Natural gas energy-saving system and treatment method using tourmaline ceramic and magnetization synergy

The natural gas energy-saving system, which utilizes the synergistic effect of tourmaline ceramsite and magnetization, solves the problems of carbon buildup and reduced thermal efficiency in combustion equipment during natural gas combustion, achieving efficient and stable combustion and extending catalyst life.

CN122168349APending Publication Date: 2026-06-09JIANGSU AIJIA ZHIZAO TECH CO LTD

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
JIANGSU AIJIA ZHIZAO TECH CO LTD
Filing Date
2026-03-26
Publication Date
2026-06-09

AI Technical Summary

Technical Problem

In the natural gas combustion process, existing technologies make it difficult to achieve a balance between cost, stability, and adaptability when using only catalysts or magnetizers, leading to problems such as carbon buildup in combustion equipment, reduced thermal efficiency, and excessive exhaust emissions.

Method used

The natural gas energy-saving system employs the synergistic effect of tourmaline ceramsite and magnetization. Through the combination of multi-stage precision filters, magnetic-catalytic coupling reactors and burners, a high-gradient magnetic field is formed using tourmaline-based supported catalysts and permanent magnet arrays to achieve pretreatment and regulation of natural gas. Combined with an intelligent control module, the magnetic field strength is adjusted in real time to optimize the combustion process.

Benefits of technology

It improves the stability and efficiency of natural gas combustion, extends the service life of catalysts, reduces carbon buildup, lowers operation and maintenance costs, and achieves high-efficiency combustion under low-temperature conditions.

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Abstract

This invention discloses a natural gas energy-saving system and treatment method employing the synergistic effect of tourmaline ceramic particles and magnetization. The system includes a multi-stage precision filter, a tourmaline-based supported catalyst filled inside a magnetic-catalytic coupling reactor, and the spontaneous polarization characteristics of the tourmaline support synergistically activate natural gas molecules. An array of permanent magnets arranged in a Halebeck structure or a multi-pole opposing focusing structure is installed outside or inside the reactor to form a high-intensity gradient magnetic field in the catalyst bed. An intelligent control module is also included to monitor the natural gas composition and dynamically adjust the magnetic field strength. This invention, through deep coupling of the magnetic field and tourmaline catalysis, reduces the reaction activation energy and operating temperature, extends the catalyst life, and adapts to gas quality fluctuations by intelligently adjusting the magnetic field strength, thus solving the problems of easy deactivation of single catalysts and unstable single magnetization effects, effectively improving the stability of natural gas treatment.
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