HI-VIEW RECEIVES ALTERATION MAPPING, ASTER MULTISPECTRAL, AND EnMAP HYPERSPECTRAL SATELLITE DATA FROM PHOTOSAT
VANCOUVER, BRITISH COLUMBIA, June 11, 2026 (GLOBE NEWSWIRE) -- HI-VIEW RESOURCES INC. (“Hi-View” or the “Company”) (CSE: GXLD; OTCQB: GXLDF; FSE: B630) announces the receipt of two complementary satellite alteration mapping reports for its Toodoggone Portfolio claims in British Columbia, both prepared by PhotoSat Information Inc. The ASTER Alteration Mapping Report and the EnMAP Regional Hyperspectral Exploration Targeting Report together provide an advanced multi-sensor characterization of hydrothermal alteration across the property and will directly inform ground-based exploration targeting for the upcoming field season.
Nader Mostaghimi, Vice President Exploration commented: “These data acquisitions represent a valuable addition to our exploration toolkit, supporting our vectoring efforts toward epithermal and porphyry mineralization across the Company's claim package. With Hi-View's extensive land position, these datasets have helped us prioritize and focus our exploration activities during the upcoming field season, directing time and resources toward the most prospective targets. In particular, the results provide increased confidence in our northern claims, where data quality and reliability are strongest.”
Survey Highlights
- Dual-sensor coverage: Both ASTER multispectral and EnMAP hyperspectral satellite data analyzed using PhotoSat’s proprietary deep learning technology, providing industry-leading alteration mineral discrimination across the Hi-View Claims.
- 15 distinct alteration minerals mapped: The combined surveys identified and spatially mapped 15 individual alteration minerals, including key porphyry-epithermal indicator species.
- High-Al muscovite detected: The R-HET hyperspectral survey identified high-aluminum muscovite — a mineral that can serve as a vector toward the high-temperature core of a porphyry system — detectable only through hyperspectral technology.
- Iron oxide gossan assemblage confirmed: Jarosite, goethite, and hematite mapped across the property via EnMAP, consistent with supergene weathering of underlying sulfide-bearing zones, and corroborated by iron oxide gossans identified in the ASTER survey.
- Chlorite chemistry differentiated: Fe-chlorite and Mg-chlorite mapped separately, providing a potential vector toward hotter, more proximal parts of the hydrothermal system.
