Document e7w0XmgOr57nBYo0GpbxvQ4zG
Industrial Hygiene Digest
May, 1964
extremely small amounts. With one car, about 0,023% of the tetraethyllead
burned was found as organic lead in the exhaust gas under conditions in which
about 1.7% of the fuel was exhausted unburned. Therefore, it would appear
that tetraethyllead decomposes much more readily in the engine and exhaust
system than do some of the constituents of the gasoline. The percentage of the
lead, burned by the car, which is discharged in the exhaust gas depends on the
conditions under which the car is driven and also on the prior driving history
of the car. During operation under a test cycle of moderate speeds similar to
city type driving, 3 cars exhausted from 28% to 45 % of the lead being burned
in the fuel, based on average values computed from many individual tests.
When exhaust systems were fairly free of deposits, the emissions of lead were
in the 20%-25% range, but, after the cars had been operated for several thousands
of miles at moderate speeds, emissions increased into the 35%-55% range.
Individual tests showed wide variations which indicate that a random factor, probably
deposit flaking in the exhaust system, is involved in the process of exhausting lead.
Operation at high speeds, and particularly full.throttle acceleration at high speeds,
may discharge several times as much lead as is being burned. However, continued
operation of this type causes lead emissions to decrease^ probably because
exhaust system deposits are gradually partially expelled. This treatment returns
the exhaust system to a condition where it again accumulates lead deposits and
exhausts less lead in subsequent driving at moderate speeds. The particulate
lead compounds in exhaust gas cover a broad range of sizes, from as small as
0.01 micron to several millimeters in diameter. About one half to two thirds
of the lead exhausted in city type driving is in particles 5 microns in diameter
and smaller. From about 4% to 12% of the exhausted lead is in particles 1 micron
and smaller. High-speed accelerations discharge a lesser percentage of the ex-
hausted lead in these fine.particle sizes.
-- Authors' summary
499 Atmospheric Monitoring of Toxic Levels of Missile Propellants. J.T. Nakamura and K.E. Ball. Am. Ind. Hyg. Assn. J. 25, 77-80 (Jan.-Feb. 1964).
The Chemical and Materials Section of the Rocket Research Laboratories at Edwards Air Force Base has been responsible for hazard appraisal of various storable liquid propellants. Evaluating the toxic hazards posed by spills or inadvertant releases was curtailed by a lack of suitable instrumentation and by the shortcomings of applying laboratory wet chemical techniques to field experiments. Under contract to Edwards Air Force Base, Mine Safety Appliances Company developed an instrument suitable for continuous monitoring for toxic levels of N02i UDMH, B5H9, N2H<j, F2i and CIF3 . Based on spill test data from Edwards Air Force Base, realistic performance specifications are suggested for any continuous toxic hazard monitoring equipment for missile facilities. --Authors' abst.
500 Monitoring of Trace Constituents in Simulated Manned Spacecraft. T.B. Weber, et al. Aerospace Med. 35, 148-152 (Feb 1964).
Innovations in instrumentation and cryogenics have been employed in the
isolation and detection of microconstituents in a manned spacecraft simulator.
Since the isolation of materials is a tedious and time consuming procedure,
specialized units were constructed for the collection of the trace constituents and
also to occlude extraneous contaminants from entering the system. Cas chromatography
was employed for broad spectrum analysis of compounds and sample separation. Infrared
spectrophotometry served as a parallel detection system. During normal operations,
3 to 7 constituents consisting of nitrogen, oxygen, carbon dioxide, carbon monoxide,
acetylene, acetone, and methane were normally found. A fire in the space cabin
resulted in numerous compounds being liberated, several of which were tentatively
identified. Many of these were probably pyrolysis products from the construction
components aboard.
-- Authors' summary
03121472
28.