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二氯甲烷和全氯乙烯对防护服材料的渗透情况。

Permeation of protective clothing materials by methylene chloride and perchloroethylene.

作者信息

Vahdat N

出版信息

Am Ind Hyg Assoc J. 1987 Jul;48(7):646-51. doi: 10.1080/15298668791385345.

Abstract

The permeation of methylene chloride and perchloroethylene through seven protective clothing materials was studied to determine the permeation parameters, and to investigate the effect of solubility (polymer weight gain) and material thickness on the permeation parameters. The materials tested were two different nitrile rubbers, neoprene, Combination (a blend of natural rubber, neoprene and nitrile), two different polyvinyl chlorides, and polyvinyl alcohol. Methylene chloride permeated through all materials, except PVA, with breakthrough times in the range of 2 to 8 min, and permeation rates in the range of 1250-5800 micrograms/cm2 X min. PVA and unsupported nitrile offered good protection against perchloroethylene with breakthrough time occurring after 2 hr. Perchloroethylene permeated through the other materials with breakthrough times in the range of 8 to 36 min and permeation rates in the range of 200 to 1600 micrograms/cm2 X min. It was shown that for both chemicals, there is a correlation between the solubility (weight gain) and the ratio of permeation rate to breakthrough time (PR/BT). For all material/chemical pairs, an increase in solubility, increased (PR/BT). The change in material thickness had an effect on breakthrough time and permeation rate, but no effect on normalized breakthrough time. An increase in thickness reduced permeation rate and increased breakthrough time.

摘要

研究了二氯甲烷和全氯乙烯透过七种防护服材料的情况,以确定渗透参数,并研究溶解度(聚合物重量增加)和材料厚度对渗透参数的影响。测试的材料有两种不同的丁腈橡胶、氯丁橡胶、组合材料(天然橡胶、氯丁橡胶和丁腈橡胶的混合物)、两种不同的聚氯乙烯以及聚乙烯醇。二氯甲烷透过了除聚乙烯醇之外的所有材料,穿透时间在2至8分钟范围内,渗透速率在1250 - 5800微克/平方厘米·分钟范围内。聚乙烯醇和未增强的丁腈橡胶对全氯乙烯提供了良好的防护,2小时后才出现穿透。全氯乙烯透过其他材料的穿透时间在8至36分钟范围内,渗透速率在200至1600微克/平方厘米·分钟范围内。结果表明,对于这两种化学物质,溶解度(重量增加)与渗透速率与穿透时间的比值(PR/BT)之间存在相关性。对于所有材料/化学物质组合,溶解度增加,(PR/BT)也增加。材料厚度的变化对穿透时间和渗透速率有影响,但对归一化穿透时间没有影响。厚度增加会降低渗透速率并增加穿透时间。

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