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Cast Iron Toxic / Corrosive Gas Tri-Lobe Roots Blower , Pressure 6000 MmAq

Cast Iron Toxic / Corrosive Gas Tri-Lobe Roots Blower , Pressure 6000 MmAq

    • Cast Iron Toxic / Corrosive Gas Tri-Lobe Roots Blower , Pressure 6000 MmAq
    • Cast Iron Toxic / Corrosive Gas Tri-Lobe Roots Blower , Pressure 6000 MmAq
  • Cast Iron Toxic / Corrosive Gas Tri-Lobe Roots Blower , Pressure 6000 MmAq

    Product Details:

    Place of Origin: China
    Brand Name: Purescience
    Certification: ISO9001/SGS
    Model Number: TH

    Payment & Shipping Terms:

    Minimum Order Quantity: 1
    Price: USD2000
    Packaging Details: wooden case
    Delivery Time: 2-3 weeks
    Payment Terms: L/C, T/T, D/P
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    Detailed Product Description
    Model: TH40 Product Name: Roots Air Blower
    Port Size: DN40 - DN300 Silencer: Horizontal , Vertical
    Connect: Coupling , Belt Material: Cast Iron
    Pressure Rating: 19.6kpa To 98.0 Kpa ( 2000mm H2O To 10000mm H2O ) Cooling: Water Cooling, Air Cooling

    Roots air blower | exhauster for toxic, corrosive gas, belt connect, Cast iron Pressure 6000 mmAq

     

    Goods Description

    The Roots Blower are improved by raising the intensity, it helps to prevent the center rotor and axis deviation from external influences. The rotor is used with the most advanced four-Shaft method in one time process, it can reduce man-made errors, enhance the precision of the lobe wheel and promote the blower efficiency. The air compartment and the side cover of the blower have a flange and groove rim, which can not only strengthen the blower's operational functions but also prevent eccentric phenomenal resulting from the fastening of the stud, which may shorten the life of the blower. Besides, noise and vibration reduction are the main emphasis in developing the new series of roots blower.

     

    Features

    • The air compartment and the side cover of our blower are with flange and groove rim, it can both strengthen the blower's performance, and avoid eccentrice from the fastening of the stud, which eccentric may shorten the life of the blower.
    • Our rotor is four-shaft method in a one time work process, it minimize man-made erros, ensures the precision of the lobe wheel, and enhance the blower efficiency.
    • Appropriate clearance between the rotors and rotor with the casing, ensures no direct operation contact, hence no need lubrication.
    • Only synchronous gear drive system and the shaft bearings need lubrication, it's in a separate lateral chambers to house these moving parts with proper seals to prevent oil leakage to the main chamber.
    • CNC ensures the quality and precision of the components processing
    • Low noise and minimal vibration

    Work priniciple of roots blower

    There're two rotors in the compartment of the blower body, when the rotors rotate in opposite direction, they suck air in to balance the pressure created due to the volume V1 change on the inlet side. And the air in the volume V2 will be sent out through the discharge side and the high pressure will be created through the discharge.

    There's no need lubrication between two rotors because there's gap between them for no touch moves, hence no friction. The blower runs well even at high spped and supply clean air, it also can be applied for vacuum purpose.

     

    Specifications sheet

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    Model R.P.M Capacity Qs(m³/min) Pressure(mmAq) Power La(Kw)
    1000mmAq 2000mmAq 3000mmAq 4000mmAq 5000mmAq 6000mmAq
    Qs La Qs La Qs La Qs La Qs La Qs La
    TH-40 1750 0.6 0.26 0.56 0.39 0.54 0.53 0.51 0.66        
    2000 0.71 0.3 0.68 0.45 0.65 0.6 0.62 0.75        
    2300 0.84 0.34 0.81 0.51 0.78 0.69 0.75 0.86        
    2600 0.97 0.38 0.84 0.57 0.91 0.78 0.88 0.97        
    TH-50 1000 1.33 0.72 1.18 1.07 1.04 1.45 0.9 1.81 0.77 2.15 0.64 2.44
    1250 1.86 0.91 1.71 1.35 1.57 1.82 1.43 2.27 1.31 2.69 1.18 3.06
    1450 2.29 1.05 2.14 1.56 2 2.1 1.86 2.62 1.74 3.11 1.61 3.53
    1560 2.53 1.13 2.38 1.68 2.24 2.26 2.1 2.82 1.97 3.35 1.84 3.8
    1750 2.94 1.27 2.78 1.88 2.65 2.54 2.51 3.17 2.38 3.75 2.25 4.27
    TH-65 1000 2.76 1.2 2.48 1.9 2.27 2.5 2.06 3.1 1.85 3.7 1.75 4.3
    1250 3.41 1.5 3.14 2.2 2.93 2.9 2.72 3.6 2.51 4.3 2.31 5
    1420 4.03 1.7 3.76 2.5 3.55 3.3 3.34 4.2 3.23 5 3.03 5.8
    1550 4.48 1.8 4.23 2.7 4 3.6 3.79 4.5 3.58 5.4 3.37 6.3
    1750 5.17 2.1 4.89 3.1 4.68 4.1 4.47 5.1 4.26 6.1 4.16 7.1
    TH-80 1000 4.38 1.5 3.94 2.4 3.57 2.8 3.25 4.3 2.97 5.2 2.72 6.1
    1150 5.27 1.8 4.85 2.9 4.48 3.9 4.16 5 3.87 6 3.61 7.1
    1300 6.17 2 5.74 3.2 5.37 4.4 5.05 5.6 4.76 6.8 4.51 8
    1450 7.07 2.2 6.65 3.6 6.28 5 5.96 6.3 5.66 7.6 5.41 9
    1600 7.96 2.5 7.54 4 7.17 5.5 6.85 6.9 6.55 8.4 6.3 9.9
    TH-100 1000 6.72 2.3 6.22 3.5 5.72 4.8 5.38 6.1 5.04 7.4 4.8 8.7
    1150 8 2.8 7.42 4.2 7.02 5.5 6.58 7.2 6.34 8.5 6.14 10
    1300 9.26 3 8.71 4.6 8.26 6.3 7.89 8 7.57 9.7 7.31 11.4
    1450 10.5 3.4 9.96 5.2 9.51 7 9.14 9 8.82 10.8 8.57 12.7
    1600 11.8 3.7 11.2 5.7 10.8 7.8 10.4 9.9 10.1 12 9.82 14.1
    TH-125 970 11 3.4 10.2 5.7 9.5 7.9 8.9 10.2 8.5 12.5 8 14.8
    1150 13.5 4 12.7 6.7 12.1 9.4 11.5 12.1 11 14.8 10.6 17.5
    1300 15.6 4.5 14.8 7.6 14.2 10.6 13.6 13.6 13.1 16.7 12.7 19.8
    1450 17.7 5 16.9 8.5 16.2 11.8 15.6 15.2 15.2 18.7 14.7 22.1
    1600 19.8 5.5 19 9.3 18.3 13 17.7 16.8 17.3 20.6 16.8 24.4

     

    Model selection


    1. The air volume shown in above performance form, it's the suction volume under standard suction condition (Temp. 20 ℃, absolute pressure 1.0332 kg/c㎡, relative humidity 65%).

    2. The convert formula between normal (for example: 0 ℃, 1.0332 kg/c㎡, ABS) and standard condition:

    Qs=Qn * (yn/ys), y=0.465 * (P-0.378 ᵩ * Ps) / (273+t)

    ᵩ=humidity (%)   P=Pressure (mmHg)

    Qn: air flow under normal condition N m³/min

    Qs: air flow under standard condition (indicated in above performance table m³/min)

    Y: air ration weight (kg/m³)

    Ps: water vapor saturation pressure of the temperature (mmHg)

    T: absolute temperature (273+t) ℃

    3. Vice versa, an air flow under discharge condition can be converted to an air flow under standard condition:

    Qs=Qd * (1.0332+Pd) * (273 +Ts) / (1.032*(273+Td))

    Qd: air flow under discharge condition, m³/min

    Ts: suction temperature

    Td: discharge temperature

    Pd: discharge pressure, kgf/㎡

    4. Select blower type, diameter, rpm and shaft power based on performance table as required the air flow and discharge pressure.

    5. Smaller size for economic view, and larger size for lower noise level & stabler performance for a long view.

     

    Performance curve

    Cast Iron Toxic / Corrosive Gas Tri-Lobe Roots Blower , Pressure 6000 MmAq

    Product dimensions

    Cast Iron Toxic / Corrosive Gas Tri-Lobe Roots Blower , Pressure 6000 MmAq

    Cast Iron Toxic / Corrosive Gas Tri-Lobe Roots Blower , Pressure 6000 MmAq

    Applications:

    1. Air blowers / exhausters

    • PSA & VSA blowers and vacuum pumps
    • Off shore air scour blowers

    2. Corrosive / Toxic gases

    • Carbon dioxide blowers
    • SO2 gas blowers
    • VCM blowers

    3. Non corrosive gases

    • Hydrogen circulators
    • Nitrogen regeneration blowers
    • Stripping gas blowers
    • Conveying gas blowers

    4. Vacuum pumps

    • Multi stage vacuum pump skids
    • PSA & VSA blowers and vacuum pumps

    5. High pressure bossters

    6. Vapour boosters

    • LPG rail car
    • Tanker unloading compressor
    • Steam compressors
    • Vapour return boosters

    Competitive advantage

    All our tri-lobe roots blower are built and checked annually following the strictest adhesion to ISO 9001 and CE quality standards, involving the use of our highly precise and regularly maintained CNC machinery. Scrupulous attention is paid to every detail, in a specialized field where technical errors should be kept to a bare minimum.

     

     

    Contact Details
    Shanghai Xunhui Environment Technology Co., Ltd.

    Contact Person: Mr. Murphy

    Tel: +8613816614405

    Send your inquiry directly to us (0 / 3000)

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