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The Use of Liquid Isopropyl Alcohol and Hydrogen Peroxide Gas Plasma to Biologically Decontaminate Spacecraft Electronics

机译:使用液体异丙醇和过氧化氢气体等离子体在生物净化的航天器电子器件中

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Legitimate concern exists regarding sending spacecraft and their associated hardware to solar system bodies where they could possibly contaminate the body's surface with terrestrial microorganisms. The NASA approved guidelines for sterilization as set forth in NPG 8020.12C, which is consistent with the biological contamination control objectives of the Committee on Space Research (COSPAR), recommends subjecting the spacecraft and its associated hardware to dry heat-a dry heat regimen that could potentially employ a temperature of 110°C for up to 200 hours. Such a temperature exposure could prove detrimental to the spacecraft electronics. The stimulated growth of intermetallic compounds (IMCs) in metallic interconnects and/or thermal degradation of organic materials composing much of the hardware could take place over a prolonged temperature regimen. Such detrimental phenomena would almost certainly compromise the integrity and reliability of the electronics. Investigation of sterilization procedures in the medical field suggests that hydrogen peroxide (H_2O_2) gas plasma (HPGP) technology can effectively function as an alternative to heat sterilization, especially for heat-sensitive items. Treatment with isopropyl alcohol (IPA) in liquid form prior to exposure of the hardware to HPGP should also prove beneficial. Although IPA is not a sterilant, it is frequently used as a disinfectant because of its bactericidal properties. The use of IPA in electronics cleaning is widely recognized and has been utilized for many years with no adverse affects reported. In addition, IPA is the principal ingredient of the test fluid used in ionic contamination testers to assess the amount of ionic contamination found on the surfaces of printed wiring assemblies. This paper will set forth experimental data confirming the feasibility of the IPA/H_2O_2 approach to reach acceptable microbial reduction (MR) levels of spacecraft electronic hardware. In addition, a proposed process flow in which both IPA liquid and HPGP are utilized will be presented in Section 7.0 Future Work. A list of acronyms and chemical symbols used throughout this paper is given in Section 9.0 Acronyms and Chemical Symbols.
机译:关于向太阳系体系发送航天器及其相关硬件的合法关注,他们可能会用陆地微生物污染身体的表面。美国国家航空航天局批准的灭菌准则,如NPG 8020.12C所示,这与空间研究委员会(Cospar)的生物污染控制目标一致,建议使航天器及其相关硬件进行干热 - 一种干热方案可能会使用110°C的温度,最多200小时。这种温度暴露可能对航天器电子有害。在金属互连中的金属间化合物(IMC)的刺激生长可以在延长温度的温度方案中进行组成大部分硬件的有机材料的有机材料的热劣化。这种有害现象几乎肯定会损害电子产品的完整性和可靠性。医疗领域的灭菌程序调查表明过氧化氢(H_2O_2)气体等离子体(HPGP)技术可以有效地用作热灭菌的替代品,特别是对于热敏物品。在将硬件暴露于HPGP之前,用异丙醇(IPA)用异丙醇(IPA)处理还应该证明有益。虽然IPA不是灭菌剂,但由于其杀菌性质,它通常用作消毒剂。在电子清洁中使用IPA广泛认可,并且已被使用多年,没有报告不良影响。此外,IPA是离子污染测试仪中使用的测试流体的主要成分,以评估印刷布线组件的表面上发现的离子污染量。本文阐述了实验数据,证实了IPA / H_2O_2方法可接受的可接受的微生物减少(MR)水平的航天器电子硬件的可行性。此外,利用IPA液体和HPGP的提出的工艺流程将在第7.0节未来的工作中提出。在本文中使用的首字母缩略词和化学符号列表,以9.0首字母缩略词和化学符号给出。

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