Document 440zvNy6RG049Dp1oxpNpkZDN
prices swing with rels-
STEEL SUPPORTING STRUCTURE for main manufacturing plant's steam headers frames the coal* or oil-fired boilorhotite'3
Chemical Plant Builds for Continuity
Modern chemical plants require such heavy capital investments that designers build into them a full range of adequate, wellcontrolled services. Here's a plant that carries the idea a step farther and guarantees its basic energy needs with largescale storage and handling facilities for both coal and oil
Sy PHILIP KRONOWITT, Anijtont GrAtraf Moftoger, Cbo States, Ltd.
The chemical-process industries, like all other industrials, find that power services play a continually greater part in final production cost. When our com pany decided on the new Toms River, N. J. plant, we mode every effort to put this condition to greatest advantage. Further, our equipment selection and arrangement point up a desire for flex ibility at vital points of the power cycle.
Power-service needs at Toms River run the gamut. They include (1) steam for heating s group of nine building!
in the center of a 1200-acre tract, for chemical-process kettle heating, drying and distillations (2) electric energy for lights, motors, relays, end so on (3) refrigeration for chemical-process cool ing (4) air conditioning for offices, lab oratories, first aid and cafeteria (5) compressed air for transfer of liquids
from one vessel to another end for pres sure filtrations (6) inert gas for the transfer of flammable solvents (7) Dowtherm heating for processes that need high temperatures (8) sewagetreatment
for purification of oil industrial i sanitary sewage before disposal.
Sfaom Sendee. Our boilcrhouse, pbfrjjj
to, above, is a first-rate example of h
we planned for ample service facilities]!
with the added advantage of flexibility# We picked two SO.OOO-lb-per-hr, 500-V$
psi-design-pressure, wotertube boilerta with walerwoJJj for pulverized coaJ t oil firing. These units are semioutdaoiS
with firing aisle, pump room, forced-fl draft fans within the building ond boila|j
casing,, induced-draft fans outside. Wc know the 50,000-lb-per-hr cspac-1^
ity standi right on the lower limit oijj pulverized-coal firing. But we've Mj!
a background of successful pulverised-* installations in other plants, and wetf
anticipate no trouble on this score. j Should plant growth require-'addilionil.^
boilers we'll go to units double the sbeJ
of the present ones ond more within the
normal pulverized-coal range.
Moreover, pulverised firing offers the, t solid-fuel system most readily adaptsbls ?
to change-over for oil burning. And ^
this flexibility, we feel, is vital to plant\
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ENGINEERING AND MANAGEMENT SECTION
rowtt
boils, avmll.biluy no EPmSSiUfhl 9" liqnM-fuot <<
SP`:Supos" < worll) u"""-
oi lolo 1950, we ibo boiler-plum dcslin
ISSSEurlin 1948-1949 oBreement. iBgjj'fbhcieil ,ubI bil ,ot r,rlns ',ilh JSrf^ilor (uiuro pulveriicd cool. [K8B|'\95o iteition, we went abend HSSfiuvin'* well-integrated eoaJ-han-
^Itplint, Fig- 1-5_ jS^Wndliofl* We can now handle (Rwgl^iechanicslly from the time it 7"5ejlin-hopper-bottom cool cars until P%am'it, Fig- 3. This includes delivBwi}hrjijl .crushing equipment, ele-
rauoTM*"d dumping into storage silos, gjjs&ijig from alios to the powerhouse. fccfta'caal-hsndUng equipment was inISaiaXo the three 330-ton storage silos
Knut^naht in the middle of plant exT^jonJjWhen more power capacity is ^gg^;-lhe power plant to house it will
IKTSpVdiicctty opposite the unit now
IronSiog. '.So all present facilities con fSwihis' * well as any future power'
KtF'VP* Booming coal drops through a track Fgraijjig, Fig. 3> into underground coal-
Kra*hing equipment. From here it fiffigli; on a 38-footJong, 2-ft-wldc,
[UMgb-fypfl conveyor belt to -the eleva-
[5r<bnveyt>r or ` round-about conveyor, gtjfit^fs Sometimes called. This roundgboot design, 276 ft in over-ail length Jsnd-.l ft wide, doubles in brass. In
jjtHrigentil travel, Fig. 3 and 4, it acts u^a-flight conveyor. When traveling jeiiicaUy, it becomes a bucket conveyor. Fig.* 2 shows the conveyor on top of the
)& all silos are dosed, as In Fig. 3,
^ui;'from the round-about conveyor dropi.onto e chute which, in turn, carria.'the coal to a flight conveyor for ffdfowy to powerhouse coal bins. This ipaod-tboui unit can carry the Incoming
fifosl.directly to silo storage, route it to llpowerhouM bins, or deliver it from
g*tio storage to the powerhouse. m^ybcQ coat is dumped out of the silo
gfor delivery to the powerhouse we use $a/,specla) underground feeder-car, Fig. SyAj.lt hM * convcyot-helt bottom to feed
*tl evenly to the round-about conveyor passes beneath the car. This car, mounted, can be pushed easily
any ailo. To mako the car move4 easier we have spotted wall ^dels at numerous points so the car's -
-{^'iveYor motor can ho plugged in con-
Tfeniemly. I, 3 show the special, enclosed
conveyor and conveyor section Fwc^,0,1*e cool bins. This
&"-h section can supply either of the 60tins and can do it without develop-
Completely mechonixed eool-handUng system takes over from raltrood siding 1 through storage silos ond' carries coot right up to Individual boiler hoppers
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EHOINEERING and MANAGEMENT SECTION