SUSTAINABILITY
At Green Nova Energy, we take pride in employing cutting-edge technology that exceeds international standards.

Slag Treatment and Utilization
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It all begins with an idea. Maybe you want to launch a business. Maybe you want to turn a hobby into something more.
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It all begins with an idea. Maybe you want to launch a business. Maybe you want to turn a hobby into something more.
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It all begins with an idea. Maybe you want to launch a business. Maybe you want to turn a hobby into something more.

Slag Cooling and Utilization
After incineration, the slag is cooled and screened to remove impurities, ensuring that the slag quality meets the standards for building materials. Advanced cooling technology is used during the slag cooling process to improve cooling efficiency and reduce energy consumption.
Slag Brick Making
The screened slag can be used to produce slag bricks, which can be used for paving roads, constructing building walls, etc., realizing the recycling of resources. Slag bricks have good strength and durability, meeting national building material standards, providing an environmentally friendly and economical material choice for urban construction.
Wastewater Treatment and Utilization
Leachate treatment from waste: Equipped with advanced sewage treatment systems, the leachate from waste is subjected to advanced treatment. A combination of biological, chemical, andphysical treatment processes is employed to ensurethat the treated wastewater meets the national first-class A discharge standard. During the sewage treatment process, real-time monitoring of water quality parameters is conducted to ensure stable and reliable treatment effects.
Wastewater Reuse & Environmental Benefits: Partially treated wastewater is reused for greening irrigationand equipment cooling within the plant area, achieving therecycling of water resources and reducing dependence onexternal water resources. The wastewater reuse systememploys advanced filtration and disinfection technologies toensure that the quality of the recycled water meets usagerequirements, thereby improving the efficiency of water and reuse systems not only reduces wastewater discharge butresource utilization. The application of wastewater treatment0also alleviates environmental pressure, achieving sustainabledevelopment for waste incineration power plants.
GREEN NOVA ENERGY
GREEN NOVA ENERGY
Flue Gas Purification Technology
When waste is incinerated in combustion facilities, it produces hazardous air pollutants, including particulate matter (PM2.5 and PM10), carbon monoxide, acid gases, nitrogen oxides, and carcinogenic dioxins.
All waste produced during the combustion process is strictly treated, and emissions are carried out by meeting the European Union flue gas emission standards through the following methods.
Optimize Combustion Conditions /3TCombustion Control Method
Temperature: The furnace temperature is strictly controlled between 850~1100℃ to ensure that dioxin precursors are fully decomposed.
Time: High-temperature flue gas residence time>2s, Ensure complete combustion of organic matter.
Turbulence: By optimizing the grate design and air ratio, enhancing the disturbance in the combustion zone, and reducing local low-temperature areas.
Desulfurization and Denitrification Process
The flue gas purification process adopts a combination of technologies from Danish Niro and German Lurgi. The flue gas emitted from the waste heat boiler enters the flue gas purification system, where it undergoes desulfurization and denitrification treatments to remove harmful substances such as sulfur dioxide and nitrogen oxides.
Heavy Metal and Dust Removal
The flue gas purification system also includes the removal of heavy metals and dust removal processes, employing efficient filtration and adsorption technologies to remove heavy metals and dust particles from the flue gas. After treatment, the content of heavy metals and the concentration of dust in the flue gas are controlled at extremely low levels, ensuring safe emissions.
European Union Emission Standards
The purified flue gas strictly exceeds the European Union emission standards , ensuring that the impact on the environment is minimized . Regular monitoring of flue gas emissions is conducted to ensure the long-term stable operation of the purification system, meeting environmental protection requirements.
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