1223 MW RLNG Based Combine Cycle Power Plant, Balloki (EPC)

Habib Rafiq (Pvt) Ltd (Developers)

The 1223 MW RLNG Based Combine Cycle Power Plant at Balloki is a major electricity generation project developed to support the national grid with efficient and reliable power. Located in Punjab, the plant operates on re gasified liquefied natural gas and uses modern combine cycle technology that enhances fuel efficiency and reduces environmental impact. The EPC works include installation of advanced turbines, heat recovery systems and essential civil and structural development.

Key Features and Project Details

  • Location: Situated in Balloki Punjab with strong connectivity for RLNG supply and grid integration.
  • Capacity: Total planned electricity generation of 1223 MW through high efficiency combine cycle systems.
  • Technology: Uses RLNG based combine cycle process that produces more power with improved fuel efficiency.
  • EPC Scope: Includes engineering, procurement and construction of gas turbines, steam turbines and heat recovery systems.
  • Main Equipment: Features modern gas turbines, steam turbines, heat recovery steam generators and cooling systems.
  • Civil Works: Includes foundation development, structural assembly, equipment installation and supporting infrastructure.
  • Fuel Supply: Operates on RLNG with a dependable supply chain supporting consistent plant operation.
  • Environmental Measures: Equipped with emission control systems to ensure compliance with environmental standards.
  • Economic Impact: Expected to reduce electricity shortages and support long term industrial and commercial expansion.

The 1223 MW RLNG Based Combine Cycle Power Plant Balloki is a key EPC power project aimed at strengthening the national grid through efficient RLNG based generation supported by modern engineering and durable infrastructure.

Contact Info

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Documents

Generation Licence – 1275.50 MW RLNG Combined Cycle Power Plant, Balloki (NEPRA, 2016)
Tariff Determination – 1275.50 MW RLNG Balloki Power Plant (NEPRA, 2016)

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