15. REGULATORY INFORMATION
UNITED STATES REGULATIONS
EPA:
Superfund Amendments and Reauthorization Act (SARA)
Title III - This product
does not contain any substances reportable under Sections 302, 304, 313, (40 CFR
372). Sections 311 and 312 (40 CFR 370) apply (delayed hazard).
Toxic Substances Control Act (TSCA)
- All substances in this product are listed,
as required, on the TSCA inventory. RCF has been assigned a CAS number;
however, it is a simple mixture and therefore not required to be listed on the TSCA
inventory. The components of RCF are listed on the inventory.
Comprehensive Environmental Response, Compensation and Liability Act
(
CERCLA)
and the
Clean Air Act (CAA)
- RCF contains fibers with an average
diameter greater than one micron and thus is not considered a hazardous air
pollutant.
OSHA:
Comply with
Hazard Communication Standards
29 CFR 1910.1200 and 29 CFR
1926.59 and the
Respiratory Protection Standards
29 CFR 1910.134 and 29
CFR 1926.103.
California
:
Ceramic fibers (airborne particles of respirable size)” is listed in
Proposition 65,
The Safe Drinking Water and Toxic Enforcement Act of 1986
as a chemical
known to the State of California to cause cancer.
Other
States
:
RCF products are not known to be regulated by states other than California;
however, state and local OSHA and EPA regulations may apply to these products. If
in doubt, contact your local regulatory agency.
INTERNATIONAL REGULATIONS
Canada
:
Canadian Workplace Hazardous Materials Information System (WHMIS)
–
RCF is classified as Class D2A – Materials Causing Other Toxic Effects
Canadian Environmental Protection Act (CEPA)
- All substances in this
product are listed, as required, on the Domestic Substance List (DSL)
European
Union
:
European Directive 97/69/EC
classified RCF as a Category 2 carcinogen; that
is it “should be regarded as if it is carcinogenic to man.”
16. OTHER INFORMATION
RCF DEVITRIFICATION
As produced, all RCF fibers are vitreous (glassy) materials which do not contain crystalline silica.
Continued exposure to elevated temperatures may cause these fibers to devitrify (become
crystalline). The first crystalline formation (mullite) begins to occur at approximately 985° C
(1805° F). Crystalline phase silica may begin to form at temperatures of approximately 1200° C
ine phase formation is dependent on the duration
and temperature of exposure, fiber chemistry and/or the presence of fluxing agents. The
presence of crystalline phases can be confirmed only through laboratory analysis of the "hot face"
fiber.
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