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D E Venturin

Publications and source records attributed to D E Venturin.

2 recordsLinked to original sources

The random-effects model applied to refractory ceramic fiber data.

Refractory ceramic fiber (RCF) is a valuable, high-temperature, insulating material with a variety of industrial uses. Because some fibers are respirable by humans and RCF is relatively durable in simulated lung fluids, RCF may pose a health hazard in the workplace. The RCF industry has established a comprehensive product stewardship program (PSP) to identify, quantify, and manage risks. One key element of this PSP is a workplace monitoring program. This paper analyzes monitoring data collected as part of a Consent Agreement with the U.S. Environmental Protection Agency over the period from 1993 to 1998. More specifically, this paper applies the random-effects model (REM) to data collected at several Unifrax plants and applicable to several groups of workers. The REM fits the RCF data well. Depending upon the plant and the functional job category values of the variance of the log-transformed time-weighted average workplace concentrations range from slightly less than 0.5 to 1.0. The estimated intraclass correlations (ratio of the between-worker variance to the total variance) were less than 0.4, and most were less than 0.2. Implications of these findings are examined. Use of the REM in the development of a workplace respiratory policy is described. Finally, two possible criteria for measuring compliance with an occupational exposure limit are reviewed: an "overexposure" criterion developed by Rappaport and co-workers and a conventional "no exceedance" criterion reportedly used by regulatory agencies. The overexposure criterion is logically correct for potential toxicants with chronic effects. For representative values of statistical parameters for RCF from the plants considered, the overexposure criterion is less stringent.

Air Pollutants, Occupational↗

Workplace monitoring of refractory ceramic fiber in the United States.

This paper summarizes data from a comprehensive workplace exposure monitoring program for refractory ceramic fiber (RCF) conducted since 1990, including data collected under a 5-year consent agreement (1993-1998) between the U.S. Environmental Protection Agency and the Refractory Ceramic Fibers Coalition. It presents additional data and analyses, which complement an earlier article published in this journal (L. D. Maxim et al., 1997, Regul. Toxicol. Pharmacol. 26, 156-171). As part of this exposure monitoring program, data were collected at plants operated by RCF manufacturers and at customer facilities. Beginning in 1993, at least 720 samples (each sample consisting of one or more cassettes) were collected annually, distributed according to a stratified random sampling plan. The strata consisted of workers in eight functional job categories (FJCs) at manufacturing and customer plants. Time-weighted average (TWA) and task length average data were gathered and analyzed using phase contrast optical microscopy and (for a subset of samples) transmission electron microscopy methods. Data on respirator usage (by type) were also collected. Statistical analysis indicates that there are significant differences in TWA fiber concentrations (exposure) among FJCs (installation, finishing, and removal categories have the highest average concentrations), that workplace concentration data are approximately lognormally distributed, and that weighted average fiber concentrations decreased over the period from 1990 to 1998-although trend curves leveled out as exposures have decreased and further improvements became more difficult. Material differences exist in exposure between RCF manufacturers and their customers (largely because the mix of jobs differ), but these differences have narrowed over the years. Respirator usage varies with exposure. Respirator data are used to derive improved estimates of actual worker exposure. Alternative criteria for selecting FJCs for control efforts are defined and illustrated. Lessons learned for future monitoring efforts are summarized.

Environmental Monitoring↗