Document 4agnq1gzkpD6Dk8njkNvg2Z6j

K690917 B. F. Goodrich Chemical Company A DIVISION Or THC S. F. QOOOPO* COMPANY DEVELOPMENT CENTER 7 o'// Degradation tad CadHwcloa Produce* Prop Poly(vlnyl Chloride) VI Fyrolyele of Chlorinated PVC by M.M. O'Hara Date Completed: Kay 23, 1969 Date Issued: June 16, 1969 Distribution: Akron Canaral Chenice1 Plant P.T. Vhicaire - R.S. Reynolda Henry C.B. Cooper - J.P. Piers Akron Laaal Dent. B.K. Scan Lona Beech tf.D. Robb - A.V. Clements Avon Laka Can. Chap. Plane *R.H. Rylanda - R.tf. HcKay- J.M. Vhlcoay Brccksyillo Raaaarch Cantar J.A. Awry H.L. Daania R.J. FoveaCC C.F. Gibb# D.t. Harvey P.K. Zakrlefcl Raaaarch Library Cf.imt.Sltg C.L. Wood* - 0.6. Scbrock Cleveland V.F. Bixby W.E. Brodlne +t.U. Barrington M.W. Larson - C.O. Segner (7) P.H. Levrenca +C.K. Hedger R.O. Scott J.L. Naiaon B.M.G. Zvibfcar - J. Valentine Louisville L.C. Crunkleton - S.S. Michele Klaaara Jails T.R. Llaek - J.A. Klupar Development Center L.F. Arnold J.A. Nlkora L.A. Bennett C.B. Parks R.R. BLoor J.W. Ryan L.A. Chaodler M.H. Shervood B.A. Colline J.A. TePas L.B. Crider C.L. Wheeiock L.H. Conklin R.J. Volf B. C. DeCaplte R.A. Yount B.A. DlLlddo Technical Council J.L. Dorach C.T.F. (3) P. Dmyterko C.B. Fleming D.P. taechtfes *C.H. Kothelner BFG045\3 R.M. Kraagar C.B. Lufter R.J. Hsyer 2 T04":tB.t. Mikola Ivy TOOTS^O MAJOR OBJECTIVES The major objective# of chi* research problem ar: 1. eo correlate the pyrolysis product* from typical polymer* with flammability, toxicity, corroaion and polymer structure, and 2. to develop the necessary technology for degrading polymers In Che presence of air and for measuring the various degradation products. LIMITED OBJECTIVES The limited objectives of the current study were: 1. to determine the degradation product* from two differently processed chlorinated PVC samples (aqueous chloriostioa vs. solvent swollen chloriostioa), 2. to determine the presence of say structural differences In the two ssaples ss evidenced by high sod/or low temperature pyrolysis and/or ocher analytical techniques, and 3. to predict, from the degradation products in an Inert atmosphere, any possible toxic degradation product* that would ba evolved la an oxygsn rich ataoapbare. SlMiARY AMD CONCLUSIONS l. Low ta^erature pyrolysis (300*0, In vacma) of T-574 CHl-Temp, Solvent swell chlorination) and of T-573 (Bi-Temp, aqueous chlorination) revealad difference* due only to the medita of chlorination in which the two samples were prepared. The following su^Mrises these findings: T-574 t Da gradation (300*0 Products BCi (major) Sense ne Chlorobeoseoe Dlehlorobenseoe CCl4 CUC13 } C residual solvent T-S7S HC1 (major) Benzene Chlorobensene Dtchlorobencene 20681002 U BFG04514 2. High temper** Cure pyrolysia (600*0 revealed che following degradation profiles: Product HCl Volatile Hydrocarbon Fraction Carbonaceous Ash T-5 74 <-- Wc.7. --> T-575 60.5 68.6 13.1 26.4 5.7 23.7 The volatile hydrocarbon fractions had che following compos It Ions: Product CHClj Beocene CCI4 Toluene C2CI4 Chlorobenzene Dichlorobencene Dichlorobenzene Uonerlc T-574 i----- C.C . Area X --> T-575 2.3 nil 46.6 (major) (minor) 25.8 nil 5.1 trace 5.2 nil 27.1 37.0 9.4 26.1 4.3 u.i The higher level of HC1 la the pryolytate of T-575 Indicate* that a higher degree of chlorination had taken place la the preparation of this reala. This hypothesis Is substantiated by the chlorine analysis (T-574 67.73*%, T-575 69.49%) sod by N.M.R. analysis (see below) of the two polymers. 3. Nuclear magnetic resonance spectrscopy (J. Westfehl) indicated the following distribution of <CBCl CHCl-CHCl and C82 * CHC1 linkages (minor contributions from vinylIdane linkages were not considered) In the two polywra: -- CH?-CBC1 - Hoi. % -* - CHCl-CHCl-CHCl- T-574 T-575 53 4 ' 47 96 4. The two chlorinated reslna were subeiltted to R. Krueger at the Research Center for stability evaluations. The results of that study showed that when both resins were heated at 220*C, T-574 exhibited e 5.5 minute Induction period, (before dehydroctelorloatlon began) while T-575 had a corresponding 9.5 eln. induction period. The longer Induction period of T-575 can be accounted lor by the higher degree of chlorination (wore --CHCI-CHCl-CHC1 -- linkages) _____ Ip this resin,______________________________________________ *due, In part, to residual solvent 0681003 BFG04515 in 3. Based on knowledge of Che degradation product* In an Inert atmosphere, the following combustion produces would most probably result from the burning of T-574 and T-575 in air; Resin Probable Combustion Products T-575 HCl, C02 snd CO T-5 74 HCl, CO21 CO, unknown levels of phosgene The phosgene in the combustion gases of T-574 would result from the pyrolysis of residual solvent and not from reain degradation. The amount of phosgene would be proportional to the residual solvent and chit may be as high as 1.2 - 1.3X. 0681004 lv BFG04516