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Potential biofouling of spacecraft propellant systems due to contaminated deionized water

机译:去离子水被污染可能导致航天器推进剂系统发生生物污染

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Deionized (DI) water, with a density close to hydrazine, is used to fill spacecraft propellant tanks for mechanical testing during ground operations, after which is it removed and the tanks dried for use with anhydrous hydrazine. Pure nitrogen is used as a pressurant during storage and during water fill and drain operations. Since DI water systems are notorious for contamination by slime-forming bacteria, DI water intended for use in New Horizons and STEREO hydrazine tanks at APL was assessed for microorganism content using the heterotrophic plate count (HPC) method. Results show that some growth occurred during storage of DI water in propellant tanks, however not at the logarithmic rate associated with well-nourished bacteria. Ralstonia and Burkholderia were present in DI water on-loaded however only Ralstonia was present in off-loaded water. One possible source of nutrients during water storage in propellant tanks is organic material originating from the EPDM (EPR per AF-E-332) expulsion diaphragm. This paper will demonstrate potential for bio-fouling of spacecraft propulsion systems due to growth of slime-forming bacteria and will suggest that specifications controlling microorganism content should be imposed on water used for spacecraft ground testing.
机译:去离子(DI)水的密度接近肼,用于填充航天器推进剂储罐,以便在地面操作期间进行机械测试,然后将其取出并干燥,以与无水肼一起使用。在存储期间以及注水和排水操作期间,纯氮气用作增压剂。由于去离子水系统因粘液形成细菌的污染而臭名昭著,因此使用异养菌盘数(HPC)方法评估了打算在APL的New Horizo​​ns和STEREO肼槽中使用的去离子水的微生物含量。结果表明,去离子水在推进剂罐中的储存过程中发生了一些增长,但是没有以与营养丰富的细菌有关的对数速率增长。负载的去离子水中存在Ralstonia和Burkholderia,但是负载的水中仅存在Ralstonia。在推进剂储罐中储水期间,营养物质的一种可能来源是源自EPDM(根据AF-E-332的EPR)排出隔膜的有机物质。本文将证明由于形成粘液的细菌的生长,可能对航天器推进系统造成生物污染,并建议对用于航天器地面测试的水施加控制微生物含量的规范。

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