Gas turbine SGT-700
for power generationmechanical drivecombined-cycle

Gas turbine - SGT-700 - Siemens Energy - Power and heat generation - for power generation / mechanical drive / combined-cycle
Gas turbine - SGT-700 - Siemens Energy - Power and heat generation - for power generation / mechanical drive / combined-cycle
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Gas turbine - SGT-700 - Siemens Energy - Power and heat generation - for power generation / mechanical drive / combined-cycle - image - 3
Gas turbine - SGT-700 - Siemens Energy - Power and heat generation - for power generation / mechanical drive / combined-cycle - image - 4
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Gas turbine - SGT-700 - Siemens Energy - Power and heat generation - for power generation / mechanical drive / combined-cycle - image - 6
Gas turbine - SGT-700 - Siemens Energy - Power and heat generation - for power generation / mechanical drive / combined-cycle - image - 7
Gas turbine - SGT-700 - Siemens Energy - Power and heat generation - for power generation / mechanical drive / combined-cycle - image - 8
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Characteristics

Type
gas
Applications
for power generation, mechanical drive
Other characteristics
combined-cycle
Rated power kW

33,000 kW, 35,000 kW
(44,867.5 hp, 47,586.74 hp)

Description

The SGT-700 is derived from the SGT-600 and is designed to offer you higher output and efficiency as well as lower emissions with a wide fuel range capability. This gas turbine is an ideal fit for power generation and mechanical drive applications. With the high exhaust heat, it is also excellent for cogeneration as well as for combined cycle applications. Excellent fuel flexibility The SGT-700 offers best-in-class fuel flexibility that allows for high content of inert gases, hydrogen and heavy hydrocarbons: •Ethane 100% •Propane 100% •Butanes and heavy alkanes 15% •Hydrogen 40% •Nitrogen 40% • H2S 3% Third-generation DLE system The SGT-700 features a third-generation dual-fuel Dry Low Emissions (DLE) combustion system: •NOx emissions level < 15 vppm •CO emissions level < 20 vppm •Turn down 50% load •Same DLE system for dual and liquid operation •NOx emissions on liquid fuels < 58 ppmvd •CO emissions on liquid fuels 99% •On-site or off-site maintenance •24-hour swap capability •17 maintenance days in 15 years •30,000 equivalent operating hours (EOHs) between hot section inspections •Part load operation increases the time between overhauls

Exhibitions

Meet this supplier at the following exhibition(s):

Hyvolution 2025
Hyvolution 2025

28-30 Jan 2025 paris (France) Stand 4M91

*Prices are pre-tax. They exclude delivery charges and customs duties and do not include additional charges for installation or activation options. Prices are indicative only and may vary by country, with changes to the cost of raw materials and exchange rates.