Document mmrV95E2E4yoKv4j1w4jY0v2d

Inter-office Memo A r TENNECO CHEMICAIS, INC. To H. B. Carr At Burlington Date May 12, 1969 From Subject E. L. Kanyok At Burlington Copy to Raw Material Received - Burl. Plant Week of V28/69 - 5/11/69 P. F. Albanese H. H. Duhamel J. C. Fisher R. D. Richards P. R. Scarito M. W. Williams File ^ Date Vendor Car No. lot No. Material Disposition 4/28 4/28 4/28 4/28 4/28 4/28 4/29 4/50 4/30 5/1 5/1 5/1 5/2 5/2 5/2 5/2 5/2 5/3 5/3 5/3 5/4 5/5 5/5 5/6 5/6 5/7 5/8 5/9 5/9 5/10 5/11 5/11 U. Carbide PPG American Chemical PPG PPG PPG Alcolac PPG PPG Tenneco Tenneco Tenneco Atlantic Atlantic Atlantic Standard Chemical Standard Chemical Tenneco Tenneco Tenneco PPG Borden PPG Tenneco PPG PPG Tenneco Tenneco PPG Celanese Tenneco Tenneco 39218 9036 * 9904 9057 9072 AV-0101-A9 9044 9045 38050 38051 38011 6909903 6911103 6909601 3411 S-2955 38001 38016 38036 9074 12975 9050 38024 17178 17144 38028 38038 9066 12732 38025 38OO6 MVAc MVC TCE MVC MVC MVC Sipex MVC MVC MVC MVC MVC Colic 1 Colic 1 Rozic EHW 80 Avirol 101 MVC MVC MVC MVC ' MVAc MVC MVC MVC MVC MVC MVC MVC MVAc MVC MVC Approved VI ff tv vt VI Rejected* Approved IV n it it 11 Vt IV II ft 11 VV II It It tl II IV VI VI * vt tv VI vt It Color and odor was not that of Sipex. An infrared analysis confirm tins observation. This material was sent back to the supplier. COLORXTE 016148 2- - A MONOMER SUMMARY RANGE Date (As Received) Propylene Propadiene Butene-1 Methyl Acetylene Methyl Chloride 1,3 Butadiene 4/27/69 (8 Tenneco) (2 PPG) 2-2 ND- <1 58-82 <1 5-9 ND 25-52 <1 ND 25-55 4-22 6-7 5/4/69 (6 Tenneco) (6 PPG) 0.3-4 ND 50-78 ND- <1 6-13 ND 25-27 ND- <1 0.8-6 32-41 5-20 4-6 Date (As Received) Propylene Propadiene Butene-1 Methyl Acetylene Methyl Chloride 1,3 Butadiene 5/11/69 (5 Tenneco) (4 PPG) 0.8-1 ND 40-68 ND 5-16 ND 22-37 ND ND-4 36-45 2-19 4-5 EhK/rjl E. L. Kanyok COLOR!TE 016149 BULK DENSITY CONVERSION TABLE IBS./FT.5 - RESIN WT. IN GRAMS X 62.4 VOLUME OF TUBE (405) G'm.Wt. #Ft.5 163 25 164 25 165 25 Gm.Wt. #Ft.? 192 30 193 30 194 30 m?-G--m.Wt,. 221 34 222 34 223 34 Gm.Wt. #Ft.5 250 39 251 39 252 39 Gm.Wt. 279 43 280 43 281 - 43 166 26 195 30 224 35 253 39 282 43 167 26 196 30 225 35 254 39 283 44 168 26 197 30 226 35 255 39 284 44 169 26 198 31 227 35 256 39 285 44 170 26 199 31 228 35 257 40 286 44 171 26 200 31 229 35 258 40 287 44 172 27 201 31 230 35 259 40 288 44 173 27 202 31 231 36 260 40 289 45 174. 27 203 ; 31 232 36 261 40 290 45 175 27 204 31 233 36 262 40 291 45 176 27 205 32 234 36 263 41 292 45 177 27 206 32 235 36 264 41 293 45 178- 27 207 32 236 36 265 41 294 - 45 179- 28 208 : 32 237 37 266 41 295 45 180 28 209 32 238 37 267 41 296 46 181 28 210 32 239 37 268 41 297 46 182.. 28 211 33 240 57 269 41 298 46 183 28 212 - - 33 . 241 ' 37 270 42 299 46 184 28 213 '33 242 " 37 271 42 300 46 183 29 214 33 243 38 272 42 301 46 186 29 215 33 244 38 273 42 302 47 I87 29 216 33 245 38 274 42 303 47 188 29 217 33 246 38 275 42 304 47 00 r--{ cu 189 29 34 247 38 276 43 305 47 190 29 219 34 248 38 277 43 191 29 220 34 ! 249 38 278 43 COLORITE 016150 TENNECO CHEMICALS. INC. TENNECO PLASTICS DIV. MAY 0 61969 Burlington, New Jersey B.A.C.M. #1 DATE ISSUED: March 31, 1969 Determination of Light End Impurities In Vinyl Chloride Monomer APPLICATION: APPARATUS: The quality of vinyl chloride monomer (MVC) Is of prime importance in assuring the pro duction of quality resin. This gas chro matographic method is for the determination of light end Impurities in MVC. Since these impurities will affect not only the kinetics of the polymerization, but also the proper ties of the finished resin, this method has been developed to have a sensitivity for control purposes to the parts per million (PPM) range.1 2 3 4 5 6 7 8 9 10 11 12 1. Hewlett & Packard Gas Chromatograph F & M 5754a, or equivalent (equipped with a hydrogen flame ionization detec tor (FID) and septum covered on-column injection port) 2. Hamilton gas syringe, 5 ml and 1 ml, fixed needle 3. 200 ml glass bag (Figure 1) (Scientific Glass App., Bloomfield, N. J. Special similar to cat. # G-2720) 4. Threeway Hokfe ball valve with Swagelok fittings (Cat. # 4JXS4316) 5. Needle valve, lecture bottle (Matheson Co., Inc., East Rutherford, N. J.) 6. Two stage regulators for helium, hydro gen, air with secondary gauge capacity 0-100 psig 7. l/8" OD copper tubing 8. 1/4" OD stainless steel 316 tubing 9. 1/4" and 1/8" Swagelok nuts and ferrules 10. Adjustable wrenches 6" and 12" 11. Cork ring, size #2 12. Ringstand and clamp COLORXTE 016151 B.A.C.M. #1 Page 2 13. Hoke gas bomb 1000 ml fitted with valves (Cat. #8 HD1000) 14. Vibrator (Scientific Glass App. Cat. # M-1425) 15- Glass wool 16. Glass rod 17. #4 gas cylinder with valve CGA #290 and sampling adaptor (Figure 2) (Matheson Co.) 18. Rubber stopper, serum, size medium 19. Luer Lok syringe needle, 20 gauge 20. Evaporating dish, 200 mn diameter 21. Vacuum oven 22. Analytical balance with 0.1 mg readout 23. Hot plate 24. 60 and 80 mesh Tyler screen assembly 25- Funnel, long stem, 75 mm upper ID 26. Tygon tubing, 3/16" ID, 3/32" wall thickness 27. Single stage regulator CGA # 290 0-80 psig capacity for the sample cylinder (Matheson Co.) REAGENTS: 1. Tributyl Phosphate, purified, (Fisher $3-404) 2. Chromosorb p/AW 60-80 mesh (Hewlett and Packard Cat. # 8501-6016) 3. Methylene Chloride, analytical reagent 4. Lecture bottles of the gases identi fied and to be quantitatively analyzed (Matheson Co., E. Rutherford, N- J.) 5- Helium, pure grade 6. Air, pure grade 7* Hydrogen, pure grade 8. Silicone grease, Dow Coming - high vacuum type 9. Acetone, reagent grade COLUMN PREPARATION: 1. Into an evaporating dish transfer about 300 ml of Methylene Chloride. 2. Dissolve 10 gm of Tributyl phosphate in the Methylene Chloride with a glass stir ring rod. 3. Add 50.0 gm of Chromosorb P/AW 60-80 mesh to the Methylene Chloride - Tributyl Phosphate solution. Add more Methylene Chloride if the slurry is too viscous 1 for easy mixing. COLORITE 016152 TENNECO CHEMICALS. INC. TENNECO PLASTICS DIV. Burlington, New Jersey B.A.C.M. #1 DATE ISSUED: March 31, 1969 Determination Light End Impurities In Vinyl Chloride Monomer APFUCATION: APPARATUS: The quality of vinyl chloride monomer (MVC ) Is of prime importance in assuring the pro duction of quality resin. This gas chro matographic method is for the determination of light end impurities in MVC. Since there impurities will affect not only the kinetic c of the polymerization, but also the proper ties of the finished resin, this method hae been developed to have a sensitivity for control purposes to the parts per million (PPM) range. 1. Hewlett & Packard Gas Chromatograph F & M 575^A, or equivalent (equipped with a hydrogen flame ionization detec tor (FID) and septum covered on-column injection port) 2. Hamilton gas syringe, 5 ml and 1 ml, fixed needle 3- 200 ml glass bag (Figure 1) k. Threeway Hoke ball valve with Svagelok fittings 5* Needle valve, lecture bottle 6. Two stage regulators for helium, hydro gen, air with secondary gauge capacity 0-100 psig 7. l/8" OD copper tubing 8. l/4" OD stainless steel 316 tubing 9* l/4" and 1/8" Swagelok nuts and ferrules 10. Adjustable wrenches 6" and 12" 11. Cork ring, size #2 12. Ringstand and clamp COLORITE 016153 B.A.C.M. #1 Page 2 REAGENTS: COLUMN PREPARATION: 13* Hoke gas bombs 1000 ml, fitted with valves 14. Vibrator 15- Glass wool 16. Glass rod 17* #4 gas cylinder with valve CGA #290 and sampling adaptor (Figure 2) 18. Rubber stopper, serum, size medium 19- Luer Lok syringe needle, 20 gauge 20. Evaporating dish, 200 mm diameter 21. Vacuum oven 22. Analytical balance with 0.1 mg readout 23- Hot plate 24. 60 and 80 mesh Tyler screen assembly 23- Funnel, long stem, 75 mm upper ID 26. Tygon tubing, 3/16" ID, 3/32" wall thickness 27. Single stage regulator CGA #290 0-80 psig capacity for the sample cylinder 1. Tributyl Phosphate, reagent grade 2. Chromosorb p/AW 60-80 mesh 3- Methylene Chloride (Dichloromethane) 4. Lecture bottles of the gases identi fied and to be quantitatively analyzed (Matheson Company) 5- Helium 6. Air, pure 7- Hydrogen 8. Silicone grease 9- Acetone 1. Into an evaporating dish transfer about 300 ml of, me'ohylene chloride. 2. Dissolve 10 gm of Tributyl Phosphate in the Methylene Chloride with a glass stir ring rod. 3* Add 50.0 gm of Chromosorb p/AW 60-80 mesh to the Methylene Chloride - Tributyl Phosphate solution. Add more Methylene Chloride if the slurry is too viscous for easy mixing. COLORITE 016154