Document n91ZbrLd7RpN8L6eG3gyqrmYR
More TECHNICAL BRIEFS.
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When the ammonia feed woe slopped, which provided much belter control. It
the reducing power and iron content of the 16th stogo umple were etill high sad the pH in the range 6 to 7. When the
may be of interest to note that only
one evaporator has been cleaned me chanically In the five year history of tha
parent as the carbon dioxide in the
tom was reduced to reasonable rals^ Soon alter this unit was placed in open
sulfite treatment wee mopped but with station. Subsequent inspections proves don, conductivity of (he condensate t
ammonia treatment in uk, the reducing that cleaning by any means has been the bolweil was reduced to a tve*j,
power and the iron pickup both were almost zero. The pH varied from 6.8 (NH, 0.2S) in the steam to 7.6 (Ml* 0.05} la the 18th stage cample. When both sulfite and ammonia treat"
found to be unnecessary to date. Jn the past few years we had noticed,
in various publications pertaining to steam power plants, a growing interest and awareness of the problem caused
0.6 mlcrombos and ettrboa dioxide ^ the deaerator discharge decreased approximately 3.5 to l ppm.
This program, primarily aimed at r* dueiog corro&ion In the system, was
menu were stopped, the reduei&g power by iron In high pressure, low make-up riously a great step forward. While as
and ammonia were low at ell templing plants. With all of these factors in serious problems had been encounter^,
point*. The pH remained In tha range 7.0 to 7.5 but there su some iron pick" up in the 16th stage sample.
These results indicated that the best
mind, and thinking that we should at tack the problem before trouble oc curred, li was decided to make some eflort to minimize carbon dioxide and
(hot could be attributed to corrode* only, we did experience coosidsrtM* difficulty with healer drains. While I*,
temol conditions in the major equlpc&em
treatment, as far as iron pickup and the maintenance of a higher pH In the
consequently, Iron. After gping Into this problem thoroughly with both our
showed no unusual amounts of ins oxide deposits, we believed that U u
18th stage, was with the ammonia treat* water consultants and station designers, possible to still further reduce corra.
moot and without sulfite treatment In the boiler water- To operate under
these conditions meant loss of reducing
our belief was that (he evaporator feed water could best be treated for the re move) of excess carbon dioxide with on
sive tendencies prevailing In the wi*'cycle and consequently the iron eoattu of (he system.
agent protection in the boiler water. The work was then directed toward
acid regenerated zeolite, followed fay degassification and neutralization with
We had observed, in technical pokfe.' cations of the last few years, a tendency
using a reducing agent other than sulfite. Hydrexlne (NjH,) bad been
caustic soda. Consequently, In the lat ter port of{1950 such a unit was placed
toward the Increasing use of higher cosdentate pH values to further minimize
reported successfully used in low pres* on order and put into operation in July corrosive tendencies prevailing in other
sure Inatallationa in Europe and labora o< 19$l. Results wete immediately op- plants. At that lime we thought it feas
tory tests Indicated that it was fairly
ible to conaider (our methods of further
stable at high sictra pressure*. Solu
reducing the carbon dioxide and increas
tions of bydrssine In water are available
ing the pH in the cycle. The author
In concentrations around 22%. This is a clear water white liquid that is
TO OBTAIN COMPLETE TEXT
then summarizes the methods considered' and reasons why they were discarded or
easily handled. APC Paper, no number.
Material for these abstract!
accepted. dPC Paper, no number.
comet from the following sources
Use of Amines In low Mokw-Up Steam Plant. By II / Guillory, Central Louis iana Electric Co.
All makeup (approximately 1%) for the author's company's Coughlin sta tion comes from two bent-tube evapora tor! discharging their vapor into deaerating heaters- One of these evap
orators discharge Into tha one deaerator serving Units i end Z The other evap orator discharges Into the deaerator for No. 3 or that for No. 4 Unit. An inter-
connected ityitem of four 10,000'gaffon condensate storage tonka provide max imum flexibility of make-up control. In addition to the conventional deaeration
supplied by the heaters, all condensers are equipped with deaerating hotwolle.
Initially, all feeds for these two evap
orators were obtained from deep wells, located on the property, with no pro visions made for softening or pretrentmeot of the well water. However, they were treated internally with phosphate, a lignin organic and todfum sulfite. The phosphate was fed at the deep well
pump discharges for Iron stabilisation end the orgonio and sulfite "slug*' fed to the evaporator shells. Later, continuous (eed of these chemicals was resorted to
unleu otherwise stored. Order complete paper from sources, net Powcn.
American Power Conference, annual meeting, Sherman Haiti,
Chicago, HU Mar 24-27, 1953. Identified by Initials APC and ob tainable in proceedings printed and distributed by R A Bttdenhotter, chairmen, Illinois Insti tute of Technology. 3300 Federal St, Chicago 16, /U. $6/10.
American Institute of Electrical Engineers, winter general meet ing, Statler Hotel, New York. N. K, Jan 19-23, 1953. fdentb fied by initials AIEE and obtain, eblo through AIEE, 33 V 39th St, Hew York 18, N. Y.
Manufacturing Chemists' Asso ciation, Inc, Voter and Air Pollution Abatement Conferences, Oct 23-24,1952, NethcrUtnd plaza ffotef, Cincinnati, Ohio and Feb 26-27,1953, Hotel Statler, Detroit, Mich. Identified by buiialf MPC and obtainable from Manufactur ing Chemists' Attn, 246 Wood ward Bldg, Washington 5 D. C.
, OoolkoHiollon of Boiler Feedwater In Smell Power Plants. By A E KUtredgt, Cochrane Corp.
Awareness of the need of alkalinity reduction gave leadership u> the hoi. process precipitation type softener In preparing feedwater for industries re quiring large volumes of treated water. When the need of alkalinity reductiea
was appreciated end demanded, the exchange type zeolite water softener led its advantage of simplicity and economy since the only method of accomplishing alkalinity reduction with that softening
process was, until recently, by use ol scfd either directly or through the am of acid regenerated hydrogen zeolites.'
Alkalinity reduction by anion. ex change is basically a process where practically all o! tho anions dissolved in a water supply arc exchanged In the same way as in on ordinary eeoflte water softener for the chloride too el ordinary salt. Sodium softening ex changes all calcium and msgnejiuro cations for sodium. Chloride daalksNsa(too exchanges all bicarbonate and . fetes for chloride. The latter process
produces a water supply haring the
{Continued on page 214)
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