| Literature DB >> 35685187 |
Mengfei Liu1, Chunxiao Meng1, Ling Yuan1.
Abstract
We have carried out the first systematic study of the effects of visible light on the homogenous dynamics in the bromate-sulfite-ferrocyanide (BSF) reaction. Under flow conditions, the reaction system displayed photoinduction and photoinhibition behavior, and the oscillatory period decreased with the increase of light intensity, which is due to the fact that light irradiation mainly enhanced the negative process and affected the positive feedback. The light effect on positive and negative feedback is studied by analyzing the period length of pH increasing and decreasing in detail. With the increase of light intensity, the period length of pH increasing decreases monotonically, while the period length of pH decreasing changes nonmonotonically. These results suggest that light could be used as a powerful tool to control homogenous dynamics. Results obtained from numerical simulations are in good agreement with experimental data. This journal is © The Royal Society of Chemistry.Entities:
Year: 2022 PMID: 35685187 PMCID: PMC9116188 DOI: 10.1039/d2ra01422j
Source DB: PubMed Journal: RSC Adv ISSN: 2046-2069 Impact factor: 4.036
Fig. 1The kinetic curves under different light intensities in a CSTR. k0 = 2.78 × 10−3 s−1; I = (a) 0 mW cm−2; (b) 1.154 mW cm−2; (c) 3.56 mW cm−2; (d) 11.24 mW cm−2; (e) 26.9 mW cm−2; (f) 29.3 mW cm−2.
Fig. 2The oscillatory period as the function of light intensity in the CSTR at k0 = 2.78 × 10−3 s−1.
Fig. 3Measured pH rising period and descending period as a function of light intensity in a CSTR.
Mechanism for the photosensitive BSF reaction
| No. | Reactions |
|---|---|
| M1 | SO32− + H+ ↔ HSO3− |
| M2 | HSO3− + H+ ↔ H2SO3 |
| M3 | 3HSO3− + BrO3− → 3SO42− + Br− + 3H+ |
| M4 | 3H2SO3 + BrO3− → 3SO42− + Br− + 6H+ |
| M5 | 6H2SO3 + BrO3− → 3S2O62− + Br− + 6H+ + 3H2O |
| M6 | H+ + Fe(CN)64− ↔ HFe(CN)63− |
| M7 | 6HFe(CN)63− + BrO3− → 6Fe(CN)63− + 3H2O + Br− |
| M8 | CN− + H+ ↔ HCN |
| M9 |
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| M10 | 6Fe(CN)5H2O3− + BrO3− + 6H+ → 6Fe(CN)5H2O2− + 3H2O + Br− |
| M11 | SO32− + 2Fe(CN)63− + H2O → 2Fe(CN)64− + SO42− + 2H+ |
Rate laws and constants for the photosensitive BSF reaction
| Rate law | Rate constants |
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Fig. 4Calculated oscillation period with the increasing of photokinetic rate k9 in a CSTR. Input concentrations are the same as Fig. 2.
Fig. 5Calculated pH rising period and descending period as a function of photokinetic rate k9 in a CSTR. Input concentrations are the same as Fig. 3.