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001-es BibID:BIBFORM112591
035-os BibID:(WOS)A1992HW91600030 (Scopus)0001219163
Első szerző:Fábián István (vegyész)
Cím:Iron(III)-catalyzed decomposition of the chlorite ion : an inorganic application of the quenched stopped-flow method / Istvan Fabian, Gordon, Gilbert
Dátum:1992
ISSN:0020-1669 1520-510X
Megjegyzések:The kinetics and mechanism of the iron(II1)-catalyzed decomposition of the chlorite ion have been investigated by using conventional batch, stopped-flow, stopped-flow-rapid-scan spectrophotometric, and quenched stopped-flow methods at 25 OC and in 1 .O M NaC104. The concentration vs time profiles were determined for chlorite ion, chlorine dioxide, and, in a few cases, chloride ion in the 40 msseveral minute interval. It was confirmed that the stoichiometry can be given as the appropriate combination of the following reactions: 4HC102 = 2C102 + CIOC + C1- + 2H+ + H20; 5HC102 = 4C102 + Cl- + H+ + 2H20. The proposed mechanism postulates that the catalytic decomposition is initiated by the formation of the FeC102' complex and the rate-determining step is the redox decomposition of this species. The mechanism was validated by model calculations based on the GEAR algorithm. The measured and calculated kinetic curves are in excellent agreement under a variety of experimental conditions. It was shown that the overall stoichiometry is kinetically controlled and ultimately determined by fast secondary reactions between various chlorine species. This work represents the first totally inorganic application of the quenched stopped-flow method. Several aspects of this technique are discussed.
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folyóiratcikk
chlorite ion,
chlorine dioxide
quenched stopped-flow method
iron(III)
catalysis
Megjelenés:Inorganic Chemistry. - 31 : 11 (1992), p. 2144-2150. -
További szerzők:Gordon, Gilbert
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