首页> 外文期刊>Journal of Chemical and Engineering Data: the ACS Journal for Data >Modeling the Phase Behavior of PEO-PPO-PEO Surfactants in Carbon Dioxide Using the PC-SAFT Equation of State: Application to Dry Decontamination of Solid Substrates
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Modeling the Phase Behavior of PEO-PPO-PEO Surfactants in Carbon Dioxide Using the PC-SAFT Equation of State: Application to Dry Decontamination of Solid Substrates

机译:使用PC-SAFT状态方程建模PEO-PPO-PEO表面活性剂在二氧化碳中的相行为:在固体基质干法去污中的应用

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摘要

The phase behavior of several commercially available poly(ethylene oxide)-b-poly(propylene oxide)-b-poly(ethylene oxide) block copolymers (PEO-PPO-PEO or Pluronics L) in compressed carbon dioxide has been investigated within the framework of dry nuclear decontamination. For this purpose, cloud points have been measured in the pressure and temperature range from P = (10 to 40) MPa and from T = (293 to 338) K, respectively. To find a reliable method for surfactant selection, the perturbed-chain statistical association fluid theory (PC-SAFT) equation of state (EoS) has been applied to model the experimental data. The pure-component and the respective homopolymer + CO2 binary interaction parameters have been fitted to liquid densities and to homopolymer + CO2 binary equilibrium data. The phase behavior of Pluronics L copolymers as a function of concentration, molar mass, and copolymer composition has been predicted very accurately using a constant PEO-PPO binary interaction parameter K_(PEO-PPO) = 0.007. The PC-SAFT model was also successfully applied to Pluronics R copolymers (PPO-PEO-PPO), although a different K_(peo-ppo) = -0.018 was required to match the experimental data. The model predictions have shown that Pluronics L copolymers with molar mass M < 2750 g·mol~(-1) and a PEO mass fraction in the copolymer of less than 30 % have sufficiently low cloud-point pressures and are therefore the most suitable for the decontamination process.
机译:在此框架内,研究了几种市售的聚环氧乙烷-b-聚环氧丙烷-b-聚环氧乙烷嵌段共聚物(PEO-PPO-PEO或Pluronics L)的相行为干核净化。为此,已在压力和温度范围分别为P =(10至40)MPa和T =(293至338)K的范围内测量了浊点。为了找到一种可靠的表面活性剂选择方法,将扰动链统计缔合流体理论(PC-SAFT)状态方程(EoS)应用于实验数据的建模。纯组分和各自的均聚物+ CO2二元相互作用参数已适合液体密度和均聚物+ CO2二元平衡数据。使用恒定的PEO-PPO二元相互作用参数K_(PEO-PPO)= 0.007,可以非常精确地预测Pluronics L共聚物的相行为随浓度,摩尔质量和共聚物组成的变化。尽管需要不同的K_(peo-ppo)= -0.018以匹配实验数据,但PC-SAFT模型也已成功应用于Pluronics R共聚物(PPO-PEO-PPO)。模型预测表明,摩尔质量M <2750 g·mol〜(-1)且共聚物中PEO质量分数小于30%的Pluronics L共聚物具有足够低的浊点压力,因此最适合用于去污过程。

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