The Tongzhiren TS-LB series vacuum disc filter is a key component in thermal power plants, providing efficient solid-liquid separation. Our equipment treats slurry and wastewater generated during operations, helping plants maintain efficiency and comply with environmental regulations at a significantly lower cost than traditional methods.
Role in Thermal Power Plants
Thermal power plants generate slurries, wastewater, and other byproducts containing solid particles. Efficient processing and treatment are necessary to minimize environmental impact and improve operations. Our vacuum disc filters are used in desulfurization processes.
Coal-fired thermal power plants often use flue gas desulfurization (FGD) systems to remove sulfur dioxide (SO₂) from exhaust gases. The FGD process produces a slurry containing calcium sulfite or gypsum that must be filtered before disposal or reuse. Vacuum disc filters separate solid byproducts from water in the slurry, enabling efficient waste management and reducing the environmental impact of sulfur compounds. Our equipment directly addresses the increasing focus of recent policies on environmental effects.
Advantages of Vacuum Disc Filters
Efficiency: Vacuum disc filters effectively separate fine solids from liquids, even under high solid concentrations.
Low Operating Costs: Their design reduces the need for chemical additives, lowering long-term operational costs.
Environmental Compliance: They help power plants meet environmental standards by minimizing solid waste and promoting water recycling.
Space-Efficient: Their compact design is ideal for power plants with limited space for filtration systems.
Our equipment is essential for thermal power plants to operate efficiently, safely, and in compliance with environmental regulations. Our ability to process slurry, wastewater, and other byproducts while recovering valuable water resources makes them indispensable in modern power generation. By employing our products, power plants can reduce waste, conserve resources, and enhance their environmental performance.