Toxic Metals Reduction in Acid Mine Drainage Through the Use of Calcium Carbonate: A Case Study in Canchayllo, Peru”

V. B. Enciso-Rondon, J. M. Guadalupe-Lazaro, P. L. Boza-Sullca, N. Tantavilca-Martinez, S. L. Arcos-Chuquillanqui

Producción científica: Libro o Capítulo del libro Contribución a la conferenciarevisión exhaustiva

Resumen

Environmental liabilities comprise facilities, effluents, contaminated sites, and residues or waste deposits that have a real, potential, or permanent impact on people's health and environmental quality. This study focuses on the evaluation of calcium carbonate extracted from limestone as a neutralizing agent due to its abundance, low cost, and low toxicity for the treatment of acid mine drainage in the “La Calzada” mining environmental liability in Canchayllo, Peru. Wastewater analyses were conducted at Continental University, where metal levels and pH were determined. The results revealed that “La Calzada” mining liability has high levels of iron (3,266–9,287 mg/L), arsenic (0.24–0.35 mg/L), copper (1,560–2,313 mg/L), and an acidic pH of 3.14, exceeding environmental quality standards for water. To address this issue, calcium carbonate with 87% purity, obtained from crushed limestone, was used as a neutralizing agent. The application of this compound in the samples resulted in an increase in pH from 3.14 to 7.50, as well as a reduction in concentrations, yielding final concentrations of arsenic (0.039 mg/L), copper (0.107 mg/L), and iron (0.056 mg/L). These findings demonstrate the effectiveness of calcium carbonate as a flocculant in the treatment of acid mine drainage in the “La Calzada” mining liability, suggesting its potential application in other areas affected by similar mining environmental liabilities.

Idioma originalInglés estadounidense
Título de la publicación alojadaEnvironmental Science and Technology
Subtítulo de la publicación alojadaSustainable Development II
EditoresYang Zeng, Shuguang Wang
EditorialSpringer Science and Business Media Deutschland GmbH
Páginas107-121
-15
ISBN (versión impresa)9783031546839
DOI
EstadoIndizado - 2024
Evento14th International Conference on Environmental Science and Technology, ICEST 2023 - Qingdao, China
Duración: 23 nov. 202325 nov. 2023

Serie de la publicación

NombreEnvironmental Science and Engineering
ISSN (versión impresa)1863-5520
ISSN (versión digital)1863-5539

Conferencia

Conferencia14th International Conference on Environmental Science and Technology, ICEST 2023
País/TerritorioChina
CiudadQingdao
Período23/11/2325/11/23

Nota bibliográfica

Publisher Copyright:
© The Author(s), under exclusive license to Springer Nature Switzerland AG 2024.

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