Solution Mining: Leaching and Fluid Recovery of Materials / Edition 1

Solution Mining: Leaching and Fluid Recovery of Materials / Edition 1

by Robert Bartlett
ISBN-10:
1138996386
ISBN-13:
9781138996380
Pub. Date:
11/26/2015
Publisher:
Taylor & Francis
ISBN-10:
1138996386
ISBN-13:
9781138996380
Pub. Date:
11/26/2015
Publisher:
Taylor & Francis
Solution Mining: Leaching and Fluid Recovery of Materials / Edition 1

Solution Mining: Leaching and Fluid Recovery of Materials / Edition 1

by Robert Bartlett
$61.99 Current price is , Original price is $61.99. You
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Overview

First published in 1998. This book offers a wealth of information on the rapidly expanding field of solution mining: yhe extraction of materials from the earth by leaching and fluid recovery. This is an introductory text for students and professional engineers that is comprehensive and emphases current practice and theory. Percolation leaching of fragmented ground is covered, as well as true and modified in situ teaching. Solution mining of gold, copper and uranium ores, several slats extracted from evaporates and brines, and sulfur are discussed. Mineral teaching chemistry and kinetics, hydrology (including flow equations for various wellfields and other fluid recovery systems), environmental containment and solution mining simulation models are also included.

Product Details

ISBN-13: 9781138996380
Publisher: Taylor & Francis
Publication date: 11/26/2015
Pages: 470
Product dimensions: 6.12(w) x 9.19(h) x (d)

Table of Contents

Heap leaching gold (silver) ore - theory; heap leaching practice (with applications to gold and silver ore); environmental control in percolation leaching; percolation leaching oxidized and secondary sulfide copper materials; percolation leaching copper mine waste (primary sulfides); solution flow during percolation of ore heaps leaching; oxygen diffusion and air flow during heap leaching; bio-oxidation heap pre-treatment of sulfide refractory gold ore and high-sulphur coal; in situ flooded leaching; in situ leaching hydrology; numerical simulation of fragmented rock leaching; evaporites, brine and sulphur; solar evaporation ponds; remediation of contaminated ground and water.
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