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International Journal of Chemical Kinetics 1991: Vol 23 Index PDF

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Preview International Journal of Chemical Kinetics 1991: Vol 23 Index

International Journal of Chemical Kinetics Subject Index to Volume 23 Abstraction reaction, 361 Flash photolysis, 457, 701, 853 Abstraction reactions, effects of vi- Formaldehyde molecules, 947 bration, 57 Fortran, 1111 Additives, 907 Additivity of rate constants, 397 Gas chromatography, 861 Alkaline hydrolysis, 561 Gas phase, 925 Alkane metathesis by H, 683 Gas-phase oxidation, 861 Alkanolysis, 837 Gas-phase reactions, 897, 1003 Amidogen, 733 Gas-solid interface, 1111 Atmospheric chemistry, sulfur Gas-surface reactions, Br with species, 483 GaAs, 529 Atmospheric iodine chemistry, 237 Gouy-Chapman layer, 567 Atmospheric sulfur chemistry, 237 Group additivity, 767 Autocatalysis, 593 Heterogeneous catalytic effects, 971 BAC-MP4 method, 1129 Heterogeneous surface reactions, Belousov—Zhabotinsky reaction, 137 957 Hydrocarbon combustion environ- Catalysis, 279 ment, 957 Catalysis, by colloids, 717 Hydrolysis kinetics, 197, 639, 799 Catalysis by micelles, 567 Hydroxyl radical, 1075 Catalysis of hydrolysis, 197 Hydroxyl, reaction with xylenes, 77 Catalyzed hydrolysis, 799 Catalyzed oxidation, 473 Ignition delay, 437 Chemical activation, 369, 825 Ignition delay, ETBE, 553 Chlorfluoroperoxynitrates, 1 Ignition kinetics, 251 Chlorine transfer, 315 Infrared emission, 733 Chromate catalyzed decomposition, Ion pair formation, 561 881 Isocyanic acid, 733 CL atoms, 1095 Isothermal flow reaction, 925 Combustion chemistry, 1075 Kinetic spectrophotometric pulse ra- Combustion kinetics, 289, 437 diolysis, 941 Computer codes, 767 Controlled high temperature inciner- Laser diagnostic, 733 ation, 1051 Cyclic transition states, 779 Mass-action, 1111 Master equation, 825 Decomposition kinetics, 215, 389 Marcus relationship, 105 Decomposition rate, 971 Micellar catalysis, 989 Discharge flow, 579 Micelles, 567, 639, 837 Discharge-flow-mass spectrometry, Modeling of NO reduction, 289 237 Disproportionation of dif luoromethyl NH reactions, 173 radicals with n-propyl radicals, NO, reaction with OH-xylene ad- 431 ducts, 77 Electron transfer kinetics, 229, 807 OH radical, 1095 Electron transfer reactions, 105 Oscillation reactions, 137, 397 Elimination kinetics, 247 Oscillatory kinetics, 881 Esterification kinetics, 17 Oxidation, 989 International Journal of Chemical Kinetics, Vol. 23, 1153-1154 (1991) © 1991 John Wiley & Sons, Inc. CCC 0538-8066/91/121153-02$04.00 SUBJECT INDEX Oxidation of atmospheric sulfur, 483 Sensitivity analysis, 251 Oxidation of ETBE, 553 Shock tube, 173, 733 Oxidation kinetics, 113, 127, 203, Shock tube experiments, 1017, 1035, 229, 345, 377, 669, 717, 815 1075 Oxidation kinetics, indigo carmine, Shock tube kinetics, 655 27 Solvolysis kinetics, 161 Oxidative pyrolysis, 1051 Stability analysis, 251 Ozone formation, 331 Stern layer, 567 Ozone isotopomers, 331 Stirred reactor kinetics, 437 Stopped flow kinetics, 377 Photolysis, 633 Sulfur species, atmospheric oxida- Photolysis, C.F;I, 47 tion, 483 Photooxidation, 907 Surface Chemkin, 1111 Propagating acidity front, in frozen phase in chlorite thiosulphate re- Thermal decomposition, 1 action, 99 Thermal reactions, 1129 Pulse radiolysis, 541 Thermodynamic property calcula- Pyrolysis kinetics, 779 tions, 767 Thiosulphate, front reaction with Quantum calculations, CN reaction chlorite ion in frozen phase, 99 surfaces, 151 Transition state theory, 397, 683 RAPRENO, process, 289 Unimolecular decomposition, 633, Rate constants, 897, 941, 1095 947 Redox reactions, 279, 377 UV absorption, 1017 retro-Diels—Alder reactions, 215 UV spectra, 785 Ring-opening radical polymerization, 853 Vibration energy effects on abstrac- RRKM calculations, 215 tion, 57 Salt effects, hydrolysis of, 561 Xylenes, reaction with OH and NOz, Schiff bases, 639 77 International Journal of Chemical Kinetics Index of Compounds to Volume 23 Acetate reactions, 137 Chlorite, reaction with thiourea, 419 Alkanes, reaction with OH, 397 Chlorite ion, front reaction with Alkylamines, reaction with chlo- thiosulphate in frozen phase, 99 ramine, 315 CH2Cle, 1051 Allyl cyanide, 733 CH;SCHs3, 237 Amino acids, 345 CH;SH, 237 Amino alcohols, reaction with chlo- Cinnamaldehyde, oxidation of chlo- ramine-T, 279 ramine-T, 127 Arabinose reactions, 137 cis- and trans-Crotononitrile, 733 Ascorbic acid, reaction with Mn(III) CL, 1095 complexes, 105 ClO, reaction with DMS, 579 Azomethane, 633 CN, 1035 Co(3Rpy),Cl2*, solvolysis of, 161 B-phellandrene, 897 Cu(II) malonamide complex, 799 B.O3, 957 Cyanide, reaction with CO, and N,O, Benzoyl formic acid, decomposition 151 of, 247 BrO, reaction with DMS, 579 di-44-oxo-bis (oxo-molybdate), 457 BrO, self-reaction of, 37 Diethyltriamine pentacetato iron Bromine, reaction with CF3;, 57 (III), 389 Bromine, reaction with galium ar- Difluorocyclopropylene, decomposi- senide, 529 tion of, 369 Bromite, oxidations by, 229 Difluoroethene, reaction with CHg, 2-Bromopropionic acid, decomposi- 369 tion of, 779 Difluoromethy] radicals, dispropor- tionation with n-propyl radicals, CgH gNOz, 925 431 Carbonate iron, reduction kinetics, Dimethoxybenzidine, reaction with KBrOs;, 113 541 Carbondisulfide, 483 2,5-Dimethylpyrrole, 925 Carbondioxide, reaction with CN, Dimethyl Sulfide, 483 Dimethylsulfide, reaction with halo- 151 Carboxylato-bound Cr(V), 807 gen oxides, 579 C2H,, 237 1,4-Dioxane, 861 C3H¢, 237 Diperiodatoargenate(III), 815 CC1,;0,NO2, CCl,.FO,NOz, Diphenylthiadiazole dioxide, 197 CCIF,0,NOz:, peroxynitrates, 1 CCl,-I, 1051 Ethane, oxidation of, 437 Ethyl-t-butyl ether, ignition of, 553 CF.CICH202, 785 CF,ClO2, reaction with NO», 701 Formaldehyde, oxidation by osmi- CF;, reaction with Br2, 57 um(VIII), 377 CF;, reaction with pentafluoroben- zene, 361 Galium arsenide, reaction with CFC1,CH2O2, 785 bromine, 529 CHCls;, 1051 Chloramine, reaction with amines, H atom, reaction with HNCO, 655 315 HNCO, 173, 1129 Chloramine-T, oxidation of, 127 Hydrazinium ion, oxidation, 203 Chloramine-T, reaction with amino Hydrogen, reaction with O2, 251 alcohols, 279 Hydrogen peroxide, 389, 881, 971 Chlorine dioxide, 419 Hydrogen sulfide, 483 International Journal of Chemical Kinetics, Vol. 23, 1155-1156 (1991) © 1991 John Wiley & Sons, Inc. CCC 0538-8066/91/121155-02$04.00 COMPOUND iNDEX Hydroxyl, reactions with alkanes, O, 173, 1035 397 Oz, 173, 1035 Hydroxy] radicals, 1017 O3, 897 OH, 1075, 1095 Indigo carmine, oxidation of sodium OH radicals, 897, 1003 hypohalites, 27 Olefins, H-addition of, 825 Indole, reaction with t-butoxy, 761 Osmium(VIII), oxidation of 10, 237 formaldehyde, 377 IO, reaction with DMS, 579 Oxygen, reaction with He, 251 Iodide ion as oxidation catalyst, 203 Ozone, 331 Isobuty] alcohol, esterification with palmitic acid, 17 Palmitic acid, esterification with Isobuty] palmitate, esterification isobutyl alcohol, 17 catalyzed by sulfuric acid, 17 Pd(II) complexes, 279 Isocyanic acid, reaction with H, 655 Pentafluorobenzene, reaction with Isocyanic acid, reduction of NO by, CF3, 361 289 Pentafluoroethy] iodide, 47 Perfluoroacetic anhydride, 361 KBrOs;, reaction with dimethoxyben- Perfluorobutylperoxyl radical, 941 zidine, 113 Permanganate, 593, 717 Peroxomonophosphoric acid, 345 L-phenylanaline, oxidation by per- Peroxomonophosphoric acid, reaction manganate, 593 with hydrazinium, 203 Methyl] 2-bromopropionate, decompo- Phenyl! phosphinic acid, 669 sition of, 779 Phenylsalicylate, 837 Methyl radicals, 1017 Phosphinic acid, 669 Methyl tertiary butyl ether (MTBE), Phosphorous acid, 669 907 Pyrrole, 733 Methylindole, with ¢-butoxy, 761 Mn(IIT) complexes, 105 Ribose reactions, 137 Mo,0,**, 807 Ring retention on OH reactions, 77 n- and s-butoxy, reaction with oxy- Singlet methylene, reaction with di- gen, 607 fluoroethene, 369 n-alkyl nitrites, 1095 N-bromoacedamide, 669 t-Butoxy, reaction with indoles, 761 NH, 173 Tetrahydropyridine, decomposition NHp, 655 of, 215 N-(2/4-hydroxybenzylidene)-2- Thiocyanate complexes, 457 aminobensothiazoles, 639 Thiosulphate, front reaction with N-hydroxylphthalimide, 561, 567 chlorite ion in frozen phase, 99 Nitric oxide, reduction by HNCO, Thiourea, reaction with chlorite, 419 289 Triethanolamine, oxidation of, 815 Nitrous oxide, reaction with CN, 151 Triethylamine, oxidation, 717 NO, 173 Trifluoroacetic acid, 47 NO, reaction with CF,ClO., 701 1,3,5-Trioxane, 947 NO; radicals, 897 tris(1,10-phenanthroline)iron(II) with NO,, 1003 peroxodiphosphonate, 473 n-propyl, reaction with difluo- romethyl, 431 Vinyloxiranes, 853 International Journal of Chemical Kinetics Author Index to Volume 23 Abbas, S.H., See Pritchard, G.O., Battin, F. 431 —; Scacchi, G.; Baronnet, F: Gas- Adad, M.-T.S.-C., See Ferriol, M., Phase Oxidation of 1,4-Dioxane, 315 861 Aldridge, H. K. Beck, M.T. —; Liu, X.; Lin, M.C.; Melius, C.F: —; Nagy, I. P.; Székely, G.: Oscilla- Thermal Unimolecular Decompo- tory Kinetics and Mechanism of sition of 1,3,5-Trioxane: Com- the Chromate Catalyzed Decom- parison of Theory and position of Hydrogen Peroxide, Experiment, 947 881 Ali, M., See Gangopadhyay, S., 105 Becker, K.H., See Barnes, I., 579 Alvarez-Macho, M.P., See Behera, G. B., See Misra, P., 639 Insausti, M. J., 593 Blatt, C., See Roscoe, J. M., 633 Anis, S.S. Boettner, J-C., See Dagaut, P., 437 —; Mansour, M.A.: The Decomposi- Bott, J.F. tion Kinetics of Hydrogen —; Cohen, N.: A Shock Tube Study Peroxide Catalyzed by Diethylene- of the Reaction of Methyl Radi- triaminepentaacetatoiron(III) cals with Hydroxyl Radicals, Complex, 389 1017 Arey, J., See Atkinson, R., 77 —; Cohen, N.: A Shock Tube Study —; See Shorees, B., 897 of the Reactions of the Hydroxyl Arias, C., See Perez-Benito, J. F, Radical with Several Combustion 717 Species, 1075 Aschmann, S.M ., See Atkinson, Bowman, C.T., See Mertens, J. D., &. Tt 173 —; See Tuazon, E.C., 1003 —; See Miller, J.A., 289 Atkinson, R. —; See Mertens, J. D., 655 —; Aschmann, S.M.; Arey, J.: Bozzelli, J.W., See Ritter, E.R., 767 Formation of Ring-Retaining Brown, R.C. Products from the OH Radical- —; Kolb, C.E.; Rabitz, H.; Cho, S.Y.; Initiated Reactions of o-, m-, and Yetter, R.A.; Dryer, F L.: Kinetic p-Xylene, 77 Model of Liquid B,O; Gasifica- —; See Shorees, B., 897 tion in a Hydrocarbon Combus- —; See Tuazon, E.C., 1003 tion Environment: I. Heterogeneous Surface Reac- tions, 957 Baba, T., See Lin, C.C., 971 Bufalini, J. J., See Smith, D. F, 907 Back, R.A., See Roscoe, J. M., 633 Banerjee, P., See Gangopadhyay, S., 105 Cafferata, L., See Martire, D.O., Banerji, K. K., See Moondra, A., 457 669 Capparelli, A. L., See Martire, Bardi, I., See Szirovicza, L., 99 D.O., 457 Barnes, I. Carr, R.W., See Wu, F, 701 —; Bastian, V.; Becker, K. H.; Carter, W. P. L., See Tuazon, E.C., Overath, R. D.: Kinetic Studies of 1003 the Reactions of IO, BrO, and Cathonnet, M., See Dagaut, P., 437 ClO with Dimethylsulfide, 579 Chang, A.Y., See Mertens, J. D., Baronnet, F., See Battin, F, 861 173 Bastian, V., See Barnes, I., 579 Cho, S.Y., See Brown, R.C., 957 International Journal of Chemical Kinetics, Vol. 23, 1165-1171 (1991) © 1991 John Wiley & Sons, Inc. CCC 0538-8066/91/121167-07$04.00 AUTHOR INDEX Chuchani, G. Dunphy, M.P. —; Dominguez, R.M.; Rotinov, A.: —; Simmie, J. M.: Preliminary The Kinetics and Mechanisms of Observations on the High Tem- Methyl 2-Bromopropionate and perature Oxidation of Ethyl Tert- 2-Bromopropionic Acid Pyrolyses Butyl Ether, 553 Under Maximum Inhibition, 779 Cohen, N. —; Are Reaction Rate Coefficients El-Subruiti, G. M. Additive? Revised Transition —; Wells, C.F; Sidahmed, I. M.: Ki- State Theory Calculations for netics of the Solvolysis of OH + Alkane Reactions, 397 [Co(8Rpy),Cl.]* (R = Me or Et) —; The Use of Transition-State The- in Water + Propan-2-ol Mix- ory to Extrapolate Rate Coeffi- tures, 161 cients for Reactions of H Atoms Encinas, M.V. with Alkanes, 683 —; Lissi, E.A.; Majmud, C.: Reactiv- —; See Bott, J.F, 1017 ity of tert-Butoxyl Radicals To- —; See Bott, J.F, 1075 wards Substituted Indole Coltrin, M.E. Derivatives, 761 —; Kee, R.J.; Rupley, F M.: Surface Endo, T., See Ito, O., 853 Chemkin: A General Formalism Esler, M., See Mackie, J.C., 733 and Software for Analyzing Het- erogeneous Chemical Kinetics at a Gas-Surface Interface, 1111 Feliz, M.R., See Martire, D.O., 457 Colket, M.B., ITI., See Mackie, Ferriol, M. J.C., 733 —; Gazet, J.; Adad, M.-T.S.-C.: Ki- netics and Mechanisms of Chlo- rine Transfer from Chloramine to Amines in Aqueous Medium, Dagaut, P. 315 —; Cathonnet, M.; Boettner, J-C.: Fiedler, E. Kinetics of Ethane Oxidation, —; Hack, W: The Reaction cf 2,5- 437 Dimethylpyrrole with O.(a'A,) in Davidson, D.F. the Gas Phase, 925 —; Dean, A.J.; DiRosa, M. D.; Hanson, R. K.: Shock Tube Mea- surements of the Reactivns of Gangopadhyay, S. CN with O and Oz, 1035 —; Saha, S.K.; Ali, M.; Banerjee, P.: Dean, A. J., See Davidson, D. F, Kinetics of Electron Transfer 1035 Reactions of Manganese(III) Dellinger, B., See Taylor, P. H., Complexes of trans-Cyclohexane- 1051 1,2-diamiN nN'eN',-t-etNra - De Maleissye, J. Tardieu, See acetic Acid and 2,2’-Bipyridyl Heiss, A., 607 with Ascorbic Acid in Aqueous Dhas, T.P.A. Acid Media, 105 —; Mishra, D. K.; Mittal, R. K.; Gazet, J., See Ferricl, M., 315 Gupta, Y. K.: Kinetics and Mecha- Gebhardt, J., See Olzmann, M.., nism of Oxidation of Hy- 825 drazinium Ion with Peroxo- Ghosh, M.C. monophosphoric Acid in Acid —; Gould, E.S.: Electron Transfer. Perchlorate Solutions and Role of 109. The Reaction of Dimeric Trace Iodide Ions, 203 Molybdenum(V) with Carboxy- Ding, T.-H., See Shi, T.-S., 815 lato-Bound Chromium(V). A DiRosa, M.D., See Davidson, D. F, Third Mechanistic Variation, 807 1035 Gonzalez, M.C., See Martire, D.O., Dominguez, R.M., See Chuchani, 457 G., 779 Goto, S. Donlon, M., See Nielsen, O. J., 1095 —; Tagawa, T.; Yusoff, A.: Kinetics Dryer, F.L., See Brown, R.C., 957 of the Esterification of Palmitic Dube, S., See Simoyi, R. H., 419 Acid with Isobutyl Aicohol, 17 AUTHOR INDEX Gould, E.S., See Jhanji, A. K., 229 Jhanji, A. K. —; See Ghosh, M.C., 807 —; Gould, E.S.: Electron Transfer. Gowda, N.M. Made, See Put- 102. Some Oxidations by Bromite taswamy, 27 (BrO,°), 229 —; See Mythily, C.K., 127 Jonnalagadda, S. B. Gupta, S., See Shukla, A., 279 —; Munkombwe, N. M.; Hensman, Gupta, Y. K., See Dhas, T.P.A., 203 P.; Mushinga, T.: The Oxidation of 3,3'-Dimethoxy Benzidine with Potassium Bromate in Hack, W., See Fiedler, E., 925 Acidic Solutions, 113 Hanson, R. K., See Mertens, J. D., Jwo, J.-J., See Ou, C.-C., 137 173 —; See Mertens, J. D., 655 —; See Davidson, D. F, 1035 Kee, R.J., See Coltrin, M.E., 1111 He, J.-T., See Shi, T.-S., 815 Khan, A. Aziz, See Niaz, M. Arif, He, Y. 799 —; Liu, Xiaoping; Lin, M.C.; Melius, Khan, M.N. C.F: The Thermal Reaction of —; Salt Effects in the Aqueous Al- HNCO at Moderate Tempera- kaline Hydrolysis of N-Hydroxy- tures, 1129 phthalimide. Kinetic Evidence Hedges, R.M., See Yetter, R.A., for the Ion-Pair Formation, 561 251 —; Catalytic Effect of Anionic Mi- Heiss, A. celles on Alkaline Hydrolysis of —; De Maleissye, J. Tardieu; Viossat, N-Hydroxyphthalimide. Evidence V.; Sahetchian, K.A.; Pitt, I.G.: for the Probable Occurrence of Reactions of Primary and Sec- the Reaction in Between Gouy- ondary Butoxy Radicals in Oxy- Chapman and Exterior Boundary gen at Atmospheric Pressure, of Stern Layers of the Micelles, 607 567 Hensman, P., See Jonnalagadda, —,; Kinetics and Mechanism of In- S.B., 113 tramolecular General Base- Heydtmann, H., See Lauterwald, Catalyzed Alkanolysis of Phenyl H., 369 Salicylate in the Presence of An- Hudgens, E.E., See Smith, D.F, ionic Micelles, 837 907 Kiefer, J. H., See Sidhu, S.S., 215 Huie, R. E. Kleindienst, T. E., See Smith, D.F, —; Shoute, L.C.T.; Neta, P.: Temper- 907 ature Dependence of the Rate Kohse-HGinghaus, K., See Constants for Reactions of the Mertens, J. D., 655 Carbonate Radical with Organic Kolb, C.E., See Brown, R.C., 957 and Inorganic Reductants, 541 K6éppenkastrop, D. Hussain, J., See Parasher, P., 473 —; Zabel, F: Thermal Decomposi- tion of Chlorofluoromethy! Per- Ichikawa, N., See Lin, C.C., 97i oxynitrates, 1 lino, M., See Ito, O., 853 Insausti, M. J. —; Mata-Perez, F; Alvarez-Macho, Lane, S.I. M.P.: Kinetics and Mechanisms —; Oexler, E.V.; Staricco, E. H.: On of the Oxidation by Perman- the Mechanism of C,F;I Photoly- ganate of L-Phenylalanine, 593 sis in the Presence of Trifluo- Ishizuka, T., See Ito, O., 853 roacetic Acid, 47 Ito, O. —; Oexler, E.V.; Staricco, E.H.: The —; Ishizuka, T.; Iino, M.; Matsuda, Gas Phase Reaction of CF; Radi- M.; Endo, T.; Yokozawa, T.: Ki cals with C,F;H in the Tempera- netics of Ring-Opening Radical ture Range 373-558 K, °61 Polymerization of Vinyloxiranes, Langar, L'T. 853 —; Laverdet, G.; Le ‘ras, G.; Poulet, Itow, M., See Lin, C.C., 971 G.: Rate Constant and Products AUTHOR INDEX of the BrO + BrO Reaction at Matsuda, M., See Ito, O., 853 298 K, 37 Mclver, C. D., See Smith, D. F, 907 Larsen, N.W. Mehrotra, R.N., See Vishnoi, M.., —; Pedersen, T.; Sehested, J.: Iso- 377 topic Study of the Mechanism of Meleason, M.A., See Pritchard, Ozone Formation, 331 G.O., 431 Lauterwald, H. Melius, C.F., See Wang, N.S., 151 —; Heydtmann, H.: Experimental —; See Aldridge, H. K., 947 Study on the Reactions of Vibra- —; See He, Y., 1129 tionally Excited 1,1-Difluorocy- Mellouki, A., See Maguin, F., 237 clopropane, 369 Mertens, J.D. Laverdet, G., See Lancar, I.T., 37 —; Chang, A.Y.; Hanson, R. K.; Bow- —; See Maguin, F,, 237 man, C.T.: A Shock Tube Study Le Bras, G., See Lancar, I.T., 37 of the Reactions of NH with NO, —; See Maguin, F, 237 O2, and O, 173 Lifshitz, A., See Sidhu, S.S., 215 —; Kohse-Héinghaus, K.; Hanson, Lin, C.C. R. K.; Bowman, C.T.: A Shock —; Smith, F R.; Ichikawa, N.; Baba, Tube Study of H + HNCO — T.; Itow, M.: Decomposition of NH, + CO, 655 Hydrogen Peroxide in Aqueous Miller, J. A. Solutions at Elevated Tempera- —; Bowman, C.T.: Kinetic Modeling tures, 971 of the Reduction of Nitric Oxide Lin, M.C., See Wang, N.S., 151 in Combustion Products by Iso- —; See Aldridge, H. K., 947 cyanic Acid, 289 —; See He, Y., 1129 Mirifico, M.V. Lissi, E. A., See Encinas, M.V., 761 —; Vasini, E. J.; Sicre, J. E.: 3,4- Liu, X., See Aldridge, H. K., 947 Diphenyl-1,2,5-Thiadiazole-1,1- —; See He, Y., 1129 Dioxide. Acid and Base Catalysis, 197 Mishra, B. K., See Misra, P., 639 Mackie, J.C. Mishra, D.K., See Dhas, T.P.A., —; Colket, M.B., III,; Nelson, P. F; 203 Esler, M.: Shock Tube Pyrolysis Misra, P. of Pyrrole and Kinetic Modeling, —; Mishra, B. K.; Behera, G. B.: Hy- 733 drolysis of Schiff Bases, 1: Kinet- Maguin, F. ics and Mechanism of —; Mellouki, A.; Laverdet, G.; Spontaneous, Acid, and Base Hy- Poulet, G.; Le Bras, G.: Kinetics drolysis of N-(2/4-hydroxyben- of the Reactions of the IO Radi- zylidene)-2-aminobenzothiazoles, cal with Dimethyl Sulfide, 639 Methanethiol, Ethylene, and Mittal, R.K., See Dhas, T.P.A., 203 Propylene, 237 Moondra, A. Mahadevappa, D.S., See Put- —; Mathur, A.; Banerji, K. K.: Ki- taswamy, 27 netics of the Oxidation of Phos- Majmud, C., See Encinas, M.V., 761 phinic, Phenylphosphinic, and Mansour, M.A., See Anis, S.S., 389 Phosphorous Acids by N-Bro- Manyonda, M., See Simoyi, R. H., moacetamide, 669 419 Munkombwe, N. M., See Jonnala- Martire, D.O. gadda, S.B., 113 —; Gonzalez, M.C.; Feliz, M.R.; Mushinga, T., See Jonnalagadda, Cafferata, L.; Capparelli, A. L.: S.B., 113 The Flash Photolysis of Di-y- Muzimbaranda, C., See Simoyi, Oxo-Bis(Oxo-Molybdate(V)) Acid R. H., 419 Aqueous Solutions in the Pres- Mythily, C.K. ence of Excess Thiocyanate, 457 —; Rangappa, K.S.; Gowda, N.M. Masere, J., See Simoyi, R. H., 419 Made: Kinetics and Mechanism Mata-Perez, F., See Insausti, M. J., of Chloramine-T Oxidation of 593 Cinnamaldehyde in Two Acid Mathur, A., See Moondra, A., 669 Media, 127 AUTHOR INDEX Nagy, I. P., See Beck, M.T., 881 Perez-Benito, J. F. Nagypal, I., See Szirovicza, L., 99 —; Arias, C.: A Kinetic Study of the Nahor, G.S. Permanganate Oxidation of Tri- —,; Neta, P.: Rate Constants for Re- ethylamine. Catalysis by Soluble actions of Perfluorobutylperoxyl Colloids, 717 Radical with Alkenes, 941 Piasecki, M.L., See Pritchard, Nelson, P. F., See Mackie, J.C., 733 G.O., 431 Neta, P., See Huie, R. E., 541 Pimentel, G.C., See Young, M.A.., —; See Nahor, G.S., 941 57 Niaz, M. Arif Pitt, I.G., See Heiss, A., 607 —; Khan, A. Aziz: Kinetics and Poulet, G., See Langar, I.T., 37 Mechanism of Base-Catalyzed —; See Maguin, F.,, 237 Hydrolysis of Cu(II)-Malonamide Pritchard, G.O. Complex, 799 —; Abbas, S. H.; Piasecki, M. L.; Nielsen, O. J., See Wallington, T. J., Meleason, M. A.: Disproportion- 785 ation Reactions Between Alkyl —; Sidebottom, H.W; Donlon, M.; and Fluoroalky! Radicals. VI. Di- Treacy, J.: Rate Constants for fluoromethyl and n-propyl Radi- the Gas-Phase Reactions of OH cals, 431 Radicals and Cl Atoms with n- Puttaswamy Alkyl Nitrites at Atmospheric —; Mahadevappa, D.S.: Kinetics and Pressure and 298 K, 1095 Mechanism of Oxidation of In- digo Carmine by Hypohalites, 27 Oexler, E.V., See Lane, S.I., 47 —; See Lane, S.I., 361 Rabitz, H., See Yetter, R.A., 251 Ogryzlo, E.A., See Salusbury, I. M., —; See Brown, R.C., 957 529 Rangappa, K.S., See Mythily, Olea, A. F., See Encinas, M.V., 761 C.K., 127 Olzmann, M. Ravishankara, A.R., See Tyndall, —; Gebhardt, J.; Scherzer, K.: An G.S., 483 Extended Mechanism for Chemi- Ritter, E.R. cal Activation Systems, 825 —; Bozzelli, JW: THERM: Thermo- Ou, C.-C. dynamic Property Estimation for —; Jwo, J.-J.: Kinetic Study of Some Gas Phase Radicals and Reactions Related to the Mn(II)- Molecules, 767 Catalyzed Bromate-Saccharide Roscoe, J.M. Oscillating Reactions, 137 —; Blatt, C.: Minor Processes in the Overath, R.D., See Barnes, I., 579 Photolysis of Azomethane at Low Pressure: An Upper Limit for the Rate of the Unimolecular Elimination of H, from Vibra- Paichha, R.C., See Panigrahi, tionally Excited Ethane, 633 G.P., 345 Rotinov, A., See Chuchani, G., 779 Panigrahi, G. P. Rupley, F.M., See Coltrin, M.E., —; Paichha, R.C.: Oxidation of Amino Acids by Perox- 1111 omonophosphoric Acid—A Ki- netic Study, 345 —; Sahu, B.P.: Micellar Catalysis in Saha, S. K., See Gangopadhyay, S., the Oxidation of Acetophenones 105 by Ce(IV), 989 Sahetchian, K.A., See Heiss, A., Parasher, P. 607 —; Hussain, J.; Sharma, P. D.: Ki- Sahu, B.P., See Panigrahi, G. P., netics and Mechanism of Sil- 989 ver(I) Catalyzed Oxidation of Salusbury, I. M. Tris(1,10-phenanthroline)Iron(II) —; Ogryzlo, E.A.: Rate Constants with Peroxodiphosphate in Ace- for the Reaction of Atomic and tate Buffers, 473 Molecular Bromine with Gallium Pedersen, T., See Larsen, N.W,, 331 Arsenide, 529 AUTHOR INDEX Scacchi, G., See Battin, F.,, 861 Tagawa, T., See Goto, S., 17 Scherzer, K., See Olzmann, M.., Tamburu, C., See Sidhu, S.S., 215 825 Taylor, P. H. Sehested, J., See Larsen, N.W,, 331 —; Dellinger, B.; Tirey, D. A.: Oxida- Sharma, K., See Vishnoi, M., 377 tive Pyrolysis of CH2Cl2, CHCls, Sharma, P. D., See Parasher, P., and CCl,-I: Incineration Implica- 473 tions, 1051 Shi, T.-S. Taylor, R. —; He, J.-T.; Ding, T.-H.; Wang, —; The Mechanism of Thermal A.-Z.: Studies of Unusual Oxida- Eliminations. Part XXVIII [1]: tion States of Transition Metals Thermal Decomposition of Ben- III-Kinetics and Mechanism of zoylformic Acid, 247 Oxidation of Triethanolamine by Tirey, D.A., See Taylor, P.H., 1051 Diperiodatoargenate(III) Ion in Treacy, J., See Nielsen, O. J., 1095 Aqueous Alkaline Medium, 815 Tsang, W., See Sidhu, S.S., 215 Shorees, B. Tuazon, E.C. —; Atkinson, R.; Arey, J.: Kinetics —; Carter, W.P.L.; Aschmann, of the Gas-Phase Reactions of B- S.M.; Atiinson, R.: Products of Phellandrene with OH and NO, the Gas-Phase Reaction of Radicals and O; at 297 + 2 K, Methy] tert-Butyl Ether with the 897 OH Radical in the Presence of Shoute, L.C.T., See Huie, R. E., 541 NO,, 1003 Shukla, A. Tyndall, G.S. —; Gupta, S.; Upadhyay, S. K.: Pd(II) —; Ravishankara, A. R.: Atmo- Complexes of Amino Alcohols spheric Oxidation of Reduced and Their Reaction with Chlo- Sulfur Species, 483 ramine-T: A Kinetic Study, 279 Sicre, J.E., See Mirifico, M.V., 197 Sidahmed, I. M, See El-Subruiti, Upadhyay, S. K., See Shukla, A., G.M., 161 279 Sidebottom, H.W., See Nielsen, O.J., 1095 Sidhu, S.S. Vasini, E. J., See Mirifico, M.V., 197 —; Kiefer, J.H.; Lifshitz, A.; Tam- Viossat, V., See Heiss, A., 607 buru, C.; Walker, J.A.; Tsang, Vishnoi, M. W:: Rate of the Retro-Diels— —; Sharma, K.; Mehrotra, R.N.: Ki- Alden Dissociation of 1,2,3,6- netics and Mechanisms of Oxida- Tetrahydropyridine Over a Wide tion by Metal Ions, Part XII[1] Temperature Range, 215 Oxidation of Formaldehyde by Simmie, J.M., See Dunphy, M. P., Alkaline Osmium(VIII), 377 553 Simoyi, R. H. —; Masere, J.; Muzimbaranda, C.; Walker, J. A., See Sidhu, S.S., 215 Manyonda, M.; Dube, S.: Travel- Wallington, T. J. ling Wave in the Chlorite- —; Nielsen, O. J.: UV Absorption Thiourea Reaction, 419 Spectra and Kinetics of the Self Smith, D.F. Reaction of CFCl.CH,O, and —; Kleindienst, T. E.; Hudgens, CF,CICH,0, Radicals in the Gas E.E.; Mclver, C. D.; Bufalini, Phase at 298 K, 785 J.J.: The Photooxidation of Wang, A.-Z., See Shi, T.-S., 815 Methyl Tertiary Butyl Ether, 907 Wang, N.S. Smith, F.R., See Lin, C.C., 971 —; Yang, D.L.; Lin, M.C.; Melius, Staricco, E.H., See Lane, S.I., 47 C.F: Kinetics of CN Reactions —; See Lane, S.1., 361 with N.O and COz, 151 Székely, G., See Beck, M.T., 881 Wells, C.F., See El-Subruiti, G. M., Szirovicza, L. 161 —; Nagypal, L.; Bardi, I.: Propagat- Wu, F. ing Reaction Front in ‘Frozen’ —; Carr, R.W: An Investigation of Phase, 99 Temperature and Pressure De-

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