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CHAPTER 38
1049. Guide;
ABSORBENTS
Any absorbent substance may be used as a dehumidifying agent if it has a vapor pressure with respect to water lower than the partial pressure of the water vapor in the mixture from which the moisture is to be removed.
Solid Absorbents. The substances used are generally the solid forms of the liquid absorbents. Calcium chloride is frequently used because of low cost. At present they are used principally in small desiccating chambers and in small dryers of the cartridge type, through which air is forced under pressure.
Liquid Absorbents. These are primarily water solutions of materials in which the. vapor pressure is reduced to a suitable level by controlling the concentration and temperature of the dehymidifying solution. Water solutions of the chlorides or bro mides of various inorganic elements and certain organic compounds are the liquid
absorbents used in air conditioning.
. In addition to having suitable water vapor pressure characteristics, an absorbent to be satisfactory should also meet the following requirement.*;:
1. Be widely available at low cost.
2.' Be non-corrosive, odorless, non-toxic., and non-inflammable. 3. Be chemically inert against any impurities in the air stream.
4. Be stable over the range of use.
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5. Must not precipitate at the lowest temperature to which the apparatus is exposed.
6; Have low viscosity and be capable of being economically regenerated or concern,
trated;after having been diluted by the moisture absorbed.
DEHUMIDIFICATION BY LIQUID ABSORBENTS
In liquid absorption systems the air-vapor stream is brought into intimate, contact with the absorbent solution by passing the air stream through a
tower into which the brine is introduced as a finely .divided spray,, or by. passing the air through a tower or contactor which is continuously sprayed
with the brine, thereby presenting a large surface of absorbent to the air to be dehumidified. The difference in the partial pressure of the water in the concentrated brine And the partial pressure of the water vapor in the air
causes the water vapor to be given up by the air to the brine until, equi
librium is approached. The water vapor is condensed during, this opera tion, and its addition to the absorbent solution results in a decrease in the
concentration of the solution. As the water vapor condenses the latent heat of condensation is released in the absorbent solution. An additional;
frequently appreciable, quantity of heat known as the heat of solution or
heat of mixing is also released. The heat released.as the result of conden sation and mixing is directly transferred to the hrine, to the equipment; and
to the air being dehumidified, thereby causing a rise in temperature. A modified system includes means for removing heat from the absorbent
solution, either within the contactor or externally. Thus the temperature
of the solution may be higher than, equal to, or lower than that of the air,; depending on the chemical employed and the'ultimate use of the dehumidi
fied air.
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Fig. 3 shows the relationship between temperature, vapor pressure and
moisture content-of a typical absorbent of the inorganic type: These
curves indicate the general performance of such absorbents,'althoiigh' the
exact values vary for the different compounds.
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` When the given absorbent is in equilibrium with air having;a dry-bulb
temperature of 70 F and a relative humidity of 70 per cent, i.e: haying a
dew-point of 60 F, or a water vapor pressure of 13.2 mm Hg, the water
Dehumidification by Sorbent Materials -
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content of the solution-is 4-8 lb. water per pound of anhydrous absorbent. With air having the,same diy-.buib.temperature.and a dew-point of 37 F, or a vapor pressure of 5.6 mm Hg,.the water content is 2.1 lb per pound of absorbent. Therefore, when a solution of 2.1 lb water per pound of absor bent is exposed to an atmosphere of 70 F and 70 per cent relative humidity, it will absorb an additional 2.7 lb of water in reaching equilibrium.
The effect of temperature on the absorptive capacity may be observed by following a constant vapor pressure line in Fig. 3. At a temperature of 70 F and a vapor pressure of 13.2 mm Hg the moisture content is 4.8 lb
water per, pound of absorbent.,.; At 100 F the moisture content is 1.8 lb
water per pound of absorbent.
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Fig. 4 shows the relationship between temperature, vapor pressure, and
moisture content of a typical liquid absorbent of the organic type.
DEHUMIDIFICATION EQUIPMENT USING LIQUID ABSORBENTS
.One type of. system utilizing liquid absorbents includes an external interchanger haying essential parts consisting of a liquid contactor, a solution concentrator, a solution heater and a. cooling coil all as shown in Fig. 5. The contactor and cooling coil are located in the wet air stream. The air to; be conditioned is brought into contact with an aqueous brine solution having a vapor pressure below, that of the.entering air, resulting in a transfer of moisture from the air to the brine solution. This' results in a conversion of latent heat to sensible heat which raises the solution temperature and consequently.the air temperature. The temperature change,of the air be-