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The Role of Cancer Risk in the Regulation of Industrial Pollution

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  • William S. Pease

Abstract

The extent of carcinogen regulation under existing U.S. environmental statutes is assessed by developing measures of the scope and stringency of regulation. While concern about cancer risk has played an important political role in obtaining support for pollution control programs, it has not provided the predominant rationale for most regulatory actions taken to date. Less than 20% of all standards established to limit concentrations of chemicals in various media address carcinogens. Restrictions on chemical use are more frequently based on concerns about noncancer human health or ecological effects. Of the chemicals in commercial use which have been identified as potential human carcinogens on the basis of rodent bioassays, only a small proportion are regulated. There is an inverse relationship between the scope of regulatory coverage and the stringency of regulatory requirements: the largest percentages of identified carcinogens are affected by the least stringent requirements, such as information disclosure. Standards based on de minimis cancer risk levels have been established for only 10% of identified carcinogens and are restricted to one medium: water. Complete bans on use have affected very few chemicals. The general role that carcinogenicity now plays in the regulatory process is not dramatically different from that of other adverse human health effects: if a substance is identified as a hazard, it may eventually be subject to economically achievable and technically feasible restrictions.

Suggested Citation

  • William S. Pease, 1992. "The Role of Cancer Risk in the Regulation of Industrial Pollution," Risk Analysis, John Wiley & Sons, vol. 12(2), pages 253-265, June.
  • Handle: RePEc:wly:riskan:v:12:y:1992:i:2:p:253-265
    DOI: 10.1111/j.1539-6924.1992.tb00673.x
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    1. Robinson, J.C. & Pease, W.S., 1991. "Public health and the law: From health-based to technology-based standards for hazardous air pollutants," American Journal of Public Health, American Public Health Association, vol. 81(11), pages 1518-1523.
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    Cited by:

    1. Brooks, Nancy & Sethi, Rajiv, 1997. "The Distribution of Pollution: Community Characteristics and Exposure to Air Toxics," Journal of Environmental Economics and Management, Elsevier, vol. 32(2), pages 233-250, February.
    2. Alan F. Hoskin & J. Paul Leigh & Thomas W. Planek, 1994. "Estimated Risk of Occupational Fatalities Associated with Hazardous Waste Site Remediation," Risk Analysis, John Wiley & Sons, vol. 14(6), pages 1011-1017, December.
    3. Sara M. Hoover & Lauren Zeise & William S. Pease & Louise E. Lee & Mark P. Hennig & Laura B. Weiss & Carl Cranor, 1995. "Improving the Regulation of Carcinogens by Expediting Cancer Potency Estimation," Risk Analysis, John Wiley & Sons, vol. 15(2), pages 267-280, April.

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    1. Brooks, Nancy & Sethi, Rajiv, 1997. "The Distribution of Pollution: Community Characteristics and Exposure to Air Toxics," Journal of Environmental Economics and Management, Elsevier, vol. 32(2), pages 233-250, February.

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