The LNG Gasification Equipment serves as a critical infrastructure solution for cities and industrial zones transitioning to cleaner energy. Acting as a specialized LNG satellite station, it integrates receiving, storage, and distribution functions, enabling the seamless transfer of liquefied natural gas from manufacturers to end-users. This system is particularly essential for regions lacking pipeline gas access or those requiring supplemental peak-load gas sources to ensure energy security.
Engineered for efficiency and reliability, the gasification station combines low-temperature storage tanks, air-heated vaporizers, and precision pressure regulation systems. With a compact structure and high degree of automation, this equipment provides a rapid deployment option for energy-deficient areas, ensuring a stable supply of natural gas through an optimized technological process of unloading, pressurization, vaporization, and odorization.
| Design Pressure | 1.6 MPa | Operating Pressure | 0.02 - 0.8 MPa |
|---|---|---|---|
| Vaporization Capacity | 20 - 10,000 Nm³/h | Safety Valve Pressure | 0.84 MPa |
| Design Temperature (Pre) | -196°C to +50°C | Design Temperature (Post) | -20°C to +50°C |
| Strength Test Pressure | 2.4 MPa | Airtight Test Pressure | 1.92 MPa |
| Flowmeter Accuracy | Level 1.0 - 1.5 | Recuperative Voltage | 380V |
Zero energy consumption during vaporization and no environmental contamination, significantly reducing carbon footprints.
Optimized design minimizes pressure drops and energy waste, leading to extremely low long-term maintenance and operation costs.
Utilizes an aluminum "bridge" connection to eliminate mechanical stress caused by heat expansion and cold contraction.
Equipped with an auxiliary water bath heater to ensure natural gas outlet temperatures remain above 5°C in cold climates.
All components are manufactured according to JB/T2549-94 and Q/OYN01-2017 enterprise standards for maximum quality.
Integrated control systems for unloading, pressure regulation, and metering ensure safe and reliable autonomous operation.
Real-time tracking of LNG levels in low-temperature storage tanks to optimize refueling schedules.
Automated adjustment of pressure levels from storage to the municipal pipeline network.
Instant notification systems for safety valve triggers and abnormal pressure fluctuations.
Intelligent management of water bath heaters to prevent gas temperature drops below 5°C.
High-precision flow metering with Level 1.0-1.5 accuracy for commercial billing and auditing.
Controlled LNG transfer from tankers to storage tanks using specialized pressurizers.
| Metric | Traditional Gas Stations | LNG Gasification System |
|---|---|---|
| Construction Period | Long (Pipeline based) | Short (Modularized) |
| Energy Consumption | High (Heating based) | Near Zero (Air-heated) |
| Operating Costs | Moderate to High | Very Low |
| Environmental Impact | Higher Carbon Footprint | Eco-friendly/No Pollution |
| Market Response | Slow Deployment | Rapid Deployment |
It serves as a satellite station for receiving, storing, and distributing LNG, acting as an intermediate hub to transfer gas from manufacturers to municipal users.
When ambient temperatures cause the natural gas outlet to drop below 5°C, an auxiliary water bath heater is connected to maintain the required temperature.
The equipment is built according to the JB/T2549-94 Technical Specification for Aluminum-made Air Separation Plants and the Q/OYN01-2017 Enterprise Standard.
The system is highly scalable, offering vaporization capacities ranging from 20 Nm³/h up to 10,000 Nm³/h to meet various demand scales.
The air-heated vaporizer is designed for zero energy consumption and no contamination, keeping operational costs extremely low.
An LNG unloading pressurizer is used to increase the pressure in the tanker, allowing the liquid LNG to be delivered into the low-temperature storage tank.