Document by49RKYBZdVbK4G0X08aGoVk0
inter office memo TENNECO CHEMICALS, INC
To W. Miringoff
from F.
Richardson
Subject PROCESS ENGINEERING REPORT January, 1975
at Burlington Burlington
date January 29, 1975
Copy ttooH. B. Carr W.C. Champion R.S. Cole Dr. L. Gross J.W. McBroom J.W. Poarch P.R. Scarito A.C, Siegel J.T. Sweeney J.J. Zullo P.E. - Burlington Pilot Plant - Fleminqton
M^le
H0H0P0LYMER STRIPPER REFLUX CONDENSER
At a meeting with Manufacturing personnel in late December a proposal was made to install a condenser on a homopolymer stripper according to Scheme B of the attached sketch. This design would cool a stripper batch, by evaporative cooling only, from 220F to 165F in about 18 minutes. At the meeting the objection was raised that the external loop seal might rapidly plug with entrained resin. Furthermore, it was pointed out that, with the lower cooling requirements currently envisioned, the simple " knock-back " configuration might be satisfactory.
It was therefore agreed that Process and Project Engineering would investigate the simple 11 knock-back " design (Scheme A) and a design wherein the condenser was installed after the Foam Knock-Out Tank (Scheme E). The requirement was that the batch be cooled from 210F to 190F in the same period of time as required during the December stripping tests. (Cooling from 190F to 165F would be accomplished by cold water injection). Consideration would be given to the amount of cooling accomplished by the stripper jacket.
Study of December and January stripping data indicates that combined jacket-cooling and evaporative cooling (to the extent possible without a condenser) will reduce the temperature from 210 to 190F in 20 minutes. About one-half of this cooling is accomplished by the jacket.
We have found that the simple knock-back design with one feed line is not suitable because the line, which handles both vapor feed and condensate return, is the limiting factor and it would flood at a very low rate. Also the cooling water rate on the shell side of the condenser would have to be so low that unstable heat transfer conditions would result. As an alternative we have studied a knock-back condenser arrangement with two feeds, shown as Scheme D. In this case all of the condensate and some of the vapor feed would pass through the feed line entering the bottom of the condenser; the balance of the vapor would follow the side-entering feed line. As the total vapor flow changes, the distribution of vapor between the two lines would self-adjust to maintain the bottom line at a mildly flooded condition. This would allow the total vapor rate to go to the flooding limit of the condenser tubes- - about 2000 pounds per hour.
COLORITE 010953
page 2
For the installation shown as Scheme E, the condenser can be installed in downflow position since resin carry-over is not a serious threat after the Foam Knock-Out Tank. In this case flooding is not a concern but there is a limit in that the pressure drop in the long line from the stripper to the Foam Knock-Out Tank is so great that the condensing temperature is lowered and the temperature difference for heat transfer is reduced. There is also the question of whether the high vapor rates to the Foam Knock-Out Tank would carry significant amounts or resin; since this a carbon steel system I presume such resin would have to be discarded.
To summarize, the cooling times required for going from 210F to 190F , and including jacket cooling, are:
Jacket Cooling Only Knock-back Condenser with One Feed Knock-back Condenser with Two Feeds Downflow after Foam Knock-Out Tank Downflow at Stripper (Scheme C)
,
40 min. 25 min. 10 min.
8 min. 5 min.
So for present cooling requirements there is no great difference between Schemes C, D and E. If more extensive evaporative cooling were desired, perhaps to conserve demineralized water or to reduce load on the centrifuge, then Scheme C is considerably faster than the others.
Project Engineering is developing piping drawing and cost estimate for these alternates and we expect to meet with Manufacturing personnel again In the near future.
Attempts to locate a similar heat exchanger for the other stripper on the used equip ment market have not been successful. Delivery times for new condensers have dropped from 44 weeks to 24 weeks with tubing availability the limiting factor. More information is expected during the first week in February.
STACK DESIGN
Exchanged information with Tenneco's Houston computer group on available programs for predicting concentrations of effluents (VCM) down wind of stacks. We will want to use such a program to predict concentrations both on the site and in surrounding areas. It is not certain as yet whether either program we have received will handle both problems. The information which will be developed would be used to determine stack height and location and location of fresh air intake points.
CANNED PUMPS FOR VCM SERVICE
A list of all pumps handling monomer at Burlington was prepared. The service require ments for each are being assembled from the files. If none of these pumps is in more severe service than that of the canned pump which has been ordered for testing at Flemington, then there appears to be no need for a second test at Burlington.
COLOR!TE 010954
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REACTOR BAFFLE ORIENTATION
We were asked to check the baffle orientation in the homopolymer and copolymer reactors. It was considered that any differences found might be correlated with product variations and that the baffle orientation could then be deliberately changed to obtain desired characteristics. So far we have been able to check all of the homopolymer reactors except one (10, 11, 12, 13, 1-:, 15, 16)* There were no observable differences. On the copolymer side we have checked only, 1, 2, 6 and 9. Reactors l and 6 seem to be the same as those on the homopolymer side. Reactors 2 and 9 have baffles that are rotated slightly so that the baffle tips are perhaps moved about 3 inches with respect to the vessel centerline. This doesn't appear to be a significant difference; the tendency would be to increase turbulence near the center of the Reactor and decrease it near the wall. It is interesting that operating personnel claim that reactor Number 2 requires more frequent cleaning because of rapid build-up on the walls; this started, they believe, after the baffle was changed. Reactors 2 and 9 were cited as harder to clean than others but this could be due to many reasons. The remainder of the Reactors will be checked as they are available.
FDR/km
F. D. Richardson
COLOR!TE 010955
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COLORITE 010956
F. 0. RI irdson
FROM January 1
9TO January 31. 197
THTIirSCO -INTERMEDIATES DIVISION-NGIIEHRIUO TIMS DISTRIBUTION - MONTHLY (SALARY)
3s
HOJSCT RJI-32R
DEI-377
AC COUTH? .NUMBER
JOB DESCRIPTION
Homopolymer Stripper Reflux Condenser
SUN MON TUE WED THU FRI SAT TOTAL
80
'El-377
Stack Design Study
*
38
iE!-377
Canned Pimps for VCM Service
18
)E1-377
Reactor Wat'er Fill for VCM Displacement
Check orientation of Baffles in Suspension Plant Reactors ' Miscellaneous Meetings
*
-
8
1 8
8
Hoiiday off due to Death in Family
8 ,6
COLORITE 010957
t '
,
1 ENG. FORM #29
*
*. -
TOTALS
184
L* A. Sch-ipe 11
FROM January S, 1975
PTO January 31, 197
'ROJECT rji-BSR OcX-377
TENII2C0 .INTERMEDIATES DIVISIoraiGIIESRING TIMS DISTRIBUTION - MONTHLY (SALARY-)
ACCOUNT . KUMJER
JOB DESCRIPTION
VCM Analysis - Vent Condenser
SUN MON TUE WED THU FRI SAT TOTAL
1 1 14 1
8
OC Coating, LOP 1035
42
11
15
D^X-37 7 Df2-377
Foam Resins, 1750 and 1756 VCM Decay in Dispersion Resins 250 Stripping Trials * 315, LOP 1045
88
8
24
1 1 1 1 2- 6
13
2^ 4
S
2 24
Dfi -37 7
*
BR-505 315 StrIppinq Trials Orientation
11 12 24 24 18 IS 17
2i 3
99
COLOR!TE 010958
t
*
ENG. FORM #29
Annual Physical Exam.
*
3 -.
TOTALS
32 32 32 32 32
3 ISO
A! 3 M. WT11 ifetd
FROM January t, 1975
TO January 31,
PROTECT lEBBER
THNNSCO intermediates DlvisiorLNGI; ESRINO TIMS DISTRIBUTION - MONTI ELI (SALART)
ACCOUNT . NUMBER
JOB DESCRIPTION Flemlngton Conversion
SUN MON TUE WED THU FRI SAT TOTAL 160
Sick
*
16
Hotiday
8
\'
"
COLOR!TE 0 1 0 9 5 9
i
i
\
f
i .
i t
1
1
1`
.
(
!
% ENG. FORM #29
-.
*
TOTALS
184
'AT13 Vrr Mirln'">ff
FROM January I, 1975
TO January 31. 197
THNN2C0 .intermediates DivisiotfRIGI: ERRING TIME DISTRIBUTIOII - MONTHLY (-SALARY)
PROJECT J.TJI-3LR
DEI-377
ACCOUNT .number
JOB DESCRIPTION
SUN MON TUE W1SD THU FRI SAT TOTAL 120
DEI-406 '
Waste Treatment Foam Resins NP 1 1042,1043
*
12
20
Hoi Iday
BR- 505 NPI 1041 . Qua!ity Problems * Hoiiday
V
12 12 8
COLORITE 010960
;_ !` * 4 i ii i Ei-----;--------------------1
rj
\
f ENG. FORM i} 29
* *
-.
TOTALS
184