Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Trifluoroiodomethane (CF3I) (2019)

View through CrossRef
Trifluoroiodomethane (CF 3 I) is a colorless and odorless gas used primarily as a fire suppressant. CF 3 I has low acute inhalation toxicity. The no-observed adverse effect level (NOAEL) of CF 3 I for cardiac sensitization in dogs was 2000 ppm. The potential effects of 4-week inhalation exposure in both rats and mice have been examined. In rats, the NOAEL was 10,000 ppm, and in mice, the NOAEL was 10,000 ppm. In a subchronic inhalation study in rats, the lowest observed adverse effect level (LOAEL) was 20,000 ppm for thyroid-related effects; the study NOAEL (for non-thyroid-related effects) was 20,000 ppm. In a reproductive/developmental inhalation toxicity study in rats, 20,000 ppm CF 3 I produced minimal general toxicity and no indication of reproductive or developmental toxicity. The LOAEL for parental toxicity (based on thyroid hormone effects) was 2000 ppm; excluding thyroid effects, the parental NOAEL was 7000 ppm CF 3 I. The observed effects on the thyroid in rats were considered of less relevance to human risk assessment than the other observed systemic effects because of known species-specific differences in sensitivity to thyroid hormone perturbations. There are no chronic toxicity or carcinogenicity studies available. CF 3 I had mixed results in various in vitro and in vivo genotoxicity assays. The NOAEL of 7000 ppm from the reproductive/developmental inhalation study was used as the point of departure (POD) for workplace environmental exposure level (WEEL) value development. This POD was adjusted to account for interindividual variability, duration of exposure, and database limitations. The resulting 8-h time-weighted average WEEL value of 500 ppm is expected to provide a significant margin of safety against any potential adverse health effects in workers exposed to CF 3 I. A 15-min short-term exposure limit of 1500 ppm was also established to protect workers from potential cardiac effects produced by acute, high-dose inhalation of CF 3 I.
Title: Trifluoroiodomethane (CF3I) (2019)
Description:
Trifluoroiodomethane (CF 3 I) is a colorless and odorless gas used primarily as a fire suppressant.
CF 3 I has low acute inhalation toxicity.
The no-observed adverse effect level (NOAEL) of CF 3 I for cardiac sensitization in dogs was 2000 ppm.
The potential effects of 4-week inhalation exposure in both rats and mice have been examined.
In rats, the NOAEL was 10,000 ppm, and in mice, the NOAEL was 10,000 ppm.
In a subchronic inhalation study in rats, the lowest observed adverse effect level (LOAEL) was 20,000 ppm for thyroid-related effects; the study NOAEL (for non-thyroid-related effects) was 20,000 ppm.
In a reproductive/developmental inhalation toxicity study in rats, 20,000 ppm CF 3 I produced minimal general toxicity and no indication of reproductive or developmental toxicity.
The LOAEL for parental toxicity (based on thyroid hormone effects) was 2000 ppm; excluding thyroid effects, the parental NOAEL was 7000 ppm CF 3 I.
The observed effects on the thyroid in rats were considered of less relevance to human risk assessment than the other observed systemic effects because of known species-specific differences in sensitivity to thyroid hormone perturbations.
There are no chronic toxicity or carcinogenicity studies available.
CF 3 I had mixed results in various in vitro and in vivo genotoxicity assays.
The NOAEL of 7000 ppm from the reproductive/developmental inhalation study was used as the point of departure (POD) for workplace environmental exposure level (WEEL) value development.
This POD was adjusted to account for interindividual variability, duration of exposure, and database limitations.
The resulting 8-h time-weighted average WEEL value of 500 ppm is expected to provide a significant margin of safety against any potential adverse health effects in workers exposed to CF 3 I.
A 15-min short-term exposure limit of 1500 ppm was also established to protect workers from potential cardiac effects produced by acute, high-dose inhalation of CF 3 I.

Related Results

DAMPAK TEKNOLOGI TERHADAP PROSES BELAJAR MENGAJAR
DAMPAK TEKNOLOGI TERHADAP PROSES BELAJAR MENGAJAR
DAFTAR PUSTAKAAditama, M. H. R., & Selfiardy, S. (2022). Kehidupan Mahasiswa Kuliah Sambil Bekerja di Masa Pandemi Covid-19. Kidspedia: Jurnal Pendidikan Anak Usia Dini, 3(...
Raman and Infrared Spectra of CF3Br and CF3I
Raman and Infrared Spectra of CF3Br and CF3I
The Raman spectra of CF3Br and CF3I have been obtained at —100°C and —40°C, respectively. The infrared spectra of both compounds have been obtained at 30°C, and some measurements h...
Laser-induced fluorescence study of the reactions of Ca with CH3I and CF3I in a molecular beam – gas apparatus
Laser-induced fluorescence study of the reactions of Ca with CH3I and CF3I in a molecular beam – gas apparatus
Energy partitioning of the CaI product from the Ca + CH3I [1] and Ca + CF3I [2] reactions was studied by laser-induced fluorescence. Product vibrational state distributions were ob...
Macroeconomic and Social Precursors of Suicide Rates in the Philippines: A Quantitative Analysis (Preprint)
Macroeconomic and Social Precursors of Suicide Rates in the Philippines: A Quantitative Analysis (Preprint)
BACKGROUND Suicide is a complex, serious and multifaceted public health issue that poses significant challenges to societies worldwide. In fact, it represen...
Current Perspectives on Cystic Echinococcosis: A Systematic Review
Current Perspectives on Cystic Echinococcosis: A Systematic Review
Abstract Introduction: Hydatidosis, a zoonotic disease caused by the larval stage of Echinococcus granulosus, is a significant public health concern with notable economic impact. I...
Synthesis, structure and conformation of 1,3‐difluorotetraphenyl benzene
Synthesis, structure and conformation of 1,3‐difluorotetraphenyl benzene
AbstractThe compound trifluoroiodomethane can be activated to react with the electron donor, 1,4‐dilithiotetraphenyl butadiene, by means of electron transfer catalysis (ETC). The s...
Italian Bird Rarities Committee (COI) - Report 29
Italian Bird Rarities Committee (COI) - Report 29
Italian Birds Rarities Committee (COI) - Report 29. This report refers to records from January 1st to December 31st 2019, with the addition of a number of records from previous yea...

Back to Top