Document 5DE4mjmpBpqakM6ZY7dZvY318
38--Industrial Toxicology
TABLE 38-A EXCRETORY AND BIOLOGIC THRESHOLD LIMITS
Urinary TLV'9 should be used for
Aniline Antimony Arsenic Arsine Benzene Boron trifluoride Calcium arsenate Chlonnated benzenes Cyanide Fluoride Hydrogen bromide
Hydrogen cyanide Hydrogen fluoride Hydrogen selenide Lead arsenate Mercury
Molybdenum Nickel Nickel carbonyl Nitrobenzene Nitrogen tnfluoride Parathion
Selenium
Selenium hexafluoride Stibine Suifuryi fluoride Tellunum Tellurium hexafluoride Thallium Uranium Zinc chloride
Zinc oxide
Blood TLVs are more applicable than excretory limits
Cadmium dust Cadmium fume
Lead Manganese
Methyl bromide
Blood and/or breath TLV's should be applicable
Carbon monoxide
Nitnc oxide
Sulfur hexafluoride
Breath analysis good for many Alcohols
Aliphatic hydrocarbons Chlorohydrocarbons
Ketones
NOTE. Analysis of blood, breath, or urine samples can be done in conjunction with air analysis to determine if workers are in danger of injury or intoxication Ideally, such biologic or excretory threshold limits should correspond to the average levels found when workers are exposed to the atmospheric TLV
Adapted from "Excretory and Biologic Threshold Limits/' by H B Elkins AIHA Journal, 28(4) 305-314 (July-Au gust 1967)
like amount entered the body by any other channel of absorption, such as through the skin or the intestinal wall
The harmful effects of deleterious materials are determined by the amount accumulated in the body--by the total dosage The number of milligrams of harmful matenal per kilogram of body weight determines the toxic effect produced This is often overlooked when ex pressing individual exposures only in terms of concentration (parts per million) in the air breathed and the length of time of exposure The amount in the inspired air is not neces sarily the amount absorbed
According to H B Elkrns (see References), differences m particle size or solubility, which are practically impossible to measure ac curately, determine the fraction of inhaled
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impurity which is retained or absorbed The concentration in the air of parathion, or lead dust, may not be associated with intoxication, depending on whether or not there is oppor tunity for significant skin absorption or inges tion
These are situations where air analyses are not adequate to precisely evaluate the peril of the hazard, since the amount absorbed can not be predicted from the data obtained by such determinations In such situations it is highly desirable to have other means of esti mating exposure With many substances this can be done by analyzing suitable biologic specimens or excretion products for the toxic agent or a metabolite derived therefrom (See Fig 38-1)
The only biologic fluid finding much apph-