Quantification of Pollutants in Mining Ponds Using a Combination of LiDAR and Geochemical Methods—Mining District of Hiendelaencina, Guadalajara (Spain)

More than twenty years after the last mining operations were completed in the Hiendelaencina Mining District, it is necessary to carry out a geochemical characterisation of the tailings stored in two contiguous mine ponds. Both have significant amounts of quartz, siderite, barite and muscovite and s...

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Bibliographic Details
Authors: Martín Crespo, Tomás, Gómez Ortiz, David, Pryimak, Vladyslava, Martín Velázquez, Silvia, Rodríguez Santalla, Inmaculada, Ropero-Szymañska, Nikoletta, Ignacio San José, Cristina de
Format: article
Publication Date:2023
Country:España
Institution:Universidad Complutense de Madrid (UCM)
Repository:Docta Complutense
Language:English
OAI Identifier:oai:docta.ucm.es:20.500.14352/73352
Online Access:https://hdl.handle.net/20.500.14352/73352
Access Level:Open access
Keyword:504.5:622(460.281)
mine tailings
geochemistry
LiDAR data
hazardous heavy metals
quantification
Hiendelaencina (Spain)
Edafología (Geología)
Geoquímica
Mineralogía (Geología)
2511 Ciencias del Suelo (Edafología)
2503 Geoquímica
2506.11 Mineralogía
Description
Summary:More than twenty years after the last mining operations were completed in the Hiendelaencina Mining District, it is necessary to carry out a geochemical characterisation of the tailings stored in two contiguous mine ponds. Both have significant amounts of quartz, siderite, barite and muscovite and show significant contents of As, Ba, Pb, Sb and Zn. The tailings show alkaline pH and low electrical conductivity values, which support the visual observation that rules out acid drainage into the environment. The comparison of the National Topographic Map of 1954 with LiDAR data from 2014 has allowed estimating the volume of abandoned waste. Based on the volume of slurry and its average density, the total tonnage of pollutants has been estimated at 279 ± 9 t stored in Pond North and 466 ± 11 t stored in Pond South. Although these are significant quantities that pose a risk to the environment and nearby populations, they are lower than those present in other Spanish districts, such as the Iberian Pyrite Belt or Cartagena-La Unión. The combined use of LiDAR data, aerial imagery and geochemical methods has proven to be very useful for the estimation of the volume of pollutants stored in mine ponds.