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704G Hydrogenation catalyst protector

To enhance light oil yield in coking units, defoamers are typically added to the coke tower. After entering the fractionation tower, these defoamers undergo distillation and enter the gasoline and light diesel fractions.
  • Details
    • Commodity name: 704G Hydrogenation catalyst protector
    • Commodity ID: 704G

    To enhance light oil yield in coking units, defoamers are typically added to the coke tower. After entering the fractionation tower, these defoamers undergo distillation and enter the gasoline and light diesel fractions.

    Product Features and Applications

    To enhance light oil yield in coking units, defoamers are typically added to the coke tower. After entering the fractionation tower, these defoamers undergo distillation and enter the gasoline and light diesel fractions. During the hydrogenation refining of coke-derived gasoline and diesel, silicon from the defoamers deposits within the catalyst's pores, clogging them and causing catalyst deactivation. 704G Hydrogenation Catalyst Protector is prepared using porous γ-Al₂O₃ as the carrier and Mo/Ni as the active components. This catalyst features a cloverleaf configuration, exhibiting high desiliconization activity, large silicon capacity, and low bed pressure drop.

    Physical and Chemical Properties

    AppearanceLight yellow clover strips
    DimensionsΦ2.5×2~8.0mm
    Active ComponentNi、Mo
    Standard Packing Density0.55~0.65g/ml
    Average Crushing Strength≥160N/cm
    Specific Surface Area>180m2/g
    Pore Volume>0.35ml/g

    Transportation and Storage

    704G is packaged in lidded rigid cardboard drums lined with plastic bags. The exterior of the drums is marked with the catalyst name, net weight, batch number, and production date. During transportation, the drums must be covered, protected from moisture, and shielded from violent shaking or impact. Do not drop or roll the catalyst drums during handling. Store the product in a dry, well-ventilated warehouse, ensuring protection from moisture. Avoid contact with acidic or alkaline chemical reagents and other harmful substances to prevent impairment of the catalyst's activity. (Note: Documentation regarding catalyst loading, vulcanization, and operational specifications will be provided separately.)

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