
Lunar Regolith Simulant Mare
Mare regolith simulant reproducing the modal mineralogy and bulk chemistry of Apollo 17 soil 72501. Phase match 99.2 %.
Apollo-traceable lunar regolith simulants in two terrain variants.

Mare regolith simulant reproducing the modal mineralogy and bulk chemistry of Apollo 17 soil 72501. Phase match 99.2 %.

Highland regolith simulant reproducing the modal mineralogy and bulk chemistry of Apollo 16 soil 64501. Phase match 96.4 %.
Mare (RGS-M1) reproduces Apollo 17 soil 72501 at phase match 99.2 %, Highland (RGS-H1) reproduces Apollo 16 soil 64501 at phase match 96.4 %, each over four modelled phases. Every modelled phase and every oxide is reported against its target value on the variant datasheet, together with the modal and chemical RMSE.
Alternative size fractions can be produced on request.
Both major lunar terrains under one quality system, one characterization stack, one delivery channel. Simplifies procurement for buyers running diverse mission profiles.
| RGS-M1Apollo 17 soil 72501 | RGS-H1Apollo 16 soil 64501 | |
|---|---|---|
| Phase match | 99.2 % | 96.4 % |
| Modal RMSE | 0.23 wt% | 0.79 wt% |
| Chemical RMSE | 1.96 wt% | 4.90 wt% |
| Dv(10/50/90) | 3.29 / 10.4 / 74.1 µm | 2.93 / 8.84 / 74.0 µm |
| Size cut | < 75 µm mesh | < 75 µm mesh |
| Soil texture class | Silt | Silt |
| Reference batch | 100 g | 100 g |
Full modal composition, bulk chemistry, fidelity metrics and particle size distribution are published on each variant page.
RGS-M1 specificationRGS-H1 specificationVariants are matched to your Apollo reference and operating conditions. Custom development runs through engineering.