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Inactivation of airborne bacterial endospores with OAUGDP

机译:用OAUGDP灭活空中细菌内生孢子

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Summary form only given. Atmospheric Glow Technologies (AGT) has developed an innovative means of safeguarding indoor environments using One Atmosphere Uniform Glow Discharge Plasma (OAUGDP/sup TM/). AGT has placed an atmospheric plasma device within HVAC duct work and is using reactive chemical species present in the exhaust from this device to neutralize biological agents captured on filter media. This plasma device, using air only, requires no additives. Importantly, since our design does not impede airflow, those flow rates typical for HVAC systems can be maintained. The biological inactivation achieved by this system is broad-spectrum and includes bacterial endospores. AGT routinely achieves neutralization of 6 logs of Bacillus atrophaeus (formerly B. subtilis variant niger, ATCC 9372) endospores within 5-20 minutes up to 2 feet downstream depending upon airflow parameters. Data correlating biological inactivation with electrical and airflow parameters will be presented. Ongoing research indicates singlet delta oxygen plays a significant role in OAUGDP-based biological neutralization. Liability of microorganisms was assessed using standard plate counts from filter media. All plates were incubated for a minimum of 96 h at 37/spl deg/C in order to accurately quantify any surviving organisms. The ability to provide broad-spectrum reduction of air-borne biological agents indicates that the use of a duct-mounted OAUGDP atmospheric plasma device can provide a reliable, unobtrusive means of protecting high-risk buildings.
机译:仅提供摘要表格。大气辉光技术(AGT)已开发出一种创新的方法,可以使用一种均匀的大气辉光放电等离子体(OAUGDP / sup TM /)来保护室内环境。 AGT已在HVAC管道内放置了一个大气等离子体设备,并正在使用该设备排气中存在的反应性化学物质来中和捕获在过滤介质上的生物制剂。该等离子设备仅使用空气,不需要任何添加剂。重要的是,由于我们的设计不会阻碍气流,因此可以维持HVAC系统的典型流速。通过该系统实现的生物灭活是广谱的,并且包括细菌内生孢子。根据气流参数,AGT通常会在5至20分钟内中和最多6根萎缩芽孢杆菌(原枯草芽孢杆菌变种niger,ATCC 9372)内生孢子,直至下游2英尺。将介绍将生物灭活与电和气流参数相关的数据。正在进行的研究表明,单重态三角洲氧在基于OAUGDP的生物中和中起着重要作用。使用来自过滤介质的标准板计数来评估微生物的责任。为了精确定量任何存活的生物,将所有平板在37 / spl deg / C下孵育至少96小时。能够广谱降低气载生物制剂的能力表明,通过管道安装的OAUGDP大气等离子体装置的使用可以提供可靠,简便的方法来保护高风险建筑物。

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