PulseExploreJournal ClubDebatesTrendingResearchersJournals
Instagram
HomeExploreJournal ClubTrending
Synapse
⌘+K
Synapse
February 21, 2026Acta Geologica Sinica - English Edition0 citations

Linking Low‐temperature Alteration to Mineralization in Epithermal Deposits: SWIR Spectral Analysis and 3‐D Modeling of the Ulan Uzhur Ag Polymetallic Deposit, China

View Full Paper
WXWanyukang XiongMYMiao YuYZYanhong ZOU

Key Points

  • To clarify the relationship between low-temperature hydrothermal alterations and mineralization in epithermal deposits.
  • Utilized short-wave infrared (SWIR) spectral analysis for alteration mineral mapping.
  • Conducted three-dimensional modeling of the Ulan Uzhur Ag polymetallic deposit.
  • Identified alteration zoning transitions through detailed petrographic analyses.
  • Establishing a correlation between high Illite Crystallinity and mineralization zones.
  • Identifying fluid boiling as a key mechanism for mineral precipitation.
  • Mapping reveals distinct alteration zones linked to mineralization features.

Abstract

Abstract Epithermal deposits are characterized by complex low‐temperature hydrothermal alterations, but the links between mineralization and superimposed alteration are obscure and require further elucidation. This study employs short‐wave infrared (SWIR) spectral scalars for alteration mineral mapping and three‐dimensional modeling of the Ulan Uzhur Ag polymetallic deposit, a newly discovered epithermal deposit in the Qimantagh. Alteration zoning transitions from illite‐muscovite‐carbonate‐pyrite in the core (Zone I), through muscovite ± illite‐kaolinite‐chlorite‐carbonate (Zone II), to muscovite‐chlorite‐biotite (Zone III) at the periphery. The Zone I with mineralization features long‐wavelength white mica (wAlOH > 2207 nm) with a high Illite Crystallinity (IC) (mean > 2.0), suggesting a relatively high‐temperature environment conducive to mineralization. Petrographic analyses with fluid inclusion and IC curve characteristics suggests that fluid boiling may be a pivotal mechanism for mineral precipitation. Furthermore, surface mapping and deep three‐dimensional modeling of spectral characteristics reveal a correlation between long‐wavelength white mica, high IC and mineralization zones. These findings indicate that SWIR spectroscopy reveal the evolution of fluids and provide valuable guidance for future exploration efforts.

Ask AI
Helpful
Bookmark
Share
View Full Paper

Cite This Study

Xiong et al. (2026) studied this question.

synapsesocial.com/papers/69994c6f873532290d020e8dhttps://doi.org/10.1111/1755-6724.70012
Ask AI
Helpful
Bookmark
Share
View Full Paper

Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Visible-Near Infrared–Short-Wave Infrared Spectroscopy and Mineral Mapping of Hydrothermal Alteration Zones at the Brejuí W-Mo Skarn Deposit, Seridó Mobile Belt, Borborema Province, Brazil2024 · 9 citations
  2. 2Silver compounds as minerals in the eastern Karkonosze granitoid pluton, Sudetes, Poland2022 · 2 citations
  3. 3High spectral resolution reflectance spectroscopy of minerals1990 · 1,635 citations
  4. 4Petrogenesis and tectonic implications of early Paleozoic granitoids in East Kunlun belt: Evidences from geochronology, geochemistry and isotopes2018 · 47 citations
  5. 5Origins of calcite in a boiling geothermal system1994 · 329 citations