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Investigation of multicomponent sorption in polymers from fluid mixtures at supercritical conditions: The case of the carbon dioxide/vinylidenefluoride/poly(vinylidenefluokide) system

机译:超临界条件下流体混合物中聚合物对多组分的吸附研究:以二氧化碳/偏氟乙烯/聚偏氟乙烯系统为例

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The simultaneous sorption of carbon dioxide and vinylidene fluoride.(VDF) in poly(vinylidenefluoride) from their supercritical (sc) mixtures was studied using an experimental method, already described in a previous publication, based on the gas-chromatographic determination of the equilibrium composition of the fluid phase in contact with the polymer. Argon was added to the system as a nonabsorbable molecular probe in the polymer to take into account the effect of the volume swelling on the measurement. Sorption behavior has been studied at 50 degrees C by changing the composition and the density of the supercrifical phase. We have found that VDF dissolves in its polymer with concentrations much lower than carbon dioxide at similar total and partial pressures. The mixed fluid CO2/VDF behaves as a worse solvent toward PVDF with respect to pure CO2, leading to a reduction of the cumulative sorption. This effect becomes progressively more significant when the fluoromonomer concentration increases. Experimental data obtained from binary systems were fitted using the Sanchez-Lacombe equation of state, and this model was used to estimate the drift in the composition of the polymer phase during the polymerization of VDF in scCO(2). This estimate shows that the concentration of the monomer dissolved in the polymer remains low during the whole polymerization.
机译:基于气相色谱法测定平衡成分,采用先前方法中已经描述的实验方法研究了聚偏二氟乙烯中超临界(sc)混合物中二氧化碳和偏二氟乙烯(VDF)的同时吸附。与聚合物接触的液相的粘度。考虑到体积膨胀对测量的影响,将氩作为聚合物中的不可吸收分子探针添加到系统中。通过改变超临界相的组成和密度,已在50摄氏度下研究了吸附行为。我们发现,在相似的总压和分压下,VDF溶解在其聚合物中的浓度远低于二氧化碳。相对于纯CO2,混合流体CO2 / VDF对PVDF的作用较差,导致累积吸附量降低。当含氟单体的浓度增加时,这种作用逐渐变得越来越明显。使用Sanchez-Lacombe状态方程拟合从二元系统获得的实验数据,并使用该模型来估算VDF在scCO(2)聚合过程中聚合物相组成的漂移。该估计表明,在整个聚合过程中,溶解在聚合物中的单体的浓度保持较低。

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