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NIOSH funds the DUSTI project

Published on November 10, 2009 at 1:21 AM · No Comments

In the construction industry, respiratory disease, often leading to disability or an increased risk of cancer, is a major public health concern. Studies led by Deborah Young-Corbett, a faculty member in Virginia Tech's School of Construction, have shown that specific types of sanding tools are highly effective in reducing the dust that causes these health hazards, yet the industry's usage of the available technology remains very low.

To find out why, Young-Corbett conducted follow-up studies with construction firm owners and workers, and identified a number of barriers to the adoption of technology that lead to healthier environments. She said they related to productivity, work quality, and perceptions of benefits and risks.

One of her colleagues, Theodore Koebel of urban affairs and planning at Virginia Tech has also conducted work in this area and has identified a number of strategies to encourage the construction industry to adopt the new technologies.

The two have now teamed on a new proposal to build upon this original work, and to improve the adoption of engineering controls in the construction industry to improve the health of the workers. Joining them is Enid Headen Montague, a member of the industrial engineering department at the University of Wisconsin-Madison. Under a Research-to-Practice (R2P) project, the National Institute for Occupational Safety and Health (NIOSH) has agreed to fund the next phase of this work.

Young-Corbett, the principal investigator on the project, started working in this area when she was pursuing her doctorate in industrial engineering/industrial hygiene which she obtained in 2007. Among her honors as a Ph.D. candidate, she was a NIOSH fellowship recipient for 2006-07. She led a pilot project in the Virginia Tech Center for Innovation in Construction, Safety and Health on the evaluation of dust control technologies for drywall finishing operations. She also received a NIOSH training grant from Johns Hopkins University to enhance her work on this topic, which served as the background material for her dissertation.

In the two years since her arrival on the engineering faculty at Virginia Tech, she has brought in some $1.2 million in sponsored research, with a personal share of more than $700,000. This specific grant for $583,125 is part of the NIH Research Project Grant Program or an RO1. RO1s, the original NIH grant mechanism, provide support for health-related research and development. And although a dramatic increase in biomedical research has taken place at Virginia Tech, it is rare for an assistant professor to receive an NIH RO1.

Young-Corbett explained that for decades "drywall finishing operations have been associated with worker over-exposure to dust. This dust contains known particulate respiratory health hazards such as silica, talc, mica, and calcite. Despite the existence of effective engineering controls, such as ventilated sanders and low-dust drywall compound, worker exposures persist."

Specifically, drywall finishers and laborers have a statistically elevated risk of death from cancer of the pharynx, lung, and respiratory tuberculosis, according to previous studies, Young-Corbett, the director of the Occupational and Construction Hazard Reduction Engineering Laboratory at Virginia Tech, added. http://www.mlsoc.vt.edu/people/young/index.php

Yet, a previous NIOSH Hazard Control Study found that vacuum sanding systems reduced drywall dust levels by 80 to 97 per cent. This evaluation of five commercially available ventilated drywall-sanding systems found that four of the five systems reduced dust concentrations by greater than 90%.

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