Document nmgJg79E5LK9ZJvownoGz0e81
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M I C - D & P - R & D - St. Louis
1CO./DIV./DEPTJLOCAT1PN)
INTERIM
(TYPE OF REPORtT
REPORT
REPORT NO.: MSL-0104 JOB/PROJECT NO.: 03-000-760.11-7403237
DATE: February 7, 1978
TITLE: jj.V. Degradation or Pentachlorophenol
AUTHORS: J. A. Hinkebein PERSONNEL: J. A. Hinkebein, D. P. Roman
ABSTRACT: Distilled and Technical grade Penta was exposed to both natural and artificial daylight. Dioxins, Furans and hexachlorobenzene were formed as degradation products.
U.V. D e g ra d a tio n o f P e n to cM oropheuol
J - A - H in kebein
TITLE:
AUTHORS:
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This document is the property of M onsanto Com pany and the recipient is
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INTRODUCTION
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Koppers Co, reported some work on UV (Ultra-violet) degradation of Penta,
They found that the higher chlorodioxins such as octachlorodibenzo-p-
dioxin (OCDD) were formed in significant amounts. These dioxins also
degraded but at a slower rate. This implies that the use of distilled
Penta instead of technical Penta will not guarantee preventing the
introduction of dioxins into the environment. It was felt that these
findings should be confirmed. This report covers our work on U V
degradation of Monsanto technical Penta and D o w 's EC-7 distilled Penta.
SUMMARY and CONCLUSIONS
1. Penta degrades in U V light with a increase in dioxins and furans. The amount of dioxins in distilled Penta were as high as those in technical Penta for some samples.
2. U V degradation also forms significant levels of hexachlorobenzene (HC3).
3. In long term tests, the distilled Penta appeared to degrade faster than technical Penta. This resulted in the dioxins/furans and HCB levees rising to a maximum which then decreased. The dioxins/furans remained approximately constant in the technical Penta.
4. Penta degraded much faster in the presence of oil. The oil did not appear to increase the dioxin degradation rate.
5. Our results were generally in agreement with those reported by Koppers.
RECOMMENDATIONS
No additional work is planned on this project because we are going out of the Penta business in the U.S.
REFERENCES
1. Notebook pages 306996, 307000, 1220604,5,6,9,22.
2. Koppers Progress Report No. II, Fate of Chlorodibenzodioxins in Outdoor Exposure of Penta-Treated Wood, M. A. Phillips and S.J. Ondrey, O c t . , 1976.
ACKNOWLEDGEMENTS
The analyses were performed by P. R. Michael of J.P. M i e u r e 's group in MIC Applied Sciences. The U.V. exposure work was performed by: J. K. Sears and G. G. Mahnken of N,W. Touchette's group in MIC Plastics R&D.
A T- 1 -
VI. D-ETAIL-S
1. Experimental
SUBJECT TO PROTECTIVE ORDER.
Solutions containing 15 mg of Penta per ml were made up in benzene. Solutions were prepared with Monsanto technical Penta, Dow EC-7 distilled Penta and, for one series of tests, Baker purified Penta. These solutions were applied to 1-3/4 x 5 inch strips of Whatmans No. 42 filter paper in 1/2 ml aliquots. This gives a loading of 7.5 mg per strip. This loading was used by Koppers to simulate Penta treated wood. One group of samples were also impregnated with 142.5 rag of oil (Lion #1 solvent) to determine the effect of the oil base of penta solutions. After the strips were dried, they were mounted between two pyrex plates. The edges of the pyrex plates were then wrapped with teflon tape to hold the plates together and to retard evaporation of the penta. The samples which were exposed to artificial light were mounted in holders and placed in the Fade-ometer. The instrument was an Atlas Electric Devices Model FBA-R Fade-ometer. The light source is a carbon arc with filters to simulate daylight. The control samples were stored in the dark during the period that the other samples were exposed. The samples exposed to natural sunlight were placed on the building roof. After exposure the samples were extracted with benzene and analyzed by GLC with an electron capture detector.
2. Results
In the first series of tests the effects of natural sunlight versus the fade-ometer and oil versus no oil were compared. The data are shown in Table 1. The analysis of the unexposed samples are in agreement with what would be expected for the various penta samples. The dioxins/furans are quite low in both EC-7 and Baker Penta. The H.C3 is high in the EC-7 sample which is typical for this material. The aioxin/furan and HCB level of the Monsanto technical penta is also typical. The low penta recoveries were apparently due to loss by evaporation since a fresh strip gave 100% recovery.
The samples exposed to sunlight showed a large increase in both dioxins/furans and HCB. The Monsanto technical Penta was somewhat different from the other samples in that the OCDF decreased and the HCB showed a much larger increase. The penta recovery was also much lower. For all three samples, the dioxins and HCB formation appeared to be much more favored than the furan formation.
The samples which were exposed in the fade-ometer were run in duplicate. In general there was good agreement between the duplicate samples. The fade-ometer results were also in good general agreement with the sunlight' samples.
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i>U2JICT TO PROTECTIVE CZDZZ
The samples treated with oil before exposure showed almost complete penca loss but little change in the dioxin/furan/HCB levels. The only significant difference between these samples and the unexposed samples was the moderate increase in OCDD for the EC-7. In another series, the penta impregnated strips were exposed for three days, treated with oil, and then exposed another three days. The results from these samples are similar to the previous oil treated samples. This data implies that the dioxins/furans/HCB levels are not effected by the oil. Koppers was of the opinion that the oil accelerated the degradation of these materials.
Table 2 gives the results of a longer term test. The fade-ometer was used as the U.V. source in these tests. The dioxins analyses were completed on only the unexposed, 12 day, and 24 day samples because the project was deemphasized when we decided to get out of the penta business. A total of 46 days had elapsed between the time that the samples were prepared"`and"the'"time" that"'they'were extracted'"for analysis*.''" This was primarily due"to the fade-ometer being shut'down over week ends. The penta recoveries show a uniform decrease with exposure.' In comparing Monsanto technical penta with EC-7, it appears that Monsanto technical penta is more volatile than EC-7 but EC-7 degrades faster.' The"dioxin/ furan levels in the unexposed samples appeared normal. The HCB levels were low indicating a loss by evaporation. The exposed Monsanto technical samples did not show much of a change in the dioxin/furan level. This may be due to these materials degrading at about the same rate as they were formed. The 12 day EC-7 sample shows high levels of dioxins/furans/ HCB and shows that under certain conditions distilled penta can produce as much or more dioxins/furans/HCB as technical penta. The 24 day EC-7 is showing a decrease in the aioxin/furan/HCB levels indicating that they are degrading faster chan they are being formed since there is very little penta left to degrade.
The general structures of the dioxins and furans are given below:
Cl n
( n + n 1) - C h l o r o d i b e n z o - p - d i o x i n
C l rr
( n + n 1) - c h l o r o d ibenzofuran
N and n 1 can have any value from 0 to 4.
tabu; i U V DEGRADATION OF PENTA - 3 DAY
Dow KC-7 P u m a recovery (Z)
0(3)1) (ppm) OCDE (ppin) hep ta CDIM-CUE ([3pm) huxu CDD+CDE (p[)in) IICII (ppm)
Unexposed
70 0.9 0.4
<0.1* <0.1 101
Monsanto Technical Pentn recovery (Z) OCDI) (ppm) OCDE (ppm) hepta CDD+CDE (ppin) hexa CIHHCDF (ppm) HCIt (ppm)
62 1105
112 475
18 26
Baker Purif1ed Puiita recovery (%) OCDI) (ppm) OCDE (ppm) hepta CDD+CDF (ppm) hexa CUIH CUE (ppm) IlCIi (ppm)
71 12 <0.1
1.7 <0.1
6.8
Exposure
Sunlight; 3 days
3 days
71 45 785 522
11 35 406 199 126 32 886 1374
16 1479
82 2192
986 6628
25 2335
329 1158
227 5473
66 1108
1.6 481 1.34 1207
41 561
44 200
25 1244
3 days
41 585
28 270
37 1136
22 1673
125 606
36 3268
37 390
12 112 917 1015
GDI) nr CDF = oh 1orodibenzodioxin or furan
licit - hex uch 1cjrohenzene
* detection limit - corresponds to 1x10-9 gram.
/
f
liXPOSURE
Fadc-ometer ,,______________________________________
3 days with oil
3 days w/0 oil + 3 days w/oll
0.74
57
<0.1
2.7 < 0.1 95
0.71 568
41 270
42 1277
0.58 1114
98 514
45 38
0.59 2412
383 1207
237
0.79
8.7 < 0.1
4.4
<08.. 01
413 53
2082
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rn
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rn
t
TAlll.E 2 U V DEGRADATION OF RENTA - 24 DAY EXPOSURE
Days Exposed *
Monsanto tech M II 11 It M II II II IT II II tl
HH II II
t
0 3 6 9 12 15 18 21 2/.
Dow EC-7 0 li II 3 II 11 6
9 li II 12 IJ II .15 It II 18
It II 21 II 11
24
Penta recovery (%)
24 20.80 17.07
8.17 4.8 5.61 3.35 2.91 1.87
41.30 39.07 25.73 10.21
2.53 1 .22 0.43 0.38 0.19
IlCll (ppm) OCDD (ppni)
OCDF (ppm)
7.1
1200
200
t
.r '
733 867 Vin
2187 34.7
2653 ..
1053 0.4
2293
1
I' 127
i' it
2.1
\
l (
1 ,520
360
946.7
74.7
hep ta CDD+CDF
1 507
hexa CDD+CDF 26.7
387 5B-7
467 2.3
co P
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r.;
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w/
o/ rTi
1333 U
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r-1 1
91
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/?7
45t.7_
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71.7 0.4
160 73.3
CIn I
* U V exposure "time. 46 days elapsed between preparing the samples and extracting with benzene for analysis.
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APPROVAL PAGE:
D- \ ,
D. ?. Roman, Group Leader D . Wilson, Manager R&D
DATE
DATE
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