[Liquid ventilation--1].

Q4 Medicine Cesko-Slovenska Pediatrie Pub Date : 1993-10-01
R Nekvasil, M Dressler, Z Vecera, Z Penková
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Abstract

The authors investigated in detail the sorption and desorption of oxygen and carbon dioxide in a solution of perfluorocarbons (solution RM 101, Miteni, Italy). From the results of the investigation ensues that maximal oxygen saturation of 77.3 vol.% can be achieved at 8 degrees C. With rising temperature the oxygen concentration in the solution declines (67.6 vol.% at 37 degrees). The saturation of the RM 101 solution corresponds to a linear equation of seventh order (fig. 2). Desorption of the RM 101 solution fully saturated with carbon dioxide, is on the other hand, most rapid at 37 degrees C (after the 13th minute the RM 101 solution contains less than 2% carbon dioxide as compared with 25 vol.% at 8 degrees C during the same period. In general the kinetics of desorption of carbon dioxide in solution correspond to a linear equation of fifth order (fig. 4). From the practical aspect it is not expedient to saturate the RM 101 solution with oxygen longer than 15-20 minutes. The mentioned kinetic parameters are important for the construction of a special liquid membrane or bubble oxygenator. In particular the latter is useful as with its use the authors achieved a 1.9 x higher oxygen concentration in the RM 101 solution than declared by the manufacturer.

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(液体通风- 1)。
作者详细研究了氧和二氧化碳在全氟碳化合物溶液(RM 101溶液,米特尼,意大利)中的吸附和解吸。根据研究结果,在8℃时可达到最大氧饱和度77.3 vol.%。随着温度的升高,溶液中的氧浓度下降(37℃时为67.6% vol.%)。RM 101溶液的饱和对应于七阶线性方程(图2)。另一方面,完全饱和二氧化碳的RM 101溶液的解吸在37℃时最为迅速(在13分钟后,RM 101溶液中的二氧化碳含量低于2%,而在同一时期,在8℃时,二氧化碳含量为25 vol.%)。一般来说,溶液中二氧化碳的解吸动力学符合五阶线性方程(图4)。从实际角度来看,用超过15-20分钟的氧气使RM 101溶液饱和是不合适的。上述动力学参数对构建特殊的液膜或气泡氧合器具有重要意义。特别是后者是有用的,因为它的使用,作者在RM 101溶液中实现了比制造商宣布的高1.9倍的氧浓度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Cesko-Slovenska Pediatrie
Cesko-Slovenska Pediatrie Medicine-Pediatrics, Perinatology and Child Health
CiteScore
0.30
自引率
0.00%
发文量
32
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