Pakistan

Haveli Bahadur Shah Power Plant — 1,230 MW Natural Gas

Natural Gas Verified

Haveli Bahadur Shah Power Plant is a 1,230 MW gas power plant located in Pakistan. View location, capacity, and technical details.

Capacity
1,230 MW

Installed

Commissioned
2017

Year online

Owner
Pakistan Power Generation Company Limited (GENCO)

Operator

Location
31.13, 72.19

Coordinates

Insights

#32
largest in Pakistan
#506
largest Natural Gas worldwide
#1,819
largest worldwide
2017
18 yrs newer than avg
1
operated by Pakistan Power Generation…
8
plants within 100 km

Technical Details

Fuel Type
Natural Gas
Capacity
1,230 MW
Commissioned
2017
Status
Operational
Owner
Pakistan Power Generation Company Limited (GENCO)
Country
Pakistan
Coordinates
31.127, 72.190
Wikipedia
Link

Carbon Footprint

Annual CO₂
2,375,843 t

tonnes / year

Lifetime CO₂
71,275,302 t

over ~30 yrs

Intensity
490 g

Est. gCO2/kWh

Annual emissions equivalent to

516,488
cars per year
316,779
homes per year
107,992,882
trees to offset

Indicative estimate from standard life-cycle emission and capacity factors — not a measured figure. Open calculator

Nearby Plants

About this plant

The Haveli Bahadur Shah Power Plant is a prominent gas-fired power facility located in Pakistan, with a total installed capacity of 1230 megawatts (MW). This power plant plays a crucial role in addressing the energy demands of Pakistan, a country that has faced significant challenges in meeting its electricity needs due to a growing population and industrial sector. As part of the government’s strategy to diversify its energy mix and improve energy security, the Haveli Bahadur Shah Power Plant contributes to reducing the electricity shortfall and ensuring a more reliable power supply for both residential and commercial consumers.

The power plant primarily utilizes natural gas as its fuel source, which is known for being a cleaner alternative to coal and oil in terms of emissions. Natural gas combustion produces lower levels of sulfur dioxide (SO2), nitrogen oxides (NOx), and particulate matter compared to traditional fossil fuels, making it a more environmentally friendly option. The Haveli Bahadur Shah Power Plant employs state-of-the-art combined cycle technology, which enhances its efficiency by utilizing both gas and steam turbines. This technology not only maximizes output but also minimizes fuel consumption, thereby optimizing operational costs and reducing greenhouse gas emissions.

Despite being a cleaner energy source, the reliance on natural gas does present certain environmental concerns. The extraction and transportation of natural gas can result in methane emissions, a potent greenhouse gas that contributes to climate change. Furthermore, the sustainability of natural gas as a long-term energy solution is often debated, particularly in the context of the finite nature of fossil fuel resources. Nonetheless, the Haveli Bahadur Shah Power Plant represents a significant step towards cleaner energy generation in Pakistan, contributing to the reduction of the country’s carbon footprint while providing essential electricity.

Regionally, the Haveli Bahadur Shah Power Plant holds strategic significance as it enhances the energy infrastructure of the Punjab province, one of the most populous and industrially active regions in Pakistan. The plant helps to stabilize the grid and supports economic growth by providing reliable power to various sectors, including manufacturing, agriculture, and services. In a country where energy shortages have historically hampered economic development, the successful operation of this power plant is vital for attracting investment and fostering industrial expansion.

In summary, the Haveli Bahadur Shah Power Plant stands as a key asset in Pakistan’s energy landscape. With its substantial capacity and cleaner fuel technology, it plays an essential role in meeting the country’s energy needs while striving towards more sustainable practices. As Pakistan continues to develop its energy sector, the insights gained from the operation of this facility could inform future projects aimed at enhancing energy security and environmental stewardship.

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