PDF

Deconstructing the Leaching Ratio

Humberto Estay, Simón Díaz-Quezada

2020enleaching ratioheap leachingminingcopper productionscale-up

Abstract

Language:

The heap leaching process has been widely used for recovering different metals since its first application at the end of the 1960s. In Chile, copper production via heap leaching has accounted for between 30 and 40% of annual copper production over the past 10 years. This level of production has been achieved through and supported by the use of a mathematical relation, known as the leaching ratio (LR) or irrigation ratio (IR), which relates operational parameters with metal extraction in a heap leaching operation. This ratio has been used to develop leaching column tests, to scale up results from the laboratory to industrial operations, to design new heap leaching plants, and in metallurgical control and production estimation. In spite of the widespread industrial use of this relation, few scientific studies mention it. This is due to its simplicity and basic theoretical foundations. This disparity between industrial practice and scientific research could lead to operational decisions which lack substantial theoretical support, and to scientific studies which have limited industrial impact. Against this background, several questions arise about the use of the LR: What are the constraints on the use of the LR? Are there practical advantages with respect to reported kinetic models? What is the main reason that industry prefers the use of the LR over kinetic models, which enjoy greater theoretical support? In order to guide its future use, this paper describes the leaching ratio and its current uses and limitations, through a literature review and case studies.

Download

Cite This Work

@article{0fbeba5c-68db-44f8-80b6-31c809663022,
  title={Deconstructing the Leaching Ratio},
  author={Humberto Estay and Simón Díaz-Quezada},
  year={2020},
  language={en}
}
TY  - JOUR
TI  - Deconstructing the Leaching Ratio
AU  - Humberto Estay
AU  - Simón Díaz-Quezada
PY  - 2020
LA  - en
ER  -

Similar Items

Metallurgical Plant Design and Operating Strategies

The Australasian Institute of Mining and Metallurgy

This conference, held in Perth, Western Australia, focuses on the latest advancements in metallurgical processing plant design and operational strateg

2006enPDF

Metallurgical Plant Design and Operating Strategies

P Card, J Canterford

This document presents a collection of papers from the METPLANT 2011 conference focusing on metallurgical plant design and operating strategies. The o

2011enPDF

10.1080 08827509208952675.pdf HABASHI, FATHI ( WeLib.org )

FATHI HABASHI

In the past few years, extractive metallurgy has been advancing gradually, despite the absence of remarkable new ideas. This paper aims to summarize t

2026enPDF

Extractive Metallurgy of Copper, Fifth Edition Mark E. Schlesinger, Matthew J. King, Kathryn C. Sole, ( WeLib.org )

Mark E. Schlesinger, Matthew J. King

This book presents a comprehensive overview of the principles and practices of copper extraction metallurgy. The objective is to provide both a theore

2026enPDF

Extraction of PGMs from Low-grade Oxide Mineral Deposits

Cleophace Ngoie Mpinga

The thesis investigates alternative extraction strategies for platinum group metals (PGMs) from low-grade, high-chromium oxidized ores, which are incr

2018enPDF

Direct leach approaches to Platinum Group Metal (PGM) ores and concentrates: A review

C.N. Mpinga, J.J. Eksteen

Platinum Group Metals (PGMs), often with associated gold, have very few occurrences where they are present in an ore deposit at economically extractab

2015enPDF