Document jJk0LeYrNGyzOyomrvNge3LR
pfT)wQiyUw*fmif of Near Vert
utu it lb/i>-
INSULATION HYGIENE
PROGRESS REPORTS
FROM THE INSULATION INDUSTRY HYGIENE RESEARCH PROGRAM
ImW* X MM. U, Pntm Dtnctm
VoL 7 No. 3 and 4
Winter 1975
9Z99M001S
New Asbestos Standard Proposed
Cancer Risk Specifically Considered 1
PLAINTIFF'S EXHEUT
On October 9. 1975, the Department of Labor proposed a new standard for occupational exposure to asbestos. The proposed standard would, among other things, lower the permissible asbestos exposure to 500.000 fibers per cubic meter of air (0.5 asbestos fibers per cubic centimeter) for an eight-hour, time-weighted average exposure, and likewise reduce the permissible ceiling exposure to five million asbestos fibers per cubic meter (5 t/ms) for any period not exceeding 15 minutes. The pro posal would reduce to one-tenth the current U.S. time-weighted average exposure standard of 5 f/ml. A reduc tion to 2 0ml on July 1, 1976 is already mandated in the current standard.
Special Provisions for Construction
The standard, as revised, would apply to all workplaces where occupa tional exposure to asbestos occurs, but would exclude the construction indus try at this time. However, the Occupa tional Safety and Health Administra tion (OSHA) plans to soon put forth special regulations for this segment of the asbestos industry.
In the proposed rules published by the Secretary of Labor, it is stated that, "It is OSH A's intention to develop and propose a separate revision to the exist ing asbestos standard for the construe-, tion industry. Approximately threefourths of all asbestos products in 1972 were used in the construction industry. In addition, the uniqueness of the con struction industry itself (viz., the mul tiplicity of non-fixed workplaces, and the utilization of highly transient work forces) strongly suggests separate treatment. These structural differences were reflected in the 17-18 September 1975 deliberations of the OSHA Ad visory Committee on Construction Safety and Health.
"Although OSHA believes that health hazards faced by employees in
the construction industry with regard to
occupational exposure to asbestos are
similar to those faced by their counter
parts in other covered employments,
OSHA recognizes that alternative ad
ministrative and engineering controls
may be more appropriate and feasible
for the construction industry. Therefore
OSHA intends to consult with the Con
struction Advisory Committee in order
to further explore such alternatives.
Upon publication of the proposal to re
vise the existing asbestos standard for
the construction industry, OSHA will
consider the possibility of consolidated
hearings on that proposal and the pro
posal contained herein for all other cov
ered employments."
This recognition that the construc
tion industry is unique is highly desira
ble. Earlier data on the effectiveness of
monitoring in the construction industry
(see Insulation Hygiene Progress Re
ports, Summer 1973), have shown that
few dust counts are ever taken in this
segment of the industry. Thus, spec
ification of procedures is of much
greater importance here. Individual
workers must be able to judge whether
or not they are working in a safe envi
ronment on the basis of materials and
methods rather than dust counts.
As much of insulation is now
asbestos-free, work practices for in
stallation of new material can be de
veloped that would lead to a time-
weighted average exposure less than
that proposed in the new standard. With
care, even rip-out can be done safely,
but special precautions must be taken.
Wetting techniques have now been de
veloped that would allow removal of
asbestos to be accomplished within the
proposed regulations. '
7'
' -r. ~
*
Millions of Workers Exposed
vi.tv*- . -.-**> -- In the preamble to the standard,
OSHA estimates that millions of work
ers are occupationally exposed to asbes
tos. They state. "An estimated 50.000 workers are involved in the manufac ture of asbestos-containing products. However, this figure does not include secondary manufacture of products which contain asbestos, such as electri cal or thermal insulation, or products which include previously manufactured components containing asbestos.
"There are approximately 40.000 field insulation workers in the United States who are exposed to asbestos dust. The activities of these workers is estimated to cause secondary exposures to approximately three to five million other buildings construction and ship yard workers. However, since the dust exposure to the individual worker is extremely variable, and the number of asbestos workers at any one location is small, the primary and secondary as bestos dust exposures to all workers have never been satisfactorily esti mated."
Cancer-producing Substance
The impetus behind the new pro posal is the acknowledgement by OSHA of the cancer-producing prop erties of asbestos. The current United States standard was based to a large extent on one developed earlier in Great Britain and put into effect in 1970. That standard, in turn, was designed solely to protect against lung scarring (asbestosis). Cancer was recognized as an oc cupational hazard from exposure to as bestos but the British committee de veloping their standard stated that since a quantitative relationship between as bestos exposure and cancer risk was not known, it was not possible at that time to specify an air concentration which was known to be free of risk in this respect. It was hoped by the British, and by the United States agencies, that application of control measures that would protea against asbestosis would
Continued on page 3
398491
ST0046627
Asbestos Risk Exists
Insulation Hygiene
Progress Reports
Vol. 7 No. 3 and 4
Winter 1975
from Use of Taping Compounds
from (he Insulation Industry Hygiene Researcn Pro gram Editor: W. J. Nlcfcoboo. Pt.D.. published a the Environmental Sciences Laboratory i Irving i Selikoff. M.D.. Direciorl. Mount Sinai School of Medicine of the Citv University of New York. N Y 10029
Adviaory Council of HHRP
Irving i. Selikoff. M.O.. Program Director and Chairman
E. Cuyler Hammond. Sc.D.. Vice President. American Cancer Society. New York. N Y
Andrew Haas. General President. International Association of Heat and Frost Insulators and As bestos Wotkers. Washington. D.C.
PURPOSES OF THE INSULATION
INDUSTRY HYGIENE RESEARCH PROGRAM
In spite of the introduction of asbestos-fite insulation materials and the existing bans on the use of asbes tos-containing spray fireproofing, a serious asbestos hazard remains in the construction industry, with members of the Painters Brotherhood of the Build ing and Construction Trades Depart ment being at greatest risk. Wallboard finishing compounds and spackle have been found to contain significant amounts of chrysotile asbestos, which is released into the air as dust either during the dry mixing of these com pounds or during sanding.
Drywall taping compounds came into widespread use shortly after World War II. Until fairly recendy, most of the material used was mixed at the con struction site, raising large clouds of dust. In the past few years, many con tractors have switched to premixed compounds, thereby eliminating one major source of asbestos dust. This practice, though, depends entirely on the contractor and what he supplies; several tapers interviewed recendy by Mount Sinai personnel said they still had occasion to use the dry-mix brands.
Sanding can be Dangerous
The problem that remains, even when ready-mixed compounds are used, is that of the dust produced when the dried compound is sanded, prior to painting. In some areas of the country, tapers, or their apprentices, stay and do their own sanding; in others, the paint ers are left to finish the job. often sand ing while other men are working in the same room. Sanding is done either by hand or with a pole.
The Environmental Sciences Lab oratory took air samples at selected job sites in New York City while tapers were at work. Personal samples taken during pole sanding ranged from 1.2 fibers per milliliter (f/ml) to 19.3 f/ml; in an adjacent room, at a distance of 25 feet from the sander. a level of 8.8 f/ml was found. Levels for hand sanding ranged from 1.3 to 16.9 f/ml in the breathing zone of the workers, and a high of 7.1 f/ml was obtained in an adjacent room, at a distance of 15 feet. During dry mixing, a breathing zone sample was found to contain 59 f/ml. though after a 15-minute lapse the level
went down to 0.5 f/ml. The sweeping of floors after sanding
was also found to stir up considerable quantities of settled dust. Thirty-five minutes after sweeping at the site of the sanding, a fiber concentration of 26.4 0ml was obtained. The current U.S. standard in industry is an average not to exceed 5 0ml. mandated to go to 2 f/ml in July, 1976. The Department of Labor has recently initiated procedures to have the standard lowered to 0.5 f/ml.
The results of this sampling, espe cially when contrasted with the current standard in industry, emphasize the im portance of both respiratory protection and careful cleanup in order to reduce the risk of inhaling asbestos fibers. A respirator should be worn by sanders and by any other workers who must be in adjacent areas while this work is in progress. If possible, other workers should wait to allow the dust to settle and be removed before proceeding with
Continued on page 4
1. To develop improved meth ods for minimizing exposure-of insulation workers to dusts and fumes encountered in their work.
2. To disseminate knowledge of these improved methods of dust control wherever they may be applied advantageously and to offer cooperation, advice and as sistance toward their universal adoption.
r
New Information on Health Effects Reviewed
8299'iOOiS
Continued from page l also protect against the various asbestos cancers.
Important new information has been forthcoming subsequent to the promul gation of the current U.S. standard. This has included data obtained by Drs. Irving J. Selikoff and E. Cuvier Ham mond on the mortality experience of all insulation workers in the United States. This large research project showed un equivocally the high risk of lung cancer and mesothelioma experienced by as bestos workers, and in addition, dem onstrated that gastro- intestinal cancer was also increased in incidence among asbestos workers. As data from this large study were reviewed, it was sug gested that the risk of developing cancer of the larynx, oropharynx, or esophagus was also increased from as bestos exposure. Research with the In ternational Association of Heat and Frost Insulators and Asbestos Workers was quoted many times by the Depart ment of Labor. Further studies of other large groups of workers occupationally exposed to asbestos in factory employ ment or mining and milling also indi cated excess carcinogenic risk.
New Information
The Department of Labor particu larly noted information forthcoming from the British Textile mill whose workers' health experience served as basis for the current British standard. "Of significant importance, new data have recently been made available con cerning the cancer risk of workers at the textile mill reviewed for the British standard, including those workers first employed after 1933. It was found that there was excess mortality from lung cancer among those workers who en tered scheduled areas after I January 1933. There was clear evidence of some excess of lung cancer and res piratory deaths among those first ex posed between 1933 and 1950. Equally important was the finding that there still appears to be an excess of deaths due to lung cancer after 15 or more years' ex posure even among those first exposed in 1951 and subsequently. Indeed, it is known that mesothelioma deaths have occurred among the specific group of 290 workers whose experience prior to 1966 had led to the development of the current standard, as detailed above."
Additionally, they noted the increase occurrence of mesothelioma in workers only indirectly exposed to asbestos.
where it appears that average exposure levels would often be considerably less than the projected 2 /ml standard.
Shipbuilding Data Important
"Of considerable industrial impor tance has been the recent description of asbestos disease among shipbuilding and ship repair workers, few of whom actually work with asbestos, but many of whom were, in the past, inadver tently exposed to the asbestos dust re sulting from the use of asbestos prod ucts by a relatively few of their work mates. In 1968. Harries of the Royal Navy reported cases of mesothelioma among shipyard workers at the Royal Navy dockyard in Devonport. in trades which did not directly involve workers exposure to asbestos, but in which there had been occasional opportunity for exposure merely by virtue of working in the same areas. This original finding has been widely confirmed and numer ous cases of mesothelioma have since been reported in former shipyard work ers. Studies of populations of current shipyard workers have shown much radiological evidence of asbestos ab normalities among workers in trades only indireedy exposed to asbestos in the yards."
"Further, evidence has indicated that asbestos also acts as a lung car cinogen at levels much below those which will produce asbestosis. Two surveys of shipyard workers who had x-ray evidence of pleural plaques, but generally not of pulmonary fibrosis, showed a 2.5-fold excess risk of death from lung cancer and high risk of mesothelioma."
Finally, a recent study by NIOSH was reviewed which showed that the mortality experience of underground metal miners exposed to asbestiform minerals produced a threefold in creased risk of bronchogenic carcinoma in workers. Fiber concentrations in the mine average 0.24 f/ml.
In discussing considerations applic able to standards for carcinogens, OSHA stated that, "In the case of as bestos, we are dealing with a substance that poses a range of health risks to the working population. These include the threat of cancer, as well as asbestosis. In considering the controversial issue of carcinogenicity, OSHA is relying upon not only the new data reviewed above, but the leading scientific principles and options believed to reflect the research conclusions of international cancer ex
perts. which were developed since or not known to OSHA at the time that the original standard was promulgated.
"A. THE LATENCY CARCI NOGENIC EFFECTS
"In humans, the latency period for chemical carcinogens may well extend between 20 to 40 or more years. Analogous periods exist for test ani mals. This means that the disease may undergo a long development before a tumor is actually detected. At that point, it has reached a stage where re moval of the worker from the work place may be of no avail and where treatment may be extremely difficult, if not futile. Prudent policy would there fore seem to indicate that every reason able measure should be taken to elimi nate human exposure to chemical com pounds as soon as their carcinogenic nature is identified.
"B. VARIABILITY IN INDIVIDUAL SUSCEPTIBILITY IN RELA TION TO THE CONCEPT OF A THRESHOLD
"Cancer development may be influ enced by such factors as the differing susceptibility of various body organs. In animal studies, it has been found that individual variability in a response to carcinogens is great depending upon factors such as age, sex. hormonal status, diet, and genetic factors. Thus, in the working population, certain groups, such as those already biologi cally compromised, may be more sus ceptible than other groups.
"C. A `THRESHOLD' LIMIT
"Because of the variability of indi vidual response to carcinogens and other factors, the concept of a no effect or threshold level may have little real significance on the basis of existing knowledge. While some level, below which exposure to a carcinogen does hot cause cancer, may conceivably exist for any one individual, other indi viduals in the working population may have cancer induced by doses so low as to be effectively zero. This is not to say that researchers will never find a threshold level for a carcinogenic sub stance. but it does mean that the threshold concept forcarcinogens is. at present, more a matter of responsible regulatory policy than a precise, scien tific determination. .
"These theoretical concepts have a Continued on page 4
1 irw--
398493
398494
Sanding of Spackle Material Should be Limited
Continued from page 2
their own trades. The area should be cleaned, preferably with a vacuum, as soon as the dust has settled. If no vac uum is available, the floor should be dampened prior to sweeping, and the sweeper should wear a mask. Health Effects Seen
Simply because sanding is only a small pan of this construction activity is no reason to minimize the importance of the problem. Although exposure du ration may be shon, the cumulative ef fect of repeated short-term exposures to measurable concentrations of asbestos fibers can be serious. In the course of a medical study of 69 drywall tapers be longing to Local 1974 of the Drywall Tapers and Painters of Greater New York, two-thirds of whom had had an exposure of ten years duration or longer and 61 of whom were smokers or ex smokers, X-ray abnormalities charac teristic of asbestos exposure were found in 37 out of 63 films. There is a close similarity between these findings and those among insulators.
At least one brand of commercial wallboard finishing compound is cur rently available containing no asbestos. It is likely that, as the negative aspects of asbestos-containing compounds be come more widely known, other man ufacturers will develop new formula tions that are free of asbestos. Until then, only premixed materials should be used and the sanding of dry material eliminated or reduced as much as pos sible.
Sanding of dried Jackie maerul with a pole sender. Dost cooceantioos hen often exceed the cental tshescw ondard.
Comments Solicited on Proposal
Continued from page 3
bearing on the asbestos issue, particu larly as to the question of the existence, or nonexistence, of a threshold level of carcinogenic effect. A no effect level theoretically may exist, but it has not been demonstrated.
"In previous rulemaking proceed ings. OS HA has considered these is sues and determined that in the absence of evidence to establish a safe level on the basis of present knowledge, em ployee exposure must be reduced as low as feasible."
In a further discussion of the major provisions of the proposed standard. OSHA explicitly recognized that, "since the promulgation of the current standard, several distinguished indi viduals and many agencies, both public and private, have made vduable con tributions to the field of toxic sub stances generally, and asbestos spe cifically.
"Exposure Levels. Recently, the National Institute for Occupational Safety and Health (NIOSH) has in formed OSHA that it is currently re viewing data which may provide signif icant information with respect to the margin of safety afforded by the exist ing asbestos exposure limits. In a memorandum dated 29 September 1975 to the Deputy Assistant Secretary of Labor for OSHA, the Director of NIOSH stated:
Multiple and consistent epidemio logical studies leave virtually no doubt that asbestos is carcinogenic to man.
r>
"OSHA also believes sufficient medical and scientific evidence has now been accumulated to warrant the designation of asbestos as a human car cinogen. Therefore, it is incumbent upon OSHA to propose the establish ment of safeguards to protect the lives of affected workers.
No Safe Level for a Carcinogen
"OSHA deems it appropriate to propose that the 8-hour exposure limit (TWA) be lowered to 500,000 asbestos fibers per cubic meter (0.5 asbestos fib ers per cubic centimeter), and that the ceiling exposure limit be 5,000,000 as bestos fibers per cubic meter (5 asbes tos fibers per cubic centimeter) for any period up to 15 minutes. OSHA recog nizes that there is no assurance of a safe exposure for a substance with known carcinogenic property, in this case as bestos, and thus there should be no de tectable concentrations. However, the
Act requires that the Secretary establish
standards to extent feasible, and there
fore the Secretary must take into con
sideration technological and economic
factors.
"OSHA believes that it may be ap
propriate to postpone the effective date
of the proposed exposure level because
of the existence of problems of feasibil- (/>
icy of a technological and economic na-__ |
ture. OSHA expressly invites com-1--i
rnents on this issue, including comment q
on the appropriateness of a phased
schedule for compliance with any new^
exposure level, based on such feasibil-
ity factors. In this respect. OSHA particularly invites comments on the struc- ^
ture of the asbestos industry generally
including factors distinguishing par
ticular sub-industries in terms of meth
ods of asbestos use and capabilities of
compliance."
The deadline for submission of
comments on the proposed regulations
is December 8. 1975.
Additional provisions in the proposal
put forth by OSHA would "extend the
retention period for medical and
monitoring records to forty years, or for
the duration of employment plus twenty
years, whichever is longer; provide
procedures for the transfer of medical
and monitoring records of certain
former employers; require specific min
imum data on medical and monitoring
records; revise the procedures for initial
and subsequent monitoring; modify the
definitions of asbestos and asbestos
fiber; add provisions for employee
hygiene, information and training; re vise and update the requirements for
respirators, and warning signs and
labels; and establish a time parameter
for sampling ceiling concentrations. In
addition, the proposal will suggest
work practices to be followed for cer
tain operations and processes involving
asbestos."
Of particular importance is a pro
posal that would add sputum cytology
as a diagnostic test. This is proposed
only for workers who are forty-five
years old, or who have been employed
in die asbestos trades for ten years or
more. Here, analysis of cells coughed
up from the lung may be useful in indi
cating the early stages of lung cancer, at
a point where more successful treat
ment can be accomplished. This proce
dure was recently proposed to NIOSH
by President Haas for all members of
the IAHFIAW and is being considered
by the Institute.
...