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American Society of Heating and Ventilating Engineers Guide, 1932
Table 1. Regain of Hygroscopic Materials
Moisture Content Expressed in Per Cent of Dry Weight of the Substance at Various Relative Humidities--Temperature, 75 F
Culssi-
Material
Description
Relative Humiditt--Per Cent
10 20 30 40 50 60 70 80 90
Authobttt
Cotton
Sea Island--Roving
2.5 3.7 4.6 5.5 6:6 7.9 9.5 li.5 14.1 Hartshorne
Cotton
American--Cloth
2.6 3.7 4.4 5.2 5.9 6.8 8.1 10.0 14.3 Schloesing
Cotton
Absorbent
4.8 9.0 12.5 15.7 18.5 20.8 22.8 24.3 25.8 Fuwa
Natural Textile Fibres
Wool. Silk Linen
Australian Merino:--Skein 4.7 7.0 8.9 10.8 12J5 14.9 17.2 19.9 23.4 Hartshorne
Raw Cheyennes--Skein 3.2 5.5 6.9 8.0 8.9- 10.2 11.9 14.3 18.8 Schloesing
Table Cloth
1.9 2.9 3.6 4.3 5.1 6.1 7.0 8.4 10.2 Atkinson -
linen
Dry Spun--Yarn
3.6 5:4 6.5 7.3 8.1 8.9' 9.8 11.2 13.8 Sommer
Jute Average of Several Grades 3.1 5.2 6.9 8.5 10.2 12.2 14.4 17.1 20.2 Starch
Hemp
Manila and Sisal--Rope 2.7 4.7 6.0 7.2 8.5 9.9 11.6 13.6 15.7 Fuwa
Rayons
Viscose Nitrocellu lose Cupramonium
Average Skein
Cellulose Acetate Fibre
4.0 5.7 6.8 7.9 9.2 10.8 12.4 14.2 16.0 Robertson 0.8 1.1 1.4 1.9 2.4 3.0. 3.6 4J 5.3 Robertson
M. F. Newsprint Wood Pulp--24% Ash
2.1 3.2 4.0 4.7 5.3 6.1 7.2 8.7 10.6 U.S: B.ofS.
H. M. F. Writing Wood Pulp--3% Ash
3.0 4.2- 5.2 6.2 7.2 8.3 9.9 11.9 14.2 U. S. B. of S.
Paper White Bond
Rag--1% Ash
2.4 3.7 4.7 5.5 6.5 7.5 8.8 10.8 13.2 U. S. B. of s;
Com. Ledger
75% Rag--1% Ash
3.2 4.2 5.0 5.6 6.2 6.9 8.1 10.3 13.9 U. S. B. of S.
Kraft Wrapping Coniferous
3.2 '4.6 5.7 6.6 .7.6 8.9 10.5 12.6 14.9 U. S. B. of Sx
Leather
Sole Oak--Tanned
5.0 8.5 11.2 13.6 16.0. 18.3 20.6 24.0 29.2 Phelps
Catgut
Racquet Strings
4.6 7.2 8.6 10.2 12.0 14.3 17.3 19.8 21.7 Fuwa
Glue Misc.
Organic Rubber
Hide Solid Tire
- - 3.4 4.8. 5.8 6.6 7.6. 9.0 10.7 11.8 12.5 Fuwa 0.11 0.21 0.32 0.44 0.S4 0.66 0.76 0.88 0.99 Fuwa
Wood
Timber (Av.)
3.0 4.4 5.9 7.6 9*3 11.3 14.0 17.5 22.0 Forest P. Lab.
Soap
Ivory
1.9 3.8 5.7 7.6 10.0 12.9: 16.1 19.8 23.8 Fuwa
Tobacco
Cigarette
5.4 8.6 ii.o! 13.3 16.0 19.3 25.0 33.5 50.0 Ford
White Bread
0.5 1.7 3.1 4.5 6.2 8.5 li.l 14.5 19.0 Atkinson
Crackers
2.1 2.8 3.3 3.9 5.0. 6.5 8.3 10.9 14.9 Atkinson.
Foodstuffs
Macaroni Flour
5.1 7.4 8.8 10.2 11.7' 13.7 16.2, 19.0 22.1 Atkinson 2.6 4.1 5.3 6.5 8.0 9.9 12.4 ISA 19.1 Bailey
Starch
2.2 3.8 5.2 6.4 7.4' 8.3 9.2 10.6 12.7 Atkinson
Gelatin
0.7 1.6 2.8 3.8 4.9 6.1. 7.6 9.3 11.4 Atkinson
Asbestos Fibre . . Finely Div.
0.16 0.24 0.26 0.32 0.41 0.51 0.62 0.73 0.84 Fuwa
Silica GeL
5.7 9.8 12.7 15.2 17.2 18.8 20.2 21.5 22.6 Fuwa
Inorganic Domestic Coke
0.20 0.40 0.61 0.81 1.03 1.24 1.46 1.67 1.89 Selvig
Activated Charcoal: Jteam Activated
Sulphuric Acid
QtSOt -
7.1 14;3 22.8 26.2 28.3 29.2 30.0 31.1 32.7 Fuwa 33.0 | 41.0 47.5 | 52.5 | 57.0 61.S 67.0 73.5 82.5 Mason
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Chapter 29-^Air Conditioning for Industrial Processes
DESIRABLE ATMOSPHERIC CONDITIONS
The most desirable relative humidity during processing depends upon the product and the nature of the process. As far as the behavior of the material itself and its desired final condition are concerned, each material and process represents a different problem. The best relative humidity may range anywhere from 0 to 100 per cent. Similarly the most desirable temperature may range between wide limits for different materials and treatments. Extremes in either relative humidity or temperature require relatively expensive equipment for maintaining these conditions and con trolling them automatically. Also, in departments where people are working, their health, comfort and productive efficiency must be con sidered. A compromise often is desirable.
It is generally considered that relative humidities below 40 per cent are on the dry side, conducive to low regains, a brittle condition of fibrous materials, prevalence of static electricity and a tendency toward dryness of the skin and membranes of human beings. At the other end of the scale, humidities above 80 per cent are relatively damp, conducive to high regains, extreme softness and pliability-. . .
GENERAL REQUIREMENTS
In general, air conditioning apparatus for industrial purposes must be capable of absorbing heat from various sources such.as machinery power, electric lamps, people, sunlight and chemical reaction; of warming or cooling to any desired degree, and of giving or permitting ample air supply at all times. Refrigeration may or may not be required, depending upon natural conditions, the required relative humidity and the maximum permissible temperature. Washing, purifying and recirculating of the air may be desirable. Accurate, sensitive and reliable automatic control of humidity or temperature, or both, is essential in most cases.
The amount of moisture to be added or removed from the air is dif ferent for each industrial process. It depends upon the temperature and relative humidity to be maintained, and upon the several factors men tioned an the'previous paragraph, also upon outdoor conditions, required rate of air change, amount of material entering or leaving the room per hour and the number of employees. Weather greatly affects the im mediate requirements for air conditioning, but the advantages of a favorable climate are usually of secondary importance in modern in dustrial development.
, Most industrial, processes require a constant relative humidity so that the quantity of moisture existing, naturally in the.air must be either increased or lowered. Such industries include the confectionery, rayon, printing and lithographic industries. Others require not only a constant relative humidity but also a uniform temperature. For example, plants containing full fashioned hosiery machines and automatic machines for wrapping chewing gum, food products, -confectionery and cigarettes require exact conditions of heat and moisture in order to function satis factorily without frequent adjustments.
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