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Influence of partial pressure of oxygen on ascorbic acid degradation at canning temperature

机译:氧气分压对罐温酸性抗坏血酸降解的影响

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摘要

Oxygen is known to be one of the major causes of oxidative degradations of nutrients. Ascorbic acid, a component of interest due to its health benefits, is reported to be highly oxygen sensitive. To understand better the influence of oxygen on ascorbic acid retention at canning temperature, thermal treatment was performed in model solution at pH = 3.5 with varying partial pressure of oxygen from 0 MPa (strict anaerobic conditions) to 0.1 MPa in the headspace gas, from 95 degrees C to 125 degrees C, starting from an initial concentration of 900 mg/L. Treatment of 320 min was not sufficient to completely degrade all ascorbic acid initially present in the medium under anaerobic conditions and with a partial pressure of oxygen in headspace at 0.03 MPa, but treatment of 120 min was sufficient to degrade all initial ascorbic acid when the partial pressure of oxygen in headspace was set at 0.1 MPa. Apparent reaction orders were calculated; they were of 1 under anaerobic conditions, and 0.5 or 0.75 depending on partial pressure of oxygen. Activation energy was calculated using the Arrhenius law under anaerobic conditions only (E-a = 67 kJ/mol). When oxygen is present, whichever its partial pressure in headspace, no acceleration of reaction was observed with increased temperature.
机译:已知氧是营养素氧化降解的主要原因之一。据报道,抗坏血酸,由于其健康益处而感兴趣的组成部分是高氧敏感性。为了了解氧气对罐纽酸温度对抗坏血酸保留的影响,在pH = 3.5的模型溶液中进行热处理,从95开始,从0MPa(严格的厌氧条件)为0.1MPa的氧气的氧气的分压从初始浓度为900 mg / L.的初始浓度开始。 320分钟的治疗不足以完全降解厌氧条件下最初存在于培养基中的所有抗坏血酸,并且在0.03MPa的顶空中氧的分压,但是在部分时处理120分钟以降解所有初始抗坏血酸。标题中的氧气压力设定为0.1MPa。计算表观反应顺序;它们在厌氧条件下为1,并且根据氧的分压,0.5或0.75。在厌氧条件下使用Arrhenius法计算激活能量(E-A = 67 kJ / mol)。当存在氧气时,无论其顶部空间中的部分压力,都没有增加温度的加速反应。

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