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Moisture induced solid phase degradation of L-ascorbic acid part 2, separation and characterization of the major degradation products

机译:水分引起的L-抗坏血酸固相降解,第2部分,主要降解产物的分离和表征

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The influence of moisture in the presence and absence of air on the solid state degradation of L-ascorbic acid has been investigated previously [1]. Reaction kinetics were studied using tristimulus colorimetry and a quantitative high performance liquid chromatographic assay for both total L-ascorbic acid and dehydroascorbic acid. The degradation gave rise to a discolouration of the samples, the most severely degraded samples were almost black in appearance although over 68% w/w of the L-ascorbic acid remained. The samples were analyzed for the presence of carbonyl compounds, furan related compounds, compounds responsible for the discolouration and evolution of carbon dioxide. No 2,4-dinitrophenylhydrazine (2,4-DNP) derivatives of carbonyl compounds or furan related compounds were detected by HPLC. An HPLC screening procedure was developed which was used to monitor for compounds responsible for the discolouration, at least eight unknown compounds were resolved and a relative response factor of 5.47 was assigned to them with respect to L-ascorbic acid at 280 nm. One mole of carbon dioxide was evolved per mole of L-ascorbic acid. This paper describes the investigation into the identity of the degradation products.
机译:先前已经研究了水分在有无空气存在下对L-抗坏血酸固态降解的影响[1]。使用三刺激比色法和定量高效液相色谱法研究了总L-抗坏血酸和脱氢抗坏血酸的反应动力学。降解导致样品变色,最严重降解的样品的外观几乎是黑色的,尽管剩余了68%w / w的L-抗坏血酸。分析样品中是否存在羰基化合物,呋喃相关化合物,负责二氧化碳脱色和逸出的化合物。 HPLC未检测到羰基化合物或呋喃相关化合物的2,4-二硝基苯肼(2,4-DNP)衍生物。开发了一种HPLC筛选程序,该程序用于监测引起变色的化合物,解析了至少八种未知化合物,并且相对于280 nm的L-抗坏血酸,它们的相对响应因子为5.47。每摩尔L-抗坏血酸产生一摩尔二氧化碳。本文介绍了对降解产物身份的调查。

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