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首页> 外文期刊>Fluid Phase Equilibria >High-pressure phase equilibrium data for carbon dioxide?+ dichloromethane?+ acetone and carbon dioxide?+ dichloromethane?+ acetone?+ N-acetylcysteine (NAC)
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High-pressure phase equilibrium data for carbon dioxide?+ dichloromethane?+ acetone and carbon dioxide?+ dichloromethane?+ acetone?+ N-acetylcysteine (NAC)

机译:二氧化碳的高压相平衡数据?+二氯甲烷α+丙酮和二氧化碳?+二氯甲烷α+丙酮?+ N-乙酰琥珀(NAC)

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摘要

The N-Acetylcysteine (NAC) is a thiol compound with a strong antioxidant effect and demonstrated preventive action as protector in chronic kidney disease, cancer, pulmonary insufficiency, in the treatment of AIDS and other systemic diseases. Experimental phase equilibrium data provide fundamental information for the micronization supercritical fluid SEDS technique, which is characterized by the reduction of the average particle size leads to changes in physical structure of the compounds processed. There are numerous advantages in particle size reduction and make narrower particle size distribution, the main one being the resulting increased bioavailability. Therefore, the aim of this work was to study the high pressure phase behavior of the ternary system {carbon dioxide (1)?+?dichloromethane (2)?+?acetone (3)} and for the quaternary system {carbon dioxide (1)?+?dichloromethane (2)?+?acetone (3)?+?NAC (4)} in order to assist the micronization process in supercritical media. The experiments were performed using a variable volume cell over the temperature range from 308 to 328?K, pressure from 4.7 to 9.87?MPa, and mass ratio dichlorometane/acetone of 1.5:1 for the ternary system. For the quaternary system, the same mass ratio of dichlorometane/acetone was adopted and an amount of 0.001 and 0.004?g?cm?3of NAC was added to solution. Phase transitions of vapor-liquid type (bubble or dew points), in the presence or absence of solid phase were observed. The experimental results of the ternary system were modeled using the Peng-Robinson (PR) equation of state with the Wong-Sandler (PR-WS) mixing rule, providing a good representation of the experimental phase equilibrium data.
机译:N-乙酰半胱氨酸(NAC)是一种具有强抗氧化效果的硫醇化合物,并作为慢性肾病,癌症,肺不足,治疗艾滋病和其他全身疾病中的保护剂的预防措施。实验相平衡数据为微粉化超临界流体SED技术提供了基本信息,其特征在于降低平均粒度导致加工化合物的物理结构的变化。粒度减小有许多优点,使粒度较窄,主要是产生的生物利用度增加。因此,这项工作的目的是研究三元体系的高压相行为{二氧化碳(1)?+α-二氯甲烷(2)?+α+α+α+α}和季度系统{二氧化碳(1 )?+?二氯甲烷(2)?+?丙酮(3)?+ NAC(4)}为了帮助微粉化过程中的超临界介质。使用温度范围内的可变体积细胞在308至328·k的温度范围内进行实验,从4.7〜9.87〜9.87〜9.87〜9.87℃下进行。和3.5:1的质量比为三元体系。对于季度系统,采用与二氯烷/丙酮的相同质量比,并将0.001和0.004Ω·克〜3.加入溶液中。观察到在存在或不存在固相的情况下蒸汽型(气泡或露点)的相转变。使用彭 - ·罗宾逊(PR)与Wong-Sandler(PR-WS)混合规则的状态进行模型的三元系统的实验结果,提供了实验相平衡数据的良好代表。

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