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5th International Future Mining Conference 2021 : Future Mining Building Tommorow
5th International Future Mining Conference 2021 : Future Mining Building Tommorow
Pubbl/distr/stampa Australasian Institute of Mining and Metallurgy, , 2021
Descrizione fisica 1 online resource
Soggetto topico Internet of things
Ore-dressing
ISBN 1-5231-6114-0
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Record Nr. UNINA-9911007255003321
Australasian Institute of Mining and Metallurgy, , 2021
Materiale a stampa
Lo trovi qui: Univ. Federico II
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AT international : mineral processing = Aufbereitungstechnik für mineralische Stoffe
AT international : mineral processing = Aufbereitungstechnik für mineralische Stoffe
Pubbl/distr/stampa Gütersloh, : Bauverlag, 2009-
Descrizione fisica 1 online resource
Soggetto topico Ore-dressing
Soggetto genere / forma Periodicals.
Formato Materiale a stampa
Livello bibliografico Periodico
Lingua di pubblicazione eng
Altri titoli varianti Mineral processing
Aufbereitungstechnik für mineralische Stoffe
AT mineral processing
Record Nr. UNINA-9910140627303321
Gütersloh, : Bauverlag, 2009-
Materiale a stampa
Lo trovi qui: Univ. Federico II
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AT mineral processing Europe
AT mineral processing Europe
Pubbl/distr/stampa Gütersloh, Deutschland : , : Bauverlag BV GmbH, , [2013]-
Descrizione fisica 1 online resource
Soggetto topico Ore-dressing - Europe
Ore-dressing
Soggetto genere / forma Periodicals.
Formato Materiale a stampa
Livello bibliografico Periodico
Lingua di pubblicazione ger
Record Nr. UNINA-9910140260403321
Gütersloh, Deutschland : , : Bauverlag BV GmbH, , [2013]-
Materiale a stampa
Lo trovi qui: Univ. Federico II
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Aufbereitungs-Technik : AT = Processing preparation
Aufbereitungs-Technik : AT = Processing preparation
Pubbl/distr/stampa Wiesbaden, : Verlag für Aufbereitung, 1960-2009
Descrizione fisica 1 online resource
Soggetto topico Ore-dressing
Soggetto genere / forma Periodicals.
Formato Materiale a stampa
Livello bibliografico Periodico
Lingua di pubblicazione ger
Altri titoli varianti Mineral processing
AT
Processing preparation
Record Nr. UNINA-9910138835903321
Wiesbaden, : Verlag für Aufbereitung, 1960-2009
Materiale a stampa
Lo trovi qui: Univ. Federico II
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Beneficiation of phosphate ore / / by S. Komar Kawatra and J.T. Carlson
Beneficiation of phosphate ore / / by S. Komar Kawatra and J.T. Carlson
Autore Kawatra S. Komar
Pubbl/distr/stampa Englewood, Colorado : , : Society for Mining, Metallurgy and Exploration, , 2014
Descrizione fisica 1 online resource (170 p.)
Disciplina 622/.7
Soggetto topico Phosphates
Ore-dressing
Soggetto genere / forma Electronic books.
ISBN 1-62870-312-1
0-87335-392-7
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Nota di contenuto Cover; Title Page; Copyright; Contents; List of Figures; List of Tables; Preface; 1: Introduction; 1.1 Feed Requirements for Phosphoric Acid Production; 1.2 Phosphate Rock Production Statistics and Reserves; 2: Sources of Phosphate Rock; 2.1 Common Phosphate Minerals; 2.1.1 Apatite; 2.1.2 Francolite; 2.1.3 Collophane; 2.1.4 Dahllite; 2.2 Common Gangue Minerals; 2.1.1 Clays; 2.2.2 Quartz; 2.2.3 Dolomite; 2.2.4 Calcite; 2.3 Mineralogy of Sedimentary Phosphates; 2.4 Mineralogy of Igneous Phosphates; 2.5 Mineralogy of Biogenic (Island) Deposits
3: Beneficiation of Siliceous Sedimentary Phosphate Ores3.1 Flotation Feed Preparation-Washing, Sizing, and Desliming; 3.1.1 Industrial Phosphate Washing Plant; 3.2 Theory of Phosphate Flotation; 3.2.1 Froth Flotation Devices; 3.2.2 Contact Angle Theory; 3.2.3 Entrainment Theory; 3.2.4 Surface Properties and Water Chemistry of Siliceous Phosphates; 3.3 Crago Double Float Process; 3.3.1 Stage 1-Anionic Fatty Acid/Fuel Oil Phosphate Flotation; 3.3.2 Stage 2-Cationic Amine Silica Flotation; 3.3.3 Industrial Flotation Plant for Siliceous Sedimentary Phosphate Ores
3.4 Proposed Alternatives to the Crago Double Float Process3.4.1 Reverse Crago Process; 3.4.2 All-Anionic (Fatty Acid/Fuel Oil Collector) Process; 3.4.3 All-Cationic (Amine) Process; 3.5 Conclusions from Siliceous Sedimentary Phosphate Ore Processing; 4: Beneficiation of High-MgO Sedimentary Phosphate Ores; 4.1 Mineralogy of High-MgO Sedimentary Phosphate Ores; 4.2 Acid Leaching of Carbonaceous Phosphate Ores; 4.2.1 Strong Acid Leaching; 4.2.2 Organic Acid Leaching; 4.2.3 Summary of Acid Leaching for the Removal of MgO (Dolomite, CaMg(CO3)2) from Phosphate Ores
4.3 Thermal Decomposition (Calcination)4.3.1 Calcination Reactions and Decomposition Temperatures; 4.3.2 Quenching and Desliming of Calcined Phosphate Ore; 4.3.3 Effects of Calcination on the Reactivity of Phosphate Products; 4.3.4 Process Considerations for Calcination of Carbonaceous Sedimentary Phosphate Ores; 4.3.5 Calcination as a Method for the Removal of MgO from Phosphate Ore; 4.4 Beneficiation of Phosphate Ore by Physical Separation Methods; 4.4.1 Desliming, Attrition Scrubbing, and Sizing; 4.4.2 Sizing and Selective Crushing; 4.4.3 Heavy-Media Separation; 4.4.4 Jigging
4.4.5 Summary of Physical Separation Methods for Removal of MgO from Phosphate Ores4.5 Flotation; 4.5.1 University of Florida Two-Stage Conditioning Process; 4.5.2 Tennessee Valley Authority Diphosphonic Acid Depressant Process; 4.5.3 U.S. Bureau of Mines Anionic Flotation Process; 4.5.4 IMC Cationic Flotation Process; 4.5.5 IMC Anionic Flotation Process; 4.5.6 Summary of Flotation for Removal of Dolomite from Phosphate Ores; 4.6 Selective Flocculation; 4.6.1 Flocculants for the Apatite/Dolomite/Silica System; 4.6.2 Factors Affecting Selectivity of Flocculation Processes
4.6.3 Selective Flocculation for the Removal of Dolomite from Phosphate Ores
Record Nr. UNINA-9910463432003321
Kawatra S. Komar  
Englewood, Colorado : , : Society for Mining, Metallurgy and Exploration, , 2014
Materiale a stampa
Lo trovi qui: Univ. Federico II
Opac: Controlla la disponibilità qui
Beneficiation of phosphate ore / / by S. Komar Kawatra and J.T. Carlson
Beneficiation of phosphate ore / / by S. Komar Kawatra and J.T. Carlson
Autore Kawatra S. Komar
Pubbl/distr/stampa Englewood, Colorado : , : Society for Mining, Metallurgy and Exploration, , 2014
Descrizione fisica 1 online resource (170 p.)
Disciplina 622/.7
Soggetto topico Phosphates
Ore-dressing
ISBN 1-62870-312-1
0-87335-392-7
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Nota di contenuto Cover; Title Page; Copyright; Contents; List of Figures; List of Tables; Preface; 1: Introduction; 1.1 Feed Requirements for Phosphoric Acid Production; 1.2 Phosphate Rock Production Statistics and Reserves; 2: Sources of Phosphate Rock; 2.1 Common Phosphate Minerals; 2.1.1 Apatite; 2.1.2 Francolite; 2.1.3 Collophane; 2.1.4 Dahllite; 2.2 Common Gangue Minerals; 2.1.1 Clays; 2.2.2 Quartz; 2.2.3 Dolomite; 2.2.4 Calcite; 2.3 Mineralogy of Sedimentary Phosphates; 2.4 Mineralogy of Igneous Phosphates; 2.5 Mineralogy of Biogenic (Island) Deposits
3: Beneficiation of Siliceous Sedimentary Phosphate Ores3.1 Flotation Feed Preparation-Washing, Sizing, and Desliming; 3.1.1 Industrial Phosphate Washing Plant; 3.2 Theory of Phosphate Flotation; 3.2.1 Froth Flotation Devices; 3.2.2 Contact Angle Theory; 3.2.3 Entrainment Theory; 3.2.4 Surface Properties and Water Chemistry of Siliceous Phosphates; 3.3 Crago Double Float Process; 3.3.1 Stage 1-Anionic Fatty Acid/Fuel Oil Phosphate Flotation; 3.3.2 Stage 2-Cationic Amine Silica Flotation; 3.3.3 Industrial Flotation Plant for Siliceous Sedimentary Phosphate Ores
3.4 Proposed Alternatives to the Crago Double Float Process3.4.1 Reverse Crago Process; 3.4.2 All-Anionic (Fatty Acid/Fuel Oil Collector) Process; 3.4.3 All-Cationic (Amine) Process; 3.5 Conclusions from Siliceous Sedimentary Phosphate Ore Processing; 4: Beneficiation of High-MgO Sedimentary Phosphate Ores; 4.1 Mineralogy of High-MgO Sedimentary Phosphate Ores; 4.2 Acid Leaching of Carbonaceous Phosphate Ores; 4.2.1 Strong Acid Leaching; 4.2.2 Organic Acid Leaching; 4.2.3 Summary of Acid Leaching for the Removal of MgO (Dolomite, CaMg(CO3)2) from Phosphate Ores
4.3 Thermal Decomposition (Calcination)4.3.1 Calcination Reactions and Decomposition Temperatures; 4.3.2 Quenching and Desliming of Calcined Phosphate Ore; 4.3.3 Effects of Calcination on the Reactivity of Phosphate Products; 4.3.4 Process Considerations for Calcination of Carbonaceous Sedimentary Phosphate Ores; 4.3.5 Calcination as a Method for the Removal of MgO from Phosphate Ore; 4.4 Beneficiation of Phosphate Ore by Physical Separation Methods; 4.4.1 Desliming, Attrition Scrubbing, and Sizing; 4.4.2 Sizing and Selective Crushing; 4.4.3 Heavy-Media Separation; 4.4.4 Jigging
4.4.5 Summary of Physical Separation Methods for Removal of MgO from Phosphate Ores4.5 Flotation; 4.5.1 University of Florida Two-Stage Conditioning Process; 4.5.2 Tennessee Valley Authority Diphosphonic Acid Depressant Process; 4.5.3 U.S. Bureau of Mines Anionic Flotation Process; 4.5.4 IMC Cationic Flotation Process; 4.5.5 IMC Anionic Flotation Process; 4.5.6 Summary of Flotation for Removal of Dolomite from Phosphate Ores; 4.6 Selective Flocculation; 4.6.1 Flocculants for the Apatite/Dolomite/Silica System; 4.6.2 Factors Affecting Selectivity of Flocculation Processes
4.6.3 Selective Flocculation for the Removal of Dolomite from Phosphate Ores
Record Nr. UNINA-9910787773803321
Kawatra S. Komar  
Englewood, Colorado : , : Society for Mining, Metallurgy and Exploration, , 2014
Materiale a stampa
Lo trovi qui: Univ. Federico II
Opac: Controlla la disponibilità qui
Beneficiation of phosphate ore / / by S. Komar Kawatra and J.T. Carlson
Beneficiation of phosphate ore / / by S. Komar Kawatra and J.T. Carlson
Autore Kawatra S. Komar
Pubbl/distr/stampa Englewood, Colorado : , : Society for Mining, Metallurgy and Exploration, , 2014
Descrizione fisica 1 online resource (170 p.)
Disciplina 622/.7
Soggetto topico Phosphates
Ore-dressing
ISBN 1-62870-312-1
0-87335-392-7
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Nota di contenuto Cover; Title Page; Copyright; Contents; List of Figures; List of Tables; Preface; 1: Introduction; 1.1 Feed Requirements for Phosphoric Acid Production; 1.2 Phosphate Rock Production Statistics and Reserves; 2: Sources of Phosphate Rock; 2.1 Common Phosphate Minerals; 2.1.1 Apatite; 2.1.2 Francolite; 2.1.3 Collophane; 2.1.4 Dahllite; 2.2 Common Gangue Minerals; 2.1.1 Clays; 2.2.2 Quartz; 2.2.3 Dolomite; 2.2.4 Calcite; 2.3 Mineralogy of Sedimentary Phosphates; 2.4 Mineralogy of Igneous Phosphates; 2.5 Mineralogy of Biogenic (Island) Deposits
3: Beneficiation of Siliceous Sedimentary Phosphate Ores3.1 Flotation Feed Preparation-Washing, Sizing, and Desliming; 3.1.1 Industrial Phosphate Washing Plant; 3.2 Theory of Phosphate Flotation; 3.2.1 Froth Flotation Devices; 3.2.2 Contact Angle Theory; 3.2.3 Entrainment Theory; 3.2.4 Surface Properties and Water Chemistry of Siliceous Phosphates; 3.3 Crago Double Float Process; 3.3.1 Stage 1-Anionic Fatty Acid/Fuel Oil Phosphate Flotation; 3.3.2 Stage 2-Cationic Amine Silica Flotation; 3.3.3 Industrial Flotation Plant for Siliceous Sedimentary Phosphate Ores
3.4 Proposed Alternatives to the Crago Double Float Process3.4.1 Reverse Crago Process; 3.4.2 All-Anionic (Fatty Acid/Fuel Oil Collector) Process; 3.4.3 All-Cationic (Amine) Process; 3.5 Conclusions from Siliceous Sedimentary Phosphate Ore Processing; 4: Beneficiation of High-MgO Sedimentary Phosphate Ores; 4.1 Mineralogy of High-MgO Sedimentary Phosphate Ores; 4.2 Acid Leaching of Carbonaceous Phosphate Ores; 4.2.1 Strong Acid Leaching; 4.2.2 Organic Acid Leaching; 4.2.3 Summary of Acid Leaching for the Removal of MgO (Dolomite, CaMg(CO3)2) from Phosphate Ores
4.3 Thermal Decomposition (Calcination)4.3.1 Calcination Reactions and Decomposition Temperatures; 4.3.2 Quenching and Desliming of Calcined Phosphate Ore; 4.3.3 Effects of Calcination on the Reactivity of Phosphate Products; 4.3.4 Process Considerations for Calcination of Carbonaceous Sedimentary Phosphate Ores; 4.3.5 Calcination as a Method for the Removal of MgO from Phosphate Ore; 4.4 Beneficiation of Phosphate Ore by Physical Separation Methods; 4.4.1 Desliming, Attrition Scrubbing, and Sizing; 4.4.2 Sizing and Selective Crushing; 4.4.3 Heavy-Media Separation; 4.4.4 Jigging
4.4.5 Summary of Physical Separation Methods for Removal of MgO from Phosphate Ores4.5 Flotation; 4.5.1 University of Florida Two-Stage Conditioning Process; 4.5.2 Tennessee Valley Authority Diphosphonic Acid Depressant Process; 4.5.3 U.S. Bureau of Mines Anionic Flotation Process; 4.5.4 IMC Cationic Flotation Process; 4.5.5 IMC Anionic Flotation Process; 4.5.6 Summary of Flotation for Removal of Dolomite from Phosphate Ores; 4.6 Selective Flocculation; 4.6.1 Flocculants for the Apatite/Dolomite/Silica System; 4.6.2 Factors Affecting Selectivity of Flocculation Processes
4.6.3 Selective Flocculation for the Removal of Dolomite from Phosphate Ores
Record Nr. UNINA-9910816764503321
Kawatra S. Komar  
Englewood, Colorado : , : Society for Mining, Metallurgy and Exploration, , 2014
Materiale a stampa
Lo trovi qui: Univ. Federico II
Opac: Controlla la disponibilità qui
Beneficiation of phosphates : sustainability, critical materials and smart processes / / edited by Patrick Zhang [and four others]
Beneficiation of phosphates : sustainability, critical materials and smart processes / / edited by Patrick Zhang [and four others]
Autore Zhang Patrick
Pubbl/distr/stampa Englewood, Colorado : , : Society for Mining, Metallurgy & Exploration (SME), , [2019]
Descrizione fisica 1 online resource (242 pages)
Disciplina 661.43
Soggetto topico Phosphates - Purification
Extraction (Chemistry)
Ore-dressing
Phosphate minerals
Soggetto genere / forma Electronic books.
ISBN 1-5231-2471-7
0-87335-475-3
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Record Nr. UNINA-9910493701503321
Zhang Patrick  
Englewood, Colorado : , : Society for Mining, Metallurgy & Exploration (SME), , [2019]
Materiale a stampa
Lo trovi qui: Univ. Federico II
Opac: Controlla la disponibilità qui
Beneficiation of phosphates : sustainability, critical materials and smart processes / / edited by Patrick Zhang [and four others]
Beneficiation of phosphates : sustainability, critical materials and smart processes / / edited by Patrick Zhang [and four others]
Autore Zhang Patrick
Pubbl/distr/stampa Englewood, Colorado : , : Society for Mining, Metallurgy & Exploration (SME), , [2019]
Descrizione fisica 1 online resource (242 pages)
Disciplina 661.43
Soggetto topico Phosphates - Purification
Extraction (Chemistry)
Ore-dressing
Phosphate minerals
ISBN 1-5231-2471-7
0-87335-475-3
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Nota di contenuto Tailoring collectors to allow sea water usage in phosphate beneficiation -- Purification of Phosphogypsum for Production of Calcium Sulfate Whisker Through Complete Chemicals Recycle -- Beneficiation of Dolomitic Phosphate Pebble by Triboelectrostatic Belt Separation -- Removal of coarse fraction from phosphatic clays for clay settling area reduction and additional phosphare recovery -- Using two alternative vegetable oils as apatite collector -- Purification of phosphogypsum using environmentally friendly separation devices.
Record Nr. UNINA-9910793668003321
Zhang Patrick  
Englewood, Colorado : , : Society for Mining, Metallurgy & Exploration (SME), , [2019]
Materiale a stampa
Lo trovi qui: Univ. Federico II
Opac: Controlla la disponibilità qui
Beneficiation of phosphates : sustainability, critical materials and smart processes / / edited by Patrick Zhang [and four others]
Beneficiation of phosphates : sustainability, critical materials and smart processes / / edited by Patrick Zhang [and four others]
Autore Zhang Patrick
Pubbl/distr/stampa Englewood, Colorado : , : Society for Mining, Metallurgy & Exploration (SME), , [2019]
Descrizione fisica 1 online resource (242 pages)
Disciplina 661.43
Soggetto topico Phosphates - Purification
Extraction (Chemistry)
Ore-dressing
Phosphate minerals
ISBN 1-5231-2471-7
0-87335-475-3
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Nota di contenuto Tailoring collectors to allow sea water usage in phosphate beneficiation -- Purification of Phosphogypsum for Production of Calcium Sulfate Whisker Through Complete Chemicals Recycle -- Beneficiation of Dolomitic Phosphate Pebble by Triboelectrostatic Belt Separation -- Removal of coarse fraction from phosphatic clays for clay settling area reduction and additional phosphare recovery -- Using two alternative vegetable oils as apatite collector -- Purification of phosphogypsum using environmentally friendly separation devices.
Record Nr. UNINA-9910815257903321
Zhang Patrick  
Englewood, Colorado : , : Society for Mining, Metallurgy & Exploration (SME), , [2019]
Materiale a stampa
Lo trovi qui: Univ. Federico II
Opac: Controlla la disponibilità qui