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Magnetic Separator for Iron Removal in Non-metallic Minerals - Quality Supplier from China Factory

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Product Introduction

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Introducing Minjie’s Magnetic Separator designed for Iron Removal in Non-metallic Minerals, a cutting-edge solution manufactured in China. This high-performance device is specifically engineered to eliminate iron impurities from materials such as quartz, feldspar, kaolin, and silica, ensuring product purity across industries including ceramics, glass, electronics, and construction materials. As a leading supplier and factory in the magnetic separation industry, we prioritize excellence and reliability.

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Our magnetic separator offers an environmentally friendly approach to mineral processing. With its efficient magnetic separation system, it significantly reduces energy consumption while maintaining stable, high-output performance. Utilizing powerful, high-gradient magnets, it can extract even the smallest iron particles, minimizing the need for additional refining processes and enhancing the utilization of raw materials.

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The fully enclosed design and automatic control system of the Minjie Magnetic Separator effectively reduce dust emissions and the need for manual labor, fostering a cleaner and safer working environment. Thanks to a reduced number of moving parts and wear-resistant components, this separator requires minimal maintenance, ensuring low operational costs and high productivity levels.

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Whether your goals are to enhance product quality, decrease environmental impact, or reduce energy expenses, Minjie delivers dependable separation performance that aligns with modern industrial and ecological standards. As one of the top suppliers and a reliable factory in China, we are committed to providing solutions that bridge sustainability and efficiency in separation.

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Choose Minjie — where sustainability meets separation efficiency, and experience the difference for your business.

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    Product features

    1
    According to the selection process and the different particle size of the selection, there are two kinds of counter-current and semi-counter-current tanks to choose from. Computer optimization design, reasonable magnetic circuit, large magnetic penetration depth, cross or flip magnetic field arrangement, more conducive to the selection of magnetic objects.
    2
    The overall structure is reliable and durable, offering low operating costs over its service life.
    3
    There are a variety of magnetic field strengths available to choose from to meet specific requirements.
    4
    Double stainless steel shell design, significantly prolonging the service life of the cylinder.

    Main technical parameters

    Model Cylinder size (mm) Cylinder surface magnetism induction strength (Gs) Processing capacity Main motor power (kW) Discharge induction roll electricity machine power (kW) Cylinder speed (r/min) Total weight (kg)
    t/h m³/h
    CTB(N)-618G 600×1800 1600-7000 7-15 ~48 3 1.5 40 1500
    CTB(N)-712G 750x 1200 7-15 ~48 4 1.5 35 1670
    CTB(N)-718G 750x1800 10-22 ~72 4 1.5 35 2100
    CTB(N)-918G 900x1800 12-22 ~90 5.5 2.2 28 2900
    CTB(N)-1018G 1050x1800 20-35 ~120 5.5 2.2 22 4000
    CTB(N)-1021G 1050x2100 22-44 ~140 7.5 2.2 22 4500
    CTB(N)-1024G 1050x 2400 26-50 ~160 7.5 2.2 22 5000
    CTB(N)-1030G 1050x3000 32-62 ~200 11 2.2 22 6300
    CTB(N)-1224G 1200x2400 40-55 ~200 11 2.2 17 6900
    CTB(N)-1230G 1200x3000 50-70 ~260 11 2.2 17 8000
    CTB(N)-1240G 1200x4000 60-90 ~350 18.5 3 17 10000
    CTB(N)-1245G 1200x4500 70-100 ~400 22 4 17 12000
    CTB(N)-1530G 1500x3000 55-80 ~320 18.5 3 14 9700
    CTB(N)-1540G 1500x 4000 80-110 ~400 22 4 14 13000

    Frequently Asked Questions

    What tank configurations are available for these magnetic separators?
    Depending on your specific selection process and the particle size of the materials, you can choose between counter-current and semi-counter-current tanks to optimize separation efficiency.
    How does the computer-optimized magnetic circuit design benefit operation?
    The computer-optimized design ensures a reasonable magnetic circuit, large magnetic penetration depth, and cross or flip magnetic field arrangements, which significantly enhances the capture and selection of magnetic objects.
    What is the range of magnetic induction strength for the cylinder surface?
    The cylinder surface magnetic induction strength ranges from 1600 Gs to 7000 Gs, offering multiple options to suit different mineral separation requirements.
    How is the durability of the cylinder guaranteed?
    The equipment features a double stainless steel shell structure that protects the inner components and significantly extends the service life of the cylinder.
    What is the processing capacity range of the CTB(N) series?
    The processing capacity varies by model, ranging from 7-15 t/h (~48 m³/h) for the smaller CTB(N)-618G model, up to 80-110 t/h (~400 m³/h) for the heavy-duty CTB(N)-1540G model.

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