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IVM Eeklo

Babcock & Wilcox Renewable Service (B&W) won the order for replacement of superheaters 1, 2 and 3 and on-site Inconel® cladding in the first boiler pass of IVM’s waste-to-energy line 2 in Eeklo, Belgium.

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Energnist on 18-month intervals: We save three weeks every three years
Every three years, Energnist gains three weeks of operation and saves the costs of preparing for the maintenance shutdown. One and a half years between maintenance shutdowns can provide benefits if thoroughly prepared.

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Waste-to-Energy Technology Case Study

The DynaGrate® combustion system is the result of more than 40 years of development. The air-cooled grate is ideal for the incineration of both domestic and industrial waste because of the high efficiency combustion, excellent utilization of energy and good bottom ash quality.

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Hatfield’s Ferry Station Case Study

The wet flue gas desulfurization (FGD) system from Babcock & Wilcox (B&W) features a combination of design components to provide a high level of reliability and removal efficiencies. These include B&W's signature dual tray tower design that provides excellent gas-to-liquid contact and uniform flow distribution through the absorber spray zones; its patented inlet awning; interspatial headers to reduce absorber height, pump power requirements, and internal support costs; forced oxidation system; a

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Fort Martin Case Study

The wet flue gas desulfurization (FGD) system from Babcock & Wilcox (B&W) features a combination of design components to provide a high level of reliability and removal efficiencies. These include B&W's signature dual tray tower design that provides excellent gas-to-liquid contact and uniform flow distribution through the absorber spray zones; its patented inlet awning; interspatial headers to reduce absorber height, pump power requirements, and internal support costs; forced oxidation system; a

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Wet Flue Gas Desulfurization System Midwestern Case Study 2

Babcock & Wilcox (B&W) wet flue gas desulfurization (FGD) systems feature a combination of design components to provide the industry’s highest level of reliability and removal efficiencies. These include B&W's signature tray tower design to provide excellent gas to liquid contact and uniform flow distribution through the absorber spray zones; its patented inlet awning, interspatial headers to reduce absorber height, pump power requirements, and internal support costs; forced oxidation system; an

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Spray dryer absorber, pulse jet fabric filter and mercury control systems result in high SO2 removal efficiency and low operation and maintenance costs.

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