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Atmospheric And Pressurized Tank Systems

Safe, controlled, and long-lasting storage of fluids with different chemical properties, temperature, and pressure requirements

At Bakar Makina, atmospheric and pressurized tank systems are designed as fundamental industrial infrastructure that enables safe, controlled, and long-lasting storage of fluids with different chemical properties, temperature, and pressure requirements. Tank system selection is determined not only by volume needs but also by process safety and operational stability.

The goal is to make the tank not a risk factor, but a balanced component of the process.

Atmospheric Tank Systems

Atmospheric tanks are used for storing liquids with low vapor pressure. Design is performed considering level changes, temperature effects, and evaporation behaviors.

Controlled Ventilation Systems
Overflow Prevention Mechanisms
Emission Management Infrastructure
Low Vapor Pressure Optimization

Atmospheric Tanks That Seem Simple Create Serious Risks When Not Designed Correctly.

Atmospheric Tank Systems

Pressurized Tank Systems

Pressurized tanks are used for gases, volatile chemicals, or fluids that need to be kept under pressure due to process requirements. These systems are designed with engineering calculations considering internal pressure, thermal expansion, and mechanical stresses.

Safety Factor Calculations
Safety Equipment Integration
Controlled Pressure Relief
Mechanical Stress Analysis

Pressure Is Safe When Calculated.

Pressurized Tank Systems

Correct System Selection According To Process Conditions

Atmospheric or pressurized tank preference is determined according to the chemical's physical properties, process temperature, and operational scenarios. Wrong tank selection creates emission, safety, and quality risks.

Chemical Physical Property Analysis
Process Temperature Assessment
Operational Scenario Planning
Risk Minimization Approach

The Right Tank Protects The Process.

Correct System Selection According To Process Conditions

Emission And Vapor Control

Both tank types are designed to control evaporation and gas emissions. When necessary, they are integrated with vapor collection, condensation, or recovery systems.

Evaporation Control
Gas Emission Management
Vapor Collection Systems
Recovery Integration

Emission Is Not The Tank's Fate.

Emission And Vapor Control

Leak-Tightness And Structural Safety

Tank bodies, nozzles, and connection points are engineered to provide high leak-tightness and structural integrity. This approach minimizes environmental and operational risks.

High Leak-Tightness Standards
Structural Integrity Guarantee
Nozzle And Connection Safety
Risk Minimization

Leak-Tightness Is The Foundation Of Safety.

Leak-Tightness And Structural Safety

Automation And Safety Integration

Atmospheric and pressurized tank systems are integrated into automation infrastructure with level, pressure, and temperature monitoring systems. In abnormal situations, the system activates automatic warning and safe shutdown scenarios.

Level Monitoring Systems
Pressure And Temperature Control
Automatic Warning Mechanisms
Safe Shutdown Scenarios

Storage Must Also Be Smart.

Automation And Safety Integration

Long-Lasting And Maintenance-Friendly Design

Tank systems are designed to be suitable for long-term operation, with easy maintenance access and high service life. This approach reduces total cost of ownership.

Long-Term Operation Compatibility
Easy Maintenance Access
High Service Life
Total Cost Optimization

Long Life Begins With Proper Engineering.

Long-Lasting And Maintenance-Friendly Design

In Summary

Bakar Makina's atmospheric and pressurized tank systems offer safe, long-lasting, and sustainable industrial storage solutions that are selected appropriately for process conditions, manage emission and pressure risks through design, and are automation-supported.

Tank Selection Is Not A Volume Calculation,
It Is A Safety And Engineering Decision.

Conditioning Process

Project Lifecycle

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