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一次性丁腈手套双层手套接触二甘醇单丁醚。

Double gloving of disposable nitrile gloves exposed to diethylene glycol mono-n-butyl ether.

机构信息

Department of Environmental Health Sciences, UCLA Center for Occupational and Environmental Health, Fielding School of Public Health, Los Angeles, California, USA.

出版信息

J Occup Environ Hyg. 2020 Jul-Aug;17(7-8):334-342. doi: 10.1080/15459624.2020.1759808. Epub 2020 May 29.

Abstract

Double gloving of disposable gloves is now commonplace in healthcare settings when extra protection is needed against aqueous solutions and especially for antineoplastic drugs in isotonic aqueous media. In the present study, an ASTM F739 2.54 cm cell with closed-loop water collection without recirculation at 35 °C in a moving tray water bath was used to test the permeation of diethylene glycol mono-n-butyl ether (DGBE) through four types of disposable nitrile gloves that were singly and doubly layered in the permeation cell. Samples were taken over 8 hr for capillary gas chromatograph-mass spectrometer quantitation. The breakthrough time (t) at a permeation of 250 ng/cm increased as thickness increased for single layers, but the steady-state permeation rates P in µg/cm/min did not always decrease with increasing thickness. The double-layer t, P and thickness were also more variable relative to a single layer. The thinnest glove with 80 [Formula: see text]m thickness showed a t = 0-5 min whereas its double layer was 15-20 min. The thickest glove of 132 µm exhibited a t = 10-15 min but its double layer was t = 45-55 min. The adjusted double-layer average t divided by the adjusted single-layer average t was 4.0 ± 0.8. The adjusted average single-layer P divided by the adjusted average double-layer P was 3.5 ± 0.8. Other results showed that the average glove swelling was <10%; microscopic and leak testing indicated no penetration and reflectance infrared analysis also showed no chemical changes on the inside glove surfaces. Thus, the permeations were adjudged to obey Fick's First Law of Diffusion to allow calculation of diffusion coefficients D in cm/min. The average single-layer D divided by the average double-layer D was 1.3 ± 0.2. Double gloving in the field is therefore also probably more protective than single gloving against DGBE for the four types of disposable nitrile gloves tested.

摘要

双层手套在医疗环境中已很常见,如果需要额外的防护以防止水性溶液,特别是等渗水性介质中的抗肿瘤药物的侵害,则尤其如此。在本研究中,使用 ASTM F739 2.54cm 细胞,在 35°C 的移动托盘水浴中的闭环水收集而无再循环,以测试二乙二醇单正丁醚(DGBE)通过四种类型的一次性丁腈手套的渗透情况,这些手套在渗透细胞中单层和双层排列。样品在 8 小时内取样,用毛细管气相色谱-质谱定量。当单层厚度增加时,穿透 250ng/cm 的突破时间(t)增加,但稳态渗透速率 P(µg/cm/min)并不总是随厚度增加而降低。双层的 t、P 和厚度相对于单层也更具可变性。最薄的手套厚度为 80μm,其 t=0-5min,而其双层手套为 15-20min。最厚的手套厚度为 132μm,其 t=10-15min,但双层手套的 t=45-55min。调整后的双层平均 t 除以调整后的单层平均 t 为 4.0±0.8。调整后的平均单层 P 除以调整后的平均双层 P 为 3.5±0.8。其他结果表明,手套平均膨胀率<10%;微观和泄漏测试表明没有穿透,反射红外分析也表明手套内表面没有化学变化。因此,渗透被判定为符合菲克第一扩散定律,允许计算扩散系数 D(cm/min)。平均单层 D 除以平均双层 D 为 1.3±0.2。因此,在现场双层手套比单层手套更能保护四种类型的一次性丁腈手套免受 DGBE 的侵害。

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