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Hydrometallurgy ’94

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Cover of 'Hydrometallurgy ’94'

Table of Contents

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    Book Overview
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    Chapter 1 EU R&D activity and strategy for sustainable development in the mineral industries
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    Chapter 2 Hydrometallurgy—an environmentally sustainable technology?
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    Chapter 3 Environmental impact of increasing production of gold from hydrothermal resources
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    Chapter 4 In-situ leaching recovery of copper: what’s next?
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    Chapter 5 Hydrometallurgical processing of refinery slimes at Phelps Dodge: theory to practice
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    Chapter 6 Materials production and the environment
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    Chapter 7 Reaction of galena in ferric sulphate—sulphuric acid media
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    Chapter 8 Multicomponent equilibrium calculations in process design: study of some acid digester reactors
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    Chapter 9 Hematite solubility in sulphate process solutions
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    Chapter 10 Hydrothermal precipitation from aqueous solutions containing iron(III), arsenate and sulphate
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    Chapter 11 Heap leaching of poor nickel laterites by sulphuric acid at ambient temperature
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    Chapter 12 Mechano-chemical treatment of tetrahedrite as a new non-polluting method of metals recovery
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    Chapter 13 Non-traditional methods of treating high-silicon ores containing rare elements
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    Chapter 14 Scope and limitations for application of selectivity in oxidation potential-controlled leaching of metal sulphides
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    Chapter 15 Control of arsenic and selenium during nickel matte leaching
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    Chapter 16 Electrochemical study of oxidative dissolution of synthetic violarite in aqueous media
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    Chapter 17 Stability of arsenical bacterial oxidation products
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    Chapter 18 Removal of iron from kaolin and quartz: dissolution with organic acids
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    Chapter 19 Bioreduction of gold on algae and with amino acids
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    Chapter 20 Metal speciation in bioleach solutions during bacterial dissolution of a complex mineral sulphide concentrate
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    Chapter 21 Bacterial oxidation of an auriferous arsenical concentrate
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    Chapter 22 Oxidation of arsenopyrite in bacterial ferric solutions
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    Chapter 23 Effect of silver and bismuth on bioleaching of copper sulphide concentrates with thermophilic microorganisms
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    Chapter 24 Dissolved iron equilibrium in bacterial leaching systems
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    Chapter 25 Influence of substrate polarization on activity of Thiobacillus ferrooxidans in bioleaching
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    Chapter 26 Pretreatment by electrolytic or oxidative leaching for recovery of gold and silver from refractory sulphide concentrates
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    Chapter 27 Iodide—thiocyanate leaching system for gold
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    Chapter 28 Leaching and recovery of gold by use of acido-thioureation on copper-mine wastes: laboratory and pilot-plant tests and process modelling
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    Chapter 29 PRISMA—a hydrometallurgical process simulator: application in gold extraction from refractory pyrites
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    Chapter 30 Interrelationship between lixiviants and galvanic interaction during dissolution of gold
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    Chapter 31 Comparative performance of porous adsorbents in presence of gold cyanide, organic foulants and solid fines
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    Chapter 32 Reductive sorption methods for extraction of noble metals from solution
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    Chapter 33 Dissolution of gold in oxidized bromide solutions
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    Chapter 34 Leaching of gold from sulphide concentrates with thiosulphate/polysulphide produced by disproportionation of elemental sulphur in ammoniacal media
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    Chapter 35 Adsorption of gold-thiourea complex on Greek lignite
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    Chapter 36 Norzink removal of cobalt from zinc sulphate electrolytes
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    Chapter 37 Cementation of mercury(II) from chloroalkali effluents by use of Zn and Fe
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    Chapter 38 Removal of antimony and bismuth from copper tankhouse electrolytes
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    Chapter 39 Novel solvent extraction reagents for recovery of zinc from sulphate leach solutions
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    Chapter 40 Recovery of acids and bases used in metal treatment processes by diffusion dialysis
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    Chapter 41 Recommended separation processes for ion-absorbed rare earth minerals
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    Chapter 42 Purification of waste waters containing heavy metals; by surfactant liquid membrane extraction
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    Chapter 43 Electroassisted separation of metals by solvent extraction and supported-liquid membranes
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    Chapter 44 Equilibrium and kinetic studies of copper extraction from chloride solutions with pyridine carboxylates
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    Chapter 45 Cadmium removal from phosphoric acid—Israeli experience
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    Chapter 46 Solvent extraction of rhodium with Kelex 100
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    Chapter 47 Removal of free cyanide from solution with silver-impregnated activated carbon
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    Chapter 48 Removal of heavy metal ions from liquid effluents by solvent-impregnated resins
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    Chapter 49 Use of a fluidized-bed ion-exchange system for heavy metals removal from waste streams
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    Chapter 50 Application of ultrafiltration assisted by complexation to treatment of industrial waste waters
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    Chapter 51 Application of Strong Magnetic Fields For Heavy Metal Removal
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    Chapter 52 Design And Construction Aspects Of Pilot-Scale Passive Treatment Systems For Acid Rock Drainage At Metal Mines
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    Chapter 53 Wheal Jane—can wetlands technology cope?
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    Chapter 54 Retention of cadmium in clay minerals by a hydrothermal method
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    Chapter 55 Use of Zeolitic Tuff For Control and Recycling of Effluent
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    Chapter 56 NO x suppression with hydrogen peroxide in the metals industry
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    Chapter 57 Application of Fibrous Ion Exchangers in Air Purification From Acidic Impurities
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    Chapter 58 Hydrometallurgical processing of complex copper-zinc concentrates
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    Chapter 59 Integration of Sherritt Zinc Pressure Leach Process at Ruhr-Zink refinery, Germany
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    Chapter 60 Recovery of platinum group metals from oxide ores—TML Process
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    Chapter 61 Development of Intec Copper Process by an international consortium
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    Chapter 62 Introduction to spray roasting process for hydrochloric acid regeneration and its application to mineral processing
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    Chapter 63 Production of high-grade tin in a new electrolytic plant
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    Chapter 64 Towards zero-discharge mining: minimization of water outflow
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    Chapter 65 Design of a tailing facility to mitigate potential acid rock drainage
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    Chapter 66 Exploitation of shear and compression rheology in disposal of bauxite residue
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    Chapter 67 Leaching of heavy metals from contaminated concrete rubbish material
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    Chapter 68 Processing of electric arc furnace dust via chloride hydrometallurgy
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    Chapter 69 Prediction of water contamination arising from disposal of solid wastes
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    Chapter 70 Improved process for concentration of ulexite and boric acid production
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    Chapter 71 Decontamination of site of a secondary zinc smelter in Torrance,California
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    Chapter 72 Disposal of Inorganic Wastes From Sulphate Titanium Dioxide Process at Langöya, Norway
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    Chapter 73 Effluent treatment in IMI Phosphoric Acid Process
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    Chapter 74 Metals Recovery From Hydrodesulphurization Catalysts
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    Chapter 75 Environmentally sound hydrometallurgical recovery of chemicals from aluminium industry spent potlining
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    Chapter 76 Recovery of vanadium from spent catalysts and alumina residues
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    Chapter 77 Ecological treatment of waste products from zinc hydrometallurgy
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    Chapter 78 Production of indium from Imperial Smelting Process residues
Attention for Chapter 4: In-situ leaching recovery of copper: what’s next?
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Chapter title
In-situ leaching recovery of copper: what’s next?
Chapter number 4
Book title
Hydrometallurgy ’94
Published by
Springer, Dordrecht, January 1994
DOI 10.1007/978-94-011-1214-7_4
Book ISBNs
978-9-40-104532-2, 978-9-40-111214-7
Authors

J. B. Hiskey, Hiskey, J. B.

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Mendeley readers

Mendeley readers

The data shown below were compiled from readership statistics for 14 Mendeley readers of this research output. Click here to see the associated Mendeley record.

Geographical breakdown

Country Count As %
Unknown 14 100%

Demographic breakdown

Readers by professional status Count As %
Student > Ph. D. Student 4 29%
Student > Master 3 21%
Unspecified 2 14%
Student > Doctoral Student 1 7%
Researcher 1 7%
Other 0 0%
Unknown 3 21%
Readers by discipline Count As %
Engineering 3 21%
Unspecified 2 14%
Earth and Planetary Sciences 2 14%
Chemical Engineering 1 7%
Environmental Science 1 7%
Other 2 14%
Unknown 3 21%