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Monsanto Chemicals
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AROCLOR 1254 LUBRICANT ANT PLASTICIZER IN THE
MANUFACTURE OF PAPER DRAPERIES
Monsanto Technical Bulletin No. P-I38 April 4, 1949
Monsanto Chemical Company St. Louis 4, Mo.
Aroclor* 1254, chlorinated biphenyl, Is an efficient, economical and nonflammable lubricant for the Inorganic fire-retardant agents used In making paper draperies that do not support combustion.
Also, Aroclor 1254 Is an attractive co-plastlclzer for the vinyl coating applied to the paper drapery material to give It a smooth and chlntz-llke appearance.
These specific uses for Aroclor 1254 In manufacturing paper draperies suggest other similar applications for Aroclors In the paper products Industry.
Registered In U. S. Patent Office.
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I. INTRODUCTION
The popularity of paper draperies In this country has Increased because of their economy as well as their highly decorative and aeathetlo value. Untreated paper lacks certain physical quali ties paramount In the use of this material for draperies. To Impart required fire-resistance, the paper Is usually treated with Inorganic fire-retardant salts such as ammonium sulfamate or ammonium phosphates. However, treatment of this type pro duces a brittle sheet especially at relatively low humidity conditions as would be encountered in the winter time when the draperies are hung adjacent to radiators. This is prevented by the Incorporation of Aroclor 1254 alone or In combination with a small amount of polylsobutylene, which serves as a lubricant to give the desired flexibility, softness or hand, and drape.
Aroclor 1254 Is particularly attractive as a permanent and stable lubricant for this purpose because of Its fire-retardant qualities, Its low vaporization rate, freedom from odor, its outstanding resistance to moisture or water, and Its relatively low cost.
In contradistinction to the use of a highly water-resistant lubricant, such as Aroclor 1254, In the past the practice was to use paper lubricants or softening agents such as glycerine and various glycols which, to a large degree, functioned as humectants. This method of lubrication 1b objectionable when high humidities prevail, as it Is known that such humeetant-type lubricants can pick up sufficient moisture so that the drapery materials drip.
In addition to ltB value as a lubricant and fire-retardant, Aroolor 1254 appears to have a stabilizing Influence on the paper fibers. When lubricants other than Aroclors, especially the humectant type, are UBed, the fibers seem to lose their abrasion resistance against rubbing with a wet cloth--a factor of Importance when cleaning paper draperies.
Another consideration of Importance In preparing paper stock for drapery use Is the incorporation of wet-strength qualities essential during processing the paper with the fire-retardant agents and also of merit In the end use of the paper draperies. This Is accomplished by customary methods for treating the pulp In the beater with melamine resins and then curing.
Since much of the drapery material is used In warm, humid cli mates, it Is also good practice to treat the paper with a preservative such as Monsanto's Santobrlte (sodium pentachlorophenate) to proteot it against organism attack, particularly
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fungi, but also termites. As little as 0.2% of Santobrlte based on the weight of the paper Is sufficient to give the desired protection.
In general, there are two types of paper drapery materials made. The simplest Is the colored and printed paper treated with lub ricated fire-retardant salts. This may be referred to as the plain type drapery material.
The second type Is a similar product but coated with a vinyl resin, such as (Jeon 100X-210, or a mixture of this resin with Qeon 100X-26S, plasticized with a mixture of fire-retardant plas ticizers. These mixtures may consist of Aroclor 1254 in combi nation with triphenylphosphate and Santlclzer 140, and the vinyl application is of the type commonly called a plastlsol or paste. This technique for applying the vinyl coating eliminates the use of flammable solvents which cannot be tolerated In paper process ing plants because of the fire hazard. The thin film of vinyl coating gives the draperies a pleasing, smooth and lustrous chintz-like appearance.
II. MANUFACTURE OF THE PLAIN TYPE DRAPERIES
The wet-strength paper Is treated with an emulsion of the Inor ganic fire-retardant salts and the Aroclor lubricant.
Using a padder box, the emulsion Is padded on the paper and then passed through squeeze rolls for Impregnation and removal of excess quantities of the emulsion. Then the rapidly moving paper strikes a baffle which crepes It. After this, the paper passes over a series or heated dry cans, or a series of seamless infra red gas burners which give proper drying.
Sometimes as much as 2.55* of Aroclor 1254, based on the weight of the treated paper, Is used along with a small amount of poly1sobutylene to Impart the desired lubricating effect.
A satisfactory and stable emulsion as used consists of about 2-40 of Aroclor 1254, 255* of ammonium sulfamate and 0.5 of emulsifying agents, with the remainder water. One of the sug gested emulsifying agent combinations Is that of Span and Nopco. Another consists of 0.255* of Sterox SE and 0.25^ of Tween 80, based on the total weight of the emulsion.
It has been our experience that ammonium sulfamate fire-retardant salts are easier to emulsify than dlammonlum phosphate in formu lations of this type. To accomplish a better dlammonlum phosphate emulsion. It Is usually necessary to use a mixture of 75 parts of
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Aroclor 125* and 25 parts of mineral oil. such as Hujol, and Santomerse S as the emulsifying agent. The suggested emulsion contains 25$ of dlamnonlum phosphate, 2-4 of the Aroclor-Nujol mixture, 0.5% of Santomerse S, and the remainder water.
The paper treated with the fire-retardant emulsion, and then dried. Is finally printed or colored to give the ready-to-use drapery material.
III. MANUFACTURE OF VINYL PLASTIC COATED PAPER DRAPERIES
The plastic coating, which Is usually vinyl resin, such as Oeon 100X-210, or a combination of 75 parts of this resin with 25 parts of Geon 100X-26S, Is applied to the finished treated paper stock, as described above.
Using fire-resistant plasticizers, such as a combination of Aroclor 125*, Santlolzer 1*0 and trlphenylphosphate, a plastlpol or paste Is prepared In the absence of flsmmable solvents. This vinyl paste Is padded on to the paper which Is then dried at about 300*F., followed by very rapid fusion at 360*F.
Usually the vinyl plastic coating on the paper Is very thin since the economics Involved In the manufacture of paper draperies do not permit the use of thicker coatings which would be more expen sive.
IV. DERMATOLOGY AND TOXICOLOGY OF AROCLOR 125*
The dermatology and toxicology of Aroclor 125* ere considerations In the use of this material both as a lubricant for the Inorganic fire-retardant salts and also as a co-piastlclzer for the vinyl coating applied to the draperies.
Skin patch tests, made In accordance with standard procedures and supervised by competent medical personnel, show that Aroclor 125* alone, when applied to the skin, or when vinyl plastics plas ticized with Aroclor 125* are applied to the skin, is neither a skin irritant nor a skin sensitizer.
The only point of concern In the use of Aroclor 125* In the manu facture of paper draperies deals with vapors that may be emitted during the drying operations. Although Aroclor 125* has a low vapor pressure and a relatively low evaporation rate. It must be borne In mind that the material on the paper Is there In an exceedingly thin film. This Is conducive to vaporization. It has been observed that when running only several thousand feet
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of th paper, there la practically no bulld-up of vapora around the processing machinery. However, on large-scale contlnuoua
production, vapora of the Aroclor and other lngredlenta will build up if the proceaalng machinery la not properly vented.
Aroclor vapora bear a degree of toxicity aa reflected by reaulta Indicating that 0.5 mg. of Aroclor 1254 vapor per cubic meter of air la the maximum amount allowable for aafe working condl-
tlona. Accordingly, the machine uaed for treating the paper ahould be encloaed. If thla la poaalble, and alwaya properly
vented with forced draft or auction fana.
The uae of drying rooma or chambera where the paper la festooned
In a relatively unvented and heated atmosphere to effect the dry
ing la not to be recommended where either Aroclor 1254 or other chemicals, whose vapors bear a degree of toxicity, are used In the process. The hot air In chambera of this type la normally not vented and would present a hazard In the event of a breakdown when the workmen would have to enter the drying chamber. Although gas masks would be worn by the workmen, thla practice la some what discomforting and not readily acceptable.
When Aroclor 1254 la uaed and the paper la dried by passage over
dry cans or a combination of dry cans and Infrared burners. It
la practicable to enclose this machinery and to vent It properly
by using exhauat fana. Under these conditions, the operation
appears free from any toxicity hazard.
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MONSANTO CHEMICAL COMPANY St. Louis 4, Mo.
New York-Chlcago-Boaton-Blrmlngham-Charlotte-Clnclnnatl-Cleveland Detrolt-Phlladelphla-Los Angelea-San Franclsco-Montreal
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