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Home > Industries > Chemical
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Chemical

Chemical

Precision Heat Transfer for the Chemical Industry

Exergy Heat Exchangers offer reliable, high-performance solutions for optimizing chemical processes while maintaining safety, energy efficiency, and sustainability in demanding environments. From pilot plants to full-scale production, our compact, corrosion-resistant exchangers support precise temperature control in aggressive, high-pressure, and high-purity applications.

Whether you’re managing heat recovery, reaction control, or solvent condensation, our equipment is engineered to meet the technical and regulatory demands of modern chemical operations.

    Applications

    • Reactor Temperature Control: Supports precise temperature through exothermic and endothermic reactions. Integrated into jacketed or loop reactor systems ensuring reaction stability and product consistency.
    • Cryogenic Processes: Stainless steel design provides high thermal efficiency under extreme cold conditions for low-temperature duties in LNG and ethylene production.
    • Heat Recovery Systems: Reduces utility demand and operational costs by capturing waste heat from hot process streams to preheat feedstock. Improving overall energy efficiency.
    • Corrosive Fluid Handling: Custom designs with corrosion-resistant alloys and specialised CVD coatings for chlor-alkali, phosphoric acid, and other chemical processes.
    • Distillation Columns: Enables efficient phase change for vapor-liquid systems while fitting into tight column layouts. This improves separation efficiency in Overhead Vapours.
    • High-Pressure Applications: Engineered for operating at pressures above 100 bar. Used for hydrocracking, hydrogenation, and other high-pressure catalytic processes.
    • Multi-Stream Integration:  Can be designed in complex systems to handle multiple process streams simultaneously. This helps reduce equipment count, simplify piping, and enhance overall process efficiency.

    Features

    • Compact Design: Optimizes space while maximizing heat transfer efficiency.
    • Corrosion-Resistant Materials: Customizable materials to withstand harsh chemicals.
    • Energy Efficiency: Helps reduce energy consumption, lowering operational costs.
    • High Pressure & Temperature Resistance: Suitable for demanding chemical processes.
    • Modular Construction: Easy to integrate into existing systems for various chemical applications.
    • Leak-Proof Design: Ensures safety and prevents contamination of chemical products.
    • ASME & TEMA Certified: Compliance with industry standards for safety and reliability.

    Benefits

    • Enhanced Process Efficiency: Improves heat recovery and process stability.
    • Sustainability: Reduces energy consumption, contributing to a smaller carbon footprint.
    • Long Lifespan: High durability, reducing the need for frequent replacements and maintenance.
    • Customization: Tailored solutions to meet specific chemical process requirements.
    • Cost Savings: Reduces operational costs through improved heat recovery and energy efficiency.

    Case Study Examples

    PDF C #1002 High Corrosion

     

    PDF C #1027 Milling Operation

    PDF C #1060 Seawater Injection: Highly Corrosive

     

    Major Customers

    Celanese
    Dow
    Lubrizol
    Nalco Water
    Nalco
    Exxon Mobil
    Eastman
    BASF
    Clarient
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