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Optimum operating conditions for magnetic separator device

For optimum separation in Position 1 installations, provision must be made to adjust the location of the magnet to suit the trajectory of the material. For Position 1 installations with conveyor belt speeds of less than 350 fpm (107 m/min), greater separation will be achieved by using a nonmagnetic head pulley

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  • Optimizing the performance of wet drum J
    Optimizing the performance of wet drum J

    If the magnetic field strength is between 2 000 and 2 500 gauss at the drum surface then at 25 mm from the drum it will be between 1 000 and 1 500 gauss. The combination of magnetic field strength and gradient will have the greatest influence on the recovery of a magnetic particle

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  • MAGNETIC SEPARATORS
    MAGNETIC SEPARATORS

    A magnetic separator to select must be suitable for the purpose of use and ... To select such a most suitable separator, when inquiring about separators, conditions such as the purpose of use and property of materials need to be informed, as detailed below: Application (improving the grade, collecting useful magnetic substances, etc.)

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  • Rapid prototyping of Nanoroughened polydimethylsiloxane
    Rapid prototyping of Nanoroughened polydimethylsiloxane

    Upon the removal of magnetic field, these captured cells can be released from the device and collected for further analysis. Under the optimum operating conditions, the capture efficiency of tumor cells was obtained as high as ~90% with a detection limit of 10 cell per mL

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  • Multi Gravity Mozley Separator Drum - 911Metallurgist
    Multi Gravity Mozley Separator Drum - 911Metallurgist

    The MGS is suitable for the treatment of fines and ultrafines with a maximum particle size of approximately 150 m (0 .15mm) and lower limit of approximately 5 m (0.005mm). Typical applications include. the scavenging of precious metals or valuable minerals from tailings or slimes streams

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  • Separation Efficiency - an overview | ScienceDirect Topics
    Separation Efficiency - an overview | ScienceDirect Topics

    Separation efficiency is defined as the ratio of concentration that has been removed from the feed stream to the initial concentration in the feed stream, shown in Eq. (1).In every technology it is governed by the physico-chemical properties of the contaminants and operating conditions at which the process units work, PP tc.Coagulant dose, flocculation energy input and time dictate the extent

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  • Optimal conditions for efficient flow-electrode capacitive
    Optimal conditions for efficient flow-electrode capacitive

    Jun 01, 2020 It was thus concluded that the optimum conditions for FCDI operation are 1.6 V applied potential and 0.2 M initial salt concentration, under which faradaic reactions are not being triggered, and concentration polarization does not significantly affect ion transfer

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  • Operating regimes of a magnetic split-flow thin (SPLITT
    Operating regimes of a magnetic split-flow thin (SPLITT

    May 28, 2016 The separation indices assume nearly constant values (SI 1 ~ 94 % and SI 2 ~ 88 %) beyond γ ~ 3.03 10 5 A 2 m 3 /N. Separation indices of the SPLITT device for γ 3.03 10 5 A 2 m 3 /N are vulnerable to any small deviation of the operating parameters and therefore should be avoided for reliable performance of the device

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  • Development of a high gradient permanent magnetic
    Development of a high gradient permanent magnetic

    Development of a high gradient permanent magnetic separator (HGPMS) ... Test conditions The optimum process parameters for the ZCLA-U500 400 ... the limitation of plant operating conditions, the feed concentration was kept at 25% solids due to limitation of the plant operating sys-tem. During the test, a sample was taken every hour while four

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  • Modeling and Optimization of Vertical Pulsating High
    Modeling and Optimization of Vertical Pulsating High

    1.1. Vertical Ring Pulsating High Gradient Magnetic Separator (VPHGMS) The magnetic separator used in this research study is a newly (2008) designed wet high intensity Magnetic separator called Longi LGS 500 and is shown in Figure 1. The said separator has a capability to attract materials with weakly magnetic attributes [23]

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  • Simulation of a Dry Magnetic Separation Plant
    Simulation of a Dry Magnetic Separation Plant

    Oct 12, 2018 A rotating drum magnetic separator classifies the ore particles as a function of their size and magnetic susceptibility according to the operating conditions of the equipment, namely the speed of rotation of the drum, the magnetic field and the feed rate. The principle of the model is first discussed followed by the calibration procedure

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  • Computational design optimization for microfluidic
    Computational design optimization for microfluidic

    In this work, two magnetophoretic microfluidic device designs are described, with optimized dimensions and operating conditions determined from a force balance equation that considers two dominant and opposing driving forces exerted on a magnetic-particle-tagged cell, namely, magnetic and viscous drag. Quantitative design criteria for an

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  • Modeling and Global Optimization of DNA separation
    Modeling and Global Optimization of DNA separation

    The non-linear programming problem requires a model for signal spacing and signal width, which is known for many DNA separation methods. As a case study, we show how our approach is used to determine the optimal run conditions for micelle end-labeled free-solution electrophoresis and examine the trade-offs between a single capillary system and

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  • GENETIC SYNTHESIS OF NEW MAGNETIC SEPARATORS
    GENETIC SYNTHESIS OF NEW MAGNETIC SEPARATORS

    magnetic separators. The analysis of genetic information of the device for bulk material magnetic separation (Fig.2) shows that the device of this type belongs to the subfamily of translational motion magnetic separators, the Species of plain (PL) ones and is characterized by electromagnetic asymmetry both in longitudinal (x) and in transverse (y)

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  • Magnetic separation for mining industry – Magnetense
    Magnetic separation for mining industry – Magnetense

    Global Fourth-generation Vertical Ring High Gradient Magnetic separator (Oil-water complound cooling) Application: This type of magnetic separation machine is used in wet separation processes for smaller than 1,2 mm ( – 200 mesh of 30-100 %) of fine grained red mine (hematite) limonite, manganese ore, ilmenite and some kinds of weakly magnetic minerals like quartz, feldspar, nepheline ore

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  • INSTALLATION MANUAL SuSpended electromagnet
    INSTALLATION MANUAL SuSpended electromagnet

    The Self-Cleaning Suspended Electromagnet Separator offers optimum separation capacity by removing collected metal from the magnet face instantly and discharging it out of the product flow. This continuous cleaning function allows the magnetic circuit to maintain maximum magnetic strength at

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  • An optimized microfabricated platform for the optical
    An optimized microfabricated platform for the optical

    We study a wide range of operating conditions and identify the optimum conditions for 129Xe polarization and NMR signal. We maintain significant polarization during transport over 1 cm, a length scale commensurate with most microfluidic devices. We continuously operate the device for weeks without sig - nificant degradation in performance

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  • Magnetic Separation Experiment
    Magnetic Separation Experiment

    Magnetic separation is the process of removing ferrous metal contaminants from a flowing product removal of this metal contamination also known as tramp metal or tramp iron is essential in order to safeguard your product purity and also protect your processing equipment from costly damage stray nuts and bolts pieces of wire spanners or. Read More

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  • A PURPOSE ORIENTED MAGNETIC SEPARATOR: SKIMMER
    A PURPOSE ORIENTED MAGNETIC SEPARATOR: SKIMMER

    Aug 09, 2005 A magnetic separator was designed to selectively separate fine-liberated magnetite. The conceptual design was simulated using CFD techniques. A separator tank was fabricated and a magnetic drum was used to capture magnetic particles. The initial tank design was modified to eliminate application oriented problems

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  • A numerical design study of chaotic mixing of magnetic
    A numerical design study of chaotic mixing of magnetic

    Feb 27, 2007 A two-dimensional numerical investigation into the mixing of magnetic microparticles with bio-cells in a chaotic micromixer is carried out by using a multiphysics finite element analysis package. Fluid and magnetic problems are simulated in steady-state and time-dependent modes, respectively. Intensity of segregation is utilized as the main index to examine the efficiency of the

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  • AUTOMATION OF A HORIZONTAL THREE-PHASE CRUDE
    AUTOMATION OF A HORIZONTAL THREE-PHASE CRUDE

    horizontal three-phase production separator (Benitez and Olmedo, 2011). Another important work is the separation process analysis in a three-phase oil test separator to determine the separation efficiency obtained under the same operating conditions when instrumentation of different technology is used (Mi o et al., 2019)

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