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China LNG Transport Vehicle Suppliers for Ceramics and Glass Factory - Efficient Liquid Natural Gas Solutions
Product Details
The ceramic production process requires the use of high temperature kiln for sintering and firing. LNG has gradually become the main fuel for kilns because of its high calorific value and clean combustion characteristics. Because there is almost no sulfide and dust emissions after LNG combustion, the pollution of ceramic products is reduced and the quality of products is improved. At the same time, the stable combustion and high thermal efficiency of LNG help to achieve precise temperature control and improve the stability of the production process.
In glass production, LNG is also used as a high-temperature fuel to melt raw materials in glass furnaces because of its high calorific value, stability and clean combustion characteristics. The carbon dioxide and water vapor produced after the combustion of LNG have less impact on the quality of the glass, reduce the mixture of impurities, and improve the transparency and purity of the glass products. At the same time, the heat generated by LNG combustion is evenly distributed, which helps to control the temperature gradient during the glass melting process and reduce defects such as bubbles and streaks.
Parameters
| Parameter Item | Value | Unit |
|---|---|---|
| Design pressure: Inner Cylinder | 0.65 | MPa |
| Design pressure: Enclosure | -0.1 | MPa |
| Design temperature: Inner Cylinder | -196 | ° C |
| Design temperature: Enclosure | 50 | ° C |
| Heat insulation form | High vacuum multi-layer insulation | |
Factory Pictures



Frequently Asked Questions
Why is LNG preferred for ceramic production kilns?
LNG is preferred due to its high calorific value and clean combustion characteristics. Since it produces virtually no sulfide and dust emissions, it reduces product pollution, improves ceramic quality, and allows precise temperature control.
How does LNG benefit the glass melting process?
In glass production, LNG combustion generates carbon dioxide and water vapor that have minimal impact on glass quality, reducing impurities and enhancing transparency. Its even heat distribution also helps control the temperature gradient to minimize defects like bubbles and streaks.
What are the design pressure specifications for the inner cylinder and enclosure?
The design pressure for the Inner Cylinder is 0.65 MPa, while the design pressure for the Enclosure is -0.1 MPa.
What are the design temperature limits of this equipment?
The design temperature for the Inner Cylinder is -196 °C, and the design temperature for the Enclosure is 50 °C.
What type of heat insulation is utilized in the design?
The equipment utilizes high vacuum multi-layer insulation to ensure optimal thermal performance.






