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Microbiological Characterization and Concerns of the International Space Station Internal Active Thermal Control System

机译:国际空间站内部有源热控制系统的微生物特征及担忧

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Since January 1999,the chemical and microbial state of the International Space Station(ISS)Internal Active Thermal Control System(IATCS)heat transport fluid(HTF)has been monitored by analysis of samples returned to Earth.Key chemical parameters have changed over time,including a drop in pH from the specified 9.5+-0.5 to approx=8.4,an increase in the level of total inorganic carbon(TIC),total organic carbon(TOC)and dissolved nickel(Ni)in the HTF,and a decrease in the phosphate(PO4)level.In addition,silver(Ag)ion levels in the HTF decreased rapidly as Ag deposited on internal metallic surfaces of the system.The lack of available Ag ions coupled with changes in the HTF chemistry has resulted in a favorable environment for microbial growth.Counts of heterotrophic bacteria have increased from<10 colony-forming units(CFUs)/100 mL to 10~6 to 10~7 CFUs/100 mL The increase of the microbial population is of concern because uncontrolled microbiological growth in the IATCS can contribute to deterioration in the performance of critical components within the system and potentially impact human health if opportunistic pathogens become established and escape into the cabin atmosphere.Microorganisms can potentially degrade the coolant chemistry;attach to surfaces and form biofilms;lead to biofouling of filters,tubing,and pumps;decrease flow rates;reduce heat transfer;initiate and accelerate corrosion;and enhance mineral scale formation.The microbiological data from the HTF,and approaches to addressing the concerns,are summarized in this paper.
机译:自1999年1月以来,通过对返回地球返回的样品进行分析监测了国际空间站(ISS)内部有源热控制系统(IATCS)传热流体(HTF)的化学和微生物状态.Key化学参数随着时间的推移而变化,包括从指定的9.5 + -0.5至约= 8.4的pH下降,在HTF中总无机碳(TIC),总有机碳(TOC)和溶解镍(Ni)的增加,减少磷酸盐(PO4)水平。此外,HTF中的银(Ag)离子水平随沉积在系统内部金属表面上的Ag迅速下降。缺乏可用的Ag离子与HTF化学的变化相结合,导致了有利的微生物生长的环境从<10个菌落形成单位(CFU)/ 100ml至10〜6至10〜7增加,微生物种群的增加是令人担忧的,因为不受控制的微生物生长是关注的IATCS可以为Deteri做出贡献在系统内的关键组成部分和潜在影响人体健康的讲话,如果机会主义病原体建立并逃逸到机舱气氛中。icroorganisms可能会降低冷却剂化学;连接到表面并形成生物膜;导致过滤器,管道的生物污染,和泵;减少流速;减少传热;启动和加速腐蚀;并增强矿物尺度形成。本文总结了来自HTF的微生物数据和解决问题的方法。

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