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Analysis of Bioreduction Strategies for a Solid Rocket Motor on an Interplanetary Mission to Europa

机译:立体火箭电机对欧洲行动任务的生物防盗策略分析

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The Europa Lander De-Orbit stage braking motor must comply with the Planetary Protection requirements established for a category IV mission. In its mission to Europa, a motor that hasn't gone through bioreduction environments will carry microbial spores and other biosignature molecules that might jeopardize a mission of astrobiological concern as well as future missions to come. A motor with solid rocket propellant represents exclusive challenges associated to the calculation of high numbers of an encapsulated bioburden hidden behind a nozzle plug. Existing techniques for bioburden reduction are analysed in perspective to motor assembly facilities and the series of events that are involved in manufacturing a solid rocket motor. These techniques include antimicrobial effects of chemical components already present within the motor and bioreduction due to assembly and operational environments induced in the motor. Analysis of the manufacturing process, adhered bioburden and recent investigations into the effectiveness of microbiological techniques in finding inherent antimicrobial properties have generated a step by step outline of Planetary Protection for lander mission associated solid rocket motors.
机译:Europa Lander De-Orbit Stage Staging Motor必须符合为IV类任务建立的行星保护要求。在其对欧罗迈的使命中,一款未经生物防盗环境的电机将携带微生物孢子和其他可能会危害夏虫学关切的使命以及未来的任务。具有固体火箭推进剂的电动机代表了与隐藏在喷嘴插头后面的高位封装的生物顿的计算相关的独特挑战。以电动机组装设施和制造固体火箭电动机涉及的一系列事件分析了生物上减少的现有技术。这些技术包括由于在电动机中诱导的组装和操作环境而存在的化学成分的抗微生物作用。制造过程的分析,粘附的生物粘合剂和最近对查找固有抗微生物性能的微生物技术的有效性的研究已经产生了载机特派团相关固体火箭电动机行星保护的步骤概要。

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