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Kinetic modelling of ascorbic and dehydroascorbic acids concentrations in a model solution at different temperatures and oxygen contents

机译:在不同温度和氧气含量下模型溶液中抗坏血酸和脱氢抗坏血酸浓度的动力学建模

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The degradation kinetics of vitamin C (ascorbic and dehydroascorbic acids, AA and DHA) were determined under controlled conditions of temperature (50-90 degrees C) and oxygen concentrations in the gas phase (10-30% mol/mol) using a specific reactor. The degradation of vitamin C in malate buffer (20 mM, pH 3.8), mimetic of an apple puree, was assessed by sampling at regular intervals and spectrophotometric quantification of AA and DHA levels at 243 nm. The results showed that AA degradation increased with temperature and oxygen concentration, while DHA exhibited the behaviour of an intermediate species, appearing then disappearing. A kinetic model was successfully developed to simulate the experimental data by two first order consecutive reactions. The first one represented AA degradation as a function of temperature and concentration in dissolved oxygen, and the second reflected DHA degradation as a function of temperature only, both adequately following Arrhenius' law.
机译:使用特定的反应器在受控温度(50-90摄氏度)和气相氧气浓度(10-30%mol / mol)的条件下测定维生素C(抗坏血酸和脱氢抗坏血酸,AA和DHA)的降解动力学。苹果酸类似物在苹果酸缓冲液(20 mM,pH 3.8)中维生素C的降解通过定期采样并用分光光度法定量分析243 nm处的AA和DHA含量来评估。结果表明,AA降解随着温度和氧气浓度的增加而增加,而DHA表现出一种中间物种的行为,然后出现然后消失。通过两个一级连续反应成功开发了动力学模型来模拟实验数据。第一个代表AA降解是温度和溶解氧浓度的函数,第二个代表DHA降解仅是温度的函数,都充分遵循了阿伦尼乌斯定律。

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