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Liquid Oxygen Plant 2000nm³/h Large Skid Mounted Air Separation Plant Equipment

Categories Air Separation Plant
Model Number: KDO 2000Y
Certification: ISO9001;2008 CE cetificate
Place of Origin: China
MOQ: 1set
Price: negotiation
Payment Terms: T/T or L/C
Supply Ability: 100sets month
Delivery Time: 60working days after received your payment
Packaging Details: Packed in standard export packing
Product Name: Oxygen plant
Application: Separate oxygen from air
Oxygen output: 2000 +-5% cube meter per hour
Feature: Long service life low energy consumption
Standard: ISO9001;2008 CE cetificate
purity: 99.6%
Defrosting time: 0-36hours
Starting time: 0-24hours
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    • Product Details
    • Company Profile

    Liquid Oxygen Plant 2000nm³/h Large Skid Mounted Air Separation Plant Equipment

    99.6% Air Separation Plant KDO 2000Y Industrial Oxygen Plant With Low Energy Consumption


    • Annex 1. Plant design basis (need buyer’s confirmation)

      Design point of Atmosphere

      Ø Atmosphere pressure

      101.3kPa(A)

      Ø Atmosphere tempt.

      30℃

      Ø Relative humidity

      75%

      Ø O2 contained in air

      20.95% O2

      Atmosphere tempt.

      Ø Annual average tempt.

      18.4℃

      Ø Max. Tempt.

      40℃

      Ø Min. Tempt.

      -1.8℃

      Ø Summer average tempt.

      30℃

      Ø Winter average tempt.

      7.5℃

      Earthquake degree:

      <6 degree

      Altitude:

      50m

      Impurity in air

      Ø CO2

      ≤450 ppm

      Ø SO2

      ≤0.44 mg/m3

      Ø H2S

      ≤2.3 mg/ m3

      Ø CH4

      ≤5.2mg/ m3

      Ø C2H2

      ≤0.03 ppm

      Ø CnHm(excluding C2H2)

      ≤5 ppm

      Ø Mechanical impurity

      ≤10mg/m3

      Recycle water

      Ø Inlet tempt.

      30℃

      Ø Inlet pressure

      0.4 MPa(G)

      Ø Max pressure drop

      0.2 MPa(G)

      Ø Max tempt. rising

      10℃

      Ø Turbidity of cooling water

      12 mg/L

      Ø PH value

      7.2

      Ø Rigidity

      2.5

      Ø Fouling factor

      0.0004 m2 hºC/ K.W

      Power condition

      Ø High voltage power

      10,000V±5% 3 phases 3 ways

      Ø Low voltage power

      380V/220V±5% AC 3 phases 4 ways

      Ø Frequency

      50±0.5HZ

      Instrument gas ( used for starting)

      Ø Pressure

      0.5 MPa(G)

      Ø Tempt.

      ≤30 ℃

      Ø Dew point

      <-40℃

      Ø Flow

      300m3/h

      Ø Requirement

      NO OIL

      Annex 2. Main parameter

      Production Capacity And Purity(Out Of Cold Box):

      Medium

      capacity (Nm3/h)

      purity

      pressure(MpaG)

      Liquid Oxygen

      2000±5%

      ≥99.6% O2

      0.14

      Note:The capacity means liquid production to convert to gas.

      Capacity and purity are calculated as 0 m altitude from the outlet of cold box.

      Nm3/h is under condition of 0℃,760mmHg. If not figured, the pressure is absolute pressure ( same as below).


      Running period between 2 defrosting times )

      >2years

      Defrosting time

      ~36hours

      Starting time
      from start the turbine to get the production ( excluding commissioning for argon)

      ~24hours


      1. Power consumption

      NO.

      Equipment

      Motor power(rated power)kW

      Shaft power kW

      Voltage stage

      Remarks

      1.

      Raw air compressor

      993

      921

      10KV


      2.

      Boosting compressor

      1500

      1340

      10KV

      Hangyang or same level manufacturer

      3.

      Air precooling unit

      70

      50

      380/220V


      4.

      M.S. purifier

      Electric heater

      160

      Average using 50

      380/220V

      One for running and one for standby,Intermittent running

      5.

      Expander oil pump

      3

      2

      380/220V

      One for running and one for standby

      6.

      Liquid storage system

      Liquid O2 delivery pump

      15

      10

      380/220V

      Intermittent running

      7.

      Instrument control system


      Average using 10

      380/220V


      Plant average power consumption(calculate as shaft power,exclude liquid storage system and utilities):~2373kW


    • Annex 3 Description of the process: Description of the process:
      • Design principle of this plant is based on the different boiling point of each gas in the air. Air is compressed, precooled and got removal of H2O and CO2, then to be cooled in the main heat exchanger until it is liquefied. After rectification, production oxygen and nitrogen can be collected.

    Annex 4. Scope of supply

    1. Raw material filter

    1set

    Technical parameter(note:determined by final design)

    Manufacturer

    Sead

    Type

    Self cleaning

    Process capacity

    ~20600m3/h

    Filter efficiency

    ≥99.8 %

    Filter resistance

    ≤0.65KPa

    Installation type

    VERTICAL

    Filter material

    foliage fiber

    Scope of supply (note:determined as manufacturer’s final list)

    Q.T.

    Ø FILTER HOST BODAY

    1

    Ø Counter blowing and control system

    1

    Ø Filter bucket

    1

    Ø Spare parts

    1

    Image (for reference, determined by final design)



    1. Turbine air compressor

    1 Set

    Technical parameter(note:determined by final design)

    Manufacturer

    Samsung Or IHI

    Compressing media

    Air

    Cooling water inlet temp.

    ≤30 ℃

    Cooling water supply pressure

    0.4 Mpa

    Design gas discharge flow

    10300Nm3/h

    Discharge pressure

    0.6MPa(A)

    Compressing stages

    Three stage

    Main motor fixed power

    ~993KW

    Shaft power

    ~921KW

    Cooling water consumption

    ~112m3/h

    Discharge tempt

    ~40 ℃

    oil content

    100% non oil

    adjustment

    70 %~100 %

    Ø After primary rectification in lower column, liquid air and pure liquid nitrogen can be collected in lower column. Waste liquid nitrogen, liquid air and pure liquid nitrogen flows to upper column via liquid air and liquid nitrogen cooler. It is rectified in upper column again, after that, liquid oxygen of 99.6% purity can be collected at the bottom of upper column, and is delivered out of the cold box as production.

    Waste nitrogen from top of upper column flows out of the cold box to purifier as regenerative air, rest goes to cooling tower.

    Ø This plant is of MS purification of air with boosting turbine expander process.

    Raw air goes to air filter for removal of dust and mechanical impurity and enters air turbine compressor where air is compressed to~0.6MpaA,Then it goes into air precooling system, where air is cooled to 10℃,After that, it flows to 2 molecular sieve adsorbing tank, which are running in turn, to be got removal of H2O, CO2 and C2H2. After purified, air mixes with expanding reheated air. Then it is compressed by middle pressure compressor to be divided into2 streams. One part goes to main heat exchanger to be cooled to~250K, and sucked from the middle part of main heat exchanger to enter expansion turbine. Expanded air returns to main heat exchanger to be reheated, after that, it flows to air boosting compressor. The other part of air is boosted by high temperature expander, after cooling, it flows to the low temperature boosting expander. Then it goes to cold box to be cooled to ~243K. Part of it would still be cooled, and flows to bottom of lower column via heat exchanger. And other air is sucked to low tempt. expander. After expanded, it is divided into 2 parts. One part goes to the bottom of lower column for rectification, the rest returns to main heat exchanger, then it flows to air booster after being reheated.


    99.6% Air Separation Plant KDO 2000Y Industrial Oxygen Plant With Low Energy Consumption


    Liquid O2 output2000nm3/h
    Liquid O2 purity>99.6%
    Liquid O2 pressure0.14mpa
    Running period>2years
    Defrosting time0-36hours
    Starting time0-24hours
    High voltage10000V
    Low voltage380V/220V
    Frequency50Hz


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