Document reEYzYY1r6L9BR33GDox860yG
A STUDY OF THE HAZARDS ASSOCIATED WITH THE SALE AND DISTRIBUTION
OF ETHYL GASOLINE by
Robert A. Kehoe, M.D., and Graham Edgar
June, 1925.
A STUDY OF THE HAZARDS ASSOCIATED WITH THE SALE AND DISTRIBUTION
OF ETHYL GASOLINE
Robert A. Kehoe, ( ^M.D. and Graham Edgar(^) June, 1925,
I PRELIMINARY DISCUSSION
1. The Source of Information An investigation of the possible hazards arising by reason of the sale
and distribution of Ethyl Gasoline is obviously made most readily and adequate ly through the observation of human beings who have been exposed to the condi tions under which the hazards may arise, for a long period of time. The hazards have been maximal, not in the streets, nor in the ordinary filling stations where Ethyl Gasoline has been dispensed, but, rather, in certain garages, where mechanics, car fillers, and drivers, taken collectively, have been exposed to all the hazards which have existed. For obvious reasons, the exposure to ex haust gas has been greater in the partially closed space of the garages. Like wise the inhalation of vapor of gasoline in the course of ordinary handling, and after spillage, reaches its maximum in such garages. Of the group of men who have been exposed, the garage mechanics have probably had the best oppor tunity for receiving injury, inasmuch as their varied work allows of a more .
(1) Assistant Professor of Physiology,University of Cincinnati, Cincinnati, 0. (2)
Director of Research, Ethyl Gasoline Corporation, Dayton, Ohio.
NOTE:
The writers beg to express their appreciation of the assistance of num erous individuals in connection with different phases of the investiga tion. Mr. Lester Saunders, of the University of Cincinnati, assisted with the clinical work. The analytical work was carried out by Mr. Fred Thamann, who was largely responsible for perfecting the methad of analy sis, and by Mr. D. M. Philippi. Other members of the staff of the Ethyl Gasoline Corporation assisted the work in many ways. The officials of the Dayton Power and Light Company did everything in their power to facilitate the investigation.
KE" 0018044
frequent and more prolonged exposure to all of the hazards, than that of any other group of workmen. Tho above facts lead one to the conclusion that a proper investigation of the problem would be made best by studying a consid erable number of mechanics, car fillers, and drivers, in some garage in which a large number of cars, all of which burn Ethyl Gasoline, have been in con tinual use for a long time.
2. The Type of Information: The information to be sought, in the study of such a group of men,
should be obtained by the determination of all variations from normal health, including those which ere specifically due to lead poisoning, or are commonly associated with it, as well as other less definite, recognizable abnormali ties, which might be produced by any injurious agent. The importance of the latter resides in the fact that there are few, if any, abnormalities which may be said to be produced by lead poisoning alone, while there are a great number and variety of injuries which may be brought about by general poisons, including lead. Information in the-matter should be obtained by careful ques tioning, of each subject as to the exact nature and period of his exposure to lead in any form, as to any previous or present exposure to other poisons, and as to any previous or present illness or symptom. The subject should be given a very careful examination, by methods which will determine as nearly as pos sible, the exact status of his present health. The question of lead absorp tion should be investigated by the examination of adequate quantities of the excreta.
3. The Interpretation of Information: Since there are always variations from the normal of perfect health
in any considerable number of men, it is absolutely necessary to collect data
Kt 0018045
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from a group of men who have had no opportunity for exposure to the hazards, the effects of which are being studied. .These should be collected in the same manner, and by the same persons who examine the exposed group. Also, since there is no considerable body of data concerning the quantity of lead which may be excreted by persons who have not been exposed to the hazards under study it is necessary to obtain such data. The same method of analysis must be em ployed in the study of the excreta of exposed and unexposed groups,' in order to control the variation in the sensitivity of the various methods of lead analysis, and thus obtain comparable results.
II METHODS OF PROCEDURE 1. Subjects for Observation:
The garage of the Dayton Power and Light Company of Dayton, Ohio, was chosen as the site for observations on exposed men. In this garage Ethyl Gaso line has been used in all the cars and trucks, about 80 in number, since the first distribution of Ethyl Gasoline began in April, 1923.. The garage is a well lighted, average well ventilated, concrete garage, the floor of which is cleansed by means of running water, at infrequent intervals. There are five mechanics, two car fillers and a large number of drivers. The drivers do no filling or repair work. The labor turnover is very slight, indeed, so that practically all the employees have been under exposure during the entire per iod in which Ethyl Gasoline has been used. Several of the subjects (noted in data) under study have been exposed to Concentrated Ethyl Fluid, during a portion of the time, by reason of the early method of distribution in small containers, so that these have had much more exposure to lead than is normal under present conditions of distribution. No unusual precautions of any kind are taken against lead absorption. In fact there is no fear in the mind of
0018046
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management or employees, of any danger from this source. Cars are coming and going during the entire day and some at night. All types of repair work ex cept especially difficult items, are performed hy the mechanics. All cars are filled with Ethyl Gasoline inside the garage, "by means of portable filling tanks and pumps* Spillage of gasoline on the floor may be seen by any casual observer* from time to time. When this occurs the gasoline is wiped up with a cloth by a bare-handed operator, who usually washes neither the cloth nor his hands thereafter.
Control subjects were obtained by going to Columbus, Ohio, a city in which Ethyl Gasoline had never been distributed at the time of the investiga tion. An attempt was made to find a garage similar to that of the Dayton Power and Light Company. Since that was found to be impossible, an arrange ment was made with an employment agency for obtaining white men of all types, just as they appeared at the agency. They were employed by the day and re leased at night during the period of the observations. Among these were far mers, common laborers, skilled workmen, sailors, chauffeurs, and clerks. Most of them were in youthful or middle life.
2. Type of Data Obtained: All subjects were questioned carefully as to their occupation over a
period of not less than five years previously, with special reference to ex posure to any type of lead. Exposed men were asked as to the details of their daily vrork during the time of their exposure. Control subjects were asked leading questions as to their having been employed in ind\*stries known to in volve contact with lead. A list of industries known to use lead to a greater or less extent was prepared and used i such questioning. When the appended data show that a given subject has no hiistory of exposure to lead, it is to be
0-018047
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remembered that every effort was made to discover some possible source of lead exposure in his case.
A history of previous illnesses was recorded for every subject, in order to note any relationships which might exist between such illness and present health. At the same time careful questions sought out the presence of any present symptoms of illness.
A physical examination '.was made by an examiner (Dr. Kehoe examined all subjects) who had no knowledge of the contents of the history. In every case an analysis of the urine, the determination of the haemoglobin of the stood, and a microscopic examination of a stained blood smear were made, in order to determine the presence of abnormalities.
Appended hereto are typical histories and reports of examination of o.-.c control and one exposed subject, upon the blanks used in the investiga-
dach subject was furnished with a pint size Mason fruit jar, and a "a.ion size glass bottle such as is used for vinegar, molasses, etc. The containers were chemically clean and were kept tightly closed. The subject was carefully instructed to put the excreta directly into the container, and cr.cer r.o conditions to use any intermediate container. The specimens of the exposed men were obtained under the supervision of the foreman. Those at
" "Us were obtained in a room rented for the purpose, during the course -"o or three eight hour days. The containers were not permitted to leave
r >om, but they and the subjects were kept under observation during the ` collection. Close observation and rigid discipline were necessary <. .
'is group to prevent deception, errors, and practical jokes, which might If m loss or mixture of specimens. One or two incidents oc^urre.. ,/nich ssitated the omission of the specimen obtained, from examination. (One
HE 0018048
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man was found to be adding water from a bottle which he carried with him.) In the case of each subject a fair sized specimen of faeces, and one to three liters of urine were obtained. Diuretics and cathartics were not used.
The containers, which had been labeled previous to their use, with the name of the subject, and a number assigned to him by the examiner, were turned over to the analytical laboratory. The subjects were all unknown to the analysts, whose only information consisted of a name and a number on the container.
Ill DATA. The mass of data obtained in the histories and in the examination of the two groups of men is too unwieldy for full presentation. The tables be low indicate the frequency of occurrence of certain variations from the nor mal in the two groups, from which comparison may be made of the two groups. The analytical findings are tabulated opposite the history of employment and exposure, where their significance may be adjudged to the extent to which that is possible. In Tables II, III, and IV, the expression "Questionable lead line" is apparently not a happily chosen one. It refers, however, to a bluish color of the gums, adjoining the teeth, which is seen frequently in pyorrhoea, but which, when there is a history of lead exposure, may sometimes be thought to be significant. It is sometimes.quite difficult to determine the presence or absence of the bluish or black precipitate which is formed in the gum margin when lead or any other metal which gives a black sulphide is being secreted. For that reason, the examiner made note of every bluish dis coloration of the gums, even where he was certain that it was the result of circulatory abnormalities in the gum margin, and labeled it as questionable, or as simulating to some degree a "lead line".
KiT 0018049
-7It is hardly proper to make comparison of the analytical data until it is reduced to some standard. The specimens of faeces and urine are not only different in volume and weight, out they represent varying periods of time of secretion. It is not possible to collect specimens without these variations. It has been considered advisable on this account to make calcula tions of the lead on the basis of unit weights of faeces, and unit volumes of urine. Table V and VI shov/ the results of such calculations foi* both groups of subjects.
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HI STORY
Ho. 14
Name
Date May 8th
Age 22
Employment for past 5 years:
Dayton Power and Light Co. entire time Filling cars with gp.s and oil up to Jan., 1925. Rough repair work since, fender work, steering gear repair. Has torn down motors.
Period of handling Ethyl fluid: Exposure at intervals for more than year. Period of handling Ethylized gasoline: Exposure at times for year or more. Period of handling both: ITature of exposure; Spilled fluid and gasoline on hands at times
(a) Exhaust gas: 'When testing motors. (b) Gasol ine vapor: Y/hen testing cars, and checking up on gas. (c) Spillage of Ethyl Fluid: Several times. (d) Spillage of gasoline: Spilled in garage at times.
Previous
Illness: Tonsilitis and common colds. Nothing more. (a) Illness and disease in words of subject: (b) Symptoms and duration: Common colds of short duration. (c) Presumable diagnosis:
Symptoms of any type now present
Eg. Peridic headache: None Susceptibility of colds their duration: Ho Digestive disturbances: Never Habits as to sleep: _ Sleeps very well Dreaming: Has dreamed at times for years, with nightmare.
f Appetite: Good always Polyuria: No Nocturia: No Itching or burning of skin: No Changes of weight: Has gained since 1923, 6 lbs. Cramps: Never YJeakness: No Nervousness: No
Miscellaneous:
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No. 14
Name
Date May 8th
General Appearance Healthy and robust Nourishment Well nourished Blood pressure 120-70
Temperature Pulse 72
98.8
Eyes - Reaction to light Normal Extrinsic muscles 0. K. Vision Good Pathological Conditions None
Accommodation Normal
Nose - Abnormalities Obstruction on left Inflamations Acute rhinitis. Common cold.
Mouth & Throat Irritated and red
Teeth Fairly good
Pyorrhoea Present
Caries None
Lead-line
Tonsils and Pharynx Red especially around pillars
None
Ears - Audition Good Abnormalities None
Adenopathy None
Skin Normal
Chest (positive findings only) None
Abdomen Normal
Pelvis Normal
Extremities Normal
Central Nervous System: Reflexes Normal Tremor None Abnormalities None
Urinalysis - Reaction to M.R. Albumin Sugar Acetone
Aik. Neg. Neg. Neg.
Blood
Hb. 95 Dare
Smears Normal
REMARKS: No suggestion of any lead poisoning.
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HI STORY
Mo. 23
Name
Date May 7t;h
Age 28
Employment for past 5 years:
Teamster 2 years 1920-22 Truck driver 3 years, 1922-1925 Odd jobs at times, as carpenter's helper, Mo actual plumbing.
digging
for plumbing
jobs.
Period of handling Ethyl Fluid: None Period of handling Ethylized Gasoline: Period of handling both: None Nature of exposure: None
(a) Exhaust gas (b) Gasoline vapor (c) Spillage of Ethyl Fluid (d) Spillage of gasoline
None
Previous illness: Measles as child. Influenza 1922. (a) Illness and disease in words of subject: Pleurisy after "flu" for about one week. Pains around heart at times for years. Catarrh since flu. (b) Symptoms and duration: Pains were sharpest in breathing. (c) Presumable diagnosis: Post influenzal pleurisy. Probably adhesions remaining.
Symptoms of any type now present:
Eg. Periodic headache: No Susceptibility of colds their duration: Frequent colds Digestive disturbances: Cramps in stomach several weeks 1923 Habits as to sleep: Restless every night for 3-4 years Dreaming: Scary dreams 2 times weekly Appetite: Good Polyuria: No Nocturia; At times. Not frequent. Itching or burning of skin: None Changes of weight: Very slight for years Cramps: In stomach after meals at times. Yfeakness: . Tired most of time. Nervousness: At nights so as not to sleep well.
Miscellaneous:
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No. 23
Name Albert Klott
General Appearance Healthy dark eyes and hair Nourishment Medium Blood Pressure 122-70
Date May tth
Temperature Pu Is e 72
97.8
Eyes - Reaction to Light Normal Extrinsic Muscles 0. K. Vision Good Pathological Conditions None
Accommodation Normal
Nose - Abnormalities Inflamations
Slight obstruction due to deflected septum None
Mouth cb Throat Mucous membranes pale
Teeth Fairly good
Pyorrhoea Present - slight
Caries None
Tonsils and Pharynx Red. Buried. Cryptic.
Ears - Audition Good Abnormalities None
Lead-line
Typical on incisors above
Adenopathy None Skin Scattered acne lesions on back and fo.ce
Chest (positive findings only) None
Abdomen None
Pelvis None
Extremities 0. K.
Central Nervous System: Reflexes Normal Tremor None Abnormalities None
Urinalysis - Reaction to M.R. Albumin Sugar Acetone
Aik. Neg. Neg. Neg.
Blood
Hb. 80
Smears
REMARKS:
Blood smears show considerable number of polychromatophilic Etythrocytes but no stippling.
HE 0018054.
TABLE I SYMPTOMS OF ILLNESS PRESENT IN EXPOSED AND UNEXPOSED MEN
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SYMPTOM
Periodic Headache Susceptibility to colds Chronic Constipation Gastric Cramps Insomnia Disturbing Dreams Poor Appetite Loss of Weight Polyuria Nocturia Fatigue Nervous Irritability
Frequency of Occurrence
Exposed
Unexposed
22 subjects 64 subjects
1 18 1 16 2 10 l3 11 05 l1 '5 01 05 03 04 0* 5 l2 1
Percentage Occurrence /Exposed Unexposed
4.5 28 4.5 25 9 15.6 4.5 17.2 0 7.8 4.5 7.8 0 1.6 0 7.8 0 4.7 0 6.2 0 7.8 4.5 1.6
This man has had occasional nightmare for years
2 This man was a victim of shell-shock in the war
*2 This man has had "dyspepsia" for many years
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TABLE II PHYSICAL VARIATIONS FROM THE NORMAL IN EXPOSED AND UNSXPOSED MEN
ABNORMALITY
Frequency of Occurrence
Exposed
Unexposed
22 subjects 64 subjects
Percentage Occurrenci Exposed Unexposed
: Subnormal Temperature
3 29
Elevated Temperature
45
Subnormal Blood Pressure 6 19
Elevated Blood Pressure
2 12
Pyorrhoea Alveolaris
13 47
Severe Gingivitis
6 43
Albuminuria
15
Glycosuria
01
Questionable Lead Line
3 15
Definite Lead Line
02
Polychromatolphilia
13
Stippling
04
13.6 18 27
9 60 27
4.5 0 29 0 4,5 0
45.3 7.8
30 18.6 73 67
7*8 1.6 ' 23.4 3.2 4.7 6.2
i Under subnormal temperature everything under 98 degrees is noted. Under elevated temperature everything iabove 98.8 Subnormal blood pressure refers to everything below 115 Systolic. Elevated blood pressure refers to everything above 140 Systolic. Under "Questionable lead line" is listed every bluish disco loration.of the gums which simulates in any way a lead line. Such discolorations are com mon in mouths which show considerable amounts of gum inflammation. A def
1 initely recognizable lead line is something about which there is no ques \ tion. The questionable ones are noted because of the desire to omit no le
sion about which there could be any question. Pplychromatophilia refers to a slight abnormality in the staining of red blood corpuscles, the signi ficance of which is unknown. Stippling is noted in any case in which a single stippled red blood cor puscle may be found in an entire smear, after staining by a standard, well controlled method. In one case four stippled cells could be found in 100 fields. In no others was more than ene found.'
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TAELE III
HISTORY OF EXPOSURE, FINDINGS Al'ID ANALYTICAL DATA DAYTON POWER AND LIGHT SUBJECTS
Number Period of of
Subjet Exposure
Occupation in Garage
Nature of Exposure
Findings
Lead, in Millig;rams Faeces Urine
1 2 years Blender
2 2 years Driver Part time filler
3 2 years Driver Part time filler
4 2 years Driver Part time filler
5 18 mo. Driver
6 2 years Driver
7 2 years Driver 9 2 years Driver S 3 mos. Driver (in
school pre viously) 1G 2 years Driver 11 2 years Driver
12 2 years Driver 13 2 years Mechanic
Blender
14 2 years Mechanic Blender Filler
15 2 years Mechanic Filler
16 2 years Mechanic
17 2 years Foreman Blender
18 2 years Driver
85 2 years Driver
86 2 years Driver 87 1 year Driver 88 2 years Driver
Ethyl Fluid Gasoline Exhaust Ethyl Fluid Gasoline Exhaust Gasoline Exhaust
Gasoline Exhaust
97.6 Temperature 114-70 Bl. Pressure Nothing else. None
97.6 Temp. Nothing questionable - (else lead line None
Exhaust
Exhaust
Exhaust Exhaust Exhaust
97.6 Temperature None other Questionable Lead line 112-60 Bid. Pressure 110-74 Bid. Pressure 112-74 Bl. Pressure
Exhaust Exhaust
Exhaust Ethyl Fluid Gasoline Exhaust Ethyl Fluid Gasoline Exhaust Ethyl Fluid Gasoline Exhaust Ethyl Fluid Gasoline Exhaust Ethyl Fluid Gasoline .Exhaust Exhaust
Exhaust
Exhaust Exhaust Exhaust
None Questionable Lead line None No ne
None
None
Polychromatophilia
Hone
106-66 Bl. Pressure Healed Tube. 97.2 Temperature 104-64 Bl. Pressure None None None
0.50 0.14
0.30 0.12
0.32 0.17
0.11 0.22
0.45 0.08
0.14 0.12
0.33 0.64 0.27
0.15 0.17 0.12
0.42 0.32
0.27 0.30
0.09 0.08
Nil 0.10
1.91 0.14
0.29 0.56
0.51 0.15
0.65 0.12
Specimens lost
0.73 0.25 0.46 0.27
0.25 0.25 0.23 0.12
0018057
TABLE IV HISTORY OF EXPOSURE, F HIDINGS, AID ANALYTICAL DATA OF CONTROLS
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Humber of
Subjct
History of Lead Exposure
Findings
Lead in Milligrams Faeces Urine
19 Ho history of exposure
None
0.16 0.17
20 Occasional odd jobs of painting
Questionable lead line
0.53 0.24
21 is years pipe joining with lead
None
0.35 0.06
22 Enamel mfg. 1 yr. Occas. painting None
0.27 0.16
23 ITo history of exposure
Typical lead line
97.8 Temperature
0.37 0.10
24 Occasional painting at home
104-64 Bl.Pr. 97.8 Temp.
0.15 0.21
25 Trucking metal.lead. Steam fitting 97.8 Temperature
0.45 0.13
26 Occasional odd job of painting
None
0.17 0.12
27 Coal miner. No other history
None
0.35 nil
28 Ho history of exposure
112-80 Bl. pressure
0.33 0.02
29 Marble worker. Occasional paintg None
0.74 0.14
30 Ho hi story of exposure
112-70 Bl. Pr.
0.23 0.12
31 Odd jobs painting and plumbing
Questionable lead line
occasion ally
Definite stippling 1-100
0,68 0.16
32 Occasional painting
110-80 Bl. Pressure
0. 62 0.14
33 Painting 5 mo. recently
114-72 Bl. Pressure
0.05 0.09
34 Plumbers helper occasionally
110-76 Bl.Pr. 97.2 Temp 0.32 0.07
35 No history obtained
No examination made
No sample 0.08
36 No history of exposure
97.4 Temp.
0.14 9.10
37 Plumbers helper 1923
Stippling 1-100
0.06 0.13
38 Painter 3 years
102-60 Bl. Pr.
0.38 0.03
39 Painting 3 mo. 1925
Quest.lead line.97.2 Tem 0.24 0.04
40 Farmer. No history of exposure
97.2 Temp. 100-60 Bl.Pr.
0.24 0.15
41 Mixed Paint 3 mo. 1924
96.6 Temp.
0.30 nil
42 No history of exposure
104-60 Bl. pressure
Questionable lead line
0.28 0.04
43 Engine painter 3 years
97.4 Temperature
0.30 0.05
44 Vulcanized tires 1923-1924
110-70 Bl. pressure
0.30 0.07
45 Painting 6 mo. 1924
96.4 Temp.112-70 Bl. Pr.
0.41 0.16
46 Plumber and pipe fitter
96.0 Temperature
No sample 0.17
47 Occasional job painting
97.6 Temp.114-76 Bl. Pr.
0.18 0.20
Questionable lead line
48 Plumber
Questionable lead line
0.55 0.13
49 Released because of deception before being examined. Samples discarded
50 No history of exposure
97.0 Temp. 102-60 BL.Pr 0.38 0,13
51 Ho history of exposure
97.6 Temp. 112-60 Bl.Pr.
Questionable lead line
0.37 0.20
52 Occasional odd job painting
110-70 Bl. Pressure
0.55 0.06
53 Ho history of exposure
Questionable lead line
0.33 0.18
54 Ho history of exposure
None
0.42 0.13
55 Plumber 2 years
None
0.42 0.18
56 Painting 2 weeks recently
97.8 Temp.
0.53 0.08
57 ITo history of exposure
None
0.31 0.18
58 Occasional odd jobs painting
Short periods as plumbers helper
Questionable lead line
0.34 0.14
59 Painter
None
Ho sample 0.20
60 Ho history of exposure
Questionable lead line
Stippling 1-100
0.21 0.13
61 Tinner and roofer's helper 1923
97.8 Temperature
0.40 0.18
62 Ho history of exposure
97,0 Temperature
0.33 0.15
63 Ho history of exposure
100-80 Bl. Pressure
0.20 O.ll
64 Painter for 3 years before 1920
97.6 Temperature
0.37 0.04
65 Plumbers helper 4 mo. 1923 Storage battery mfg. 4 mo. 1924
97.8 Tflirmoro+n
- --
31 Odd jobs painting and plumbing
Questionable lead line
occasionally
Definite stippling 1-100
0.68 0.16
32 Occasional painting 33 Painting 5 mo. recently 34 Plumbers helper occasionally
110-80 Bl. Pressure 114-72 Bl. Pressure 110-76 Bl.Pr. 97.2 Temp.
0.62 0.05 0.32
0.14 0.09 0.07
35 No history obtained
No examination made
No sample 0,08
36 No history of exposure 37 Plumbers helper 1923
97.4 Temp. Stippling 1-100
0.14 0.06
6.10 0.13
38 Painter 3 years 39 Painting 3 mo. 1925 40 Farmer. No history of exposure 41 Mixed Paint 3 mo. 1924 42 No history of exposure
102-60 Bl. Pr. Quest.lead line.97.2 Tern. 97.2 Temp. 100-60 Bl.Pr. 96.6 Temp. 104-60 Bl. pressure
0.38 0.24 0,24 0.30
0.03 0.04 0.15 nil
43 Engine painter 3 years 44 Vulcanized tires 1923-1924 45 Painting 6 mo. 1924 46 Plumber and pipe fitter 47 Occasional job painting
Questionable lead line
0.28 0.04
97.4 Temperature
0.30 0.05
110-70 Bl. pressure
0.30 0.07
96.4 Temp.112-70 Bl. Pr.
0.41 0.16
96.0 Temperature
No sample 0.17
97.6 Temp.114-76 Bl. Pr.
0.18 0.20
Questionable lead line
48 Plumber
Questionable lead line
0.55 0.13
49 Released because of deception before being examined. Samples discarded
50 No history of exposure
97.0 Tomp. 102-60 BL..Pr. 0.38 0,13
51 No history of exposure
97.6 Temp. 112-60 Bl.Pr.
52 Occasional odd job painting 53 No history of exposure 54 No history of exposure 55 Plumber 2 years 56 Painting 2 weeks recently 57 Ho history of exposure 58 Occasional odd jobs painting
Questionable lead line 110-70 Bl. Pressure Questionable lead line None None 97.8 Tomp. None
0.37 0.55 0.33 0.42 0.42 0.53 0.31
0.20 0.06 0.18 0.13 0.18 0.08 0.18
Short periods as plumbers helper 59 Painter 60 No history of exposure
Questionable lead line None Questionable load line
0.34 0.14 No sample 0.20
61 Tinner and roofer's helper 1923 62 No history of exposure 63 No history of exposure 64 Painter for 3 years before 1920 65 Plumbers helper 4 mo. 1923
Stippling 1-100 97.8 Temperature 97,0 Temperature 100-80 Bl. Pressure "97.6 Temperature
0.21 0.40 0.33 0.20 0.37
0.13 0.18 0.15 0.11 0.04
Storage battery mfg. 4 mo. 1924 56 No history of exposure
97.8 Temperature 97.4 Temporaturo
0.14 Sample lost
Nil 0.12
57 No history of exposure
97.4 Temp.Quest.load line 0.24 nil
68 No history of exposure
None
0.32 0.11
69 No history of exposure
97.4 Tem.Quest.lcad line
0.60 0.05
70 Short period painting 1923
In tire factory 1921 71 Occasional odd job painting
None 97.0 Temp. 112-72 Bl.Pr.
0.20 0.24
0.17 0.11
72 No history of exposure
97.6 Temp.
0.60 0.20
73 No history of exposure
97.8 Temp.
0.43 0.30
74 Plumbers helper and painter
None
0.24 0.15
75 Street Cleaner
96 Temperature
0.23 0.12
76 No history of exposure
114-78 Bl.Pr.Ques.Id.line 0.37 0.04
77 No history of exposure. 97.8 Temp. 100-60 Bl.Pr. Ques.ld.line 0.72 0.07
78 No history of exposure
None
0.16 0.15
79 No history of exposure
Questionable lead line
0.11 0.15
80 Plumbers helper 3 months
None
0.22 0.10
81 No history of exposure
97 Temoerature
0.14 0.C7
82 Tire mfg.6 mo.1924 (97.4 Temp.Slight anemia.Tbc.stippling 4-100 0.18 0.05
83 5O4A
Plumbers helper 3 mo. 1925 Storage Battery Plant 8 mo. 1919
97 Temp. Stippling 2-100 None
0.50 0.07 0.54 nil
0018059
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METHOD OF ANALYSIS Treatment of Samples. JV-3v (1) The samples of urine were received "by the laboratory in gallon jugs of the type used for water, fruit juices, etc. The volume was measured and the samples made ammoniacal soon after they were received. The details of m analytical procedure are given below. (2) The samples of faeces were received in pint fruit jars. They were trans ferred to silica dishes and dried on a steam plate to "apparent dryness." No attempt was made to bring them exactly to constant weight. Urine; Preparation of Solution for Analysis
(3) The ammoniacal urine, after standing for at least 12 hours,.is filtered on 18 cm. folder filter paper, care being taken that all of the precipitate is transferred to the filter. Without being washed, the filter paper is transferred to a silica or procelain dish, and after being dried on a steam plate, is ignited in'an electric muffle furnace at a temperature not exceeding 600 degrees C. When the organic matter has been completely destroyed, the residue is treated as follows: The ash is moistened care fully with distilled water, and 5 cc of cone. Iiei is added, together with enough water to make the volume about 25 cc. Th9 mixture is digested on a steam plate, and is filtered into a 400 cc beaker, any residue being washed six times alternately with hot 10% HC1 and hot water. The filtrate in the beaker should contain all the lead. The residue is usually insig nificant, and in these experiments has been disregarded. Analysis of Solution
(4) The solution from (3) is neutralized by adding 25/o NaOH solution until a faint turbidity persists. If too much sodium hydroxide is added, the solu tion should be tpeated with hydrochloric acid again until it is perfectly
ke 0018060
-17-
clear and sodium hydroxide again added until a faint turbidity appears. The solution is diluted to 300 cc and after cooling, if necessary, is treated with hydrogen sulfied gas for one hour, and allowed to stand over night. The mixture is filtered on a 12.5 Whatman Wo. 40 filter paper, any precipitate being transferred to the paper by means of freshly prepared hydrogen sulfied water acidified with 1 cc. of cone. HC1 per liter. The paper and its contents are transferred to thebeaker in which the sulfied precipitation was made. The sides of thebeaker are washed down with 25 cc. of warn (l-l) hydrochloric acid containing 10 drops of cone. HNO3. The mixture is digested with the acid until all sulfides have been dis solved and the paper is thoroughly white. The solution is diluted to 50 cc with hot water, and is filtered, the residue being Trashed 15 times with hot water. T0 the filtrate, which should be about 200 cc add 4 drops of a solution of methyl red, make just alkaline with 25% NaOH, then just acid with (1:2) hydrochloric acid, and adi 1 cc of (1:2) hydrochloric acid in excess. Dilute to 300 cc and after cooling treat with hydrogen sulfied gas for one hour and allow to stand over night. The mixture is filtered on a 12.5 cen. l%atman No. 40 filter paper, the precipitate be ing transferred to the paper by means of freshly prepared hydrogen sulfied water containing 1 cc of cone. HC1 per liter. The beaker is Trashed care fully with this Trash water and the filter is washed ten times.
The sulfides are dissolved from the paper with 10-20 cc of hot (1:1) nitric acid, the solution being caught in the beaker in -which the precipitation ms made. The paper is washed 15 times with hot water. The sides of the beaker, and the inside and outside of the tube from the hydrogen sulfied generator are Trashed with hot (1:1) nitric acid. The solution is evaporated to 5 cc diluted to 25 cc with hot water, and fil-
K? 0018061
-18-
tered through a 7 cm filter paper into a 150 cc beaker. The beaker is carefully washed with hot water and the filter paper is washed 15 times with hot water. The filtrate and washings are evaporated to 25 cc. and neutralized with 25$ NaOH, free from iron and aluminum, a slightly alkaline water solution of phenolphthalain being used as indicator. The solution is made faintly pink with alkali, the color is just discharged with 5$ acetic acid, and 2 cc of 5$ acetic acid is added in excess. The solution is brought to boiling and 1 cc of 1$ potassium chromate solution is added. The mixture is placed on the steam bath for one hour, and is allowed to stand in a warm place over night. The mixture is then brought to boiling filtered on a 7 cm, ashless filter paper, the beaker being washed care fully v/ith hot water, and the filter paper being washed 15 times with hot water. Any residue is dissolved in 5 to 15 cc of cold (1:2) hydrochloric acid, the paper being washed at once with cold water, the solution and washings being caught in the beaker in which the chromate precipitation was made. The sides of the beaker and the stirring rod are washed with cold (1:2) hydrochloric acid. Colorimetric Estimation of Lead (5) A standard solution of lead (l cc ~ 0.10 mg. lead) is made by dissolving 0.1560 grams of pure lead chromate in 200 cc of 10$ HC1 and diluting to one liter. This solution maybe checked colorimetrically against stand ard potassium chromate solution. A one per cent solution of C.P. s-diphenyl carbazide in glacial acetic acid is used as reagent.
For the analysis an aliquot portion of the solution of lead chromate obtained from (4) is taken, which should contain not more than 0.40 to 0.50 mg. of lead, the best results being obtained with about 0.20 mg.
KE 0018062
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The sample is diluted to about 100 cc in a Nessler tube, and an
equal volume of water put in another Nessler tube. 2 cc of diphenylcar-
bazide reagent is added to each tube. From the color which developes in
the first tube a rough visual estimate is made of the quantity of lead
present and an amount of standard lead chromate slightly smaller than this
is added to the blank tube. The colors of the two solutions are compared,
and standard lead chromate is added drop by drop to the standard tube un
til an exact match is obtained.
Feces
(6) The sample of dried feces is ashed in a silica dish in an electric muffle
at 500 C - 600 C. When the organic matter is apparently destroyed the
residue is moistened with \mter, acidified with HC1, and digested on the
steam plate for some time. The mixture is then filtered, the residue
washed with hot dilute HC1 and hot water, and the filter paper and its
contents returned to the silica dish in which the original ashing was done.
After being dried on the steam plate the dish and its contents are return
ed to the furnace and ashed aga'in at 500 G - 600
The residue is
treated with water and HC1 as before, and after being digested on the
steam plate, is filtered, the filtrate being added to the first filtrate.
The residue may contain traces of lead, and may be reashed and brought
into solution with HF, and added .to the main solution. The lead in the
residue is, however, always in our experience a very small fraction of the
total lead present, and it seemed justifiable to neglect it in this particu
. lar case.
(7) The solution obtained from (6) is diluted and neutralized with 25% NaOh,
exactly as described in (4) above.. The remainder of the analysis is
exactly like that described under (4) and (5), except that the second
RE 0018063
-,20--
hydrogen sulfide precipitation is repeated, the third precipitation being made exactly as the second is made. The precipitation as chromate and the colorimetric estimation are made just as in (4) and (5). NOTES (a) Reagents and Apparatus 1 Lead free reagents were employed throughout. It is possible to purchase them in the market, but they must be carefully tested for lead. (b) Pyrex glass beakers, flasks, wash bottles, etc., were employed throughout. Soda glass funnels were employed. The dishes used for ashing the feces were 400 cc opaque silica; those used for ashing the urines were of opaque silica or porcelain. (c) General The ordinary technique of good analytical work must be observed most scrupulously if satisfactory results are to be obtained in analyzing or ganic material for small quantities of lead. Precautions as to the clean ness of the laboratory and of the apparatus are essential. In the present case no other work than the analyses in question was carried out in the laboratory employed for all work but the preparation of the samples. (d) (l) It has apparently been shown that ammonia precipitates practically
all of the lead from urine as lead phosphate, which is carried down with the other alkaline earth phosphates. The procedure is so much more convenient than that involving the evaporation of the urine, that it was employed throughout. If it is in error at all it is in the direction of giving slightly low results. Ref. Dr. L. T. Fairhall, J. Biol. Chem. (60) 485-8 (1924). As little as .05 mg. of lead in 3500 cc of urine can be detected. (e) (4) The exact details of the analysis are those decided upon after a
KE 0018064
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careful study in this laboratory, and after a careful investigation of
the literature. The essential features (with the exception of the colori
metric method) are those of Dr. L. T. Fairhall (j. Ind. Hyg. (4) 9-20
(1922), but the exact conditions have been modified in several respects
which have given more satisfactory results than the original Fairhall
method. Humerous tests of the method have been carried by working with
lead free material and material to which known amounts of lead had been
added. The following data are more or less characteristic:
To test the accuracy of the method for urine two composite samples of
urine were collected from workers at the laboratory. One of these was
divided into six portions of 1 liter each and varying quantities of lead
were added to them by members of the research staff outside the analytical
laboratory. The samples were then analyzed by the usual procedure.
Sample Ho. 2 was divided into five portions and was analyzed after the
addition of much smaller amounts of lead. The results follow:
Lead Added
Lead Found
Sample Ho. 1
1.10 mg. 7.00 7.00 11.00 7.00 11.00
1.13 mg. 7.47 7.00 11.00 6.75 11.00
Sample No. 2
None None 0.01 0.10 0.10
0.10 0.10 0.08 0.20 0.20
To test the accuracy of the analytical method for feces and the passible
influence of other metals, four samples were prepared as follows: 4 lbs.
of beef was obtained, bone and fat separated, and the remainder divided
into four 400 g. portions. All of these were ashed in silica dishes with
KE 0018065
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or without the addition of known Quantities of lead and other metals, the
procedure being that given above for the analysis of feces. Several fil
ter papers were also added before ashing. The results follow:
Sample
Lead Added
Lead Found
No. 1 No. 2 No. 3 No. 4
None 1 mg. None 1 mg.
.07 mg. 0.73 mg. 0.08 mg . 0.73 mg.
Samples Nos. 3 and 4 had 1 mg. each of cad mium, bismuth, mercury, copper, arsenic, antimony, and tin added before ignition.
The actual quantity of material in these samples is much larger than the
samples of feces and required considerably larger amounts of reagents
throughout.
As a check on the accuracy of the colorimetric method, samples containing
various quantities of lead chromate wer analyzed by the colorimetric pro-
cedure.
Lead Added
Lead Found
.38 .38 .63 .60 .03 .03 .02 .02 .95 .93 .02 .02 .07 .06 .30 .30 .56 .56
Note the following: All indications are that the experimental method for
lead gives results which are, if anything, slightly too low. Considerable
study has been made of the losses of lead which may occur at different
steps. Thus the neglect of the insoluble residue may introduce slight
losses, which are apt to be greater the greater the amount of insoluble
residue. Furthermore the study of the precipitation of lead as chromate
KE -0018066
-23 under the conditions followed showed that a slight loss amounting to per haps a few hundredths of a milligram of lead is apt to occur, although the loss is considerably less than that observed when following the procedure i of Fairhall (Loc. Cit.). The data on the samples of urine and feces from Dayton and Columbus fol low. In the attached chart these data have been plotted to show the gen eral trend of the results. The interpretation of these data is discussed below. Since the samples of feces could not be regarded as definite 24 hour samples it has seemed preferable to plot the lead per 100 grams of dried feces rather than the lead in the individual sample. The urine probably represents a more nearly true 24 hour sample, but for the sake of uniformity the results have been plotted in milligrams of lead per liter of urine.
vi
A
0018067
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SAMPLES FROM DAYTON, OHIO, DAYTON POTHER AND LIGHT CO.,
Analy sis
Humber
FE CES Lead Lead mgs. Dry mgs. /lOO gms..weight
dry feces gms.
127 0.50 1.83 27.4
138 0.30 0*97 31.1
128 Oi 32 1*52 21*1
129 0.11 0*99 11.1
188 0.45 1.49 30,3
130 0.14 3.11
4.5
139 0.33 1.05 31.5
131 0.65 1.62 40.2
189 0.27 1.62 16.7
140 0.42 1.73 25.4
132 0.32 1.08 29.8
141 0.27 3.70
7.3
133 0.30 3.85
7.8
134 1.91 1.63 117.3
135 0.29 0.88 33.0
136 0.51 1.44 35.5
137 0.65 1.70 38.3
284 0.73
1.04
69.9
283 0.25 1.95 12.8
285 0.46 0.87 52.8
282 0.27 1.63 15.3
Analy sis
Number
UR INE
Le ad Lead Volume
mgs. mgs. per in
liter
cc.
113 0,14 0.20 700
123 0.12 0.08 1450
114 Oil? 0.14 1200
115 0*22 0.07 3000
234 0.08 0.10 820
116 0.12 0.25 470
125 0.15 0.12 1270
117 0.17 0.14 1200
235 0.12 0.05 2450
126 0.09 0.06 1500
118 o.08 0.05 1500
124 Nil Nil
750
119 0.10 0.07 1400
120 0.14 0.05 2900
112 0.56 0.40 1350
121 0.15 0.11 1350
122 0.12 0.08 1530
237 0.25 0.11 2220
241 0.25 0.12 2100
242 0.23 0.11 2100
236 0.12 0.04 2920
KE 0018068
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SAMPLE S FROM COLUMBUS, OHIO
lIllllllH lllllllllll
Sample Humber
Origin of sample
40
Analysi s
Number
FECES Lead. Lead mgs. Dry mgs /lOO gras.weight
dry feces gms.
267 0.16 2.*2 6
7.1
198 0.53 2.22 23.9
258 0.35 0.92 38.0
269 0.27 2.88
9.4
275 0.37 1.23 30.0
279 0.15 1.25 12.0
2 86 0.45 0.93 48.5
287 0.17 1.95
8.7
182 0.35 6.73
5.2
265 0.33 1.35 24.5
185 0.74 3.27 22.7
281 0.23 1.17 19.7
266 0.68 0 0 lO 21.7
195 0.62 0.75 82.8
280 0.05 0.43 11.6
2 77 0.32 1.05 30.5
N o s a m P 1 e 191 0.14 0.35 40.6
181 0.06 1.58
3.8
278 0.38 2.30 16.5
194
0.24
0.39
61.5
268 0.24 1.05 22.5
Analy sis
Number
U R 3: N E
Lead Lead Volume
mgs. mgs.per in
liter
cc.
220 0.17 0.09 1820
231 0.24 0.16 1460
227 0.06 0.04 1460
208 0.16 0.10 1640
207 0.10 0.05 2160
214 0.21 0.08 2580
180 0.13 0.22 600
202 0.12 0.08 1520
161 Nil Nil 2000
156 0.02 0.01 2620
155 0.14 0.06 2200
152 0.12 0.07 1760
230 0.16 0.13 1200
229 0.14 0.10 1460
225 0.09 0.05 1940
233 0.07 0,03 2220
239 0.08 0.17 470
232 0.10 0.07 1460
178 0.13 0.07 1880
206. 0.03 0.02 1760
153 0.04 0.02 1830
203 0.15 0.11 1360
Kf 0-018069
-26-
SAMPLES FROM COLUMBUS (Cont'd)
Sample Number
Origin of sample
43 44 45 46 47 48 50 51 52 53 54 55 56 57 58 59 60 61 62 63 64
Ana ly sis
Number
FECES Lead Lead mgs. Dry mgs. /l00 gms. Weight
dry feces gms.
190 0.30 1.68 17.9
276 0.28 1.35 20.7
195 0.30 1.42 21.2
251 0.30 3.30
9.1
184 0.41 1.59 25.8
No
s a m pie
199 0.18 0.39 46.5
263 0.55 1-.87 29.4
255 0.38 0.88 43.0
262 0.37 1.49 24.9
270 0.55
1.35
40.6
260 0.33 0.73 45.1
197 0.42 ' 0.45 92.9
254 0.42
1.99
21.1
257
0.53
2.69
19.7
259. 0.31
0.92
33.8
264 0.34 1.89 18.0
N o s a m pie
261 0.21 1.54 13.6
290 0.40 1.48 27.0
288 0.33 0.72 45.9
192 0.20 0.73 27.5
256 0.37 2.03 18.2
Analy sis
Numb er
UR INE
Lead Lead Volume
mgs. mgs.per in
liter
cc.
150 Nil
Nil
1220
159 0.04 0.02 1830
154 0.05 0.02 2230
170 0.07 0.06 1180
209 0.16 0.10 1520
179 0.17 0.11 1520 238 0.20 0.07 2680 212 205 0.13 0.09 1400
169 0.13 0.09 1460
223 0.20 0.14 1460
228 0.06 o.04 1520
221 0.18 0.12 1520
226 0.13 0.09 1400
222 0.18 0.12 1520
224 0.08 0.05 1520
216 0.18 0.10 1760
219 0.14 0.16
870
215 0.20 0.10 2140
213 0.13 0.06 2200
218 0.18 0.10 1760
217 0.15 0.09 1640
164 0.11 0.06 1750
165 0.04 o. 02 1690
Kl? 0018070
-27-
SAMPLES FROM COLUMBUS (Contd)
Sample Num'o er
Origin of sample
65
66
67
68
69
70
71
72
73
74
75
76
77
78
79
80
81
82
83
84
Analy sis
Number
F E c US Lead Lead mgs. Dry mgs. /lOO gms. Weight
dry feces gms.
253 0.14 0.61 23.0
272 Sampl<3 Lost
19i2
289 0.24 0.81 29.6
144 0.32 0.90 35.6
252 0.60 0.80 74.7
187 0.20 2.28
8.8
273 0.24 1.97 12.2
200 0.60 2.42 24.8
146 0.43 0.42 103.4
145 0.24 0.53 45.4
196 0.23 0.33 70.2
271 0.37 1.91 19.4
142 0.72 1.44 50.0
186 0.16 1.36 11.8
274 0.11 1.64
6.7
143 0.22
1.20
18.3
147 0.14 0.50 28.4
183 0.18 2.31
7.8
148 0.50 1.52 32.8
149 0.54 2.31 23.4
Analy sis
Number
UR INE
tead Lead Volume
mgs. mgs.per in
liter
oc. .
168 Nil . Nil
1640
211 0.12 0.08 1760
162 Nil Nil 2160
163 0.11 0.07 1650
167 0.05 " 0.03 1600 210 0.17 0.10 1640
166 0.11 0.06 1880
201 0.20 0.08 2530
175 0.30 0.23 1300
O tn
173 0.11 1300
151 0.12 0.09 1300
158 0.04 0.06
700
160 0.07 0.06 1180
157 0.15 0.08 1850
204 0.15 0.09 1760
172 0.10 0.08 1320
177 0.07 0.05 1400
171 0.05 0.03 1950
174. 0.07 176 Nil
0.10 Nil
710 1170
Kf 001S071
tt -28-
We failed to find lead in analyses of Dayton and Columbus city -waters.
VI CONCLIBIOMS
A consideration of the data and the calculations, together with the study
of the grouping of symptoms and clinical signs in individual subjects justifies
and compels the following conclusions:
1. No individual in the two groups is suffering from lead poisoning.
2. All the individuals in the two groups have absorbed lead into their bodies
from some source.
3. A group of twenty-two workmen who have been exposed to, apparently, the worst
hazards associated with the sale, distribution and use of Ethyl gasoline,
fails to show any indication of having been poisoned by lead. A comparison
of their ailments of an indefinite type, which might conceivably be due to
a greater opportunity for lead absorption, that is, normally, shows they
are in better physical condition and that the occurrence of abnormalities
among them is lower than among a controlled group of workmen taken at ran
dom through an employment agency at Columbus, Ohio.
4. It is perhaps to be expected that the group of twenty-two workmen regularly
employed by the Dayton Power and Light Company should be normally in some
what better physical condition than such a group as that obtained from the
Columbus employment agency, but in any case, the data gives no indication
whatever that the anployees of the Dayton Power and Light Company have been
in any way injured by their contact with tetraethyl lead.
5. From the evidence presented herein it is not possible to state that these men
so exposed to the hazards which some have claimed exist in connection with
Ethyl gasoline have received any damage or have absorbed any lead as a re
sult of their exposure to Ethyl gasoline. In fact, it seems quite probable,
in view of the-evidence, that the lead which they have absorbed has come
from other sources. _
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KE 0018073