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Explosion-Proof Motor Selection Guide for Chlor-Alkali Chemical Plants

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Explosion-Proof Motor Selection Guide for Chlor-Alkali Chemical Plants
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Explosion-Proof Motor Selection Guide for Chlor-Alkali Chemical Plants: Lasting Power in Chlorine and Caustic Mist
1. The Corrosive Crisis of Chlor-Alkali Industry

The chlor-alkali industry produces chlorine (Cl₂), hydrogen (H₂), and caustic soda (NaOH) through electrolysis of brine. However, the process creates an extremely aggressive corrosive environment for electric motors.

In 2023, a chlor-alkali plant in Shandong experienced catastrophic motor failure after only 8 months of operation. The gray cast iron housing had severely corroded through, allowing corrosion debris to fall into the stator winding and cause a turn-to-turn short circuit. The entire electrolysis line was shut down for 36 hours. Investigation revealed: the motor housing was standard cast iron with no anti-corrosion treatment, and the terminal box gaskets had completely failed within 3 months in the chlorine atmosphere.

2. Six Critical Challenges for Chlor-Alkali Motors
  1. Strongly Oxidizing Chlorine (Cl₂)

    • Forms hypochlorous acid (HClO) and hydrochloric acid (HCl) in humid conditions

    • Aggressively attacks copper, iron, and aluminum

    • 2.5* denser than air, accumulates near ground level

  2. Caustic Soda Mist (NaOH)

    • Mist concentration from electrolytic cells: 5%–15%

    • Strongly attacks aluminum and zinc coatings (aluminum dissolves in alkali forming sodium aluminate)

    • Crystalized solids block cooling air passages

  3. Coexisting Hydrogen Risk

    • Hydrogen is a byproduct of chlor-alkali electrolysis

    • Zone 2 hydrogen areas exist in electrolysis buildings

    • Motors must meet both IIC (hydrogen) and corrosion protection requirements

  4. High Temperature + High Humidity Overlay

    • Ambient around electrolytic cells: 35–55°C, 80%–95% RH

    • Electrolyte evaporation drives humidity near saturation

  5. Salt Spray Deposition

    • Sodium chloride particles from brine spread with steam, forming conductive salt films

    • Salt films absorb moisture, reducing insulation resistance and causing creepage flashover

  6. Galvanic Corrosion

    • Dissimilar metals form galvanic cells in electrolyte environments

    • Example: cast iron housing vs. copper winding accelerates corrosion

3. Recommended Protection Scheme: Ex db IIC T4 Gb + Full Anti-Corrosion Coating System
Ex db IIC T4 Gb

Parameter

Meaning

Significance for Chlor-Alkali

Ex db

Flameproof enclosure

Meets hydrogen environment flameproof requirements

IIC

Suitable for hydrogen grade

MESG ≤ 0.5 mm, covers mixed H₂/Cl₂ environments

T4

Max surface temp 135°C

Well below hydrogen autoignition temp (560°C)

Additional corrosion marking: Recommend Corrosion Protection C5-M (per ISO 12944).

4. Key Technical Measures
4.1 Full Anti-Corrosion Material System

Component

Standard Material

Chlor-Alkali Material

Reason

Frame

Gray cast iron HT250

316L SS or Duplex 2205 SS

Resists chloride stress corrosion cracking

End shield

Cast iron HT200

Hastelloy C276 (critical) or 316L

Withstands caustic mist and hypochlorous acid

Fan

Aluminum alloy

Reinforced PP (PP-GF30) or PVDF

Aluminum dissolves in caustic mist

Fan cover

Carbon steel Q235

316L SS

Carbon steel rusts rapidly in chlorine

Terminal box

Cast aluminum

316L SS or SMC (fiberglass-reinforced plastic)

Cast aluminum attacked by caustic mist

Nameplate

Aluminum plate

Laser-etched titanium plate

Titanium stable in both Cl₂ and NaOH

4.2 Multi-Layer Anti-Corrosion Coating System
  • Primer: Inorganic zinc-rich (zinc content ≥80%, DFT 60–80 μm)

  • Intermediate: Epoxy micaceous iron oxide (DFT 80–100 μm), blocks chloride ion penetration

  • Topcoat: Polyurethane or fluorocarbon (DFT 40–60 μm), UV and chemical resistant

  • Total DFT: ≥200 μm (ISO 12944 C5-M requirement)

  • Adhesion: Pull-off test ≥ 8 MPa

4.3 Sealing System Full Upgrade
  • O-rings: Perfluoroelastomer (FFKM, e.g., Kalrez or Chemraz), resists chlorine and caustic

  • Cable entry: Triple seal — outer EPDM dust seal, middle PTFE anti-corrosion gasket, inner FFKM main seal

  • Bearing seal: Magnetic labyrinth seal + nitrogen purge (0.1–0.3 bar), prevents corrosive gas ingress

  • Drain valve: Hastelloy C276, spring-return type, corrosion-resistant

4.4 Stator Winding Special Protection
  • Magnet wire: Corrosion-resistant polyimide/polyamide-imide (PI/PAI) composite coated wire

  • Impregnation: Chemical-resistant epoxy resin vacuum pressure impregnation (VPI), fully fills voids

  • Slot liner: Polyethylene naphthalate (PEN) film, acid/alkali and high temperature resistant

  • End winding lacing: PTFE lacing tape, non-hygroscopic and non-hydrolyzing

4.5 Corrosion-Proof Ventilation Design
  • Air path optimization: Positive pressure ventilation using filtered and dried instrument air

  • Air intake: HEPA filter (H13 grade) + activated carbon adsorption layer, removes Cl₂ and acid gases

  • Air outlet: One-way check valve, prevents backflow of corrosive gas

  • Pressure monitoring: Differential pressure switch with alarm/shutdown at low setpoint

5. Verified Test Data

Third-party lab simulation of chlor-alkali electrolysis environment (5 ppm Cl₂ / 10 mg/m³ NaOH mist / 55°C / 95% RH, 2,000-hour continuous operation):

Test Item

Standard C3 Corrosion Motor

This Chlor-Alkali Explosion-Proof Motor

Acceptance Criteria

Frame corrosion depth

0.18 mm (local perforation)

0.02 mm (minor discoloration)

≤ 0.05 mm

O-ring compression set

62% (EPDM)

8% (FFKM)

≤ 25%

Insulation resistance (post-corrosion)

18 MΩ

450 MΩ

≥ 50 MΩ

Fan cover mass loss

3.2% (carbon steel)

0.05% (316L)

≤ 0.5%

Terminal box internal corrosion deposits

Visible green copper rust

No visible corrosion

No visible corrosion

6. Selection Recommendations

Application

Recommended Model

Key Features

Electrolysis building (Cl₂ + NaOH mist + H₂)

Ex db IIC T4 Gb / C5-M

316L frame, FFKM seals, positive pressure ventilation, PI/PAI winding

Chlorine compression/liquefaction area

Ex db IIC T4 Gb / C5-M + N₂ blanket

Hastelloy critical parts, HEPA intake filtration

Brine purification area (humid + salt spray)

Ex db IIB T4 Gb / C5-M

SMC terminal box, PTFE lacing, magnetic labyrinth seal

Bartijd : 2026-08-06 09:12:36 >> Bloglijst
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