Chemical Industry Cooling Solutions
Precision thermal management for chemical manufacturing processes. From reactor cooling to cryogenic applications, ensure process safety, efficiency, and product quality with Glacier Coolant.
The global chemical industry faces unprecedented thermal management challenges as manufacturers strive for higher efficiency, stricter safety standards, and environmental compliance. Chemical processes operate across extreme temperature ranges from -110°C cryogenic applications to 200°C high-temperature reactions, requiring precise heat transfer solutions that can handle corrosive environments, water-sensitive reactions, and hazardous materials. Energy-intensive cryogenic processes waste significant thermal energy, while inadequate corrosion protection reduces equipment lifespan by 50%. A typical coolant system includes a buffer tank: the primary pump circulates coolant between the buffer tank and the refrigeration unit to produce and store low-temperature coolant, while the secondary pump circulates between the reactor and buffer tank, ensuring stable reactions in fine chemical reactors. Glacier Coolant's specialized heat transfer fluids address these challenges with wide temperature ranges, chemical stability, water-insoluble formulations for anhydrous processes, and comprehensive corrosion protection across carbon steel, stainless steel, and copper systems.
The Critical Role of Thermal Management in Chemical Manufacturing
The chemical industry relies on precise thermal management across diverse processes, from reaction control and distillation to cryogenic separation and waste heat recovery. Temperature control directly impacts reaction kinetics, product yield, safety, and energy efficiency.
Chemical manufacturing processes present unique thermal challenges: extreme temperature ranges, corrosive environments, water-sensitive reactions, and strict safety requirements. Glacier Coolant's specialized heat transfer fluids are engineered to meet these demanding conditions.
● Reactor Cooling: Maintain precise temperatures for exothermic and endothermic chemical reactions
● Cryogenic Processes: Support ultra-low temperature applications down to -110°C
● Waste Heat Recovery: Capture and reuse thermal energy to reduce energy costs
● Refrigeration Systems: Efficient indirect cooling for chemical storage and processing
Core Applications in Chemical Industry
Reactor Cooling
Chemical reactors require precise temperature control to ensure optimal reaction rates, selectivity, and product quality. Exothermic reactions need efficient heat removal while endothermic processes require uniform heating. Glacier Coolant provides stable, reliable cooling solutions for batch and continuous reactor operations.
LM-15B
Modified Polysiloxane Heat Transfer Fluid
LM-15B is a specialized coolant designed for indirect cooling in chemical processes. Its water-insoluble formulation makes it ideal for water-sensitive anhydrous systems, while maintaining excellent thermal stability across a wide temperature range.
※ Insoluble in water - ideal for anhydrous processes
※ Wide temperature range: -50°C to 200°C
※ High thermal stability and long service life
※ Excellent hydrophobicity and dispersibility
※ Chemically stable with strong acids/bases
| Temperature Range | -50°C ~ 200°C |
|---|---|
| Composition | Modified Polysiloxane |
| Flash Point | > 200°C |
| Density | 0.942 g/cm³ (20°C) |
| Applications | Water-sensitive reactions, anhydrous processes |
LM-4B
Modified Triol-Based Heat Transfer Fluid
LM-4B is a modified triol-based heat transfer fluid with food-grade certification, suitable for chemical reactor cooling applications where metal compatibility and system integrity are critical.
※ Food-grade certification
※ Temperature range: -20°C to 95°C
※ Excellent corrosion protection for carbon steel, stainless steel, copper
※ Non-toxic and odorless
※ High specific heat capacity for efficient cooling
| Temperature Range | -20°C ~ 95°C |
|---|---|
| Composition | Modified Triol-Based |
| Specific Heat | 2.61 kJ/kg·K (-20°C) |
| Viscosity | 45.39 cP (-20°C) |
| Applications | General reactor cooling, chemical processing |
LM-4
25% Ethylene Glycol Content
LM-4 is a premium ethylene glycol-based coolant designed for chemical reactor cooling systems, providing excellent heat transfer efficiency and freeze protection for industrial applications.
※ High thermal conductivity
※ Excellent freeze protection down to -20°C
※ Corrosion inhibitors protect system components
※ Compatible with copper, steel, and aluminum
※ Long fluid lifespan in closed-loop systems
| Glycol Type | Ethylene Glycol |
|---|---|
| Concentration | 25% |
| Viscosity (20°C) | 10.40 cP |
| Thermal Conductivity | 0.1364 W/m·K |
| Applications | Chemical reactor cooling |
Cryogenic Chemical Processes
Many chemical processes require ultra-low temperatures, including cryogenic separation, freeze drying, and specialty chemical synthesis. Glacier Coolant's LM-14C Series offers exceptional performance in extreme temperature environments down to -110°C.
LM-14C Series
Polyfluorinated Compound Heat Transfer Fluid
The LM-14C Series represents advanced polyfluoride coolant technology, providing unmatched safety and performance for cryogenic applications. With seven models (LM-14CA to LM-14CG), it covers temperature ranges from -110°C to 135°C.
※ Non-flammable with zero flash point
※ Excellent electrical insulation (55kV dielectric strength)
※ Environmentally friendly (ODP=0, GWP=7)
※ Ultra-wide temperature range: -110°C to 135°C
※ Low viscosity for excellent flow characteristics
※ Compatible with metals, plastics, and polymers
| Temperature Range | -110°C ~ 135°C |
|---|---|
| Composition | Polyfluorinated Compounds |
| Dielectric Strength | 55 kV |
| Density | 1.6094 g/cm³ (20°C) |
| Applications | Cryogenic processes, semiconductor manufacturing |
LM-10A
Ultra-Low Temperature Heat Transfer Fluid
LM-10A provides reliable cooling performance for chemical processes requiring temperatures down to -110°C, including specialty chemical synthesis and cryogenic storage applications.
※ Ultra-low temperature capability: -110°C
※ Excellent thermal stability at extreme conditions
※ Good compatibility with system materials
※ Low viscosity for efficient pumping
※ Suitable for cryogenic separation processes
| Temperature Range | -110°C ~ 60°C |
|---|---|
| Composition | Specialized Organic Formulation |
| Key Feature | Ultra-low Temperature Performance |
| Applications | Cryogenic processes, specialty chemicals |
LM-11D
Industrial-Grade Heat Transfer Fluid
LM-11D is an industrial-grade heat transfer fluid suitable for a wide range of chemical processing applications, providing reliable performance and excellent system protection.
※ Temperature range: -35°C to 150°C
※ Industrial-grade formulation
※ Excellent corrosion protection
※ High thermal stability
※ Compatible with various metals
| Temperature Range | -35°C ~ 150°C |
|---|---|
| Composition | Industrial-Grade |
| Key Feature | Chemical Processing |
| Applications | Industrial chemical processes |
Waste Heat Recovery
Chemical plants generate significant waste heat during production processes. Recovering and reusing this thermal energy can substantially reduce energy costs and improve overall efficiency. Glacier Coolant's heat transfer fluids enable effective waste heat capture and utilization.
LM-8
Organic Salt-Based Heat Transfer Fluid
LM-8 is an eco-friendly organic salt formulation ideal for waste heat recovery systems and general chemical process cooling. Its excellent stability ensures reliable performance over thousands of cycles in demanding chemical environments.
※ Environmentally friendly (high biodegradability)
※ Temperature range: -50°C to 100°C
※ Excellent stability over extended service
※ Good thermal conductivity
※ Compatible with common system metals
| Temperature Range | -50°C ~ 100°C |
|---|---|
| Composition | Organic Salt-Based |
| Key Feature | Eco-Friendly Formulation |
| Applications | Waste heat recovery, process cooling |
LM-15B
High-Temperature Modified Silicone Oil
LM-15B is specifically designed for high-temperature waste heat recovery applications in chemical processing plants, supporting temperatures up to 300°C for efficient thermal energy transfer and utilization.
※ Ultra-high temperature capability: -60°C to 300°C
※ Excellent thermal stability
※ Non-toxic and odorless
※ Low vapor pressure
※ Compatible with stainless steel
| Temperature Range | -60°C ~ 300°C |
|---|---|
| Composition | Modified Silicone Oil |
| Key Feature | High-Temperature Applications |
| Applications | High-temp waste heat recovery |
LM-16
High-Performance Heat Transfer Fluid
LM-16 is a high-performance heat transfer fluid designed for demanding chemical processing applications, offering superior thermal conductivity and stability across a wide temperature range.
※ Temperature range: -40°C to 200°C
※ High thermal conductivity
※ Excellent thermal stability
※ Low viscosity for efficient pumping
※ Compatible with various metals
| Temperature Range | -40°C ~ 200°C |
|---|---|
| Composition | High-Performance Formulation |
| Key Feature | Thermal Efficiency |
| Applications | Chemical processing |
Chemical Refrigeration Systems
Chemical manufacturing facilities require robust refrigeration systems for product storage, process cooling, and HVAC applications. Glacier Coolant provides specialized solutions that ensure system reliability, energy efficiency, and equipment protection.
LM-4ABG
Propylene Glycol-Based Heat Transfer Fluid
LM-4ABG is a food-grade propylene glycol coolant suitable for chemical refrigeration systems and cleanroom HVAC applications. Its non-toxic formulation ensures safety in industrial environments.
※ Food-grade propylene glycol formulation
※ Temperature range: -30°C to 100°C
※ Non-toxic and environmentally safe
※ Good corrosion protection
※ Compatible with HVAC systems
| Temperature Range | -30°C ~ 100°C |
|---|---|
| Composition | Propylene Glycol-Based |
| Certification | Food-Grade |
| Applications | Refrigeration, HVAC systems |
LMH
Circulating Water Corrosion Inhibitor
LMH is a specialized corrosion inhibitor designed for chemical plant circulating water systems. It prevents scale formation, corrosion, and bacterial growth, ensuring long-term system reliability.
※ Multi-functional corrosion and scale inhibitor
※ FDA food-grade compliant
※ Effective for carbon steel, stainless steel, copper
※ Prevents bacterial and algae growth
※ Extends equipment service life
| Type | Corrosion & Scale Inhibitor |
|---|---|
| Certification | FDA Food-Grade |
| Protection | Scale, Corrosion, Bacteria |
| Applications | Circulating water systems, HVAC |
Chemical Process Cooling System Flow Diagram
System Flow: Chemical Reactor → Heat Exchanger → Coolant Circulation → Chiller Unit → Waste Heat Recovery → Thermal Storage
Cooling Process Workflow
Reactor Process
Chemical reactions generate heat that needs precise removal or addition
Heat Exchange
Heat transfer fluid removes heat from the reactor jacket
Reactor Process
Chiller or cooling tower dissipates the collected heat
Cooling Unit
Waste heat is captured and reused for other processes
Process Control
Precision temperature maintained for optimal product quality
Case Studies: Chemical Industry Success Stories
Wanhua Chemical Group - MDI Production Cooling
Company Profile: Wanhua Chemical Group is a globally leading MDI producer and A-share listed company, recognized as the industry leader in China's chemical sector.
Challenge: Wanhua Chemical's production processes require precise temperature control for MDI synthesis reactions. The exothermic polymerization processes demand efficient heat removal while maintaining product purity and reaction selectivity.
Solution: Implemented LM-4 heat transfer fluid for reactor jacket cooling systems, providing stable thermal management across the entire production cycle. The solution ensures precise temperature control within ±1°C tolerance, critical for MDI product quality.
LM-4
Product Deployed
±1°C
Temp Control
1
Contract
Wanhua Chemical Group - MDI Production Cooling
Company Profile: CNPC Jilin Petrochemical is a major petrochemical enterprise under China National Petroleum Corporation (CNPC), with strong central government-backed resources.
Challenge: As a large-scale petrochemical complex, Jilin Petrochemical faced challenges in maintaining efficient cooling across multiple production units. The facility required reliable heat transfer solutions for cracking furnaces, distillation towers, and chemical reactors operating at high temperatures.
Solution: Deployed LM-15B heat transfer fluids for circulating cooling systems across multiple production lines. The comprehensive solution supports thermal management from ambient to high-temperature processes, ensuring continuous and stable operations.
LM-15B
Product Deployed
4
Contracts
CNPC
Enterprise Group
Case Studies: Chemical Industry Success Stories
Glacier Coolant provides comprehensive thermal management solutions for chemical manufacturing processes. Our team of engineers can help you select the right heat transfer fluid for your specific application requirements.
Post time: Jul-16-2026




