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Linear pharmacokinetic models for evaluating unusual work schedules, exposure limits and body burdens of pollutants.

The adverse effects of workplace exposures to pollutants relate more accurately to the concentrations of pollutants in the body than in the environment. In many cases pharmacokinetic models may represent the external to internal concentration relationships with useful accuracy. Simplified equations are presented for stepwise calculations on a series of time-averaged, external concentrations to give a corresponding series of internal concentrations. Accurate results were obtained for averaging times not exceeding one-fourth of the biological half-life of the pollutant. A convenient measure of internal concentration is the external concentration that would be at in vivo equilibrium with it (termed biologically effective concentration). Three measures of damage burden are proposed, each appropriate for different toxic mechanisms. The calculations readily may be carried out on a programmable calculator or microcomputer. Illustrative examples show how unusual work schedules may be compared with an 8 hr/day, 5 days/week schedule and how appropriate short- and long-term exposure limits may be determined. Other examples, illustrated for lead, relate absorbed mass rates to body concentrations and body burdens in a two-compartment kinetic model. These calculations should provide a more accurate evaluation of fluctuating concentrations, which can be handled easily.

Absorption↗

[Exposure to beta-naphthylamine in the Polish industry].

Data on occupational exposure to beta-naphthylamine obtained from Departments of Occupational Hygiene in Sanitary-Epidemiological Stations have been verified. The verification implied that this compound may occur in air only at the production of phenyl-beta-naphthylamine and in few research laboratories where exposure bears no industrial nature. The exposure to beta-naphthylamine at the production of phenyl-beta-naphthylamine was evaluated. The studies demonstrated that beta-naphthylamine occurs in air only at scaling of phenyl-beta-naphthylamine and its concentration does not exceed 0.0024 mg/m3.

2-Naphthylamine↗

[Appearance of aromatic polycyclic hydrocarbons during construction of asphalt and tar road surfaces].

The dust was sampled using personal samplers and stationary aspirators. PAHs were determined by thin layer chromatography and spectrophotometry in the UV and Vis range. In the samples the concentrations of coal tar pitch volatiles (benzene extract) and phenanthrene, fluoranthene, pyrene, chrysene, tetraphene, benzo(a)pyrene, benzo(e)pyrene, perylene, 1,12 benzoperylene, indeno(1,2,3-cd) pyrene were determined. The qualitative analysis identified all these hydrocarbons but only fluoranthene, pyrene, chrysene, tetraphene and benzo(a)pyrene could be quantitatively determined. The benzene extract concentration exceeds the value of 0.2 mg/m3 in 50% of samples. Much higher results were obtained for tar-concrete (1.45-2.85 mg/m3) than for asphalt-concrete (0.14-0.71 mg/m3). Also the drivers are exposed to excess benzene extract concentrations (0.055-0.669 mg/m3). Laboratory workers were found to be exposed to high concentrations of PAH and several solvents.

Air Pollutants, Occupational↗

Improvement in conditions at an amalgamation plant after an industrial hygiene survey.

After receipt of urine samples which showed higher than normal levels of mercury (Hg) from workers at a large goldmine, air samples were taken at the mine's amalgamation plant. These showed not only values higher than the threshold limit for Hg in air but also significant quantities of Hg on the worker's overalls. Recommendations were made for improvements and when these were completed samples were again taken at the plant. The mean Hg level in urine samples had dropped to one-third of its original value and concentrations in air were very much reduced.

Air Pollution↗

[Occupational exposure of workers in a zinc-processing plant].

Zinc was determined in urine and blood of thase occupationally exposed to that element. Urine was sampled daily for 6 days prior to and after work. Zinc was found to exhibit cumulative properties even when its airborne concentrations did not significantly deviate from normal.

Air Pollutants, Occupational↗