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Ruiding environmental protection technology
LATEST PROJECT
Sustainable energy
Waste Purification & Environmental Pollution
The thermal oxidation technology combination provided by Ruiding Environmental Protection can efficiently and reliably convert polluting gases such as VOCs, HAPs, and odorous gases into CO2, water, and heat, helping customers reduce their negative impact on the environment.
off-gas system solutions
CO, RCO, RTO, TO system application solutions, efficient and sustainable solutions to off-gas pollution
Off-gass treatment
- Sustainable
- Long lifespan
The chemical industry refining process usually operates at high temperatures (approximately 590°C to 980°C) to break down harmful substances to operate, releasing the resulting gases into the atmosphere.
Industrial waste liquid treatment
Quickly remove molten salt and particulate matter and cool down quickly while reducing equipment corrosion.
Waste liquid treatment
- Reduce harmful substances
- Reduce carbon emissions
Liquid nitrogen incinerator can mineralize harmful compounds such as chlorine, benzene, and phenols in the waste liquid to reduce waste generation and prevent diffusion. It is widely used in chemical, as long as, printing and dyeing, ship electronics and other industries.
Incineration of industrial waste
Automatic feeding and automatic ash discharge, equipped with SNCR (Selective Catalytic Reduction) denitrification device, which can remove NOx generated under high temperature conditions
Solid wastes treatment
- High thermal efficiency
- Prevent harmful gas leakage
- Reduce emissions
Including all kinds of hazardous solid, liquid, semi-solid coal residues, etc., including but not limited to biochemical oil mud, burnt oil mud, various kinds of mineral residues, filtrate, high concentration liquid, medical equipment and other general industrial products.
Improve energy recovery
Capture the steam value brought by waste combustion, improve economic benefits, and create considerable added value for users.
Heat recovery system
- Corrosion resistant
- Advanced technology
Heat recovery systems can recover heat from air pollution control systems, such as thermal oxidizers, regenerative thermal oxidizers or catalytic oxidizers, not only reducing operating costs but also reducing greenhouse gas (GHG) emissions.
The heat recovery system is suitable for a variety of applications including process exhaust gases with heating or cooling requirements, in-plant heating, part drying processes, equipment designed to reduce carbon emissions, preheating combustion air and processes requiring hot water.
SPECIAL BOILER
Tailored thermal solutions for complex industrial waste in petrochemical, pharmaceutical, and solid waste sectors.
SPECIAL BOILER
- Efficient energy recovery
- Emissions reduction
High-efficiency thermal equipment custom-designed for complex industrial applications, capable of treating chemical waste gas, liquid waste, and saline wastewater. Widely used in petrochemical, pharmaceutical, solid waste, and chemical residue treatment.
FLARE SYSTEM
Tailored gas-disposal and thermal recovery solutions for complex industrial waste streams in petrochemical, refining, LNG and off-gas sectors.
Flare system
- Reliable performance
- Precision control
Flare systems safely combust excess or waste gases from petrochemical and chemical processes, ensuring stable pressure relief and low-emission operation.
Designed for VOC destruction, purge gas handling, and emergency flaring, RUIDING systems deliver high combustion efficiency, low noise, and smokeless performance under demanding industrial conditions.
Custom Burners
High-efficiency combustion solutions for petrochemical, waste treatment, and energy recovery applications—precise, reliable, and low-emission.
Custom Burners
- High precision
- Advanced combustion
Custom burners provide efficient and stable combustion for various industrial fuels, including natural gas, biogas, and process gases. They ensure precise flame control, high thermal efficiency, and reliable performance in applications such as process heating, oxidation, incineration, and energy recovery.