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首页> 外文期刊>Journal of chromatography, A: Including electrophoresis and other separation methods >Inverse gas chromatography study on the effect of humidity on the mass transport of alcohols in an ethylene-vinyl alcohol copolymer near the glass transition temperature
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Inverse gas chromatography study on the effect of humidity on the mass transport of alcohols in an ethylene-vinyl alcohol copolymer near the glass transition temperature

机译:反相气相色谱法研究湿度对玻璃化转变温度附近的乙烯-乙烯醇共聚物中醇的传质的影响

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摘要

Inverse gas chromatography (IGC) was used to study the effect of moisture on transport properties of three low molecular weight alcohols (methanol, ethanol, and I-butanol) through high barrier copolymers of ethylene-vinyl alcohol with an ethylene content of 38% mol (EVOH38) at 40 degrees C. The value of the partition coefficient (K) was obtained by using two approaches: (a) the fit of the slope of sorption isotherms obtained through the method of Kiselev and Yashin; and (b) the solution to the model of Romdhane and Danner obtained by using the law of moments. The second method also allowed the estimation of the diffusion coefficient (D-p) at the different humidity conditions. None of these two methods were applicable at low values of relative humidity. With the first method, the diffusion of the permeants through the copolymer was not fast enough to allow them to reach the core of the EVOH particles used as stationary phase resulting in sorption values unrealistically low. The fit of the chromatograms obtained by using the second method also suggested questionable values of the mass transport parameters. Although the theoretical curve perfectly described the chromatogram, the low extent of the interaction and the slow diffusion resulted in interdependent values of the coefficients K and D-p with infinite pairs of values providing the same curve profile. As the relative humidity of the carrier gas increased, the diffusivity and the sorption of the alcohols also increased, making both methods applicable. In the case of the partition coefficient, the sorption of the biggest molecules (ethanol and 1-butanol) was the most affected, the increment of K for methanol being moderate. As regards the D-p value, methanol was the most influenced compound and 1-butanol the least. Finally, a sharp increment of the D-p of the three alcohols was observed between 35 and 47% RH and attributed to the plasticization of the copolymer. (c) 2007 Elsevier B.V. All rights reserved.
机译:反相气相色谱(IGC)用于研究水分对三​​种低分子量醇(甲醇,乙醇和异丁醇)通过乙烯含量为38%mol的乙烯-乙烯醇的高阻隔共聚物的传输性质的影响分配系数(K)的值通过两种方法获得:(a)通过Kiselev和Yashin的方法获得的吸附等温线的斜率的拟合;(EVOH38)。 (b)使用矩定律获得的Romdhane和Danner模型的解。第二种方法还允许估算不同湿度条件下的扩散系数(D-p)。这两种方法均不适用于相对湿度较低的情况。对于第一种方法,渗透物在共聚物中的扩散速度不够快,不足以使其渗透到用作固定相的EVOH颗粒的核中,从而导致吸附值不切实际地降低。通过第二种方法获得的色谱图的拟合也表明传质参数的值令人怀疑。尽管理论曲线完美地描述了色谱图,但是相互作用程度低和扩散缓慢会导致系数K和D-p的相互依存值,而无限对值会提供相同的曲线轮廓。随着载气相对湿度的增加,醇的扩散率和吸附率也增加,这两种方法均适用。在分配系数的情况下,最大分子(乙醇和1-丁醇)的吸附受到的影响最大,甲醇中钾的增量适中。关于D-p值,甲醇是受影响最大的化合物,而1-丁醇是最小的化合物。最后,观察到三种醇的D-p在35%和47%RH之间急剧增加,这归因于共聚物的增塑。 (c)2007 Elsevier B.V.保留所有权利。

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