6
and 6 (28).
3.8
Wait at least one minute to allow both sides of the purification reactor to
pressure up and then adjust the output pressure to any desired pressure up to
50-psig with the OUTPUT PRESSURE REGULATOR. This output pressure
will be observed on the OUTPUT PRESSURE gauge (6).
3.9
Output flow should be adjusted via the OUTPUT FLOW ADJUST valve (13) to
some value between zero and 10.0 on the rotameter (10).
3.10
After about one-half hour of operation the METHANE HEAT lamp (4), if
present, should cycle, indicating that a maximum temperature has been
reached and is being maintained. During this half-
hour “burn-in”, copious
amounts of water will exit from the PURE AIR FITTING, Figure 1 (59), on the
rear of the generator unit. It is advantageous to attach temporarily a short (six
to twelve-inch by ¼-inch o.d.) length of plastic tubing to that fitting to permit the
exiting water to clear the hoses and power cords of the unit.
3.11
The METHANE HEAT pyrometer (7) should indicate 290
C ± 10
C. If a
temperature other than this is observed, refer to Section 13.22, Methane
Reactor, for remedial action.
3.12
During the entire interval, from start up to full maximum temperature of the
methane reactor, the input pressure should be cycling between 60 and 80-psig
indicating that the pressure switch is operating properly. If not, consult Section
14.0, Pressure Switch Adjustment.
3.13
If all operations have been followed according to Sections 3.4 through 3.11,
allow the system to operate for several hours to permit maximum elimination of
the “burn-in” water. See Figure 14 for moisture versus time for both purification
and methane reactors.
3.14
IF INSTALLATION HAS BEEN COMPLETED AS SHOWN IN FIGURE 3
WHEREBY THE PURE AIR GENERATOR USES “HOUSE” AIR FOR ITS AIR
SOURCE, OBSERVE THE FOLLOWING OPERATIONS.
3.15
Admit the source air into the pure air generator. The INPUT PRESSURE
gauge, Figure 4 (3), should indicate the pressure of the source air.
NOTE: This pressure must not be less than 60-psig nor greater than 100-
psig. If the input pressure is less than 60-psig the quality of the air
produced by the pure air generator will be jeopardized. If the
pressure is greater than 100-psig the unit may malfunction since the
components are not rated greater than 100-psig.
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