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Chemical Enhancement to Magnetic Separation for Effective Separation of Silicates from Titanium Phases at Finer Particle Size FractionBy S A. Ravishankar
In heavy minerals separation, the titanium and iron oxide phases are separated from silicates in the coarser particle size range (80 - 150 mm) using magnetic and electrostatic separators. With the ong
Oct 5, 2011
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Environmental and Social Constraints to Mineral Mining Projects – Finding the Key to Unlock the ResourceBy A M. Avis
This paper presents an overview of recent developments in the Environmental Impact Assessment (EIA) process to provide the background for a more detailed analysis of environmental and social constrain
Oct 5, 2011
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Operational Challenges and Lessons Learnt at Xinli Nonferrous Co Ltd’s Ilmenite SmelterBy H Weitz
Bateman Engineering provided process technology and engineering design to China Yunnan Metallurgical Company (CYMCO) for a 30 MW DC furnace for the production of high-grade titanium dioxide slag.Follo
Oct 5, 2011
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Land Use Geoscience – Protecting Western Australia’s Titanium-Zircon Resources for Future ExtractionBy C D. Strickland
Western Australia (WA) has been a significant world producer of titanium minerals (rutile, ilmenite and leucoxene) and zircon for over 55 years. In 2010, despite global difficulties, WA accounted for&
Oct 5, 2011
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Dry versus Wet Magnetic Separation – Horses for CoursesBy J Elder
Magnetic separation equipment has long been used to upgrade and beneficiate a wide variety of minerals and materials. Over the years, significant advances in both wet and dry magnetic separators have
Oct 5, 2011
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Kelsey Centrifugal Jig Implementation at Namakwa Sands for Zircon Recovery from Quartz RejectsBy P V. A van der Westhuyzen
Namakwa Sands is a heavy minerals mining and beneficiation business in the Exxaro Sands Division, and operates along the West Coast of South Africa (see Figure 1). The business encompasses mining, min
Oct 5, 2011
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Geometallurgy in Mineral Sands Deposits – Linking Geological Artifacts to Metallurgy and Mine PlanningBy G Williams
Somewhat to the surprise of many heavy mineral sands (TiO2 and zircon) producers, there are important geological structures within their typical placers and aeolian sands deposits that affect plant me
Oct 5, 2011
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Improvements on Estimation Tools and the Effect on Mineralisation Base Definition on the Zulti North Heavy Mineral Sand Deposit, Richards Bay, Kwa-Zulu Natal, South AfricaBy J M. Nel
Richards Bay Minerals (RBM) has recently undertaken an exercise to improve orebody basal definition. Older mineralisation bases (pre-2005) were highly erratic using old protocol reverse circulation (R
Oct 5, 2011
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Improving Rehabilitation Outcomes using BiocrustsBy S Doudle
The Iluka Resources Ltd Jacinth-Ambrosia heavy mineral sand mine (South Australia) is located in an undisturbed semi-arid landscape consisting of sparse trees, shrubs and grasses. The soil interspaces
Oct 5, 2011
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Influence of Saline Water on Electrostatic/High Tension SeparationBy P Ramsaywok
The use of saline water for mineral beneficiation in arid regions is general practice and also the case with Exxaro Namakwa Sands, situated on the west coast of South Africa. Although it is ‘cost effe
Oct 5, 2011
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Mineral Sands Resource Security – Underpinning Market Share in a Global Growth ContextBy R Kjar
Globally, it is anticipated that the mineral sands industry will enter a period of short supply. Demand for both titanium dioxide and zircon is forecast to continue increasing, with new projects neede
Oct 5, 2011
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Heavy Mineral Prospectivity in the Eucla BasinBy B Hou
The Eucla Basin in southern Australia is emerging as an important global source of zircon from heavy mineral sands. Understanding the geological evolution of the basin and movement of heavy minerals d
Oct 5, 2011
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Sulfidisation of Ilmenite Concentrates Contaminated with Chrome Spinels – A New Approach to Impurity SeparationBy M I. Pownceby
High temperature roasting studies on chrome-spinel contaminated ilmenite concentrates showed that sulfur, introduced through a sulfidising roast treatment, selectively reacted with the chromium in the
Oct 5, 2011
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Setting Restoration Goals for Restoring Pit Lakes as Aquatic Ecosystems – A Case Study from Southwest AustraliaBy E J. B van Etten
Pit lakes may form when open cut mining leaves a pit void that then fills with ground and surface waters. This often replaces terrestrial ecosystems that existed prior to mining with an aquatic ecosys
Oct 5, 2011
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The Grande Côte Mineral Sands ProjectBy M C. Ackland
The Grande Côte Mineral Sands Deposit (GCMSP) is located on a coastal mobile dune system in Senegal on the west coast of Africa. Senegal is a stable, democratic republic, having gained its independenc
Oct 5, 2011
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TiRON – A New Process for the Production of High-Grade Feedstock for TiO2 Pigment ManufactureBy J M. Shekiro
In the chloride process to manufacture TiO2 pigment, feedstocks containing higher TiO2 contents (high-grade ores or HGOs) are favoured in order to minimise production of undesirable by-products. Most
Oct 5, 2011
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Wet High Intensity Magnetic Separators Circuit ModellingBy J D. Grobler
In the heavy minerals industry wet high intensity magnetic separators (WHIMS) are widely applied for primary magnetic separation of magnetic minerals and non-magnetic minerals. This piece of equipment
Oct 5, 2011
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The Effect of Particle Size Distribution in Electrostatic and Magnetic Separation on Mineral Recovery and YieldsBy J Ledgerwood
Namakwa Sands is a mineral processing company based on the West Coast of South Africa and is solely owned by Exxaro Resources Limited. Mineral ore is mined and processed, concentrated and both chemica
Oct 5, 2011
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Titanium Feedstocks – Opaque Quality RequirementsBy D McCoy
Titanium feedstocks are the building blocks of the titanium value chain. They can be mined directly, as is the case for ilmenite, leucoxene and rutile, or manufactured from ilmenite by extracting vari
Oct 5, 2011
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Large Deformation of Smart Functionally Graded Beams under Thermal LoadingsBy A Sadough Vanini
In this paper large deformation of smart functionally graded beams with initial imperfection and under thermal loadings is considered. Smart beam consist of two types of layers. One layer is made from
Oct 1, 2011