Aniline

C₆H₅NH₂  ·  93.13 g/mol

C₆H₅NH₂

Precursor to polyurethanes, dyes, and rubber chemicals

Molecular Weight
93.13 g/mol
State
Liquid
Catalyst
Copper on Silica or Pall
Reactor
Gas phase fluidized bed
Aniline molecular structure
2D structure

Olefinverbund Integration

Inputs
Nitrobenzene, **Hydrogen** (Feedstock)
Product
Aniline
Outputs
Methylene Diphenyl Diisocyanate, Rubber Chemicals

Chemistry & Engineering

ReactionNitrobenzene + 3H₂ → Aniline + 2H₂O
ThermodynamicsHighly exothermic hydrogenation
CatalystCopper on Silica or Palladium
Reactor classGas phase fluidized bed or vapor phase fixed bed
NoteHeat recovery crucial.

Applications

  • MDI for polyurethanes
  • Rubber processing chemicals
  • Dyes and pigments
  • Pharmaceuticals

Extraterrestrial Production Pattern

  1. Benzene nitration → nitrobenzene
  2. Catalytic hydrogenation with Cu or Ni catalyst
  3. Operating at 200-300°C in gas phase
  4. Alternative: ammonolysis of phenol

Reaction Diagram

C6H5NO2 + 3H2 -> C6H5NH2 + 2H2O

Unit Operations

Process steps following chemical engineering unit operation principles

#OperationDescription
1Nitrobenzene FeedPump nitrobenzene to hydrogenation reactor
2Catalytic HydrogenationCu or Ni catalyst at 200-300°C, 1-5 bar
3Heat RecoveryCool reactor effluent against feed
4Phase SeparationSeparate aniline/water mixture
5DistillationDistill to >99.9% aniline
6StorageStore under nitrogen to prevent oxidation

S88 Batch Control Model

ISA-88 BatchML schema — simplified for educational purposes

<?xml version="1.0" encoding="UTF-8"?>
<!-- ISA-88 Batch Control Model for Aniline -->
<!-- Educational schema - simplified for demonstration -->
<BatchML xmlns="http://www.wbf.org/xml/B2MML-V0600">
  
  <ProcessCell ID="ANILINE_PLANT_CELL">
    <Description>Process cell for Aniline production</Description>
    
    <Unit ID="ANILINE_PLANT">
      <Description>Main synthesis unit</Description>
      
      <!-- Equipment Modules -->
      <EquipmentModule ID="PUMP">
        <Description>Pump</Description>
      </EquipmentModule>
      <EquipmentModule ID="HYDROGENATOR">
        <Description>Hydrogenator</Description>
      </EquipmentModule>
      <EquipmentModule ID="EXCHANGER">
        <Description>Exchanger</Description>
      </EquipmentModule>
      <EquipmentModule ID="DECANTER">
        <Description>Decanter</Description>
      </EquipmentModule>
      <EquipmentModule ID="COLUMN">
        <Description>Column</Description>
      </EquipmentModule>
      <EquipmentModule ID="STORAGE_TANK">
        <Description>Storage Tank</Description>
      </EquipmentModule>
    </Unit>
  </ProcessCell>
  
  <MasterRecipe ID="ANILINE_PLANT_RECIPE">
    <Description>Master recipe for Aniline</Description>
    <ProductID>ANILINE</ProductID>
    
    <UnitProcedure ID="ANILINE_PLANT_UP">
      <Description>Unit procedure for synthesis</Description>
      
      <Operation ID="OP_01">
        <Description>Operation 1</Description>
        <Phase ID="FEED">
          <Description>Feed phase</Description>
          <PhaseLogic>
            <Step ID="STEP_1"><Action>Initialize</Action></Step>
            <Step ID="STEP_2"><Action>Execute</Action></Step>
            <Step ID="STEP_3"><Action>Complete</Action></Step>
          </PhaseLogic>
        </Phase>
      </Operation>
      
      <Operation ID="OP_02">
        <Description>Operation 2</Description>
        <Phase ID="HYDROGENATE">
          <Description>Hydrogenate phase</Description>
          <PhaseLogic>
            <Step ID="STEP_1"><Action>Initialize</Action></Step>
            <Step ID="STEP_2"><Action>Execute</Action></Step>
            <Step ID="STEP_3"><Action>Complete</Action></Step>
          </PhaseLogic>
        </Phase>
      </Operation>
      
      <Operation ID="OP_03">
        <Description>Operation 3</Description>
        <Phase ID="RECOVER_HEAT">
          <Description>Recover Heat phase</Description>
          <PhaseLogic>
            <Step ID="STEP_1"><Action>Initialize</Action></Step>
            <Step ID="STEP_2"><Action>Execute</Action></Step>
            <Step ID="STEP_3"><Action>Complete</Action></Step>
          </PhaseLogic>
        </Phase>
      </Operation>
      
      <Operation ID="OP_04">
        <Description>Operation 4</Description>
        <Phase ID="SEPARATE">
          <Description>Separate phase</Description>
          <PhaseLogic>
            <Step ID="STEP_1"><Action>Initialize</Action></Step>
            <Step ID="STEP_2"><Action>Execute</Action></Step>
            <Step ID="STEP_3"><Action>Complete</Action></Step>
          </PhaseLogic>
        </Phase>
      </Operation>
      
      <Operation ID="OP_05">
        <Description>Operation 5</Description>
        <Phase ID="DISTILL">
          <Description>Distill phase</Description>
          <PhaseLogic>
            <Step ID="STEP_1"><Action>Initialize</Action></Step>
            <Step ID="STEP_2"><Action>Execute</Action></Step>
            <Step ID="STEP_3"><Action>Complete</Action></Step>
          </PhaseLogic>
        </Phase>
      </Operation>
      
      <Operation ID="OP_06">
        <Description>Operation 6</Description>
        <Phase ID="STORE">
          <Description>Store phase</Description>
          <PhaseLogic>
            <Step ID="STEP_1"><Action>Initialize</Action></Step>
            <Step ID="STEP_2"><Action>Execute</Action></Step>
            <Step ID="STEP_3"><Action>Complete</Action></Step>
          </PhaseLogic>
        </Phase>
      </Operation>
    </UnitProcedure>
  </MasterRecipe>
  
</BatchML>
Process CellPhysical grouping of all production equipment
UnitMajor equipment performing the synthesis
Equipment ModulesIndividual devices: reactors, columns, absorbers
PhasesLowest control level: REACT, SEPARATE, PURIFY

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