Skip to main navigation Skip to search Skip to main content

Modelling Regional Geochemistry and As-Bi-Co-Cu-Fe-Ni Mineralisation Using G-BASE in the Lake District, UK

  • Adam Eskdale
  • , Amy Gough
  • , Sean Johnson
  • , Max Webb

Research output: Contribution to journalArticlepeer-review

20 Downloads (Pure)

Abstract

Geochemical data for the UK Lake District including both Geochemical Baseline Survey of the Environment (G-BASE) stream sediment data and newly collected samples are shown here as a tool for modelling whole-rock geochemistry at a regional scale and as a case study for identifying potential As–Bi–Co–Cu–Fe–Ni mineralization. Regional whole-rock concentrations for the Skiddaw Group and Borrowdale Volcanic Group were modelled using G-BASE stream sediment data and found to align closely with newly collected in situ X-ray fluorescence measurements of host-rock samples. Average concentrations of elements such as Ag, Al, As, Fe, Ni and Ti differed by only 1–2 wt% or ∼20 ppm between the two datasets. Six areas identified by G-BASE as potential As–Co–Cu–Ni targets were visited. Of these, Keld and Devoke Water showed evidence for sulfide dissemination within the host rock rather than visible veins, while Black Combe, Seathwaite, Coniston and Tilberthwaite were confirmed to host vein-type, quartz–sulfide mineralization geochemically similar to known deposits at Dale Head North, Scar Crag and Ulpha. This study highlights the successful application of G-BASE data for regional geochemical modelling and exploration targeting. The workflow could be adapted for other areas covered by preexisting stream sediment geochemical data or integrated into exploration strategies for new regions.

Original languageEnglish
Article numbergeochem2025-006
JournalGeochemistry: Exploration, Environment, Analysis
Volume26
Issue number1
Early online date21 Oct 2025
DOIs
Publication statusPublished - Feb 2026

Keywords

  • Lake District
  • X-ray fluorescence
  • battery metals
  • cobalt
  • critical metals
  • geochemistry
  • mineral exploration
  • polymetallic veins

ASJC Scopus subject areas

  • General Chemistry
  • General Environmental Science
  • Geochemistry and Petrology
  • General Earth and Planetary Sciences

Fingerprint

Dive into the research topics of 'Modelling Regional Geochemistry and As-Bi-Co-Cu-Fe-Ni Mineralisation Using G-BASE in the Lake District, UK'. Together they form a unique fingerprint.

Cite this