首页> 外文期刊>The Journal of Chemical Thermodynamics >Reprint of 'quantitative NMR spectroscopy of binary liquid mixtures (aldehyde + alcohol). Part II: (Propanal or butanal or heptanal) + (methanol or ethanol or 1-propanol)'
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Reprint of 'quantitative NMR spectroscopy of binary liquid mixtures (aldehyde + alcohol). Part II: (Propanal or butanal or heptanal) + (methanol or ethanol or 1-propanol)'

机译:重印“二元混合液(醛+醇)的定量NMR光谱。第二部分:(丙醛或丁醛或庚醛)+(甲醇或乙醇或1-丙醇)”

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摘要

The chemical reactions of aldehydes with alcohols to (hemiacetals and poly(oxymethylene) hemiacetals) have an essential influence on the thermodynamic properties and related phenomena like, for example, the vapor + liquid phase equilibrium of such liquid mixtures. This is well known in the literature for systems such as, for example, formaldehyde and methanol. Experimental information on the chemical reaction equilibria in mixtures with aldehydes other than formaldehyde and alcohols is extremely scarce. Therefore, in the first part of this series, quantitative NMR spectroscopy was used to investigate the chemical reaction equilibrium in binary liquid mixtures of acetaldehyde and an alcohol (methanol or ethanol or 1-propanol) at temperatures between (255 and 295) K. That work is here extended to three other aldehydes, viz. (1-propanal, 1-butanal and 1-heptanal). The results confirm the expectations from the first part of this series, i.e., that the majority of the constituents of the mixture is present as hemiacetal and the first two poly(oxymethylene) hemiacetals. For example, in an equimolar liquid mixture of {1-heptanal + methanol (or + ethanol or + 1-propanol)} at T = 273 K about 88% (or 81% for both other alcohols) of the aldehyde is bound to hemiacetal and the first two poly(oxymethylene) hemiacetals, i.e., the conversion rates are nearly the same as in the previous investigations with acetaldehyde instead of 1-heptanal. In the series investigated of combinations of aldehydes and alcohols, the particular aldehyde has only a small influence on the conversion rate. In the series of alcohols investigated only methanol has a somewhat larger influence whereas the results (speciation and conversion) for ethanol and 1-propanol are very similar. The NMR-spectroscopic results were also evaluated to determine the mole-fraction based chemical reaction equilibrium constants for the formation of the hemiacetals and the first two poly(oxymethylene) hemiacetals and the chemical reaction enthalpies.
机译:醛与醇的化学反应成(半缩醛和聚(甲醛)半缩醛)对热力学性质和相关现象(例如此类液体混合物的气相+液相平衡)产生重要影响。对于系统,例如甲醛和甲醇,这在文献中是众所周知的。与除甲醛和醇类以外的其他醛类混合物的化学反应平衡的实验信息极为匮乏。因此,在本系列的第一部分中,使用定量NMR光谱研究了在(255至295)K之间的温度下,乙醛与醇(甲醇或乙醇或1-丙醇)的二元液体混合物中的化学反应平衡。这里的工作扩展到其他三个醛,即。 (1-丙醛,1-丁醛和1-庚醛)。结果证实了该系列第一部分的期望,即混合物的大部分成分以半缩醛和前两种聚(甲醛)半缩醛的形式存在。例如,在T = 273 K的{1-庚醛+甲醇(或+乙醇或+ 1-丙醇)}的等摩尔液体混合物中,约88%(对于其他两种醇而言,均为81%)的醛与半缩醛键合头两个聚(甲醛)半缩醛,即转化率几乎与以前用乙醛代替1-庚醛进行的研究相同。在研究醛和醇的组合的系列中,特定的醛对转化率的影响很小。在研究的一系列醇中,只有甲醇的影响较大,而乙醇和1-丙醇的结果(形成和转化)非常相似。还评估了NMR光谱结果,以确定基于摩尔分数的化学反应平衡常数,以形成半缩醛和前两个聚(甲醛)半缩醛以及化学反应焓。

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