{"id":4060,"date":"2026-08-24T09:16:54","date_gmt":"2026-08-24T01:16:54","guid":{"rendered":"https:\/\/www.corvelanmag.com\/?page_id=4060"},"modified":"2026-09-27T18:21:47","modified_gmt":"2026-09-27T10:21:47","slug":"titanium-ore-separation","status":"publish","type":"page","link":"https:\/\/www.corvelanmag.com\/fr\/applications\/titanium-ore-separation\/","title":{"rendered":"S\u00e9paration du minerai de titane"},"content":{"rendered":"\t\t<div data-elementor-type=\"wp-page\" data-elementor-id=\"4060\" class=\"elementor elementor-4060\" data-elementor-post-type=\"page\">\n\t\t\t\t<div class=\"elementor-element elementor-element-4d9de8d e-con e-atomic-element e-div-block-base e-default-div e-4d9de8d-73ccb4a \" data-id=\"4d9de8d\" data-element_type=\"e-div-block\" data-e-type=\"e-div-block\" data-interaction-id=\"4d9de8d\" data-e-type=\"e-div-block\" data-id=\"4d9de8d\">\n    \t\t<div class=\"elementor-element elementor-element-4f7c47c elementor-widget elementor-widget-html\" 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.level{display:inline-block;margin-bottom:9px;font-size:12px;font-weight:800;text-transform:uppercase;letter-spacing:.05em;color:var(--blue);background:var(--blue-light);padding:5px 8px;border-radius:5px}\r\n.corvelan-pdp .answer-box{padding:22px 24px;border-left:4px solid var(--blue);background:#f1f7fb;border-radius:10px;margin:24px 0}\r\n.corvelan-pdp .answer-box strong{color:var(--blue-dark)}\r\n.corvelan-pdp .performance-grid{display:grid;grid-template-columns:repeat(3,minmax(0,1fr));gap:18px;margin-top:26px}\r\n.corvelan-pdp .evidence-grid{display:grid;grid-template-columns:repeat(3,minmax(0,1fr));gap:20px;margin-top:26px}\r\n.corvelan-pdp .evidence{padding:22px;border:1px solid var(--line);border-radius:11px;background:#fff}\r\n.corvelan-pdp .evidence b{display:block;color:var(--blue-dark);margin-bottom:7px}\r\n.corvelan-pdp .rfq{grid-template-columns:repeat(3,minmax(0,1fr))}\r\n@media(max-width:1100px){.corvelan-pdp .duty-grid{grid-template-columns:repeat(2,minmax(0,1fr))}.corvelan-pdp .mineral-grid{grid-template-columns:repeat(2,minmax(0,1fr))}.corvelan-pdp .performance-grid,.corvelan-pdp .evidence-grid{grid-template-columns:1fr 1fr}.corvelan-pdp .rfq{grid-template-columns:repeat(2,minmax(0,1fr))}}\r\n@media(max-width:700px){.corvelan-pdp .duty-grid,.corvelan-pdp .mineral-grid,.corvelan-pdp .performance-grid,.corvelan-pdp .evidence-grid,.corvelan-pdp .rfq{grid-template-columns:1fr}}\r\n\r\n.corvelan-pdp .content-media{margin:30px 0 0}\r\n.corvelan-pdp .content-media img{display:block;width:100%;max-width:1200px;height:auto;border-radius:12px;border:1px solid var(--line);box-shadow:0 10px 28px rgba(22,34,49,.08)}\r\n.corvelan-pdp .image-note{font-size:12px;line-height:1.45;color:#6b7a88;margin:8px 0 0}\r\n.corvelan-pdp .hero-media .image-note{color:#5d6b78;margin:9px 2px 0}\r\n<\/style>\r\n<section class=\"hero\"><div class=\"wrap\">\r\n<div>\r\n<p class=\"eyebrow\">Titanium Ore &amp; Ilmenite Magnetic Separation<\/p>\r\n<h1>Titanium Ore Magnetic Separation for Ilmenite & Magnetic Mineral Removal<\/h1>\r\n<p class=\"lead\">Corvelan reviews titanium-bearing ore by mineralogy, magnetic response, liberation, particle size and process position to determine where magnetic separation should sit in the beneficiation flowsheet.<\/p>\r\n<div class=\"tags\"><span class=\"tag\">Ilmenite<\/span><span class=\"tag\">Titanomagnetite<\/span><span class=\"tag\">Heavy Mineral Sand<\/span><span class=\"tag\">Titanium Tailings<\/span><span class=\"tag\">Tramp Iron Removal<\/span><\/div>\r\n<div class=\"quick\"><strong>Quick answer:<\/strong> Need to remove magnetite, titanomagnetite or tramp iron? Magnetic separators can help remove magnetic minerals and ferrous contaminants from titanium ore. For ilmenite recovery, separator selection depends on mineral properties, particle size and separation requirements.<\/div>\r\n<div class=\"links\"><a class=\"cta\" href=\"\/contact-us\/\">Send Ore Analysis &amp; Process Flow<\/a><a class=\"cta\" href=\"\/contact-us\/\">Request Material Testing<\/a><\/div>\r\n<\/div>\r\n<div class=\"hero-media\"><img fetchpriority=\"high\" alt=\"Conceptual magnetic drum separator for titanium ore magnetic separation\" decoding=\"async\" fetchpriority=\"high\" height=\"900\" loading=\"eager\" src=\"\/wp-content\/uploads\/2026\/09\/titanium-ore-magnetic-separator-hero-20260907-075001.webp\" width=\"1200\"\/><\/div>\r\n<\/div><\/section>\r\n<section class=\"section-soft\"><div class=\"wrap\">\r\n<p class=\"kicker\">Check Your Ore and Separation Goal<\/p>\r\n<h2>What Are You Trying to Separate From the Titanium Ore?<\/h2>\r\n<p class=\"sublead\">Titanium ore magnetic separation can be used for removing magnetic impurities, recovering ilmenite, or upgrading heavy mineral concentrates. The right separator depends on your material characteristics and separation target.<\/p>\r\n<div class=\"duty-grid\">\r\n<div class=\"duty\"><b>Tramp Iron Removal<\/b>Remove bolts, steel fragments or other ferrous contamination before crushers, mills, conveyors or downstream beneficiation equipment.<\/div>\r\n<div class=\"duty\"><b>Magnetite \/ Titanomagnetite Separation<\/b>Remove or recover the strongly magnetic iron-bearing fraction before further titanium beneficiation.<\/div>\r\n<div class=\"duty\"><b>Ilmenite Recovery<\/b>Recover a weaker-magnetic titanium mineral fraction where liberation, particle size and magnetic response control the route.<\/div>\r\n<div class=\"duty\"><b>Heavy Mineral Sand Separation<\/b>Stage ilmenite and associated heavy minerals by their different physical and magnetic properties.<\/div>\r\n<div class=\"duty\"><b>Titanium Tailings Recovery<\/b>Evaluate whether remaining fine titanium-bearing material can be pre-concentrated before further beneficiation.<\/div>\r\n<\/div>\r\n<\/div><\/section>\r\n<section><div class=\"wrap\">\r\n<p class=\"kicker\">Selection Guide<\/p>\r\n<h2>Choosing Magnetic Separation Equipment for Titanium Ore<\/h2>\r\n<p class=\"sublead\">Start with your ore type and separation target, then choose the most suitable magnetic separator. Understanding the material characteristics helps avoid selecting equipment that does not match the application requirement.<\/p>\r\n<div class=\"decision-table-wrap\"><table class=\"decision-table\"><thead><tr><th>Ore \/ Feed<\/th><th>Main Target<\/th><th>Role of Magnetic Separation<\/th><th>Likely Next Step<\/th><\/tr><\/thead><tbody>\r\n<tr><td><strong>Titanomagnetite-bearing hard rock<\/strong><\/td><td>Magnetite \/ titanomagnetite<\/td><td>Remove or recover the strongly magnetic fraction<\/td><td>Review dry or wet magnetic route from the real feed condition<\/td><\/tr>\r\n<tr><td><strong>Ilmenite-bearing concentrate<\/strong><\/td><td>Ilmenite<\/td><td>Recover a weaker-magnetic fraction<\/td><td>Check liberation and magnetic response before equipment approval<\/td><\/tr>\r\n<tr><td><strong>Heavy mineral sand<\/strong><\/td><td>Ilmenite plus associated heavy minerals<\/td><td>Stage mineral fractions by magnetic response<\/td><td>Coordinate magnetic separation with gravity and other physical separation stages<\/td><\/tr>\r\n<tr><td><strong>Fine titanium tailings<\/strong><\/td><td>Fine ilmenite \/ titanium-bearing minerals<\/td><td>Pre-concentrate a recoverable fraction if the material responds<\/td><td>Classification, desliming and representative material testing<\/td><\/tr>\r\n<tr><td><strong>Rutile-bearing titanium feed<\/strong><\/td><td>Magnetic iron-bearing impurities or associated minerals<\/td><td>Remove magnetic minerals rather than assume rutile is the captured product<\/td><td>Review mineralogy and the downstream beneficiation route<\/td><\/tr>\r\n<\/tbody><\/table><\/div>\r\n<\/div><\/section>\r\n<section class=\"section-blue\"><div class=\"wrap\">\r\n<p class=\"kicker\">Mineral Response<\/p>\r\n<h2>Can Magnetic Separation Recover Your Titanium Mineral?<\/h2>\r\n<div class=\"answer-box\"><strong>Short answer:<\/strong> magnetite is strongly magnetic, titanomagnetite response depends on composition, ilmenite is a weaker magnetic target, and rutile is generally treated as the non-magnetic or less-magnetic product in conventional magnetic-separation decisions. The final <a href=\"https:\/\/www.corvelanmag.com\/magnetic-separator-selection-guide\/\">magnetic separator selection<\/a> depends on the actual ore characteristics and required product quality.<\/div>\r\n<div class=\"mineral-grid\">\r\n<div class=\"mineral\"><span class=\"level\">Strong response<\/span><h3>Magnetite<\/h3><p>Usually the easiest titanium-ore-associated magnetic fraction to remove or recover. Working distance, burden depth and feed presentation still affect practical capture.<\/p><\/div>\r\n<div class=\"mineral\"><span class=\"level\">Composition dependent<\/span><h3>Titanomagnetite<\/h3><p>Often treated earlier in the flowsheet than direct ilmenite upgrading. Its real response should be interpreted with the mineralogy rather than the name alone.<\/p><\/div>\r\n<div class=\"mineral\"><span class=\"level\">Weaker magnetic target<\/span><h3>Ilmenite<\/h3><p>Direct recovery may require stronger field gradient or another separator class. Liberation and representative material response are critical selection inputs.<\/p><\/div>\r\n<div class=\"mineral\"><span class=\"level\">Usually not the captured fraction<\/span><h3>Rutile<\/h3><p>Magnetic separation is commonly used to remove or stage accompanying magnetic minerals so the rutile-bearing fraction can continue to the next beneficiation step.<\/p><\/div>\r\n<\/div>\r\n<\/div><\/section>\r\n<section><div class=\"wrap\">\r\n<p class=\"kicker\">Process Integration<\/p>\r\n<h2>Where Corvelan Magnetic Equipment Fits in the Titanium Beneficiation Flowsheet<\/h2>\r\n<p class=\"sublead\">The following examples show common titanium ore magnetic separation applications. Actual equipment selection depends on the ore characteristics, feed conditions and required separation results.<\/p>\r\n<div class=\"flow-list\">\r\n<div class=\"flow-row\"><div class=\"flow-name\">Hard-Rock Titanomagnetite \/ Ilmenite Ore<\/div><div class=\"flow-steps\"><span class=\"flow-step\">Crushing<\/span><span class=\"arrow\">\u2192<\/span><span class=\"flow-step\">Grinding<\/span><span class=\"arrow\">\u2192<\/span><span class=\"flow-step\">Classification<\/span><span class=\"arrow\">\u2192<\/span><span class=\"flow-step\">Strong Magnetic Fraction Separation<\/span><span class=\"arrow\">\u2192<\/span><span class=\"flow-step\">Titanium Fraction Treatment<\/span><span class=\"arrow\">\u2192<\/span><span class=\"flow-step\">Further Beneficiation<\/span><\/div><\/div>\r\n<div class=\"flow-row\"><div class=\"flow-name\">Ilmenite Concentrate Upgrading<\/div><div class=\"flow-steps\"><span class=\"flow-step\">Pre-Concentration<\/span><span class=\"arrow\">\u2192<\/span><span class=\"flow-step\">Magnetic Response Assessment<\/span><span class=\"arrow\">\u2192<\/span><span class=\"flow-step\">Magnetic Separation<\/span><span class=\"arrow\">\u2192<\/span><span class=\"flow-step\">Cleaning \/ Further Beneficiation<\/span><\/div><\/div>\r\n<div class=\"flow-row\"><div class=\"flow-name\">Heavy Mineral Sand<\/div><div class=\"flow-steps\"><span class=\"flow-step\">Washing \/ Screening<\/span><span class=\"arrow\">\u2192<\/span><span class=\"flow-step\">Gravity Concentration<\/span><span class=\"arrow\">\u2192<\/span><span class=\"flow-step\">Drying if Required<\/span><span class=\"arrow\">\u2192<\/span><span class=\"flow-step\">Magnetic Separation<\/span><span class=\"arrow\">\u2192<\/span><span class=\"flow-step\">Further Physical Separation<\/span><\/div><\/div>\r\n<div class=\"flow-row\"><div class=\"flow-name\">Fine Titanium Tailings<\/div><div class=\"flow-steps\"><span class=\"flow-step\">Classification \/ Desliming<\/span><span class=\"arrow\">\u2192<\/span><span class=\"flow-step\">Magnetic Test<\/span><span class=\"arrow\">\u2192<\/span><span class=\"flow-step\">Magnetic Pre-Concentration<\/span><span class=\"arrow\">\u2192<\/span><span class=\"flow-step\">Further Beneficiation<\/span><\/div><\/div>\r\n<\/div>\r\n<div class=\"boundary\"><strong>Selection tip:<\/strong> magnetic separation should be treated as one stage inside the beneficiation flowsheet. The correct question is not \u201cWhich magnetic separator is strongest?\u201d but \u201cWhich fraction must move at this process position, and what does the representative material do under controlled conditions?\u201d<\/div>\r\n<\/div><\/section>\r\n<section class=\"dark\"><div class=\"wrap\">\r\n<p class=\"kicker\">Material Testing<\/p>\r\n<h2>Test the Titanium Ore Before Freezing the Equipment Specification<\/h2>\r\n<p class=\"sublead\">Not sure whether the ilmenite is responsive enough for the proposed magnetic route? A representative ore test helps confirm whether the selected magnetic separation method matches the material before choosing the final equipment configuration.<\/p>\r\n<div class=\"test-route\">\r\n<div class=\"test-step\"><span class=\"n\">01<\/span><b>Set the Required Separation Result<\/b><span class=\"mini\">Removal, recovery, pre-concentration or product cleaning.<\/span><\/div>\r\n<div class=\"test-step\"><span class=\"n\">02<\/span><b>Describe the Sample<\/b><span class=\"mini\">Ore source, mineralogy, PSD, moisture or slurry condition.<\/span><\/div>\r\n<div class=\"test-step\"><span class=\"n\">03<\/span><b>Lock Test Conditions<\/b><span class=\"mini\">Feed condition, separator setting and measurement method.<\/span><\/div>\r\n<div class=\"test-step\"><span class=\"n\">04<\/span><b>Run the Trial<\/b><span class=\"mini\">Collect magnetic and non-magnetic fractions under recorded conditions.<\/span><\/div>\r\n<div class=\"test-step\"><span class=\"n\">05<\/span><b>Evaluate the Fractions<\/b><span class=\"mini\">Use the agreed analysis or acceptance metric where available.<\/span><\/div>\r\n<div class=\"test-step\"><span class=\"n\">06<\/span><b>Choose the Next Test or Equipment Option<\/b><span class=\"mini\">We recommend suitable equipment, further material testing or another separation method based on the test result.<\/span><\/div>\r\n<\/div>\r\n<div class=\"validation\">\r\n<div class=\"card\"><h3>Check Equipment Fit<\/h3><p>Checks the agreed geometry, interfaces, access and mechanical scope. It does not prove mineral recovery.<\/p><\/div>\r\n<div class=\"card\"><h3>Check Magnetic Performance<\/h3><p>Checks magnetic condition at defined points and measurement conditions. It does not equal moving-ore performance.<\/p><\/div>\r\n<div class=\"card\"><h3>Test the Ore Sample<\/h3><p>Checks the representative material split under recorded test conditions. The conclusion stays within that sample and test window.<\/p><\/div>\r\n<\/div>\r\n<div class=\"test-cta\"><div><h3>Have Representative Titanium Ore, Concentrate or Tailings?<\/h3><p>Send the sample description, particle-size range, existing process position and the decision the test needs to support.<\/p><\/div><a class=\"cta\" href=\"\/contact-us\/\">Request Material Testing<\/a><\/div>\r\n<\/div><\/section>\r\n<section><div class=\"wrap\">\r\n<p class=\"kicker\">Magnetic Separator Solutions for Titanium Ore<\/p>\r\n<h2>Match the Magnetic Separation Stage to a Confirmed Equipment Capability<\/h2>\r\n<p>Corvelan publicly confirms engineered <a class=\"text-link\" href=\"\/product\/magnetic-drum-separator\/\">magnetic drum separators<\/a> with dry and dedicated wet process routes, Ferrite or NdFeB magnetic systems, application-specific magnetic circuits, discharge arrangements and line-specific mechanical interfaces.<\/p>\r\n<div class=\"fit-strip\">\r\n<div class=\"card\"><h3>When a Corvelan Magnetic Drum May Be Suitable<\/h3><div class=\"fit-list\"><div class=\"fit-item\"><span class=\"check\">\u2713<\/span><div><strong>Dry mineral feed:<\/strong> where a controlled bulk feed and magnetic drum position fit the process objective.<\/div><\/div><div class=\"fit-item\"><span class=\"check\">\u2713<\/span><div><strong>Dedicated wet duty:<\/strong> where the slurry route, tank, flow path and magnetic discharge are engineered for the process.<\/div><\/div><div class=\"fit-item\"><span class=\"check\">\u2713<\/span><div><strong>Strongly responsive fraction:<\/strong> magnetite, titanomagnetite or ferrous contamination when working distance and feed presentation are compatible.<\/div><\/div><div class=\"fit-item\"><span class=\"check\">\u2713<\/span><div><strong>Custom integration:<\/strong> feed, splitter, outlets, drive, access and mounting around the approved line interface.<\/div><\/div><\/div><\/div>\r\n<div class=\"card\"><h3>When a Different Magnetic Separation Route Is More Appropriate<\/h3><div class=\"fit-list\"><div class=\"fit-item\"><span class=\"review\">!<\/span><div><strong>Weak direct ilmenite response:<\/strong> evaluate whether another separator class is required instead of forcing a conventional drum into the duty.<\/div><\/div><div class=\"fit-item\"><span class=\"review\">!<\/span><div><strong>Ultrafine or slimed feed:<\/strong> classification, desliming or another separator principle may control the outcome.<\/div><\/div><div class=\"fit-item\"><span class=\"review\">!<\/span><div><strong>Insufficient liberation:<\/strong> grinding and classification may matter more than increasing magnetic strength.<\/div><\/div><div class=\"fit-item\"><span class=\"review\">!<\/span><div><strong>Complex multi-mineral product:<\/strong> coordinate the magnetic stage with gravity, flotation, electrostatic or other downstream beneficiation as required by the mineralogy.<\/div><\/div><\/div><\/div>\r\n<\/div>\r\n<figure class=\"content-media\"><img loading=\"lazy\" alt=\"Conceptual magnetic drum separator showing drive, drum and discharge structure\" decoding=\"async\" height=\"900\" loading=\"lazy\" src=\"\/wp-content\/uploads\/2026\/09\/magnetic-drum-mechanical-structure-20260907-075002.webp\" width=\"1200\"\/><\/figure><\/div><\/section>\r\n<section class=\"section-soft\"><div class=\"wrap\">\r\n<p class=\"kicker\">Equipment Principle<\/p>\r\n<h2>How a Magnetic Drum Separates a Responsive Mineral Fraction<\/h2>\r\n<p class=\"sublead\">For a drum application, feed presentation, magnetic capture and discharge trajectories must work as one system.<\/p>\r\n<div class=\"grid-4\" style=\"margin-top:26px\">\r\n<div class=\"card\"><h3>1. Feed Presentation<\/h3><p>Material enters the magnetic separation area through a suitable feed arrangement designed for stable separation.<\/p><\/div>\r\n<div class=\"card\"><h3>2. Magnetic Capture<\/h3><p>Responsive particles experience magnetic force through the real working distance.<\/p><\/div>\r\n<div class=\"card\"><h3>3. Different Trajectories<\/h3><p>Magnetic and less-responsive particles follow different paths around the drum.<\/p><\/div>\r\n<div class=\"card\"><h3>4. Separate Discharge<\/h3><p>The splitter and discharge geometry divide the actual particle trajectories into separate products.<\/p><\/div>\r\n<\/div>\r\n<p style=\"margin-top:20px\">For detailed drum construction and configuration, see the <a class=\"text-link\" href=\"\/product\/magnetic-drum-separator\/\">Magnetic Drum Separator<\/a> page.<\/p>\r\n<figure class=\"content-media\"><img loading=\"lazy\" alt=\"Conceptual magnetic drum separator illustrating mineral feed and separated discharge\" decoding=\"async\" height=\"900\" loading=\"lazy\" src=\"\/wp-content\/uploads\/2026\/09\/magnetic-drum-mineral-feed-discharge-20260907-075003.webp\" width=\"1200\"\/><\/figure><\/div><\/section>\r\n<section><div class=\"wrap\">\r\n<p class=\"kicker\">Liberation<\/p>\r\n<h2>Why Liberation Size Can Matter More Than a Higher Magnetic Field<\/h2>\r\n<div class=\"answer-box\"><strong>Quick answer:<\/strong> magnetic separation acts on particles. If ilmenite is still locked with gangue, a stronger magnetic circuit cannot physically separate mineral phases that have not been liberated.<\/div>\r\n<div class=\"grid-3\" style=\"margin-top:26px\">\r\n<div class=\"card liberation\"><h3>Fully Liberated Particle<\/h3><p>A separate titanium-bearing particle has a better basis for selective response and a cleaner product split.<\/p><\/div>\r\n<div class=\"card liberation\"><h3>Locked Particle<\/h3><p>Ilmenite attached to gangue can report as a composite particle, reducing either recovery or product quality depending on where it goes.<\/p><\/div>\r\n<div class=\"card liberation\"><h3>Ultrafine Particle<\/h3><p>At very fine sizes, slime, fluid effects, entrainment and unstable presentation can become as important as nominal magnetic strength.<\/p><\/div>\r\n<\/div>\r\n<\/div><\/section>\r\n<section class=\"section-blue\"><div class=\"wrap\">\r\n<p class=\"kicker\">Feed Condition<\/p>\r\n<h2>Dry or Wet Magnetic Separation for Titanium Ore?<\/h2>\r\n<div class=\"answer-box\"><strong>Short answer:<\/strong> use the existing material state and beneficiation circuit as the starting point. <a href=\"https:\/\/www.corvelanmag.com\/product\/magnetic-roller-separator\/\">Dry separation<\/a> depends strongly on moisture, feed presentation and particle behavior; wet separation depends on slurry concentration, flow, classification and tank\/discharge conditions.<\/div>\r\n<div class=\"choice\">\r\n<div class=\"card\"><h3>Dry Route<\/h3><p>Review moisture, flowability, burden depth, feed distribution, dust, abrasion and the available working distance. A <a class=\"text-link\" href=\"\/product\/dry-drum-magnetic-separator\/\">dry magnetic drum<\/a> is only useful when the real feed can be presented consistently to the active zone.<\/p><\/div>\r\n<div class=\"card\"><h3>Wet Route<\/h3><p>Review solids concentration, particle size, volumetric flow, classification, tank geometry and magnetic discharge. A dedicated <a class=\"text-link\" href=\"\/product\/wet-drum-magnetic-separator\/\">wet drum<\/a> should be configured as part of the slurry circuit rather than treated as a dry drum placed in water.<\/p><\/div>\r\n<\/div>\r\n<\/div><\/section>\r\n<section><div class=\"wrap\">\r\n<p class=\"kicker\">Process Performance<\/p>\r\n<h2>What Controls Titanium Ore Magnetic Separation Performance?<\/h2>\r\n<p class=\"sublead\">Separation performance depends not only on the magnetic separator itself, but also on the ore characteristics and feed conditions.<\/p>\r\n<div class=\"performance-grid\">\r\n<div class=\"spec\"><b>Mineral Magnetic Response<\/b>Determines whether the proposed magnetic route is physically realistic for the target fraction.<\/div>\r\n<div class=\"spec\"><b>Liberation<\/b>Locked mineral cannot be selectively separated simply by increasing the magnetic specification.<\/div>\r\n<div class=\"spec\"><b>Particle Size<\/b>Changes magnetic-force balance, trajectory and how consistently the feed can be presented.<\/div>\r\n<div class=\"spec\"><b>Feed Layer \/ Slurry Condition<\/b>Changes working distance, particle interaction and the stability of the separation zone.<\/div>\r\n<div class=\"spec\"><b>Field Strength &amp; Gradient<\/b>Influence magnetic force on responsive particles, but they do not independently guarantee recovery.<\/div>\r\n<div class=\"spec\"><b>Residence Time &amp; Discharge Geometry<\/b>Influence where captured and less-responsive fractions finally report.<\/div>\r\n<\/div>\r\n<\/div><\/section>\r\n<section class=\"section-soft\"><div class=\"wrap\">\r\n<p class=\"kicker\">Magnetic Specification<\/p>\r\n<h2>How to Specify Magnetic Performance for Ilmenite Separation<\/h2>\r\n<div class=\"answer-box\"><strong>Quick answer:<\/strong> Gauss is only one factor in magnetic separator selection and does not determine separation performance alone. Other factors such as working distance, magnetic gradient, mineral response and material conditions also affect the final result.<\/div>\r\n<div class=\"gauss-grid\">\r\n<div class=\"metric\"><b>Field Strength<\/b>Magnetic flux density at a stated measurement point.<\/div>\r\n<div class=\"metric\"><b>Field Gradient<\/b>How rapidly the field changes through the separation zone.<\/div>\r\n<div class=\"metric\"><b>Working Distance<\/b>The real gap between the target particle and magnetic source.<\/div>\r\n<div class=\"metric\"><b>Mineral Response<\/b>The actual behavior of the target mineral assemblage.<\/div>\r\n<div class=\"metric\"><b>Particle Motion<\/b>Exposure time, feed trajectory and discharge path.<\/div>\r\n<\/div>\r\n<\/div><\/section>\r\n<section><div class=\"wrap\">\r\n<p class=\"kicker\">Plant Integration<\/p>\r\n<h2>Fit the Separator Into the Existing Titanium Beneficiation Line<\/h2>\r\n<p class=\"sublead\">To recommend the right magnetic separator, we need more than the capacity requirement. Please provide the upstream equipment, downstream handling requirements and installation conditions.<\/p>\r\n<div class=\"install-grid\">\r\n<div class=\"install\"><b>Upstream Equipment<\/b>Crusher, screen, mill, classifier, spiral, conveyor or other equipment immediately before the magnetic stage.<\/div>\r\n<div class=\"install\"><b>Feed Interface<\/b>Feed direction, elevation, chute or pipe size, distribution and normal\/peak condition.<\/div>\r\n<div class=\"install\"><b>Product Discharge<\/b>Required magnetic and non-magnetic outlet locations, drop height and downstream product handling.<\/div>\r\n<div class=\"install\"><b>Downstream Equipment<\/b>Flotation, electrostatic separation, dewatering, concentrate handling or other following process stage.<\/div>\r\n<div class=\"install\"><b>Mechanical \/ Controls<\/b>Footprint, support, maintenance access, lifting route, drive, speed control and project-specific interfaces.<\/div>\r\n<\/div>\r\n<\/div><\/section>\r\n<section class=\"section-blue\"><div class=\"wrap\">\r\n<p class=\"kicker\">Why Corvelan<\/p>\r\n<h2>Why Choose Corvelan Magnetic Separators for Titanium Ore Applications<\/h2>\r\n<p class=\"sublead\">For your titanium ore project, we check the ore, equipment design, test method and plant connections together before recommending a separator.<\/p>\r\n<div class=\"evidence-grid\">\r\n<div class=\"evidence\"><b>Material Testing<\/b>Use representative ore, concentrate or tailings to evaluate the decision that cannot be resolved responsibly from a catalog specification alone.<\/div>\r\n<div class=\"evidence\"><b>Equipment Manufacturing<\/b>Configure confirmed dry or dedicated wet magnetic drum construction, magnetic system and mechanical interfaces around the approved duty.<\/div>\r\n<div class=\"evidence\"><b>Inspection &amp; Acceptance<\/b>Keep drawing checks, magnetic measurements and material performance evidence separate so each result supports the correct decision.<\/div>\r\n<\/div>\r\n<div class=\"why-grid\">\r\n<div class=\"why\"><b>Application-First Selection<\/b>Start with the material, target fraction and flowsheet position rather than a catalog model.<\/div>\r\n<div class=\"why\"><b>Material Testing Route<\/b>Use representative testing when magnetic response or process performance is uncertain.<\/div>\r\n<div class=\"why\"><b>Custom Interfaces<\/b>Configure feed, discharge, splitter, access and mounting around the approved plant layout.<\/div>\r\n<div class=\"why\"><b>Defined Acceptance<\/b>Use an acceptance method that matches what the project actually needs to verify.<\/div>\r\n<div class=\"why\"><b>When a Different Separator Is Needed<\/b>Do not present a conventional drum as a universal answer when the ore points to another separation route.<\/div>\r\n<\/div>\r\n<div class=\"links\"><a class=\"text-link\" href=\"\/about-us\/\">About Corvelan<\/a><a class=\"text-link\" href=\"\/quality-control\/\">Quality Control<\/a><a class=\"text-link\" href=\"\/product\/magnetic-drum-separator\/\">Magnetic Drum Separator<\/a><\/div>\r\n<figure class=\"content-media\"><img loading=\"lazy\" alt=\"Conceptual completed magnetic separator configuration for project engineering review\" decoding=\"async\" height=\"900\" loading=\"lazy\" src=\"\/wp-content\/uploads\/2026\/09\/magnetic-separator-project-configuration-20260907-075004.webp\" width=\"1200\"\/><\/figure><\/div><\/section>\r\n<section class=\"section-soft\"><div class=\"wrap\">\r\n<p class=\"kicker\">RFQ Checklist<\/p>\r\n<h2>Send These 9 Details to Select the Right Titanium Ore Magnetic Separator<\/h2>\r\n<p class=\"sublead\">You do not need to select the drum diameter, magnet grade or headline Gauss value before contacting us. Send the material and application information needed to recommend the right magnetic separator.<\/p>\r\n<div class=\"rfq\">\r\n<div class=\"rfq-item\"><b>1. Ore Type \/ Source<\/b>Hard rock, placer, concentrate, heavy mineral sand or tailings.<\/div>\r\n<div class=\"rfq-item\"><b>2. Assay \/ Mineralogy<\/b>TiO\u2082, total iron, XRF\/XRD or other mineralogical information if available.<\/div>\r\n<div class=\"rfq-item\"><b>3. Target Mineral \/ Contaminant<\/b>Magnetite, titanomagnetite, ilmenite, tramp iron or another defined fraction.<\/div>\r\n<div class=\"rfq-item\"><b>4. Particle Size<\/b>Feed PSD and any known liberation information.<\/div>\r\n<div class=\"rfq-item\"><b>5. Feed Condition<\/b>Dry moisture condition or slurry concentration\/flow information.<\/div>\r\n<div class=\"rfq-item\"><b>6. Capacity<\/b>Normal and peak feed rate tied to the stated material condition.<\/div>\r\n<div class=\"rfq-item\"><b>7. Existing Flowsheet<\/b>Upstream and downstream equipment around the proposed magnetic stage.<\/div>\r\n<div class=\"rfq-item\"><b>8. Installation Drawing<\/b>Available space, elevation, inlet\/outlet positions and maintenance constraints.<\/div>\r\n<div class=\"rfq-item\"><b>9. Required Result<\/b>Removal, recovery, grade, residual, product loss or another clearly defined acceptance target.<\/div>\r\n<\/div>\r\n<\/div><\/section>\r\n<section class=\"faq\"><div class=\"wrap\">\r\n<p class=\"kicker\">FAQ<\/p>\r\n<h2>Titanium Ore Magnetic Separator FAQ<\/h2>\r\n<details><summary>What magnetic separator is used for ilmenite?<\/summary><p>There is no single universal ilmenite separator. The correct route depends on mineral assemblage, magnetic response, particle size, liberation, dry or wet feed condition and the required product split. Strongly magnetic fractions can often be removed first, while direct ilmenite recovery may require representative testing and evaluation of a higher-intensity or higher-gradient separation class.<\/p><\/details>\r\n<details><summary>Can a permanent magnetic drum separate ilmenite?<\/summary><p>Sometimes, but not by assumption. A permanent drum can be appropriate for strongly magnetic fraction removal and selected mineral-recovery duties. Direct ilmenite recovery should be checked against the real ore, liberation, particle size, working distance and magnetic response before a conventional drum is approved.<\/p><\/details>\r\n<details><summary>Is ilmenite magnetic?<\/summary><p>Ilmenite is magnetic enough to be treated as a weaker or paramagnetic mineral in many beneficiation decisions, but it responds much less strongly than magnetite. Practical response varies with composition, intergrowth, particle size and liberation, so the actual ore should control separator selection.<\/p><\/details>\r\n<details><summary>Can magnetic separation recover rutile?<\/summary><p>Rutile is not normally the mineral directly captured by conventional magnetic separation. In rutile-bearing feeds, magnetic separation is more commonly used to remove or stage accompanying magnetic minerals so the non-magnetic or less-magnetic fraction can be treated by the next beneficiation step.<\/p><\/details>\r\n<details><summary>Should magnetite be removed before ilmenite recovery?<\/summary><p>In many titanium-bearing ores, removing a strongly magnetic magnetite or titanomagnetite fraction first can simplify downstream treatment of the titanium-bearing fraction. The exact sequence still depends on mineralogy, liberation and the required concentrate and tailings products.<\/p><\/details>\r\n<details><summary>Is dry or wet magnetic separation better for titanium ore?<\/summary><p>Neither route is universally better. Dry separation depends heavily on moisture, feed presentation, burden depth and particle behavior. Wet separation depends on slurry concentration, flow, classification, tank geometry and magnetic discharge. Start from the existing beneficiation circuit and real feed condition.<\/p><\/details>\r\n<details><summary>Does higher Gauss mean higher ilmenite recovery?<\/summary><p>No. Gauss describes magnetic flux density at a defined measurement point. Recovery also depends on field gradient, working distance, mineral response, liberation, particle size, feed presentation, residence time, discharge geometry and the test method.<\/p><\/details>\r\n<details><summary>Why does liberation size matter in titanium ore magnetic separation?<\/summary><p>Magnetic separation acts on particles, not theoretical mineral phases. If ilmenite remains locked with gangue, a composite particle may report to the wrong product or reduce concentrate quality. Grinding and classification may therefore matter more than simply increasing magnetic strength.<\/p><\/details>\r\n<details><summary>What information is needed to select a titanium ore magnetic separator?<\/summary><p>Provide the ore type and source, assay or mineralogy if available, target mineral or contaminant, particle-size distribution, feed condition, normal and peak capacity, existing flowsheet, installation drawing or available space, and the result you need the separation stage to achieve.<\/p><\/details>\r\n<details><summary>Can Corvelan test my titanium ore before equipment selection?<\/summary><p>Corvelan offers magnetic separation material testing when the real material response or process result cannot be judged responsibly from a catalog specification alone. The representative sample, test question, acceptance metric and operating conditions should be defined before the result is used for the next equipment decision.<\/p><\/details>\r\n<\/div><\/section>\r\n<section><div class=\"wrap\">\r\n<div class=\"final-cta\"><p class=\"eyebrow\">Titanium Ore Separation Review<\/p><h2>Send Your Ore Analysis, Flowsheet and Capacity<\/h2><p>We will help evaluate your titanium ore application, recommend suitable magnetic separator options and confirm the information needed for quotation.<\/p><a class=\"cta\" href=\"\/contact-us\/\">Request Titanium Ore Separation Review<\/a><\/div>\r\n<\/div><\/section>\r\n<script type=\"application\/ld+json\">{\"@context\":\"https:\/\/schema.org\",\"@type\":\"WebPage\",\"name\":\"Titanium Ore Magnetic Separator for Ilmenite Separation\",\"description\":\"Application and equipment-selection guidance for titanium ore magnetic separation, including ilmenite, titanomagnetite, heavy mineral sand, titanium tailings, material testing and plant integration.\",\"publisher\":{\"@type\":\"Organization\",\"name\":\"Coverlan\",\"url\":\"\/\"}}<\/script>\r\n<script type=\"application\/ld+json\">{\"@context\":\"https:\/\/schema.org\",\"@type\":\"BreadcrumbList\",\"itemListElement\":[{\"@type\":\"ListItem\",\"position\":1,\"name\":\"Home\",\"item\":\"\/\"},{\"@type\":\"ListItem\",\"position\":2,\"name\":\"Titanium Ore Magnetic Separator for Ilmenite Separation\"}]}<\/script>\r\n<script type=\"application\/ld+json\">{\"@context\":\"https:\/\/schema.org\",\"@type\":\"Service\",\"name\":\"Titanium Ore Magnetic Separation Engineering and Equipment Configuration\",\"serviceType\":\"Titanium ore magnetic separation review, material testing and magnetic separator configuration\",\"provider\":{\"@type\":\"Organization\",\"name\":\"Coverlan\",\"url\":\"\/\"},\"description\":\"Coverlan reviews titanium-bearing ore by mineralogy, magnetic target, particle size, liberation, dry or wet feed condition, flowsheet position, line interfaces and validation requirements before configuring an appropriate magnetic separation stage within confirmed equipment capabilities.\",\"areaServed\":\"Worldwide\",\"url\":\"\/contact-us\/\"}<\/script>\r\n<script type=\"application\/ld+json\">{\"@context\":\"https:\/\/schema.org\",\"@type\":\"FAQPage\",\"mainEntity\":[{\"@type\":\"Question\",\"name\":\"What magnetic separator is used for ilmenite?\",\"acceptedAnswer\":{\"@type\":\"Answer\",\"text\":\"There is no single universal ilmenite separator. The correct route depends on mineral assemblage, magnetic response, particle size, liberation, dry or wet feed condition and the required product split. Strongly magnetic fractions can often be removed first, while direct ilmenite recovery may require representative testing and evaluation of a higher-intensity or higher-gradient separation class.\"}},{\"@type\":\"Question\",\"name\":\"Can a permanent magnetic drum separate ilmenite?\",\"acceptedAnswer\":{\"@type\":\"Answer\",\"text\":\"Sometimes, but not by assumption. A permanent drum can be appropriate for strongly magnetic fraction removal and selected mineral-recovery duties. Direct ilmenite recovery should be checked against the real ore, liberation, particle size, working distance and magnetic response before a conventional drum is approved.\"}},{\"@type\":\"Question\",\"name\":\"Is ilmenite magnetic?\",\"acceptedAnswer\":{\"@type\":\"Answer\",\"text\":\"Ilmenite is magnetic enough to be treated as a weaker or paramagnetic mineral in many beneficiation decisions, but it responds much less strongly than magnetite. Practical response varies with composition, intergrowth, particle size and liberation, so the actual ore should control separator selection.\"}},{\"@type\":\"Question\",\"name\":\"Can magnetic separation recover rutile?\",\"acceptedAnswer\":{\"@type\":\"Answer\",\"text\":\"Rutile is not normally the mineral directly captured by conventional magnetic separation. In rutile-bearing feeds, magnetic separation is more commonly used to remove or stage accompanying magnetic minerals so the non-magnetic or less-magnetic fraction can be treated by the next beneficiation step.\"}},{\"@type\":\"Question\",\"name\":\"Should magnetite be removed before ilmenite recovery?\",\"acceptedAnswer\":{\"@type\":\"Answer\",\"text\":\"In many titanium-bearing ores, removing a strongly magnetic magnetite or titanomagnetite fraction first can simplify downstream treatment of the titanium-bearing fraction. The exact sequence still depends on mineralogy, liberation and the required concentrate and tailings products.\"}},{\"@type\":\"Question\",\"name\":\"Is dry or wet magnetic separation better for titanium ore?\",\"acceptedAnswer\":{\"@type\":\"Answer\",\"text\":\"Neither route is universally better. Dry separation depends heavily on moisture, feed presentation, burden depth and particle behavior. Wet separation depends on slurry concentration, flow, classification, tank geometry and magnetic discharge. Start from the existing beneficiation circuit and real feed condition.\"}},{\"@type\":\"Question\",\"name\":\"Does higher Gauss mean higher ilmenite recovery?\",\"acceptedAnswer\":{\"@type\":\"Answer\",\"text\":\"No. Gauss describes magnetic flux density at a defined measurement point. Recovery also depends on field gradient, working distance, mineral response, liberation, particle size, feed presentation, residence time, discharge geometry and the test method.\"}},{\"@type\":\"Question\",\"name\":\"Why does liberation size matter in titanium ore magnetic separation?\",\"acceptedAnswer\":{\"@type\":\"Answer\",\"text\":\"Magnetic separation acts on particles, not theoretical mineral phases. If ilmenite remains locked with gangue, a composite particle may report to the wrong product or reduce concentrate quality. Grinding and classification may therefore matter more than simply increasing magnetic strength.\"}},{\"@type\":\"Question\",\"name\":\"What information is needed to select a titanium ore magnetic separator?\",\"acceptedAnswer\":{\"@type\":\"Answer\",\"text\":\"Provide the ore type and source, assay or mineralogy if available, target mineral or contaminant, particle-size distribution, feed condition, normal and peak capacity, existing flowsheet, installation drawing or available space, and the result you need the separation stage to achieve.\"}},{\"@type\":\"Question\",\"name\":\"Can Coverlan test my titanium ore before equipment selection?\",\"acceptedAnswer\":{\"@type\":\"Answer\",\"text\":\"Coverlan offers magnetic separation material testing when the real material response or process result cannot be judged responsibly from a catalog specification alone. The representative sample, test question, acceptance metric and operating conditions should be defined before the result is used for the next equipment decision.\"}}]}<\/script>\r\n<\/section>\n\n\t\t\t\t<\/div>\n\t\t\n<\/div>\n\t\t<\/div>\n\t\t","protected":false},"excerpt":{"rendered":"<p>Titanium Ore &amp; Ilmenite Magnetic Separation Titanium Ore Magnetic Separation for Ilmenite &#038; Magnetic Mineral Removal Corvelan reviews titanium-bearing ore by mineralogy, magnetic response, liberation, particle size and process position to determine where magnetic separation should sit in the beneficiation flowsheet. IlmeniteTitanomagnetiteHeavy Mineral SandTitanium TailingsTramp Iron Removal Quick answer: Need to remove magnetite, titanomagnetite or [&hellip;]<\/p>\n","protected":false},"author":1,"featured_media":4049,"parent":107,"menu_order":0,"comment_status":"closed","ping_status":"closed","template":"elementor_header_footer","meta":{"_acf_changed":false,"footnotes":""},"class_list":["post-4060","page","type-page","status-publish","has-post-thumbnail","hentry"],"acf":[],"_links":{"self":[{"href":"https:\/\/www.corvelanmag.com\/fr\/wp-json\/wp\/v2\/pages\/4060","targetHints":{"allow":["GET"]}}],"collection":[{"href":"https:\/\/www.corvelanmag.com\/fr\/wp-json\/wp\/v2\/pages"}],"about":[{"href":"https:\/\/www.corvelanmag.com\/fr\/wp-json\/wp\/v2\/types\/page"}],"author":[{"embeddable":true,"href":"https:\/\/www.corvelanmag.com\/fr\/wp-json\/wp\/v2\/users\/1"}],"replies":[{"embeddable":true,"href":"https:\/\/www.corvelanmag.com\/fr\/wp-json\/wp\/v2\/comments?post=4060"}],"version-history":[{"count":5,"href":"https:\/\/www.corvelanmag.com\/fr\/wp-json\/wp\/v2\/pages\/4060\/revisions"}],"predecessor-version":[{"id":5297,"href":"https:\/\/www.corvelanmag.com\/fr\/wp-json\/wp\/v2\/pages\/4060\/revisions\/5297"}],"up":[{"embeddable":true,"href":"https:\/\/www.corvelanmag.com\/fr\/wp-json\/wp\/v2\/pages\/107"}],"wp:featuredmedia":[{"embeddable":true,"href":"https:\/\/www.corvelanmag.com\/fr\/wp-json\/wp\/v2\/media\/4049"}],"wp:attachment":[{"href":"https:\/\/www.corvelanmag.com\/fr\/wp-json\/wp\/v2\/media?parent=4060"}],"curies":[{"name":"wp","href":"https:\/\/api.w.org\/{rel}","templated":true}]}}