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气相过氧化氢作为一种表面去污剂和消毒剂。

Vapor-phase hydrogen peroxide as a surface decontaminant and sterilant.

作者信息

Klapes N A, Vesley D

机构信息

School of Public Health, University of Minnesota, Minneapolis 55455.

出版信息

Appl Environ Microbiol. 1990 Feb;56(2):503-6. doi: 10.1128/aem.56.2.503-506.1990.

Abstract

The feasibility of utilizing vapor-phase hydrogen peroxide (VPHP) as a surface decontaminant and sterilant was evaluated in a centrifuge application. The prototype VPHP decontamination system, retrofitted into a Beckman L8-M ultracentrifuge, was designed to vaporize a 30% (wt/wt) solution of aqueous hydrogen peroxide continuously injecting and withdrawing VPHP in a deep-vacuum flow-through system. VPHP cycles of 4, 8, 16, and 32 min were examined for cidal activity against spores of Bacillus subtilis subsp. globigii and Bacillus stearothermophilus. Spore inocula (approximately 10(6)/coupon) were dried onto 0.5-in. (1.27-cm)-square stainless-steel coupons, and coupons were suspended in the centrifuge chamber, the space between the refrigeration can and the barrier ring (inner gap), and the space between the barrier ring and the vacuum ring (outer gap). At a chamber temperature of 4 degrees C, B. subtilis subsp. globigii spores were inactivated within 8 min, while inactivation of spores located in the outer gap at 27 degrees C required 32 min. The elevated temperature and high surface area/volume ratios in the outer gap may serve to decompose the gas more rapidly, thus reducing cidal efficacy. Of the two test spores, B. stearothermophilus was more resistant to VPHP. Nonetheless, VPHP was shown to possess significant sporicidal capability. For practical decontamination applications of the type described, VPHP shows promise as an effective and safer alternative to currently used ethylene oxide or formaldehyde vapors.

摘要

在离心机应用中评估了使用气相过氧化氢(VPHP)作为表面去污剂和消毒剂的可行性。将原型VPHP去污系统改装到贝克曼L8-M超速离心机中,该系统设计用于蒸发30%(重量/重量)的过氧化氢水溶液,在深真空流通系统中连续注入和排出VPHP。研究了4、8、16和32分钟的VPHP循环对枯草芽孢杆菌亚种globigii和嗜热脂肪芽孢杆菌孢子的杀菌活性。将孢子接种物(约10(6)/试片)干燥在0.5英寸(1.27厘米)见方的不锈钢试片上,试片悬挂在离心机腔室、制冷罐与隔离环之间的空间(内部间隙)以及隔离环与真空环之间的空间(外部间隙)中。在腔室温度为4摄氏度时,枯草芽孢杆菌亚种globigii孢子在8分钟内失活,而在27摄氏度下位于外部间隙的孢子失活需要32分钟。外部间隙中升高的温度和高表面积/体积比可能会使气体分解得更快,从而降低杀菌效果。在两种测试孢子中,嗜热脂肪芽孢杆菌对VPHP更具抗性。尽管如此,VPHP仍显示出显著的杀孢子能力。对于所述类型的实际去污应用,VPHP有望成为目前使用的环氧乙烷或甲醛蒸汽的有效且更安全的替代品。

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