Reactive Oxygen Species (ROS) generation by lunar simulants
J. Kaur, D. Rickman, M. A. Schoonen | 2016 | Acta Astronautica
DOI 10.1016/j.actaastro.2016.02.002Loading workspace
Retrieving material properties, measurements, and literature records...
| Na₂Owt% |
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| K₂Owt% |
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| MnOwt% |
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| P₂O₅wt% |
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| LOIwt% |
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| Anbazhagan (2021) A lunar soil simulant (LSS-ISAC-1) for the lunar exploration programme of the Indian Space Research Organisation | 48.40* | 00.08* | 31.60* | - | 01.33* | 00.35* | 15.40* | 02.47* | 00.08* | <0.01* | <0.01* | - |
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| Anbazhagan (2021) A lunar soil simulant (LSS-ISAC-1) for the lunar exploration programme of the Indian Space Research Organisation | - | - | - | - | - | - | - | - | - | - | - | |
| Ryu (2015) Basic Study for a Korean Lunar Simulant (KLS-1) Development | 46.6* | 0.115* | 21.55* | 5.08* | ||||||||
Evaluates physical, geotechnical, chemical, and mineralogical properties across the standardized 61-topic taxonomy based on comprehensive literature review synthesis.
Literature review classifications denote whether properties are documented in published syntheses. Paper links indicate peer-reviewed studies with extracted property measurements or experimental data for this simulant.
Source section: North American highland regolith simulants
Peer-reviewed scientific publications reporting measurements, characterization methods, and experimental evidence for OB-1.
Particle, density, pore, optical, transport, acoustic, and agglutinate coverage.
1 papers with accepted evidence
J. Kaur, D. Rickman, M. A. Schoonen | 2016 | Acta Astronautica
DOI 10.1016/j.actaastro.2016.02.002Showing 1-1 of 1 matching papers
Details
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9.5* |
12.6* |
0.965* |
0.12* |
0.09* |
0.07* |
2.74* |
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