About Us
Ever-power(Australia) Co., Ltd. is a high-tech enterprise specializing in the comprehensive treatment of volatile organic compounds (VOCs) waste gas and carbon reduction and energy-saving technologies. It possesses four core technologies: thermal energy, combustion, sealing, and automatic control. It has the ability to simulate temperature fields and air flow fields for modeling and calculation. It has the ability to test the performance of ceramic heat storage materials, the comparison and selection of zeolite molecular sieve adsorption materials, and the high-temperature incineration oxidation characteristics of VOCs organic substances.
The company’s headquarters is located in Hangzhou, Zhejiang Province. It has an aerospace R&D and design center in Xi ‘an and a production base in Yangling, with a production area of 3,000 square meters. The company currently has over 360 employees, including more than 60 R&D and technical backbones. Among them, there are 3 senior engineers at the researcher level, 6 senior engineers, and 2 thermodynamics doctors. The company takes rotary regenerative thermal oxidizer (RTO) and zeolite molecular sieve adsorption concentration rotor as its core products. Combining its own expertise in environmental protection and thermal energy system engineering technology, it can provide customers with comprehensive solutions for industrial waste gas treatment and thermal energy utilization carbon reduction under various working conditions.
We take it as our responsibility to “implement the national military-civilian integration strategy and enhance the technology of the national environmental protection industry”, and launch products and services with “environmental protection as the purpose, efficient governance as the strength, and energy conservation as the goal”, which have been widely recognized by the market. We are determined to pursue the harmonious development of environmental protection and economic growth.

Honors and Qualifications
The company has applied for 65 patents of various types based on its core technologies, including 16 invention patents.
Professional Equipment
Together with the University of Chinese Academy of Sciences and Xi’an Jiaotong University, we have established the “National Engineering Laboratory for Volatile Organic Pollution Control Materials and Technologies – Shaanxi Branch”, focusing on research on thermal storage combustion technology and zeolite molecular sieve adsorption technology, establishing a technology research sharing platform, and promoting common technological progress across the industry.
Thermal Oxidation Technology Test Bed
Valve High Temperature Sealing Technology and Performance Testing Test Bench
Zeolite Molecular Sieve Adsorption Efficiency Laboratory
Combustion Control Technology and Ceramic Heat Storage Material Energy Efficiency Test Bed
Zeolite Rotor and Catalyst Efficiency Test Bed
Performance Test of Key Materials
As a professional service provider of comprehensive industrial waste gas treatment solutions, we are well aware of the complexity and technical challenges of industrial waste gas treatment, so we are committed to providing comprehensive, high-precision professional equipment and service support. Our product matrix covers equipment from raw material testing to finished product performance evaluation, including but not limited to: fully automatic thermal shock resistance tester designed for ceramic heat storage bricks to accurately evaluate their thermal shock resistance; flame photometer for K and Na element detection of ceramic heat storage bricks, and multi-element rapid analyzers such as Si and Al to ensure accurate control of material composition; for aluminum silicate insulation cotton, we provide high-temperature thermal conductivity tester and slag ball content tester to comprehensively analyze its insulation performance and purity; for sealing materials, Akron abrasion tester and heat resistance and corrosion resistance tester go hand in hand to ensure the long-term stability of the sealing effect; in addition, the crystal structure analysis of zeolite molecular sieves relies on advanced electron microscopes, while the adsorption penetration and desorption curve test bench of zeolite modules accurately simulates actual working conditions and optimizes adsorption efficiency and regeneration performance. This series of professional equipment together constitutes a solid foundation for us to provide customers with customized and high-efficiency industrial waste gas treatment solutions.
Factory Show
Innovative Technology
Energy-saving technology
Anti-corrosion technology
- Material anti-corrosion technology
- Coating anti-corrosion technology
- Pre- and post-treatment anti-corrosion technology
- Quick drainage technology
Anti-clogging technology
Bottom heat storage brick quick replacement technology
High temperature reverse baking technology
Salt silicon powder flushing technology
Circulating air LEL reduction and concentration technology
The low-concentration exhaust gas is recycled multiple times with a concentration ratio of 3-5 times, and the concentrated exhaust gas is then sent to the RTO for treatment. The ratio of exhaust air and return air can be automatically controlled by the LEL concentration detector.
25 core security measures
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Fire-blocking facilities |
Concentration detection |
Dilution measures |
Emergency bypass |
Safety valve |
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High-temperature bypass valve |
Explosion venting facilities |
Temperature control |
Differential pressure monitoring |
Temperature difference monitoring |
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Flame detection |
Dual control of gas |
Dual control of valves |
Electrical explosion-proof |
Ignition control |
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Power failure control |
Emergency stop control |
APP remote monitoring |
Exhaust temperature control |
Waste heat recovery control |
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Equipment self-inspection |
Automatic stop in case of fault |
Abnormal alarm |
Intelligent interlocking |
Overall solution |
Denitrification, low-nitrogen technology
Low-NOx Control Technology
Thermal NOx : Using low-NOx burners
Fast NOx : Controlling combustion oxygen content
Denitrification Technologies (Fuel Based NOx)
SCR Denitrification
SNCR Denitrification
Non-organized, low concentration exhaust gas treatment technology
Waste gas heat energy utilization
Hot water waste heat recovery
Low pressure steam waste heat recovery
Heat transfer oil waste heat recovery
Hot air waste heat recovery