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Development of an advanced spacecraft tandem mass spectrometerThe purpose of this research was to apply current advanced technology in electronics and materials to the development of a miniaturized Tandem Mass Spectrometer that would have the potential for future development into a package suitable for spacecraft use. The mass spectrometer to be used as a basis for the tandem instrument would be a magnetic sector instrument, of Nier-Johnson configuration, as used on the Viking Mars Lander mission. This instrument configuration would then be matched with a suitable second stage MS to provide the benefits of tandem MS operation for rapid identification of unknown organic compounds. This tandem instrument is configured with a newly designed GC system to aid in separation of complex mixtures prior to MS analysis. A number of important results were achieved in the course of this project. Among them were the development of a miniaturized GC subsystem, with a unique desorber-injector, fully temperature feedback controlled oven with powered cooling for rapid reset to ambient conditions, a unique combination inlet system to the MS that provides for both membrane sampling and direct capillary column sample transfer, a compact and ruggedized alignment configuration for the MS, an improved ion source design for increased sensitivity, and a simple, rugged tandem MS configuration that is particularly adaptable to spacecraft use because of its low power and low vacuum pumping requirements. The potential applications of this research include use in manned spacecraft like the space station as a real-time detection and warning device for the presence of potentially harmful trace contaminants of the spacecraft atmosphere, use as an analytical device for evaluating samples collected on the Moon or a planetary surface, or even use in connection with monitoring potentially hazardous conditions that may exist in terrestrial locations such as launch pads, environmental test chambers or other sensitive areas. Commercial development of the technology could lead to a new family of environmental test instruments that would be small and portable, yet would give quick analyses of complex samples.
Document ID
19940009480
Acquisition Source
Legacy CDMS
Document Type
Contractor Report (CR)
Authors
Drew, Russell C.
(Viking Instruments Corp. Reston, VA, United States)
Date Acquired
September 6, 2013
Publication Date
March 31, 1992
Subject Category
Spacecraft Instrumentation
Report/Patent Number
NASA-CR-194195
NAS 1.26:194195
Report Number: NASA-CR-194195
Report Number: NAS 1.26:194195
Accession Number
94N13953
Funding Number(s)
CONTRACT_GRANT: NAS8-38422
CONTRACT_GRANT: SBIR-08.10-2214A
Distribution Limits
Public
Copyright
Work of the US Gov. Public Use Permitted.
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