Search results for "Air monitoring"

showing 5 items of 5 documents

Preliminary results about the breath of passive smokers and vapers based on the use of portable air monitoring devices

2016

Abstract Preliminary studies were made on the effect of both, classical smoking and electronic cigarettes (ECs) vaping, based on the quality of the indoor air and the breath of passive smokers. Portable air monitoring devices were used to evaluate carbon monoxide (CO), carbon dioxide (CO2), particulate materials (PM), formaldehyde and volatile organic compounds (VOCs) in indoor air and breath of active and passive smokers and vapers. As preliminary results, it can be observed that the major part of PMs liberated in classical smoking and ECs vaping correspond to the lowest size, which is the most dangerous for human health. However, the number of smallest PMs formed during vaping is around 5…

ChemistryIndoor airPassive Exposure010501 environmental sciences01 natural sciencesAnalytical Chemistry03 medical and health sciencesHuman healthAir monitoringchemistry.chemical_compound0302 clinical medicineCigarette smokingEnvironmental chemistryParticulate materialCarbon dioxide030212 general & internal medicineSpectroscopy0105 earth and related environmental sciencesMicrochemical Journal
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Environmental applications (air)

2020

Abstract The use of solid sorbent-based devices for the monitoring of contaminants in the air is a widespread trend due to its versatility, physicochemical stability, and high enrichment factor. Active and passive sampling strategies have been developed for air monitoring using different materials, such as carbon-based organic polymers and inorganic sorbents. It has been updated in the literature regarding the most recent applications of the use of solid sorbent-based samplers for the monitoring of air in different sites such as rural, urban, industrialized, and indoor areas, including workplace environments for the evaluation of occupational exposure risks.

Air monitoringSorbentWaste managementEnvironmental scienceOccupational exposureContaminationEnrichment factorPassive sampling
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External and internal exposure to polycyclic aromatic hydrocarbons (PAH) among workers in the production of fire-proof materials – Proposal of a biol…

2006

In 1999, we introduced the German polycyclic aromatic hydrocarbons (PAH) study. The study was designed as a nation-wide investigation on workers exposed to PAH. One aim of the study was to establish biological monitoring guidance values (BMGVs) for different branches. Here, we report on the production of fire-proof materials. This branch of industry is typically confronted with high exposure to PAH and with PAH-induced occupational (cancer) diseases. One hundred and thirty-five employees participated in the course of seven sampling dates in four different plants in Germany. External exposure was determined by personal air monitoring of the 16 EPA-PAH. Human biological monitoring was accompl…

AdultPercentilePopulationAir Pollutants OccupationalUrinechemistry.chemical_compoundAir monitoringGermanyOccupational ExposureHumansIndustryPolycyclic Aromatic HydrocarbonsThreshold Limit ValueseducationCreatinineeducation.field_of_studyPyrenesSmokingPublic Health Environmental and Occupational HealthMiddle AgedPhenanthrenesPah exposureSpot urinechemistryEnvironmental chemistryPyreneEnvironmental MonitoringInternational Journal of Hygiene and Environmental Health
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Novel Porous Carbon Material for the Detection of Traces of Volatile Organic Compounds in Indoor Air

2021

International audience; A highly sensitive and selective silicon-based microanalytical prototype was used to identify a few ppb of volatile organic compounds (VOCs) in indoor air. Herein, a new nonactivated tannin-derived carbon synthesized by an environmentally friendly method, DM2C, a MIL-101(Cr) MOF, and a DaY zeolite were selected for the preconcentration of BTEX compounds (i.e., benzene, toluene, ethylbenzene, and xylenes). Integrating a small amount of these nanoporous solids inside a miniaturized preconcentration unit led to excellent preconcentration performance. By taking advantage of the high adsorption−desorption capacities of the DM2C adsorbent, concentrations as low as 23.5, 30…

indoor air monitoringMaterials scienceInorganic chemistrychemistry.chemical_element02 engineering and technologyBTEX010501 environmental sciences[CHIM.INOR]Chemical Sciences/Inorganic chemistry01 natural sciencesEthylbenzene[SPI.MAT]Engineering Sciences [physics]/Materialschemistry.chemical_compound[SPI]Engineering Sciences [physics]AdsorptionGeneral Materials ScienceRelative humidity[SPI.NANO]Engineering Sciences [physics]/Micro and nanotechnologies/MicroelectronicszeoliteBenzene0105 earth and related environmental sciencesMOF[SPI.ACOU]Engineering Sciences [physics]/Acoustics [physics.class-ph]Nanoporousmicroporous materialspreconcentrator[CHIM.MATE]Chemical Sciences/Material chemistry021001 nanoscience & nanotechnologyToluenehydrophobic carbonchemistry[SDE]Environmental Sciences0210 nano-technologyCarbonminiaturized gas chromatographBTEX
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A Short Review of Simple Analytical Methods for the Evaluation of PAHs and PAEs as Indoor Pollutants in House Dust Samples

2022

Studies on indoor air quality are indispensable when considering that people spend approximately 85% of their time in confined environments. This short review mostly takes into consideration research that uses passive samplers to evaluate the quality of indoor environments (houses, school, cars, etc.). This short review summarizes most analytical methods to detect and quantify PAHs and PAEs in house dust used as a passive sampler. The objective of house dust analysis is to identify the presence, amount and distribution of specific hazardous substances in confined spaces and, if possible, to identify their sources. Household dust and the compounds present in it can enter the human body by in…

indoor air monitoringAtmospheric Scienceindoor pollutantsPAHs and PAEsSettore CHIM/01 - Chimica AnaliticaEnvironmental Science (miscellaneous)
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