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NIGRI1,320 MW Coal

Coal

Nigri power plant serves as a cornerstone of energy generation in India, reflecting the country’s ambitious initiatives to strengthen its electricity supply. Commissioned in 2014, this coal-fired power facility has a significant capacity of 1320 MW, making it an integral part of the national and regional energy landscape. The primary fuel utilized is coal, with oil functioning as a secondary fuel, which adds versatility to its operational capabilities. As India continues to expand its energy infrastructure, Nigri plays a vital role in addressing the rising demand for electricity in its vicinity and beyond. Located at coordinates 24.1500° N and 81.9045° E, Nigri is positioned in a region where energy resources are crucial for supporting economic activities and improving the quality of life. This strategic placement allows the power plant to efficiently connect with the local grid, thereby enhancing the reliability and availability of electricity for both urban and rural populations. The energy produced by Nigri not only caters to immediate local needs but also contributes to the overall stability of the regional energy system. The technology employed at Nigri is centered around modern coal combustion processes, enabling it to operate effectively while adhering to environmental guidelines. The 1320 MW capacity signifies its capability to meet substantial energy demands, particularly during peak usage times. Additionally, the inclusion of oil as a secondary fuel ensures that the plant can maintain continuous operation, thus mitigating disruptions that can arise from coal supply fluctuations. As one of the key players in India’s coal power sector, Nigri exemplifies the nation’s commitment to utilizing its abundant coal resources to support energy security. The plant is operated by skilled professionals focused on optimizing performance and minimizing environmental impact, aligning with the country’s energy policy goals. By reinforcing the grid and providing a steady supply of electricity, Nigri contributes significantly to the development of the surrounding area, making it a vital asset in India’s energy landscape.

Capacity
1,320 MW

1.32 GW

Commissioning Year
2014

12 years old

Owner
Madhya Pradesh Power Generating Company
Location
24.1500°, 81.9045°

India, Asia

Location
Coordinates:: 24.150000, 81.904500
Open in Google Maps
Technical Details
Primary Fuel Type
Coal
Energy Source
Non-Renewable
Country
India
Continent
Asia
Data Source
Global Power Plant Database
NIGRI Power Plant: A Pillar of India's Coal-Fired Energy Capacity

The NIGRI Power Plant is a significant coal-fired power generation facility located in India, with a total installed capacity of 1320 megawatts (MW). Commissioned in 2014, it plays a crucial role in addressing the increasing energy demands of the country, particularly in regions where coal remains a primary source of fuel for electricity generation. The plant is an essential component of India's ongoing efforts to bolster its energy infrastructure and support economic growth through reliable power supply.

As a coal-fired power plant, NIGRI utilizes coal as its primary fuel source. Coal is one of the most abundant fossil fuels in India, making it a widely used energy source for electricity generation. The plant employs advanced technology to enhance the efficiency of coal combustion and electricity production. The fuel type is significant not only for its energy density but also for the infrastructure already in place for coal extraction, transportation, and usage in India. The availability of domestic coal reserves reduces dependency on imports, contributing to energy security.

Despite its importance in the energy sector, the use of coal poses environmental challenges. Coal combustion releases a range of pollutants, including carbon dioxide (CO2), sulfur dioxide (SO2), nitrogen oxides (NOx), and particulate matter, which can have adverse effects on air quality and contribute to climate change. The NIGRI Power Plant, like many coal facilities, faces scrutiny regarding its environmental impact. To mitigate these effects, the plant may implement various pollution control technologies, such as flue gas desulfurization systems and electrostatic precipitators, aimed at reducing emissions and adhering to regulatory standards.

Regionally, the NIGRI Power Plant serves as a critical energy provider, supporting local industries and households alike. By supplying a stable power source, it enables economic development and enhances the quality of life for the surrounding population. The establishment of this power plant has also created employment opportunities, both directly and indirectly, contributing to the local economy. Furthermore, the plant's operational efficiency is vital for maintaining grid stability and meeting peak demand periods.

In summary, the NIGRI Power Plant represents a pivotal element of India’s coal-based energy landscape. With its considerable capacity, it addresses the energy needs of a growing population while also facing the challenges associated with coal usage. As India continues to navigate its energy transition, the role of coal-fired plants like NIGRI will be a topic of ongoing discussion, balancing energy requirements with environmental considerations.

IndiaEnergy Profile
1,805
Total Plants
513.9 GW
Total Capacity
CoalGasHydroSolar
Top Fuels
Understanding Coal as a Power Generation Energy Source

Coal has long been a cornerstone of electricity generation worldwide, with a significant presence in the global energy landscape. As of recent data, there are approximately 2,608 coal power plants operating across 74 countries, boasting a total installed capacity of 2,257.3 gigawatts (GW). The leading nations in coal power generation include China, with 1,018 plants generating 1,038.0 GW, India with 287 plants at 253.3 GW, and the United States with 291 plants producing 252.0 GW. Other notable contributors include Germany and Japan, with 130 plants and 76.8 GW, and 61 plants and 63.9 GW, respectively. This widespread utilization reflects the essential role coal has played in the development of industrial and residential power systems globally.

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