NYC 9/11 Public Portal Document
AKRF,Inc. 111-115 Broadway,New York,New York
Analytical results revealed levels of VOCs to be below the OSHA, NIOSH and ACGIH exposure
limits. Table VI contains a summary of the laboratory results for volatile organic compounds. A
complete copy of the laboratory analysis report is included in Appendix A. Dioxins
Dioxins are a family of 75 chemically related compounds commonly known as chlorinated
dioxins. Dioxins are a class of complex hydrocarbon compounds containing chlorine and are
closely related to PCBs. Dioxins exist as a trace contaminant in many commercially available
products such as some herbicides and pesticides. Dioxins are also produced as a result of heating
and combustion and are also formed in flue gases and fly ash. Dioxin (chemically known as
tetraclorodibenzo-p-dioxin, "TCDD") is highly toxic and is not readily excreted. Dioxins can
enter the body via inhalation of particles (dust/soot fr combustion), ingestion, or absorption
om
through the skin. Overexposure can result in severe acne (chloracne), elevated cholesterol,
headaches, numbness in extremities, and gastrointestinal problems. One of the compounds is
called 2,3,7,8-TCDD (the number refers to locations of chlorine atoms in the molecular
structure). It is the most toxic of the dioxins and is the one most studied. The toxicity of the
remaining compounds is compared to the 2,3,7,8-TCDD compound. Equivalency tables are
developed based upon these ratios of toxicities. Typically, regulatory limits and values are
expressed in TCDD equivalents, utilizing these equivalencies to generate an equivalent dioxin
value.
Regulatory levels for dioxin exposure vary greatly. NIOSH recommends that the lowest feasible
concentration be maintained. No other occupational exposure values exist. Numerous values
exist for emission sources. These standards vary greatly (for example, Virginia's 24-hour
-8
standard is 3.00 µg/m3, while Indiana's yearly standard is 3.0 x 10 µg/m3). Only one sample
from the study site revealed dioxin levels above the detection levels. All other samples either
revealed no detectable levels or levels below the detector calibration levels. Table VII contains a
summary of the laboratory results for volatile organic compounds. A complete copy of the
laboratory analysis report is included in Appendix A.
2.7 Temperature, Relative Humidity, Carbon Dioxide and Carbon Monoxide
Temperature, Relative Humidity, Carbon Dioxide and Carbon Monoxide concentrations were
measured throughout the buildings using a Metrosonics aq-5000 direct read meter. The meter
was calibrated prior to initial sample collection. Table VIII contains a summary of the readings
obtained for temperature, relative humidity, carbon dioxide and carbon monoxide.
Temperature and Relative Humidity
ASHRAE standard 55-1992 (Thermal Environmental Conditionsfor Human Occupancy)
defines the environmental conditions that most (90 percent or more) sedentary occupants
in indoor environments will find satisfactory. Performance criteria that are established in
this standard include the following recommendations for operative temperatures in the
occupied spaces: 69 to 76 (degrees Fahrenheit at 30 percent relative humidity) for
wintertime conditions. AKRF considers the broad range of relative humidity from 30 to
60 percent as most acceptable for occupant comfort in office environments. Wintertime
relative humidities in the 20 to 30 percent range are marginally acceptable but may cause
discomfort to sensitive individuals. Humidities below 20 percent are unacceptable
because of the effect of dry air on both the mucous membranes and the skin. Relative
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