20-90 Ton Coal Boiler
SHX Coal-fired CFB Hot Water Boiler

SHX Coal-fired CFB Hot Water Boiler

Product thermal capacity: 7 - 91MW

Working pressure: 1.25-2.5MPA

Outlet temperature: 95/70℃, 115/70℃

Available fuel: Bituminous coal, anthracite, meagre coal, lignite, gangue, waste, sludge

Available industries: Chemical, food, tobacco, textile, printing and dyeing, feed, medicine, building material, wine, rubber, hospital

Introduction of SHX Coal-fired CFB Hot Water Boiler

As a new mature high-efficiency and low-pollution clean coal technology, coal-fired cfb hot water boiler has many advantages that other combustion methods do not have. Circulating fluidized bed combustion is low-temperature combustion, so the NOx emission is much lower than that of pulverized coal furnace, only 200ppm. CFBC can desulfurize directly during the combustion process, and the desulfurization efficiency is high. The technology and equipment are simple and economic, and the costs of its initial investment and operation are much lower than those of dry pulverized coal furnace and flue gas desulfurization (PC+FCD). The discharged ash residue has good activity and is easy to be comprehensive utilized without secondary ash residue pollution. The load adjustment range is large, and the low load can be reduced to about 30% of the full load.

Technical advantages of SHX Coal-fired CFB Hot Water Boiler

High temperature cyclone separator

High efficiency, wear resistance, separation efficiency ≥ 98%, effectively improve the combustion efficiency of the boiler thermal efficiency.

Large furnace design

Large furnace, low velocity design; the application of wearproof tube technology, reducing erosive abrasion.

Extend the residence time of coal particles in the furnace so that the coal can be fully burned. Bell jar type hood.

Adopt bell type hood to distribute air averagely and avoid fuel reverse to wind chamber.

Low bed pressure operation

By particle optimization, the operating bed pressure can be decreased to 3500Pa, which effectively saves operating costs and greatly reduces the oxynitride generated.


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