Daily Current Affairs : 28-February-2024
The Solar Energy Corporation of India Limited (SECI) has made a full-size development in renewable energy via launching India’s biggest Battery Energy Storage System (BESS) in Rajnandgaon, Chhattisgarh. With an excellent hooked up capability of forty MW/120 MWh, this task is a top-notch fulfillment in the quest for sustainable electricity solutions.
Combining Solar and Battery Storage
This modern challenge integrates sun photovoltaic (PV) panels with battery storage systems. By doing so, it addresses the task of assembly height energy demands. Here’s the way it works:
- Solar Panels: These panels capture sunlight and convert it into power.
- Battery Storage: The power generated all through the day is saved in batteries, making it to be had for use all through times of excessive call for, together with evenings or cloudy days.
This aggregate now not best helps in dealing with power deliver however also ensures stability in strength transport.
Ensuring Power Stability
The BESS challenge plays a vital role in maintaining energy balance. It achieves this via:
- Efficient Power Evacuation: The machine allows for smooth and efficient transfer of energy from the sun panels to the grid.
- Reliable Transmission: It complements the reliability of the energy supply, lowering the probabilities of outages and disruptions.
Environmental Impact
One of the most huge benefits of the Rajnandgaon venture is its fantastic effect at the surroundings. It is envisioned to keep a sizeable amount of carbon dioxide emissions every yr. This reduction is essential for fighting weather exchange and promoting a purifier ecosystem.
Financial Support and Collaboration
The challenge has garnered financial guide from numerous official groups, along with:
- The World Bank
- Clean Technology Fund
- Domestic Lending Agencies
This collaboration demonstrates a robust commitment to sustainable financial preparations and highlights the importance of teamwork in tackling energy challenges.
Important Points:
Project Overview: India’s largest Battery Energy Storage System (BESS) launched by SECI in Rajnandgaon, Chhattisgarh, with a capacity of 40 MW/120 MWh.
Solar and Battery Integration:
- Solar photovoltaic (PV) panels convert sunlight into electricity.
- Battery storage allows for energy generated during the day to be used during peak demand times.
Power Stability:
- Ensures efficient power evacuation from solar panels to the grid.
- Enhances reliability of energy supply, reducing outages and disruptions.
Environmental Benefits:
- Expected to significantly reduce carbon dioxide emissions annually.
- Contributes to combating climate change and promoting a cleaner environment.
Financial Support:
- Funded by The World Bank, Clean Technology Fund, and domestic lending agencies.
- Highlights collaborative efforts for sustainable financial arrangements.
Why In News
The Solar Energy Corporation of India Limited (SECI) has commissioned India’s largest Battery Energy Storage System (BESS) in Rajnandgaon, Chhattisgarh, with an installed capacity of 40 MW/120 MWh, marking a significant milestone in the country’s renewable energy landscape and enhancing its ability to meet growing energy demands sustainably.
MCQs about Rajnandgaon BESS: Pioneering Sustainable Energy in India
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What is the installed capacity of India’s largest Battery Energy Storage System (BESS) commissioned by SECI?
A. 20 MW/60 MWh
B. 30 MW/90 MWh
C. 40 MW/120 MWh
D. 50 MW/150 MWh
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What primary benefit does the BESS project provide during peak energy demand times?
A. Decreases solar panel efficiency
B. Reduces energy costs
C. Stores energy generated during the day for later use
D. Increases greenhouse gas emissions
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Which of the following organizations provided financial support for the BESS project?
A. United Nations
B. Clean Technology Fund
C. International Monetary Fund
D. Asian Development Bank
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What is one of the significant environmental impacts of the Rajnandgaon BESS project?
A. Increased carbon emissions
B. Decreased solar energy production
C. Significant reduction in carbon dioxide emissions
D. Higher electricity prices
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