Waste Liquid Incinerator
Organic Waste Liquid incinerator
Introduction/What is it
Organic Waste Liquid Incinerator is a high-efficiency thermal treatment system designed for the safe disposal of high-concentration organic wastewater and hazardous liquids. It operates based on the principle of complete oxidation, converting the chemical energy contained in waste liquids into usable thermal energy, such as steam or hot water, while eliminating harmful organic compounds.
theory
Organic Waste Liquid Incinerator is based on the fundamental principles of thermal oxidation and combustion heat transfer. It is designed to safely and efficiently destroy high-concentration organic wastewater and hazardous liquids, converting their chemical energy into reusable thermal energy such as steam or hot water. This process ensures complete pollutant elimination while improving overall energy utilization and reducing environmental impact.
The incineration chamber adopts a multi-stage oxidation design that guarantees uniform temperature distribution and high combustion efficiency. Equipped with corrosion-resistant refractory linings and a stable feeding and atomization system, the unit operates reliably under high organic load conditions and can withstand continuous service temperatures up to 1,200 °C.
Its core function is to thermally oxidize and decompose organic compounds into harmless CO₂ and H₂O, while recovering the released heat through waste heat boilers or energy exchangers to produce steam or hot water for industrial use. This integrated process achieves both safe disposal and efficient energy recovery.
The system is widely used in chemical, pharmaceutical, pesticide, and fine chemical industries, providing a reliable and sustainable solution for high-organic wastewater treatment. By combining thermal oxidation with waste heat recovery, it supports green, low-carbon, and circular industrial development.
RUIDING SMART MANUFACTURING, MEETING SAFETY STANDARDS.
Organic Waste Liquid Incinerator
ADVANTAGES
Efficient Combustion
High-temperature oxidation achieves >99.99% destruction of organic pollutants, ensuring clean and stable operation.
Energy Recovery
Integrated waste heat recovery reduces fuel use by 20–30% and provides usable steam or hot water.
Durable Materials
Refractory and corrosion-resistant alloys withstand up to 1,200 °C with long service life.
Smart Control
Automated operation improves safety and cuts maintenance costs by over 30%.