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一种用于在部分液体通气期间从非饱和全氟碳蒸汽中回收全氟碳液体的先进呼气回路:一种实验模型。

An advanced expiratory circuit for the recovery of perfluorocarbon liquid from non-saturated perfluorocarbon vapour during partial liquid ventilation: an experimental model.

作者信息

Dunster Kimble R, Davies Mark W, Fraser John F

机构信息

Grantley Stable Neonatal Unit, Royal Women's Hospital, Brisbane, Queensland, Australia.

出版信息

Biomed Eng Online. 2006 Feb 3;5:7. doi: 10.1186/1475-925X-5-7.

Abstract

BACKGROUND

The loss of perfluorocarbon (PFC) vapour in the expired gases during partial liquid ventilation should be minimized both to prevent perfluorocarbon vapour entering the atmosphere and to re-use the recovered PFC liquid. Using a substantially modified design of our previously described condenser, we aimed to determine how much perfluorocarbon liquid could be recovered from gases containing PFC and water vapour, at concentrations found during partial liquid ventilation, and to determine if the amount recovered differed with background flow rate (at flow rates suitable for use in neonates).

METHODS

The expiratory line of a standard ventilator circuit set-up was mimicked, with the addition of two condensers. Perfluorocarbon (30 mL of FC-77) and water vapour, at concentrations found during partial liquid ventilation, were passed through the circuit at a number of flow rates and the percentage recovery of the liquids measured.

RESULTS

From 14.2 mL (47%) to 27.3 mL (91%) of the infused 30 mL of FC-77 was recovered at the flow rates studied. Significantly higher FC-77 recovery was obtained at lower flow rates (ANOVA with Bonferroni's multiple comparison test, p < 0.0001). As a percentage of the theoretical maximum recovery, 64 to 95% of the FC-77 was recovered. Statistically significantly less FC-77 was recovered at 5 Lmin(-1) (ANOVA with Bonferroni's multiple comparison test, p < 0.0001). Amounts of perfluorocarbon vapour recovered were 47%, 50%, 81% and 91% at flow rates of 10, 5, 2 and 1 Lmin(-1), respectively.

CONCLUSION

Using two condensers in series 47% to 91% of perfluorocarbon liquid can be recovered, from gases containing perfluorocarbon and water vapour, at concentrations found during partial liquid ventilation.

摘要

背景

在部分液体通气期间,呼出气体中全氟化碳(PFC)蒸气的损失应降至最低,以防止全氟化碳蒸气进入大气并重新利用回收的PFC液体。我们对之前描述的冷凝器进行了大幅改进设计,旨在确定在部分液体通气期间发现的浓度下,从含有PFC和水蒸气的气体中可以回收多少PFC液体,并确定回收量是否因背景流速(适用于新生儿的流速)而有所不同。

方法

模拟标准呼吸机回路设置的呼气管道,增加两个冷凝器。将全氟化碳(30 mL的FC-77)和水蒸气以部分液体通气期间发现的浓度,以多种流速通过该回路,并测量液体的回收百分比。

结果

在所研究的流速下,注入的30 mL FC-77中回收了14.2 mL(47%)至27.3 mL(91%)。在较低流速下获得了显著更高的FC-77回收率(采用Bonferroni多重比较检验的方差分析,p < 0.0001)。作为理论最大回收率的百分比,回收了64%至95%的FC-77。在5 Lmin⁻¹时回收的FC-77在统计学上显著减少(采用Bonferroni多重比较检验的方差分析,p < 0.0001)。在流速为10、5、2和1 Lmin⁻¹时,回收的全氟化碳蒸气量分别为47%、50%、81%和91%。

结论

使用两个串联的冷凝器,在部分液体通气期间发现的浓度下,从含有全氟化碳和水蒸气的气体中可以回收47%至91%的全氟化碳液体。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8cd0/1386672/a6e1717b5adf/1475-925X-5-7-1.jpg

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