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Dust Collectors for Waste Incineration

Waste incineration is a thermal treatment process that burns municipal, industrial, and hazardous waste at high temperatures (850–1100°C) to reduce volume and generate energy. The process includes waste feeding, combustion, heat recovery, flue gas treatment, and ash disposal. While incineration effectively reduces landfill waste and recovers energy, it produces flue gases containing dust, dioxins, heavy metals, and acidic gases (SO₂, HCl, NOx). Advanced dust collection systems are essential to capture fine particulates and toxic emissions, ensuring environmental compliance and air quality.

Municipal Solid Waste (MSW)

Industrial Waste

Medical Waste

Sewage Sludge

How to Choose Dust Collectors for Waste Incineration

Waste incineration produces high-temperature flue gas containing fine dust, dioxins, heavy metals, and acidic gases (SO₂, HCl, NOx). These pollutants are toxic, corrosive, and harmful to the environment. Effective dust collection requires high-temperature and corrosion-resistant filters. Baghouse filters, ESPs, and wet scrubbers efficiently capture fine particulates and hazardous gases, ensuring regulatory compliance and air quality. Multi-stage filtration and activated carbon injection help control dioxins and heavy metals, making modern incineration cleaner and safer.

High-Temperature Resistance

Waste incineration generates flue gases at 850–1100°C, requiring heat-resistant filter materials like fiberglass, PTFE, or ceramic filters.

High-Efficiency Filtration

Must effectively capture fine particulates, dioxins, heavy metals, and acidic gases (SO₂, HCl, NOx).

Corrosion and Chemical Resistance

Flue gases contain acidic and corrosive compounds, so dust collectors need acid-resistant coatings and chemically stable filters.

Continuous and Heavy-Duty Operation

Incineration plants operate 24/7, requiring automatic filter cleaning systems (pulse-jet or wet scrubbing) to maintain performance.

Dioxin and Heavy Metal Control

Activated carbon injection systems and multi-stage filtration help reduce toxic emissions.

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