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The reaction was found to be temperature dependent.
Only the iron CAT-driven Fenton reaction was found to depolymerize CMC.
The reaction was found to be kinetically controlled with apparent activation energy of 63.6 kJ/mol.
Water, the co-product of the reaction, was found to reversibly poison the active centers.
At the present reaction conditions, the reaction was found to be free from mass and heat transfer limitations.
In the temperature range of 303.15 333.15 K, the reaction was found to be −0.5 order with respect to sulfite.
Using Arrhenius equation, the activation energy (Ea) of the reaction was found as 3 kJ mol−1.
The optimum ratio of water and acetone to facilitate successful dechlorination reaction was found to be 9 1.
The reaction was found to be first order with CO and NaOH concentrations.
The water gas shift reaction was found to be the dominant reaction consuming of water.
The activation energy for this reaction was found to be 28 kJ/mole.
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