Document 5LndbRXe6rqGZ2Vb9Oa80JBb0
PLAINTIFF'S EXHIBIT
; /
oPgetrloilieeumer
PLAINTIFF'S EXHIBIT
COMBINED EDITION|| OQVLd.OQ
Drilling and Producing
> Refining and Gas Processing Oil and Gas Pipelining
APRIL 1952
VOLUME XXIV
NUMSEK 4
GENERAL
East Side of the Julesburg Basin................................ .A-49 _ R. JT. McCanne
Yenter Pool .................................................................... A-61 W. K. Arbuckle
South Dakota .................................................... -........ A-71 John Paul Cries
Oil and Gas in Alabama.......... ....................................A-81 Walter B. Jones
Features
lourse of OilA-4
Fith the Editors_A-8
lighlights in Oildom__ A-10
Jtrolic Personalities A-12
Dick Sneddon
tings _____ ________ K-14
oleum Profile _____ A-88
- . G. Skelly
General News
'_____ E-2
General Personals_____ E-12
The Petroleum Engineer's Continuous Tables___ E-19 (Installment No. 177)
Laugh with Barney-------- E-26
Books E-28 Oil and Gas Trade. News E-30 Trade Personals E-38 New Machinery and
Supplies E-53 Trade LiteratureE-57
DRILLING AND PRODUCING
Modern Methods Revive McKittrick Lease............... B-7
William T. Rintoul
Some Considerations in Selection of Sucker Rods ... B-12
Kenneth N. Mills
Natural Organic Colloids of Iranian Origin as Mud Treating Agents.....................................B-45
George Tchillingarian and Carrol M. Beeson
Installation of Pumping Unit....................................... B-54
Jack L. Coulson
Petroleum Exploration and Development in France ............................................................... B-38
Dr. J. Dupouy-Camet
Spraberry Drilling and Completion Methods.......... B-72 John L. Cox
Oil Reserves Menaced by Mass Salvaging.................. B-78 F. R. Cozzens
Geophysical Exploration Comesof Age......................B-84 Sigmund Hammer
Current Mud Programs in the Uintah Basin....... ... B-89
R. D. Blaicher and William J. Knight
The Lee Field, Morgan County,Colorado ................. B-92 C. R. Neal
Cost Trends in Contract Drilling........................ ........._B-95 John McEwen
'-rino Field, Colorado........................ ........................B-99
" Sets U. S. Oil Reserves Up Five Billion Barrels ............
B-101
Black Light Aids Oil Exploration............. ................ B-103
Features
Presenting-------------------- B-3 Producing News _____ B-104 Tiat's Doing
in Drilling-------------- B-108
Exploration Activities _.B-112 Running Tour
With Men
in the Industry_____B-118
REFINING AND GAS PROCESSING
More Catalysis--Refining's Watchword........................ C-3 Arch L. Foster
Heat Transfer in Spiral Coils ...'........................ --.....C-7 T" M. A. Noble, J. S. Kamlani, J. J. McKetta, Jr.
Insulation Methods for Air-Lift TCC Unit................ C-22 5. E. Swenson
Petrochemicals from Water Gas--Part 1.................. C-28 Peter W. Sherwood
Salvage Cleaning ....................................................... --C-38 Vincent E. Bowes
Cooling Tower Maintenance...........................................C-44 Howard E. Degler
Relationship of Furnace Volume and Heat Release......-..................................
D. F. Gerstenberger
-G-51
Hydrous Calcium Silicate Heat Insulation............ --C-53 E. C. Shuman
New Analytical Methods--............................................ C-63
Polarographic Determination of Zinc in Oils How to Service Coolant Condensers Heater for Aniline Point Apparatus
Processing Sulfur Bearing Gases....................................C-68 C. L. Blohm
Insulating Cement--A Versatile Heat Saver............. C-75
TC Reforming Process Regenerates Catalyst............C-79
Michigan Refinerv Yields 35-40% Aromatics............. C-83
----------- j. c. Albright
y
Plant Aida
. Suspended Cellar
Tar Heater C-81
Scaffold C-26 Crank Bearing
Permanent Scaffold
Clearance Gage
Bracket and Boilers__ C-76
Support Bracket______ C-82
Automatic Water
Stainless-Steel Paint___ C-82
Treatment Feeder___ C-81 Circular-Scale
Micarta Piston Rings
Design and
for PumpsC-81 Full-V iew Dial C-82
Elimination of Excess
Side Boom Used for
Pump Packing _____ 'C-81
Loading PipeC-89
Features
Refining and Gas
Refining and Gas
Processing News ____ C-84 Processing Personals__C-90
OIL AND GAS PIPELINING
Cushing-Chicago Line Under Construction................ D-3 Frank H. Love
Protective Casings for Pipe Lines.............................. D-7 .1/. G. Spangler
PAD's Survey of Transportation Needs........................ D-24
Use of Aluminum Pipe in Oil Country Applications ...........................................................D-28 William B. Moore, Jr.
The Wear-Compensating Pipe Line Scraper............. D-35 B. Ver Nooy
Features
Pictorial D-44
Oil and Gas Pipelining News ____ D-47
Pipe Line Personals____ D-57
Pipe Line
Projects------------------D-60 With the Pipe Line
Contractors _________ D-66
P** rtTROliUM ENGINEER Publishing Company, Irwin-Kooalar Building, DAL LAS 1, TEXAS. W. 1. LOVE, Pratidont; W. T. 81VAN, Ganorof Momjw and Trooturopy
Editorial Staff--X. C. SCLATER. Viet Prat.danr and Editor-in-Cbi*/; ERNESTINE ADAMS. Managing Editor; JACK MENNEER, Editor. Drilling ond Producing! ARCH l.
fOSTER. Editor, Satining and Gat Procoaling; PRANK H. LOVE. Editor. Oil and Gat Pipolining; RICHARD SNEDDON, Editor Politic Coait, 1106 I North lov'M Slroot.
Glandolo 7, Colifornio. Phono, Chapman 5-1951, MART MORRIS IVMAN, Auitlont Editor; HENRIETTA O'BANNON, Art Editor. Advartlaing Staff--T. J. CROWLEY, Vico
Rroiidonf ond Aduortiting Monogan Nov York--JOE I. WOOOS, 52 Vondnrbilt Avnnu*. Now York 17. Now York. Phono MUrray Hill 4-1880| Chlcogo--E. V. PERKINS.
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PEoipacf 3919. Promotion ABBOTT SPARKS. Monagnr; ROYAL COURTNEY, Auttfont Circuiatioo Monagot. Copyright 1952 by Tho Patrol*um n9*tmte Publithing Company.
Jndatad by I nduilrlal Artt fndot ood Tho fnginaaring lodat, Inc.
Mambar of Audit Buroou of Circulation and Attociafod iutinott Popart
THE PETROLEUM ENGINEER, April, 1952
A-3
'Section of new addition to Port Arthur,
exes, refinery of Gulf Oil Corporation,
nutated with hydrous calcium silicate.
A lways among the first to recognize
and adopt improved materials and meth*s, the oil industry has quickly ac
cepted a new heat insulation material of the hydrous calcium silicate type. A chemically reacted mixture of lime and silica, containing small amounts of asbestos fiber for hinging action, the new material looks quite similar to other rigid insulating materials commonly used in industry. It is not glass. In out ward appearance, its distinguishing characteristics are an almost chalky whiteness and a comparatively smooth surface texture, even when sawed.
Properly made hydrous calcium sili cate is different from other insulating natenals now on the market because of its unique combination of physical characteristics. Although it has a den sity of only 11 lb per cubic foot, it has an average flexural strength in excess of 50 psi and a compressive strength of 150 psi. Insolubility in water and incom bustibility are two more of its outstand ing characteristics. It is effective through out the entire temperature range from zero to 1200 F. Because its thermal con ductivity is conservatively stated at 0.39 at 100 mean or 0.54 at 500 mean tem perature. it is frequent practice to specify %-in. less thickness for Kaylo insulation than for "combination" in sulating materials in the range from 500 to 1200 surface temperature.
This new material is produced under
Hydrous Calcium Silicate Heat Insulation
Extremely light weight--11 lb per cubic foot--makes handling easy; Simplified Dimensional Standards facilitates nesting and application
E. C. SHUMAN'
patents numbered Re. 23,228, 2347,127, and other pending patent applications.
Hydrous calcium silicate insulation has been used principally in the medium pid high temperature range, because it is in this range that the material per forms to greatest advantage. It may be used also as a low temperature insula tion, provided proper vapor seals are employed.
Hydrous calcium silicate insulation products of certain types have been manufactured and,sold commercially by
i >Dir*etor of rewareh. Karl* Division. Owen*-
s tools Glui Componj.
Owens-Illinois Glass Company since 1943. The story of how this company researched and developed the non-glass insulating material is interesting. It is also an inspiring example of the Ameri can Way. Without the vision, resources, and technical know-how of "big busi ness," this material would not be on the market today.
Development of hydrous calcium silicate products began in 1938. The company wanted materials of construc tion to supplement its Insulux glass
EXCLUSIVE
E PETROLEUM ENGINEER, Apr/7, 1952
block, already well-established, and it had a great deal of manufacturing, and engineering experience with the "two principal markets used in hydrous cal cium silicates--lime and sand.
Many other companies and- groups have experimented with various hydrous calcium silicate products. Work had been done in Germany in the early 1930's. Several independent research or ganizations and manufacturing compa nies in the United States and Canada had attempted to develop commercial materials during this period. One group was able to produce experimentally
C-55
r>
Chart of sizes, forms, and thicknesses of hydrous calcium silicate insulation.
056
limited quantities of a calcium silicate
product which they called Microporite.
It was a structural material, and there
is an experimental house on Long Island
today, which is built almost entirely of
this material, except those parts that
are exposed to weather.
"
Until the company's physicists, chem
ists. and engineers studied the compo
nent materials and learned the details
of their reactions, however, no one had
produced a stable, uniform product with
the advantages now found in the hydrous
calcium silicate.
Research had reached the pilot plant
stage of manufacturing by the outset of
World War II. Hydrous calcium silicatf
heat insulation, then being made at a-
converted brick plant at Berlin. New
Jersey, was approved by the U. S. Navy,
which used it for marine insulation.
Even in those early days, the material
proved stronger, more durable, and
easier to handle than others tested.
After the War, construction began '
a quarter-mile-long manufacturing plant
at Sayreville. New Jersey, and manufac
turing of hydrous calcium silicate began
there in March. 1948.
The original plant at Berlin, New Jer
sey, where the forerunner of today's
hydrous calcium silicate heat insulation
was first produced, has been remodeled
and enlarged almost continually to be
come a sizable and modern factory, from
the outside looking much like a typical
glass plant. The glassman who enters
it, however, finds himself in strange sur
roundings.
The Sayreville, New Jersey, plant, al
though little changed on the outside
since its construction, has undergone
extensive change within during the past
four years as the company has perfected^
improved processes.
THK MTROIEUM ENGINEER, April, I?J2
Other Calcium Silicates
Calcium silicates, of course, are not .w to the chemist. Portland cement may be called a calcium silicate, for ex ample. Even some types of glass can be called calcium silicates, although being fusion products, they are not typical members of the family. Kaylo insula tion. however, is a chemically reacted product, and is a permanently set and stable product when it leaves the plant. Portland cement is an incompletely re acted chemical compound insofar as ultimate use is concerned and does not reach its permanent set until mixed with water. Glass is a fused product using no water, its raw materials melted -.mi blended at high temperatures.
The manufacturing of hydrous cal cium silicate insulation is essentially a chemical reaction operation. Lime, silica, asbestos, and water are mixed to form a slurry that is poured into metal molds to shape the desired product. The '-reaction of this slurry is accelerated by 'the use of elevated temperatures in large pressure vessels .called indurators. After induration, of hardening, the ma'terial is dried to practical commercial
limits. It should be noted that, because a chemical reaction is involved, there is no "binder'' in any Kaylo insulation.
The millions of tiny air spaces per cubic inch that are left in the material after the moisture is driven off give this insulation its light weight and low ther mal conductivity. Every cubic foot of insulation contains so many tiny air spaces that the total area of the surface surrounding them is about 100 acres.
By varying the proportion of water in the formulation it is possible to obtain products in various densities. As the density increases, strength becomes greater and insulating value less. The density of 11 lb per cubic foot presently used for heat insulation was established after long research as the one that rep resents the optimum combination of physical characteristics for that use, from a practical viewpoint.
A 20-lb per cubic foot hydrous cal cium silicate is manufactured also, in the form of two building products--in sulating roof tile, for roof decking, and core materiaL for fabrication by other manufacturers into fireproof doors and wall panels.
Unique Combination of Physical Characteristics
The fire resistance of hydrous calcium sib'cate is due to its mineral composi tion. which withstands high tempera tures. It will withstand service tempera tures as high as 1200 F for an indefinite period, without loss of thermal efficiency. Actually, because exposure to high tem peratures drives off residual moisture, the thermal efficiency of the material improves after installation and use.
As might be presumed from its struc ture. hydrous calcium silicate has a high absorption: yet it is not permanently damaged by wetting. Even when satu rated. it retains a high proportion of its normal strength, and after drying it re gains its normal strength and insulating value. It does not dissolve nor crumble.
Its hygroscopicitv is low. After six hours exposure in an atmosphere of 120 F and 90 per cent relative humidity, for example, it absorbs only 0.9 per cent moisture by volume.
With a --pH factor of about 10, Kaylo insulation is rust-inhibitive. Contact with metal coverings or fasteners, therefore, offers no problem.- This includes even
Heat loss and surface temperatures of various thicknesses of hydrous calcium silicate pipe insulation applied to 20-in. pipe.
Ambient still air 80F.
1
aluminum, unless the insulation is sat* urated.
The material has remarkable dimen sional stability. Linear shrinkage after 24 hours' exposure to a temperature of 750 F is only 0.8 per cent, and only 15 per cent after exposure to 1200 for the same length of time.
Wide Range of Forms
Hydrous calcium silicate heat insula tion is made in two basic forms in which heat insulating block and pipe insula tion are further divided into many other forms. All units are 36 in. long.
For the insulation of flat surfaces there is flat block. For the insulation of vessels from 6 to 60 ft in diameter, there is curved block. Thicknesses from one through five inches in increments of onehalf inch are available for both forms. Widths are three, six. nine, twelve, and eighteen inches.
For insulation of pipes and tubes from one-half inch to six feet in diameter.
Kavlo insulation is made in numerous forms, all to Simplified Dimensional Standards (successive layers "nest"). For tubes and pipes through twelve inches in diameters, it is made in sec tional form (two pieces to the circum ference ). For diameters through 24 init is made in tri-segmental form (three
pieces to the circumference). For diam eters through 41 in- it is made in quadsegmental form (four pieces to the cir
cumference). For diameters to 6 ft, it is made in k-segmental form (pieces nominally 18 in. wide and with various
radii of curvature). Thicknesses range from one inch
through five inches, in increments of one-half inch.
The tri, quad, and k-segmental forms are unique, and are made possible only by the high strength and light weight of the material. On larger pipes, they permit the user to reduce greatly the number of pieces applied to insulate a given surface of pipe and reduce the
0
number of joints. The applicator, thei/
fore, handles fewer pieces, yet the ligl
weight of the material makes thesi
larger units easy to lift and handle.
For large pipes with temperature
above 500 F the number of pieces to be
applied is reduced even further. In this
range it is customary to apply double ,
thicknesses of other insulating mate--.,
rials--a diatomaceous earth type next
to the surface in sufficient thickness to
reduce the temperature to 500 or lower,
and 85 per cent magnesia or other ma
terial as an outer layer. Up to 1200, a
single layer of hydrous calcium silicate
(usually of lesser thickness than the for
mer combination covering) is all that
is needed.
A standard 20-in. pipe with a tem
perature of 700 is a good example of
the labor saved by the use of hydrous
calcium silicate insulation. With other
standard forms and types of heat insula
tion, the applicator must handle 26
pieces for each 3 ft of pipe. With
k-segmental insulation, he handles only
three.
All sizes and thicknesses of this pipe
insulation are made to Simplified Di
mensional Standards. This system was
devised by Ray Thomas, staff engineer
for Union Carbide and Carbon Corpo
ration. as a means of simplifying' the
application and storage of pre-formed
heat insulation. At the time that Thomas
first published his proposal for the sys
tem. this company was considering sim
ilar ideas. Hydrous calcium silicate was
among, the first, if not the first, heat
insulation to be manufactured in con
formance with his system. It is grad
ually being adopted by other manufac
turers.
Under the Simplified Dimensional
Standards system, every piece of pipe
insulation is made with an outside diam
eter that corresponds to that of a stand
ard pipe. Under the old system, pipe-
insulation is made in what are called
standard and double standard thick
nesses. So-called standard and double
standard thicknesses are constant
through certain ranges of pipe diam
eters. Because standard pipe sizes are
often actually larger than their nominal
diameters (e.g., "one-inch" pipe has an
actual OD of 152 in- "six-inch" pipe
an OD of 6.63 in.), pipe insulation
made to the old system will not always
nest.
To overcome this handicap, the Sim
plified Dimensional Standards system
varies the thickness of the insulation
from nominal thickness. So-called "one-
inch" thick insulation for a "one-inch"
pipe is actually 1.08 in. thick. "One-
inch" thick insulation for a "six-inch"
pipe is actually 0.94 in. thick. These
variations are insignificant as to thermal
conductance (and our heat loss charts
tOawkeenasc-tIullianlotishicpklannetssatinStoayarcecviolfuen, t). T^he
New Jersey, one of two plants
t
devoted entirely to the production
of hydrous calcium silicate.
"result is that insulation made to this .system will always nest. Any size or ^thickness will fit snugly over either a standard pipe or another size or thick-.
ness of insulation.
Savings by S.D.S. System
The savings anticipated by Thomas in'creatirij^if system have proved prac tical. Because of the interchangeability of insulation made to this system, the number of sizes and thicknesses re quired to do a given job is greatly re duced. This is particularly beneficial to the user who keeps inventories of mate rial for maintenance. He no longer need keep in stock all sizes and thicknesses that might be required for his insulated equipment. Instead, he can stock only enough sizes and thicknesses to make up the necessary combinations.
If processes are changed after equip*ment has been insulated, thereby neces sitating greater insulation thickness, the user can simply apply another layer to his exisung insulation. He need not re move the first insulation and apply a new, thicker covering.
It is worth noting that the 1200 F effective temperature limit'of hydrous calcium silicate also applies here. Ofteninsulations must be removed from equipment because new operating tem peratures exceed 500 or 600 F limits of .the material.
Savings in Application
To the engineers who design and specify and to the workmen who apply, the advantages of Kaylo heat insulation products are many, the limitations few.
The "limitations" are tied up with the advantages. One is that the material is so strong and rigid that it cannot be broken and shaped easily around irregu lar surfaces, a not uncommon practice, though not considered good workman ship. On the other band, it is this strength combined with light weight that makes it possible to manufacture
C-62
and apply the insulation in larger aizes than has been previous practice. This same strength makes it possible for the applicator to cut hydrous calcium sili cate insulation to fit irregular surfaces or odd spaces with an ordinary saw, or even with a knife. Applicators who use it learn the new "tricks of the trade"
quickly. Applicators appreciate the fact that
hydrous calcium silicate is non-toxic and "easy on the hands."
And this high strength makes it pos sible to walk on insulated pipes and equipment during installation, and also reduces the amount of insulation break age during construction. The insulation foreman on a large refinery project in Illinois where this insulation was used throughout, remarked recently that the wasted insulation for the entire job could be hauled away in a pick-up truck. Estimators are learning to use a smaller breakage factor when hydrous calcium silicate is specified.
It is not unusual for aoplicators to mix crushed magnesia insolation with water to form a paste and force it into small areas to be insulated. Hydrous calcium silicate, being insoluble in water, cannot be used this way. This
Telescope of sectional hydrous calcium silicate pipe insulation, illustrating how Simplified Dimensional Standards allows nesting.
same water insolubility, however, eli* nates damage from rain before westcoating on outside jobs, and also tne need for replacing insulation if stean or water leaks occur in insulated fipes. Refining towers, insulated but not weathercoated, have withstood S-day rains and high winds without damage.
Hydrous calcium silicate insiilation is applied in the same manner as other insulating materials. It is available either with or without canvas covering, and can be strapped, wired o'r pinned to surfaces being insulated. Paints of any type compatible with an aAkaline surface can be used. Its nail and staph holding power are better than average It has good affinity for insulating and finishing cements.
Due to its compatibility with a variety of adhesives, plus the fact that it is made to Simplified Dimensional Standards, hydrous calcium silicate pipe insulation as well as block may be shiplapped to order. Shiplapped insulation fits to gether like shiplapped lumber, provid ing staggered joints in single layer ap plication. Skilled applicators often make their own shiplapping in the field,' using a saw or even a chipping hammer.
The variety of forms of heat insula tion that can be made in the plant or in the field by sawing, drilling, laminating, or combinations of them is almost end less.. Skillful, conscientious workmen have found numerous shortcuts using these methods. The engineer and the estimator need only to decide which product promises to be the more eco nomical for their requirements.
Although a relative newcomer to the field this heat insulation is a proved material in the oil refinery and gas proc
essing field. Among the companies using it for major installations are Sun, Texas, Gulf, Sinclair, Standard of Ner Jersey, Standard of Indiana, Standard of Ohio, Standard of California, Sunray, Pure Oil, Imperial Oil, Phillips, Shell.
Cities Service, and Humble. * * /
THE PETROLEUM ENGINEER, April, 19r
./ TO ALL
-i
NATURAL GASOLINE MEN
GREETINGS
from the
NATURAL GASOLINE SUPPLY MEN'S ASSOCIATION
We are looking forward to seeing you at the
THIRTY-FIRST ANNUAL CONVENTION
of the
NATURAL GASOLINE ASSOCIATION OF AMERICA
April 30, May 1-2, 1952, Rice Hotel, Houston, Texas
Members of the Natural Gasoline Supply Men's Association:
. The Aber Company Alliger and Scar- Company Alii*-Chalmers Mfg- Company
Aluminum Company of America
Imerican Air Filter Co-, Inc.
Vmerican Locomotive Company
.American Meter Co., Inc.
American Packing & Gasket Co. ArPco Drainage and Metals Products, Inc.
Arrow Industrial Mfg. Company Bald*iB-Hill Co.
The Barrett Division J. B. deaird Company, Inc. Belief* Industrial Engineering Co.
Bethlehem Supply Company
W. H- & L D- Betz The Bird-Archer Company B'.ack. Sivalls & Bryson, Inc.
,,
! blaw-Knox Construction Co. W. H. Bowden Engr. St Const. Co.
Braden Steel Corporation The Bristol Company
Brown Fintuhe Company The Brown Instrument Company
Brown St Root, Inc. Butane-Propane News
Byron Jackson Company
Cameron Iron Works. Inc. J. E. Carlson. Inc. Chicago Bridge and Iron Company
Clark Brothers Company, Inc.
The Condit Company Continental Supply Company
C Lee Cook Mfg. Company Cooling Tower Service. Inc.
The Cooper-Bessemer Corp.
Joseph A. Coy Company, Inc. Crane Packing Company
W. H. Curtin and Company
Dallas Tank Company, Inc. Daniel Orifice Fitting Company
Davis Regulator Company
Dearborn Chemical Company
DeLaval Steam Turbine Company
Delta Engineering Corporation
Double Seal Ring Company Dresser Engineering Company
E. L du Pont de Nemours and Co.. Inc.
Allen Edwards, Inc.
Eggelhof Engineers
John W. Elder Company
' Elliott Company
Engine Life Products Corp.
Engineers and Fabricators, Inc.
I Ethyl Corporation The Fish Engineering Corp.
The Fisher Governor Company Flint Steel Corporation The Fluor Corporation, Ltd. -
The Foxboro Company France Packing Company Franklin Supply Company Frontier Chemical Company The Garlock Packing Company Gasoline Plant Construction Corp. General Electric Company
J. B. Gill Company The Girdler Cnrpowinn. Goulds Pumps. Inc. Graver Tank St Mix Co., Inc. Greene Brothers, Inc. The Griscom-Russeil Company Grove Regulator Company
D. W. Haenng and Co. Inc. The Happy Company Hercuies-Lupfer Engine Sales Co.
The Hilliard Corporation Hudson Engineering Corp. The Industrial Insulators, Inc. Industrial Scientific, Inc. Infilco, Inc. Ingenoil-Rand Company Johns-Mannlle Sales Corp. Kansas Paint and Color Company
Kayio Division M. W. Kellogg Company Kieley & Mu-.iier.-Inc. The Kocb Engineering Co. Koppers Company. Ind Ladish Company Warner Lewis Company A. M. Lockett and Co., Ltd. The Lubrtscosos Specialties Mfg. Co. The Lunkenheimer Company Maintenance Engineering Corp. Maloney-Crawford Tank St Mfg. Co. Manning. Maxwell and Moore Steve C. Maples St Company The Marley Company, Inc.
Jas. P. Marsh Corporation C. A. Mathey Machine Works J. R. Meek Company Metal Goods Corporation Mid-Continent Supply Co.
Moorlane Company
Moran Furnace and Sheet Metal Co.
National Petroleum News
The National Supply Company
National Tank Company
Natural Gaa Odorizing Co., Inc.
Naylor Pipe Company
Nordstrom Valve Company
Wm. W. Nugent & Gx, Inc.
The Oil and Gas Journal OU Daily OU Well Supply Company O. L Olsea Company Orbit Valve Company Pacific Pumpa, Inc. Paramount Supply Company The Parkersburg Rig It Reel Co. Peerless Mfg. Company Perco Div, Phillips Petroleum Co. t---
Perry Equipment Corporation Petro-Cbem Development Co. The Petroleum Engineer Petroleum Processing Petroleum Refiner Pittsburgh Equitable Meter Co. Plastelite Engr. Company Plibrico Jointless Firebrick Co. Podbielniak, Inc. Power Machinery Company J. F. Pritchard & Co. Process Equipment Company Refinery Engineering Co. Refinery Maintenance Co. Refinery Supply Company Riddle and HubbeU Santa Fe Tank and Tower Co. E. W. Saybolt and Company A. O. Smith Corporation Southern Engine & Pump Co. Standard Pipeprotection, Inc. Stearns-Roger Mfg. Co. Stentz Equipment Co. Superior Mfg. Company Taylor Forge and Pipe Works Taylor Instrument Companies Teilepsen Const. Co. Tri-State Mfg. & Engr. Co., Inc. Tube Turns, Inc.
Union Asbestos & Rubber Co. Union Steam Pump Sales Co. United Centrifugal Pumps Vinson Supply Company Vulcan Steel Tank Corp.
Walco Engr. & Const. Co. Walworth Company Westcott and Greis. Inc.
Western Supply Company
The Wickes Boiler Co.
Wilkening Mfg. Co. Woobank Machinery Company World Petroleum
Worthington Pump & Machinery Corp. Wyatt Metal and Boiler Works Young Sales Corporation
John Zink Burner Company
ME PETROLEUM ENGINEER, April, 1952
T* obtain mart information on products advortfsod too pog 1-51 OH C-61