Application of differential bio-flocculation in the removal of hematite and goethite from kaolin and quartz |
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Optimization of continuous air-assisted solvent extraction for treating dilute Cu leach solutions using response surface methodology |
10.1016/j.mineng.2018.11.018 |
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Desulfurization of Iron Ores Processes and Challenges |
10.1002/srin.201700568 |
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مطالعه تاثير اندازه ذرات بر رفتار ته نشيني زيستي هماتيت توسط باسيلوس ليچنيفورميس |
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Surface phenomena in air assisted solvent extraction |
10.1016/j.hydromet.2018.03.010 |
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امكانسنجي بهبود كيفيت فلدسپاتهاي استان اصفهان به منظور استفاده در صنايع كاشي و سراميك |
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Biodesulfurization of a Coarse-Grained High Sulfur Coal in a Full-Scale Packed-Bed Bioreactor |
10.4028/www.scientific.net/SSP.262.207 |
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Bioflocculation of Hematite and Goethite Using Bacillus licheniformis |
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Effects of microbial cells and their associated extracellular polymeric substances on the bio-flocculation of kaolin and quartz |
10.1016/j.clay.2017.01.002 |
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Solvent extraction of cadmium and zinc from sulphate solutions Comparison of mechanical agitation and ultrasonic irradiation |
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Separation of Cu from dilute Cu-Ni-Co bearing bioleach solutions using Solvent Extraction with Chemorex CP-150 |
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انتخاب مدار فرآوري زغالسنگ درشتدانه با استفاده از روش تاپسيس فازي |
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ارزيابي ميزان تاثير فرسايش شيميايي محلول اسيدشويي مس بر نفوذپذيري توده سنگ، به كمك روش مدلسازي شبكه درزه منفصل المان مجزا )مطالعه موردي معدن مس دره زار |
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Bioleaching of copper nickel and cobalt from the low grade sulphidic tailing of Golgohar Iron Mine Iran |
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Biological beneficiation of kaolin A review on iron removal |
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The influence of physicochemical parameters on the bioleaching of zinc sulfide concentrates using a mixed culture of moderately thermophilic microorganisms |
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Characterization and Washability of Pyrite in High Sulphur Coals from Tabas Iran |
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A Fuzzy Logic Model to Predict the Bioleaching Efficiency of Copper Concentrates in Stirred Tank Reactors |
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Optimization of heavy metal removal from aqueous solutions by maghemite (gama-Fe2O3) nanoparticles using response surface methodology |
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Biological removal of sulphur and ash from fine-grained high pyritic sulphur coals using a mixed culture of mesophilic microorganisms |
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