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首页> 外文期刊>The Journal of Chemical Thermodynamics >Volumetric properties of ascorbic acid (vitamin C) and thiamine hydrochloride (vitamin B1) in dilute HC1 and in aqueous NaCl solutions at (283.15,293.15,298.15,303.15,308.15,and 313.15) K
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Volumetric properties of ascorbic acid (vitamin C) and thiamine hydrochloride (vitamin B1) in dilute HC1 and in aqueous NaCl solutions at (283.15,293.15,298.15,303.15,308.15,and 313.15) K

机译:稀HCl和NaCl水溶液在(283.15,293.15,298.15,303.15,308.15和313.15)K下的抗坏血酸(维生素C)和盐酸硫胺素(维生素B1)的体积特性

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Apparent molar volumes and apparent molar isentropic compressibilities of ascorbic acid (vitamin C) and thiamine hydrochloride (vitamin B1) were determined from accurately measured density and sound velocity data in water and in aqueous NaCl solutions at (283.15,293.15,298.15,303.15,308.15,and 313.15) K.These volume and compressibility data were extrapolated to zero concentration using suitable empirical or theoretical equations to determine the corresponding infinite dilution values.Apparent molar expansibilities at infinite dilution were determined from slopes of apparent molar volume vs.temperature plots.Ionization of both ascorbic acid and thiamine hydrochloride were suppressed using sufficiently acidic solutions.Apparent molar volumes at infinite dilution for ascorbic acid and thiamine hydrochloride were found to increase with temperature in acidic solutions and in the presence of co-solute,NaCl.Apparent molar expansibility at infinite dilution were found to be constant over the temperature range studied and were all positive,indicating the hydrophilic character of the two vitamins studied in water and in the presence of co-solute,NaCl.Apparent molar isentropic compressibilities of ascorbic acid at infinite dilution were positive in water and in the presence of co-solute,NaCl,at low molalities.Those of thiamine hydrochloride at infinitive dilution were all negative,consistent with its ionic nature.Transfer apparent molar volumes of vitamins at infinite dilution from water solutions to NaCl solutions at various temperatures were determined.The results were interpreted in terms of complex vitamin-water-co-solute (NaCl) interactions.
机译:根据在283.15,293.15,298.15,303.15,308.15(283.15,293.15,298.15,303.15,308.15)处水和NaCl水溶液中精确测量的密度和声速数据,确定了抗坏血酸(维生素C)和盐酸硫胺素(维生素B1)的表观摩尔体积和表观等熵可压缩性。和313.15)K.使用合适的经验或理论方程将这些体积和可压缩性数据外推至零浓度,以确定相应的无限稀释值。从表观摩尔体积与温度图的斜率确定无限稀释下的表观摩尔膨胀率。在足够的酸性溶液中抑制了抗坏血酸和盐酸硫胺的含量。在酸性溶液中和存在共溶质NaCl的条件下,发现无限稀释的抗坏血酸和硫胺盐酸盐的表观摩尔体积随着温度的升高而增加。发现无限稀释在t上是恒定的所研究的温度范围均为正值,表明在水中和存在共溶质NaCl的情况下所研究的两种维生素的亲水性。在水中无限稀释的抗坏血酸的表观摩尔等熵可压缩性为正值稀释状态下的硫胺素盐都是阴性的,与其离子性质一致。确定了在无限稀释下将维生素的表观摩尔体积从水溶液转移到不同温度的NaCl溶液中的结果。用复杂的维生素-水-共溶质(NaCl)相互作用来解释。

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