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egypt kaolin high magnetic seperator

 — A team consisting of Aquafine, Sumitomo Electric and DuPont has performed a successful magnetic separation for removal of mineral contaminants from kaolin, a white clay used extensively in...

Features. Smaller, lighter and more compact than any other WHIMS of comparable capacity. Ideal for floating concentration plants, lighter machine means less buoyancy required. 16 pole units are transportable fully assembled to any location – excluding distributor and product collection launders.

 — The cyclic pilot-scale SPHGMS separator has achieved significantly improved purification performance for ultrafine kaolin and effective separation for low-grade chalcopyrite, as a result of the high magnetic induction and pulsation available in …

The amenability of using magnetic separation for removing the iron oxide and titanium oxide impurities from the Egyptian Kaolin has been studied. Different variables affecting of magnetic separation process such as solid percent, magnetic field, matrix loading capacity, and retention time were studied.

 — An innovative dry vibrating high gradient magnetic separation (HGMS) method was developed for the purification of non-metallic ores, and the effect of key variables, i.e., magnetic induction, rotation speed of ring, vibrating amplitude and frequency of ring on the separation performance of a full-scale dry vibrating HGMS separator in …

 — The amenability of using magnetic separation for removing the iron oxide and titanium oxide impurities from the Egyptian Kaolin has been studied. Different variables affecting of magnetic...

Results showed that the whiteness of kaolin was improved through the application of wet high intensity magnetic separation technique, as in a laboratory scale, about 48 % by weight of a non magnetic fraction of kaolin with 0.7% TiO2 and 0.55% Fe2O3 was obtained.

The amenability of using magnetic separation for removing the iron oxide and titanium oxide impurities from the Egyptian Kaolin has been studied. Different variables affecting of magnetic separation process such as solid percent, magnetic field, matrix loading capacity, and retention time were studied.

Raw low-grade kaolin sample from the Sinai Peninsula in Egypt was physically and thermally treated using magnetic separation and calcination process at 700°C for 120 minutes, respectively, to produce calcined kaolin.

Since its development by the kaolin industry in 1969, use of magnetic separation in the production of kaolin clay remains the principal industrial application of large high-field magnets....

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