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A combustion products analyzer for contingency use during thermodegradation events on spacecraft

机译:一种燃烧产物分析仪,用于航天器热降解事件时的应急使用

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摘要

The Toxicology Laboratory at JSC and Exidyne Instrumentation Technologies (EIT) have developed a prototype Combustion Products Analyzer (CPA) to monitor, in real time, combustion products from a thermodegradation event on board spacecraft. The CPA monitors the four gases that are the most hazardous compounds (based on the toxicity potential and quantity produced) likely to be released during thermodegradation of synthetic materials: hydrogen fluoride (HF), hydrogen chloride (HCl), hydrogen cyanide (HCN), and carbon monoxide (CO). The levels of these compounds serve as markers to assist toxicologists in determining when the cabin atmosphere is safe for the crew to breathe following the contingency event. The CPA is a hand-held, battery-operated instrument containing four electrochemical sensors, one for each target gas, and a pump for drawing air across the sensors. The sensors are unique in their small size and zero-g compatibility. The immobilized electrolytes in each sensor permit the instrument to function in space and eliminate the possibility of electrolye leaks. The sample inlet system is equipped with a particulate filter that prevents clogging from airborne particulate matter. The CPA has a large digital display for gas concentrations and warming signals for low flow and low battery conditions. The CPA has flown on 13 missions beginning with STS 41 in Oct. 1990. Current efforts include the development of a microprocessor, an improved carbon monoxide sensor, and a ground-based test program to evaluate the CPA during actual thermodegradation of selected materials.
机译:JSC的毒理学实验室和Exidyne仪器技术(EIT)已开发出一种燃烧产物分析仪(CPA)原型,以实时监控航天器上热降解事件产生的燃烧产物。 CPA监视合成材料热降解过程中可能释放出的四种最危险的化合物(基于潜在的毒性和产生的数量):氟化氢(HF),氯化氢(HCl),氰化氢(HCN),一氧化碳(CO)。这些化合物的含量可作为标记物,协助毒理学家确定事故发生后机舱气氛何时对机组人员而言是安全的。 CPA是一种手持式电池供电的仪器,包含四个电化学传感器,每个目标气体一个,还有一个用于将空气吸入传感器的泵。这些传感器具有体积小和零克兼容性的独特之处。每个传感器中固定的电解质可使仪器在空间中发挥作用,并消除了电解液泄漏的可能性。样品入口系统配备了微粒过滤器,可防止空气中的微粒物质堵塞。 CPA具有大型数字显示屏,可显示低流量和低电池条件下的气体浓度和加热信号。从1990年10月的STS 41开始,CPA已经执行了13次任务。当前的工作包括开发微处理器,改进的一氧化碳传感器以及基于地面的测试程序,以在所选材料的实际热降解过程中评估CPA。

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