Ion exchange resins are used in hydrometallurgy industry for the extraction, separation, and purification of precious metals, rare metals, rare earth metals, uranium, and other metals. They can enrich and adsorb metal ions from dilute solutions through ion exchange reactions, making them particularly suitable for extracting and separating metals from low-grade mineral leachates or slurries.
Haipu’s products cover the entire hydrometallurgical process, including leaching, purification, and electrolysis. They can be used in the front-end leaching liquor purification and metal extraction, the mid-stage purification process to handle polluting factors, and the tail-end environmental protection treatment, acid separation, and solvent recovery. Specific applications of Haipu adsorption resins include the adsorption and recovery of metals such as copper, tungsten, gallium, gold, silver, molybdenum, and vanadium, as well as the adsorption and removal of impurity ions such as manganese, calcium, magnesium, and fluoride, achieving the concentration and enrichment of low-concentration metals or ions for subsequent recovery or processing.
Haipu can develop customized resin products for hydrometallurgy customers. Using adsorption materials as the core, we further design and integrate advanced supporting systems such as simulated moving beds and continuous ion exchange systems to provide a comprehensive and efficient solution.
With high specific surface area, small particle size, and nano-porous uniform adsorbents, the ultra-strong adsorption and exchange rate can achieve deep removal of pollutants in production liquor and wastewater, reaching a processing accuracy of ppt level and above.
High adsorption capacity. The exchange capacity of special chelating materials is ~10% higher than similar materials on the market, resulting in low system operating costs.
High concentration ratio. Ion exchange and adsorption resins can separate and enrich metal ions from dilute solutions. Their high exchange capacity and multi-stage desorption cycle application can achieve the purpose of enriching and concentrating specific elements. The concentration of precious metal eluate is high, facilitating subsequent recovery and utilization.
Selective adsorption of mixed metal ions in solution can be achieved through material design, especially suitable for extracting target elements from low-grade mineral leachates. Compared with traditional solvent extraction and chemical separation, it has the advantages of low cost and high yield.
Classification | Applications | Recommended Product Model | Typical Application Scenarios |
Extraction of high-value metal elements | Zinc extraction, copper extraction | HP4070 HP686 HP705 | Electrolyte copper recovery, copper-containing acidic wastewater from mines involving resin adsorption of copper/resin adsorption of zinc |
Lithium extraction | HPL170 HPL170 series | Lithium extraction from salt lake brine, lithium extraction from spent lithium-bearing mother liquor | |
Rhenium extraction | HP115 | Recovery of rhenium from copper smelting waste acid using ion exchange resin | |
Extraction of vanadium, molybdenum, tungsten, antimony, and bismuth | HP1053 HP129 | Filtered water from the treatment of mineral smelting wastewater | |
Gallium extraction | HP5118 HP890 HP51118 HP890 | Gallium extraction from alunite-containing and gallium-rich tailings obtained by flotation of copper and sulfur concentrates. (including Bayer liquor, alumina liquor, and gallium extraction from bauxite) | |
Germanium extraction | HP409 | Germanium element adsorption from coal ash leachate, enrichment and adsorption of germanium from by-product germanium-containing leachate in hydrometallurgy of ores, etc. | |
Nickel extraction | HP4030 HP686 HP709 | Nickel extraction from lateritic nickel ore, deep nickel removal from wastewater, nickel-cobalt separation, nickel extraction from acid leachate. | |
Cobalt extraction | HPC001 | Cobalt extraction from laterite nickel ore, high nickel and low cobalt; waste lithium-ion battery recycling industry. | |
Precious metal extraction | HP4080 | Cyanide leaching extraction of gold, silver, platinum, rhodium and other precious metals | |
Purification and impurity removal | Fluorine and phosphorus removal | HP2000 HP3500 HP5600 | Fluorine removal from ammonium phosphate solution, the material needs to be activated with aluminum (attention should be paid to aluminum introduction and residue), and the phosphorus loss rate is low, |
Lead and zinc removal | KF380 HP707 KF380 HP707 | Nickel solution, manganese sulfate solution, copper solution for lead and zinc removal, chloride system for lead and zinc removal, sulfate system for lead and zinc removal. | |
Silicon removal | HP4800 HP4900 | Nickel sulfate silicon removal in high-ice nickel production line | |
Calcium and magnesium removal | HP706 HP4010 | Lithium sulfate solution purification, lithium carbonate solution purification, lithium salt purification | |
Oil removal | HP1010 HP268 HP72 | Oil removal from copper sulfate and nickel sulfate extraction residue | |
Arsenic removal | HP560 HP6600 | In hydrometallurgical processes, it also involves removing harmful substances from the solution, arsenic removal from metal salt solutions, and deep arsenic removal from mine pit wastewater | |
Heavy metal removal | Iron removal | KF380 HP605 HP705 HP4050 | Recovery of ferric iron from copper extraction residue in hydrometallurgy involves selective separation using iron-adsorbing resin/acid-adsorbing resin. |
Copper recovery | HP4050 HP705 HP4050 HP705 | Copper recovery from electrolyte | |
Aluminum removal | KF380 HP606 | Aluminum removal from alkaline solution, aluminum removal from acidic solution, aluminum removal from wastewater, solution purification and aluminum removal | |
Cadmium removal | HP705 HP708 | Cadmium removal from cobalt sulfate, cadmium removal from cobalt chloride solution | |
Nickel and cobalt removal | HP705 HP4030 | Removal of nickel and cobalt using sulfuric acid and hydrochloric acid solutions | |
Antimony and bismuth removal | HP709 HP705 | Antimony and bismuth removal from copper electrolyte |
If you have any questions, please don't hesitate to contact us. We're always here to help with ion exchange resins for your business. Haipu is able to produce the product in according to your special needs.