Two methods are described in determining the concentration of Formaldehyde in the sterilisation chamber of a regular commercial sterilizer. The measurement and flow of the concentration is ascertained during a routine sterilization procedure. With regard to the biological efficiency test of the examined apparatus the stability of the active Formaldehyde concentration is controlled. The difficulty in the determination of the Formaldehyde in such sterilizers is due to the fact that samples must be taken at a reduced pressure of 200 mbar. We have developed two different sampling methods. By employing the first continual collection method Formaldehyde gas is drawn out of the sterilization chamber with a high vacuum pump and conveyed with hydrogen into a nickel catalysator, whereby Methane is formed. The determination of Methane is carried out with a flame ionisation detector (F.I.D.). The results of the F.I.D. method are between 10.1-10.8 mg Formaldehyde per litre of gas. It is possible to detect a slight, even reduction in the Formaldehyde concentration throughout a period of 90 min. With the second discontinual method of determination vacuum tubes are employed which are furnished with external magnetic valves for control. By opening the magnetic valves briefly during the pre-vacuum therewith causing loss of pressure, Formaldehyde gas can be collected in the vacuum tubes throughout the sterilization procedure. The determination of the samples extracted by the discontinual method is carried out spectrophotometrically using the p-Rosanilin method after Miksch et al. The second method of determination shows values of 9.0-9.8 mg/l (Sx = 0.8 mg/l). These results lie somewhat lower than those of the F.I.D. determination. The flow of the concentration during 90 min. shows an average reduction of 7.4% and matches exactly the curve which was obtained by the F.I.D. method. By measuring the Formaldehyde concentrations which goods are subjected to in normal sterilization procedure it is possible to examine the efficacy of Formaldehyde sterilizers under regular conditions. Only by quotation of the Formaldehyde concentration present is it possible to reproduce details on sterilization times of treated articles.
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Arch Toxicol
January 2025
National Research Centre for the Working Environment, Copenhagen, Denmark.
Formaldehyde (FA) is a ubiquitous indoor air pollutant emitted from construction, consumer, and combustion-related products, and ozone-initiated reactions with reactive organic volatiles. The derivation of an indoor air quality guideline for FA by World Health Organization in 2010 did not find convincing evidence for bronchoconstriction-related reactions as detrimental lung function. Causal relationship between FA and asthma has since been advocated in meta-analyses of selected observational studies.
View Article and Find Full Text PDFJ Am Chem Soc
January 2025
Department of Chemistry, University of California, Berkeley, California 94720, United States.
Switchable selectivity achieved by altering reaction conditions within the same photocatalytic system offers great advantages for sustainable chemical transformations and renewable energy conversion. In this study, we investigate an efficient photocatalytic methanol dehydrogenation with controlled selectivity by varying the concentration of nickel cocatalyst, using zinc indium sulfide nanocrystals as a semiconductor photocatalyst, which enables the production of either formaldehyde or ethylene glycol with high selectivity. Control experiments revealed that formaldehyde is initially generated and can either serve as a terminal product or intermediate in producing ethylene glycol, depending on the nickel concentration in the solution.
View Article and Find Full Text PDFInt J Mol Sci
December 2024
Department of Chemistry, Faculty of Sciences, Canakkale Onsekiz Mart University, Terzioglu Campus, 17100 Canakkale, Turkey.
Hematoxylin (HT) is a natural staining dye used in histopathology, often combined with Eosin for H&E staining. A poly(hematoxylin-co-l-lysine) (p(HT-co-l)) nanonetwork was synthesized through a one-step Mannich condensation reaction using formaldehyde as a linking agent. The resulting p(HT-co-l) nanogels had an average size of about 200 nm and exhibited a smooth surface and desirable functional groups such as -OH, -NH, and -COOH, as recognized by FT-IR analysis.
View Article and Find Full Text PDFEnviron Monit Assess
January 2025
Laboratory for Ecotoxicology and Environmental Forensics, University of Benin, PMB 1154, Benin City, Nigeria.
This research was carried out to assess the concentrations of carbon monoxide (CO) and formaldehyde (HCHO) in Edo State, Southern Nigeria, using remote sensing data. A secondary data collection method was used for the assessment, and the levels of CO and HCHO were extracted annually from Google Earth Engine using information from Sentinel-5-P satellite data (COPERNISCUS/S5P/NRTI/L3_) and processed using ArcMap, Google Earth Engine, and Microsoft Excel to determine the levels of CO and HCHO in the study area from 2018 to 2023. The geometry of the study location is highlighted, saved and run, and a raster imagery file of the study area is generated after the task has been completed with a 'projection and extent' in the Geographic Tagged Image File Format (.
View Article and Find Full Text PDFAnal Biochem
January 2025
Laboratorio de Biología Estructural y Molecular BEM, Facultad de Ciencias, Universidad de Chile, Las Palmeras 3425 Ñuñoa, Santiago, 7800003, Chile; Laboratorio de Biotecnología Vegetal y Ambiental Aplicada, Universidad Tecnológica Metropolitana, Santiago, Chile.
FtsZ is a bacterial protein that plays a crucial role in cytokinesis by forming the Z-ring. This ring acts as a scaffold to recruit other division proteins and guide the synthesis of septal peptidoglycan, which leads to cell constriction. In its native state, the FtsZ protein from Escherichia coli (EcFtsZ) is a multi-oligomer comprising dimers, trimers, tetramers, and hexamers in a dynamic self-association equilibrium depending on its concentration.
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