TY - CHAP
T1 - Review of DOD's Approach to Deriving an Occupational Exposure Level for Trichloroethylene
AU - Board on Environmental Studies and Toxicology
AU - Division on Earth and Life Studies
AU - National Academies of Sciences, Engineering, and Medicine
AU - COMMITTEE TO REVIEW DOD’S APPROACH TO DERIVING AN OCCUPATIONAL EXPOSURE LIMIT FOR TCE
AU - Bishop, Edward C.
AU - Corley, Richard A.
AU - De Roos, Anneclaire J.
AU - Dorman, David C.
AU - Hogan, Theodore J.
AU - Lam, Juleen
AU - Robinson, Karen A.
AU - Ryan, Elizabeth P.
AU - Thompson, Kary E.
AU - Wood, Carol S.
AU - Martel, Susan N.J.
AU - Dawson, Tamara
AU - Farland, William H.
AU - Aylward, Lesa
AU - Bartuska, Ann M.
AU - Becker, Richard A.
AU - Colglazier, E. William
AU - DiToro, Dominic M.
AU - Gray, George
AU - Lewis, R. Jeffrey
AU - Buck Louis, Germaine M.
AU - Rasoulpour, Reza J.
AU - Rose, Joan B.
AU - Solomon, Gina M.
AU - Swackhamer, Deborah L.
AU - Tewksbury, Joshua
AU - Thorne, Peter S.
AU - Duke, Clifford
AU - Wassel, Raymond A.
AU - Llanos, Laura
N1 - Publisher Copyright:
Copyright 2019 by the National Academy of Sciences. All rights reserved.
PY - 2019
Y1 - 2019
N2 - Trichloroethylene (TCE) is a solvent that is used as a degreasing agent, a chemical intermediate in refrigerant manufacture, and a component of spot removers and adhesives. It is produced in mass quantities but creates dangerous vapors and is an environmental contaminant at many industrial and government facilities, including facilities run by the U.S. Department of Defense (DoD). It is important to determine the safe occupational exposure level (OEL) for the solvent in order to protect the health of workers who are exposed to its vapors. However, there are concerns that the current occupational standards insufficiently protect workers from these health threats. Review of DOD's Approach to Deriving an Occupational Exposure Level for Trichloroethylene makes recommendations to improve the DoD's approach to developing an OEL for TCE, strengthen transparency of the process, and improve confidence in the final OEL value. This report reviews the DoD's approach using a literature review, evidence synthesis based on weight of evidence [WOE], point-of-departure derivation, physiologically based pharmacokinetic modeling, extrapolation tools, and explores other elements of the process of deriving an OEL for TCE. It examines scientific approaches to developing exposure values and cancer risk levels, defining the scope of the problem, and improving hazard identification.
AB - Trichloroethylene (TCE) is a solvent that is used as a degreasing agent, a chemical intermediate in refrigerant manufacture, and a component of spot removers and adhesives. It is produced in mass quantities but creates dangerous vapors and is an environmental contaminant at many industrial and government facilities, including facilities run by the U.S. Department of Defense (DoD). It is important to determine the safe occupational exposure level (OEL) for the solvent in order to protect the health of workers who are exposed to its vapors. However, there are concerns that the current occupational standards insufficiently protect workers from these health threats. Review of DOD's Approach to Deriving an Occupational Exposure Level for Trichloroethylene makes recommendations to improve the DoD's approach to developing an OEL for TCE, strengthen transparency of the process, and improve confidence in the final OEL value. This report reviews the DoD's approach using a literature review, evidence synthesis based on weight of evidence [WOE], point-of-departure derivation, physiologically based pharmacokinetic modeling, extrapolation tools, and explores other elements of the process of deriving an OEL for TCE. It examines scientific approaches to developing exposure values and cancer risk levels, defining the scope of the problem, and improving hazard identification.
UR - https://www.scopus.com/pages/publications/105033981693
UR - https://www.scopus.com/pages/publications/105033981693#tab=citedBy
U2 - 10.17226/25610
DO - 10.17226/25610
M3 - Chapter
AN - SCOPUS:105033981693
SN - 0309499240
SN - 9780309499248
SP - 1
EP - 61
BT - Coresource 4
PB - National Academies Press
ER -