Literature DB >> 26603435

VISTA: A μ-Thermogravimeter for Investigation of Volatile Compounds in Planetary Environments.

Ernesto Palomba1, Andrea Longobardo2, Fabrizio Dirri2, Emiliano Zampetti3, David Biondi2, Bortolino Saggin4, Andrea Bearzotti3, Antonella Macagnano3.   

Abstract

This paper presents the VISTA (Volatile In Situ Thermogravimetry Analyser) instrument, conceived to perform planetary in-situ measurements. VISTA can detect and quantify the presence of volatile compounds of astrobiological interest, such as water and organics, in planetary samples. These measurements can be particularly relevant when performed on primitive asteroids or comets, or on targets of potential astrobiological interest such as Mars or Jupiter's satellite Europa. VISTA is based on a micro-thermogravimetry technique, widely used in different environments to study absorption and sublimation processes. The instrument core is a piezoelectric crystal microbalance, whose frequency variations are affected by variations of the mass of the deposited sample, due to chemical processes such as sublimation, condensation or absorption/desorption. The low mass (i.e. 40 g), the low volume (less than 10 cm(3)) and the low power (less than 1 W) required makes this kind of instrument very suitable for space missions. This paper discusses the planetary applications of VISTA, and shows the calibration operations performed on the breadboard, as well as the performance tests which demonstrate the capability of the breadboard to characterize volatile compounds of planetary interests.

Entities:  

Keywords:  Organics detection; Planetary in-situ measurements; Space instrumentation; Thermogravimetric analysis

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Year:  2015        PMID: 26603435     DOI: 10.1007/s11084-015-9473-y

Source DB:  PubMed          Journal:  Orig Life Evol Biosph        ISSN: 0169-6149            Impact factor:   1.950


  1 in total

1.  Evidence for a subsurface ocean on Europa.

Authors:  M H Carr; M J Belton; C R Chapman; M E Davies; P Geissler; R Greenberg; A S McEwen; B R Tufts; R Greeley; R Sullivan; J W Head; R T Pappalardo; K P Klaasen; T V Johnson; J Kaufman; D Senske; J Moore; G Neukum; G Schubert; J A Burns; P Thomas; J Veverka
Journal:  Nature       Date:  1998-01-22       Impact factor: 49.962

  1 in total

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