Sulfuric Acid

H₂SO₄  ·  98.08 g/mol

H₂SO₄

Ore processing, synthesis

Molecular Weight
98.08 g/mol
State
Liquid
Catalyst
Vanadium Pentoxide (V₂O₅
Reactor
Multi-bed adiabatic conv
Sulfuric Acid molecular structure
2D structure

Olefinverbund Integration

Inputs
**Sulfur** (Feedstock), **Oxygen** (Feedstock), **Water** (Feedstock)
Product
Sulfuric Acid

Chemistry & Engineering

ReactionS + O₂ → SO₂; SO₂ + 0.5O₂ → SO₃; SO₃ + H₂O → H₂SO₄
ThermodynamicsAll steps highly exothermic
CatalystVanadium Pentoxide (V₂O₅) for Contact Process
Reactor classMulti-bed adiabatic converter with intercooling
NoteWaste heat generates significant high-pressure steam for power.

Applications

  • Ore processing and metal extraction
  • Fertilizer production (phosphoric acid, ammonium sulfate)
  • Battery electrolyte
  • Chemical synthesis intermediate
  • Water treatment
  • Etching and cleaning

Extraterrestrial Production Pattern

  1. Extract sulfur from lunar volcanic deposits or Martian sulfate minerals
  2. Combust sulfur: S + O₂ → SO₂
  3. Catalytic oxidation (V₂O₅ catalyst): 2SO₂ + O₂ → 2SO₃
  4. Absorption in water: SO₃ + H₂O → H₂SO₄
  5. Concentration and storage in closed-loop reactors

Reaction Diagram

S + O2 -> SO2; 2SO2 + O2 -> 2SO3; SO3 + H2O -> H2SO4

Unit Operations

Process steps following chemical engineering unit operation principles

#OperationDescription
1Sulfur MeltingMelt solid sulfur at 120-150°C
2CombustionBurn sulfur in dry air at 1000°C → SO₂
3Gas CleaningRemove dust and impurities from SO₂ gas
4Catalytic OxidationConvert SO₂ → SO₃ over V₂O₅ catalyst (Contact Process)
5AbsorptionAbsorb SO₃ in 98% H₂SO₄ (oleum formation)
6DilutionDilute oleum with water to desired concentration

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 Sulfuric Acid -->
<!-- Educational schema - simplified for demonstration -->
<BatchML xmlns="http://www.wbf.org/xml/B2MML-V0600">
  
  <ProcessCell ID="SULFURIC_ACID_PLANT_CELL">
    <Description>Process cell for Sulfuric Acid production</Description>
    
    <Unit ID="SULFURIC_ACID_PLANT">
      <Description>Main synthesis unit</Description>
      
      <!-- Equipment Modules -->
      <EquipmentModule ID="MELTER">
        <Description>Melter</Description>
      </EquipmentModule>
      <EquipmentModule ID="BURNER">
        <Description>Burner</Description>
      </EquipmentModule>
      <EquipmentModule ID="SCRUBBER">
        <Description>Scrubber</Description>
      </EquipmentModule>
      <EquipmentModule ID="CONVERTER">
        <Description>Converter</Description>
      </EquipmentModule>
      <EquipmentModule ID="ABSORBER">
        <Description>Absorber</Description>
      </EquipmentModule>
      <EquipmentModule ID="DILUTION_TANK">
        <Description>Dilution Tank</Description>
      </EquipmentModule>
    </Unit>
  </ProcessCell>
  
  <MasterRecipe ID="SULFURIC_ACID_PLANT_RECIPE">
    <Description>Master recipe for Sulfuric Acid</Description>
    <ProductID>SULFURIC_ACID</ProductID>
    
    <UnitProcedure ID="SULFURIC_ACID_PLANT_UP">
      <Description>Unit procedure for synthesis</Description>
      
      <Operation ID="OP_01">
        <Description>Operation 1</Description>
        <Phase ID="MELT">
          <Description>Melt 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="COMBUST">
          <Description>Combust 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="CLEAN">
          <Description>Clean 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="OXIDIZE">
          <Description>Oxidize 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="ABSORB">
          <Description>Absorb 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="DILUTE">
          <Description>Dilute 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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