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Last Edited by
rajangupta
on
2013-03-13 23:42:34
History of Edits for Sorgenia Modugno CCGT Power Plant Italy
All Edits Awaiting Moderation
Quick Access Tools
Gas in Italy:
Abstract
Sorgenia Modugno CCGT Power Plant Italy is located at Modugno, Bari, Italy. Location coordinates are: Latitude= 41.1025, Longitude= 16.756. This infrastructure is of TYPE Gas Power Plant with a design capacity of 760 MWe. It has 3 unit(s). The first unit was commissioned in 2010 and the last in 2010. It is operated by Sorgenia SpA.
Identifiers for Gas
Name
Status of Plant
Please Select
Operating Fully
Operating Partially
Built and In Test Stage
Under Construction
Final Bid and Approval Stage
Design and Planning Stage
Mothballed Partial
Mothballed Full
Decommissioned
Plant Efficiency and Impact
Please Select
High Efficiency and Low Enivronmental Imapct
High Efficiency and Medium Environmental Impact
High Effciency and High Environmental Impact
Medium Efficiency and Low Environmental Impact
Medium Efficiency and Medium Environmental Impact
Medium Efficiency and High Environmental Impact
Low Efficiency and Low Environmental Impact
Low Efficiency and Medium Environmental Impact
Low Efficiency and High Environmental Imapct
Plant Overall Rating
State-of-the-art
Worth Duplicating
Environmentally Responsible
Country Assigned Identification Number
GEO Assigned Identification Number
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No universal currency
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Location
Latitude:
Longitude:
This location is:
Exact
Approximate
Within 50km
Unknown
Draw Lines:
Draw Polygons:
Width:
px
Height:
px
Bari , Italy
Description
Design Capacity (MWe)
Firm Capacity (MWe)
Heat Supply Capacity (MWth)
Type of Plant
Please Select
Gas Engines
Combined Cycle Gas Engine (CCGE)
Heat and Power GE
Heat and Power CCGE
Open Cycle Gas Turbine
Combined Cycle Gas Turbine
OCGT and CCGT
Thermal and OCGT
Thermal and CCGT
Thermal, OCGT and CCGT
Power and Heat Open Cycle Gas Turbine
Power and Heat Combined Cycle Gas Turbine
Power and Desalination Open Cycle Gas Turbine
Power and Desalination Combined Cycle Gas Turbine
Sub-critical Thermal
Heat and Power Steam Turbine
Super-critical Thermal
Ultra-Super-Critical Thermal
Short Description
Power Plant Used For
Please Select
Base Load
Base/Intermediate Load
Intermediate Load
Intermediate/Peak Load
Peaking Load
Peaking Load and Backup
Voltage Stabilization
Backup to Renewables
Cogeneration
Type of Fuel
Primary
Secondary
Please Select
Natural Gas
Naptha
LNG
Gas Oil
Fuel Oil
Light Fuel Oil/Diesel
Heavy Fuel Oil
Crude Oil
Residual Oil
Furnace Gas
Solar Thermal (Steam Cycle Input)
Waste (Oil, Gas)
Wood Waste
Biodiesel
Biogas
Coal
Lignite
Peat
Gas Supply (MMSCMD)
Required for 90% PLF
Linkage
Location
Configuration of Boiler/Turbine/Gen
Electric Power Grid Connected To
Please Select
National Grid
Regional Grid
Municipal Grid
Local Grid
Captive or Standalone Grid
Captive and Grid Connected
Name/Operator
PPA(years)
Name of SubStation Connected To
Source of Fuel
Name of Pipeline
Type of Cooling System
Source of Water
Water Withdrawal Rate at Full Power
(cum/hour)
Cogen Mode: Steam Supplied To
Please Select
Utility Company
Industry
Commercial Buildings
Residential Complex
Industry, Commercial and Residential
Desalination Plant
Other
(Tonnes/hour)
Description
Environmental Issues
Capital Cost of Plant
and/or In US Dollars
In Year (YYYY)
SOx Control Device Type
Please Select
Jet Bubbling Reactor
Circulating Dry Scrubber
Dual Alkali
Fluidized Bed
Dry Lime Flue Gas Desulfurization Unit
Wet Lime Flue Gas Desulfurization Unit
Mechanically Aided Type
Magnesium Oxide
Packed Type
Sodium Based
Spray Dryer Type
Spray Type
Venturi Type
Wet Limestone
Other
If other, specify:
NOx Control Device Type
Please Select
Advanced Overfire Air
Biased Firing
Fluidized Bed Combuster
Combustion Modification/Fuel Reburning
Dry Low NOx Premixed Technology
Flue Gas Recirculation
Fuel Reburning
Water Injection
Low Excess Air
Low NOx Burner
Low NOx Burner with Overfire Air
Low NOx Burner Technology with Close Coupled Overfire Air
Low NOx Burner technology with separated Overfire Air
Low NOx Burner Technology with Close Coupled and Separated Overfire Air
Low NOx Burner Technology for Cell Burners
Ammonia Injection
Overfire Air
Slagging
Selective Catalytic Reduction
Selective Noncatalytic Reduction
Steam Injection
Other
If other, specify:
Particulates(PM) Control Device Type
Please Select
Electrostatic Precipitator
Other
Bag House (Fabric Filter)
If other, specify:
Associated Infrastructure (AI)
Unit Information
Unit #
Capacity (MWe)
Date Commissioned (yyyy-mm-dd)
Decommission Date (yyyy-mm-dd)
Turbine Manufacturer
Turbine Model/Type
Generator Manufacturer
Generator Model/Type
Boiler/HRSG Manufacturer
Boiler/HRSG Model/Type
Chimney Height
Unit Efficiency (%)
1
2
3
Year Emission Control Devices Installed (YYYY)
Year Emission Monitoring Devices Installed (YYYY)
NOx
SOx
Hg
CO2
N2O
PM
NOx
SOx
Hg
CO2
N2O
PM
1
2
3
Environmental Issues
Issue 1
Please Select Category
Emissions: Pollutants (SOx, NOx, ... )
Emissions: Toxic Chemicals (Hg, Pb, ...)
Emissions: Volatile Organics
Emissions: Particulates
Emissions: Green House Gases
Water Contamination
Water Depletion
Land Pollution
Land: Toxic Waste
Land Degradation
Land Submersion
Land Subsidence
Soil Erosion
Deforestation
Impact on Wildlife
Impact on Fisheries
Impact on Scenic Beauty
Displacement of People
Other
Description
Past and Future Major Upgrades
Upgrade 1
Cost
Year
-
Owner and Operator Information
Owner 1
% Share
Type of Ownership
Construction/EPC Contractor
Operating Company
Regulatory Authority
Project Financed By
Annual Performance
Performance Statistics for
2020-2029
2010-2019
2000-2009
1990-1999
1980-1989
1970-1979
1960-1969
1950-1959
Comments
Comment 1
References
Reference 1
Reference 2
Reference 3
Reference 4
Reference 5
Notes
*
cum = cubic meters; MWe = Megawatts electric; 1 KWhr = 3412.3 Btu = 859.85 kilocalories; 1 Tonne = 2205 pounds, MM=million