Document 6RpJzyxqm64jN5MZrvVZ4v9ko
Z-7 BEV 1-80
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E. I. DU PONT DE NEMOURS 51 COMPANY INCORPORATED P. 0. Box 1217 PARKERSBURS, W. VA. 26)01
POLYMER PRODUCTS DEPARTMENT
AR226-2138
CC: R- J. Burger
D. A. Erdman
L. W. Goin
E. n. Johnson
J. F. Hun-b
R. J. Zipfel
C. A. Robinson
J. F. Doughty
P. Thistle ton
J. J.
G. H.
Loschiavo Hale - D-12190
H. Pernandes - LI 380
File: 1.1.7.4
May 21, 1981
TO: FROM:
I. R.
WEVODAU, JR.
WILMIMGTON - L13W26
/f.^.Q^J^ 2.ffl]ftyy)
A. R. BEHNKE
WASHINGTON WORKS
C-8 CONCENTRATIONS AND REQOIRED EXHAUST STACK HEIGHTS - FEP
The height of our existing exhaust and wet finishing bag -filters and
stacks from the blender
the
pit
coagulator exhaust are
low
and
fail
to
meet
the
normal
exhaust
requirement
of being 1.3 to 2 Ventilation). In
times the
addition,
building height (I-idustrial the stacks are lower than the
tops 1)
oanf deqthueipmpreenvt apilieincgeswiinndthdeireimctmioedni,atefroamreathe(SNeeatAiottnaaclhmCelinmt atic
Center, would carry (See Attachment 2).
the exhausts toward our H & V intakes
From our area air sampling, we are
suspicious
This is in
oadf drieticoynclitnog aenxyhCau-8stewdhicCh-8 wbeawckouilndtorectheeivebufirlodming.
the Fine Powder Dryer exhausts (since the normal prevailing
wind direction is from FEP to Fine Powder).
We have just completed a series of exhaust stack
discharge samples.
directly while the
The bag filter exhausts were sampled
blender pit exhaust level is based on
values measured in the pit.
To be conservative, the recent C-8 exhaust samples
have been multiplied by a dispersion in the future-
safety factor to insure adequate The highest experimental value
for
has
Teflon FEP 100
been multiplied
in
by
the wet finishing bag filter
a factor of 2 (Table ARB--I).
exhaust The
average of the coagulator bag filter exhaust samples has been
multiplied by a factor of 2 (Table ARB-I).
The additional data required to do the dispersion calculations is also contained in Table ARB-I.
There's a world of things we're doing something about
EID924499
R. I. WEVODAU, JR.
MAY 21, 1981
Our initial goal is to recycle less than 0.05 MPB
C-8 (1/10 AEL) back into the building through our H & V system. The low recycle along with other engineering controls within the building must reduce our C-8 levels to 1/2 AEL (0.27 MPB) by 1/1/82 in FEP.
The selection of the 41' 0" elevation for calculation purposes is based on this level being the lowest
elevation above all but one H & V inlets in the PEP Area.
Our largest unit is located on the 16' 0" roof with the
top of its inlet at approximately 26' 0" above grade
(See Attachment #2) .
Please calculate the following cases assuming the worst wind and weather conditions using the C-8 concentrations given in Table ARB-I and provide C-8 isopleths for each case:
CASE I - C-8 concentration at 41' 0" above grade (top
of all H & V inlets except Clean Room. Make-Up Air)
with present stack heights realizing that the program cannot account for turbulence from building and equipment interferences. See
Table ARB-I. Fine Powder Dryer exhausts not considered.
CASE II -
Concentration at 41l 0" above grade with the existing exhaust stacks extended a nominal 6 feet above the tops of the individual bag
filter houses and with discharge velocities
increased to the 2500 - 3500 FPM range (See Table ARB-I). Fine Powder Dryer exhausts not considered.
CASE III -
If II CASE concentrations are above 0.05 MPB at
the 41' 0" elevation, determine the stack height required to achieve a C-8 concentration below 0.05 MPB at the 41' 0" elevation. Fine Powder Dryer exhausts not considered.
CASE IV -
Please rerun Loschiavo's After May Shutdown Case for concentrations at 26' 0" and 41' 0" above grade using the exhaust contribution from the Fine Powder Dryersunder the worst wind/weather conditions for FEP. (Wind from east).
EID924500
) I. R.
WEVODAU, JR.
-
3 -
MAY 21, 1981
The low discharge velocity on the coagulator bag
filter discharge and the blender pit exhaust will be
increased to the -~-3000 ft./min. advised in Industrial Ventilation by placing reducers at the discharge point or increasing volumetric air flow.
We would appreciate any other advise you would
have to offer.
2-3 Please call me on 863-2291 if you have any
problems or questions. We would appreciate getting the
results within the next
weeks.
Thanks for your cooperation.
Attachment
ARB/nsw
EID924501