India

Sikka Thermal Power Station — 500 MW Coal

Coal Verified

Sikka Thermal Power Station is a 500 MW coal power plant located in India. View location, capacity, and technical details.

Capacity
500 MW

Installed

Commissioned
2015

Year online

Owner
Gujarat State Electricity Corporation Limited

Operator

Location
22.42, 69.83

Coordinates

Insights

#294
largest in %s
#1,571
largest %s worldwide
#4,581
largest worldwide
2015
%d yrs newer than avg
28
operated by %s
37
plants within 100 km

Technical Details

Fuel Type
Coal
Capacity
500 MW
Commissioned
2015
Status
Operational
Owner
Gujarat State Electricity Corporation Limited
Country
India
Coordinates
22.421, 69.828
Wikipedia
Link

Estimated Carbon Footprint

Annual CO₂
1,975,380 t

tonnes / year

Lifetime CO₂
79,015,200 t

over ~%d yrs

Intensity
820 g

gCO₂ per kWh

Annual emissions equal to

429,430
cars / year
263,384
homes / year
89,790,000
trees to offset

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

Nearby Stations

About this plant

Sikka Thermal Power Station, located in the state of Gujarat, India, is a significant coal-fired power plant with a total installed capacity of 500 megawatts (MW). Owned and operated by Gujarat State Electricity Corporation Limited (GSECL), this facility plays a crucial role in meeting the electricity demands of the region and contributes to the overall energy security of the country. As one of the prominent power generation units in Gujarat, Sikka Thermal Power Station is integral to the state’s efforts to provide reliable and sustainable electricity to its growing population and industries.

The power station utilizes coal as its primary fuel source, which is a common choice for thermal power plants due to its abundance and cost-effectiveness. Coal is converted into thermal energy through combustion in steam boilers, which produce high-pressure steam that drives turbines to generate electricity. Despite the economic advantages of coal, its use presents environmental challenges, particularly in terms of carbon emissions and air quality. The combustion of coal releases significant amounts of carbon dioxide (CO2), sulfur dioxide (SO2), and particulate matter, which contribute to air pollution and climate change. In response to these environmental concerns, many coal-fired power plants, including those in India, are increasingly being equipped with technologies aimed at reducing emissions, such as flue gas desulfurization (FGD) systems and electrostatic precipitators (ESPs).

In the context of India’s energy sector, Sikka Thermal Power Station plays a vital role in bolstering the country’s capacity to produce electricity, particularly during peak demand periods. Gujarat, being one of the most industrialized states in India, relies heavily on a stable power supply to support its manufacturing and commercial activities. The power generated at Sikka contributes to the state’s grid, helping to stabilize electricity supply and ensuring that both urban and rural areas have access to reliable power. Furthermore, as India continues to work towards increasing its renewable energy share, coal-fired plants like Sikka are expected to complement these efforts by providing a stable baseload power supply while the transition to cleaner energy sources is underway.

The regional significance of Sikka Thermal Power Station extends beyond electricity generation. The plant supports local economies through job creation, both directly and indirectly, by providing employment opportunities and stimulating ancillary industries. Additionally, the plant’s operations can impact local ecosystems and communities, necessitating careful management of its environmental footprint. Efforts to mitigate these impacts include investing in pollution control technologies and community engagement initiatives aimed at fostering positive relationships with nearby residents.

In summary, Sikka Thermal Power Station stands as a crucial component of Gujarat’s energy infrastructure, helping to meet the electricity demands of a rapidly developing region while facing the dual challenges of environmental sustainability and economic growth. Its reliance on coal underscores the ongoing complexity of energy generation in India, where the need for reliable power must be balanced with environmental considerations.

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