1
- 31506-32-8
- 335-67-1
- 335-76-2
- 355-46-4
- 375-22-4
- 375-73-5
- 375-85-9
- 375-95-1
- 376-06-7
- 39108-34-4
- 67905-19-5
- 754-91-6
- 757124-72-4
Farbe und Form:MixtureEU 2023/915 Food Testing PFAS-4 Mixture (PFOA, PFOS, PFNA, PFHxS) 1 µg/mL in Methanol:Water
CAS:Kontrolliertes ProduktFarbe und Form:MixtureDIN EN 17892:2024-08 PFAS Mixture 10 µg/mL in Methanol:Water
CAS:Kontrolliertes Produkt- 13252-13-6
- 1763-23-1
- 2058-94-8
- 2706-90-3
- 2706-91-4
- 27619-97-2
- 2991-50-6
- 307-24-4
- 307-55-1
- 335-67-1
- 335-76-2
- 335-77-3
- 355-46-4
- 375-22-4
- 375-73-5
- 375-85-9
- 375-92-8
- 375-95-1
- 377-73-1
- 39108-34-4
- 68259-12-1
- 72629-94-8
- 749786-16-1
- 754-91-6
- 756426-58-1
- 757124-72-4
- 791563-89-8
- 79780-39-5
- 919005-14-4
Farbe und Form:MixturePerfluorononanoic acid 100 µg/mL in Acetonitrile
CAS:Formel:C9HF17O2Farbe und Form:Single SolutionMolekulargewicht:464.08PFAS Mixture Food Testing EU 2022/1431 10 µg/mL in Methanol:Water
CAS:Kontrolliertes Produkt- 13252-13-6
- 1763-23-1
- 2058-94-8
- 2706-90-3
- 2706-91-4
- 307-24-4
- 307-55-1
- 335-67-1
- 335-76-2
- 335-77-3
- 34455-29-3
- 355-46-4
- 375-22-4
- 375-73-5
- 375-85-9
- 375-92-8
- 375-95-1
- 376-06-7
- 68259-12-1
- 72629-94-8
- 749786-16-1
- 754-91-6
- 756426-58-1
- 763051-92-9
- 791563-89-8
- 79780-39-5
- 80475-32-7
- 919005-14-4
Farbe und Form:MixturePerfluorononanoic Acid
CAS:Kontrolliertes ProduktApplications Perfluorinated compounds (PFCs) are persistent in environments due to the high energy of C-F bond. Being a persistent environmental pollutant, it can accumulate in human tissues via various exposure routes. PFNA may interfere in a toxic fashion on the immune system, liver, development, and endocrine systems.
References Biegel, L., et al.: Toxicol. Sci., 60, 44 (2001), Girault, I., et al.: Clin. Cancer Res., 9, 4415 (2003), Bauer, M., et al.: Cell Tissue Res., 324, 423 (2006), Aniagu, S., et al.: Toxicology, 256, 143 (2009),Formel:C9HF17O2Farbe und Form:NeatMolekulargewicht:464.08Heptadecafluorononanoic acid
CAS:Heptadecafluorononanoic acid is a long-chain fatty acid that has been used as a building block in the synthesis of polymers. It has been shown to have an effect on locomotor activity and thermal expansion in human serum, as well as on maternal blood. Heptadecafluorononanoic acid has also been found to be effective for the treatment of hepatic steatosis and may have long-term efficacy. This compound is also able to bind with receptors, which can contribute to its biological properties. Heptadecafluorononanoic acid has been shown to inhibit geriatric patients' reaction solution. The analytical method for heptadecafluorononanoic acid consists of gas chromatography with flame ionization detection (GC-FID).
Formel:C9HF17O2Reinheit:Min. 95%Farbe und Form:PowderMolekulargewicht:464.08 g/mol





