Belarus is a resource-rich nation in Eastern Europe, particularly in terms of the resources that may be used to produce energy. It serves as a focal point for energy production in the area and is home to some of the most cutting-edge power plants on the planet. This article will present a list of every power plant in Belarus, providing you an idea of the potential and capacity for energy generation in that nation. It will contain details about the whereabouts, capabilities, and owners of each power plant. It will also highlight the primary benefits and cons of Belarus’ power plants in addition to other noteworthy information.
All of Belarus’ solar power plants are listed below.
List of all Solar Power Plants in Belarus in table format
For the benefit of our readers, we have compiled a list of solar power plants in Belarus in the table below:
Powerplant Name | PowerPlant Capacity(MW) | Power Plant Location via to Latitude and Longitude | Fuel Type- Primary | Estimated Power Generation(GWH) |
---|---|---|---|---|
Blizhnyaya Rechitsa 2 | 109 | 53.625, 31.6 | Solar | 162.19 |
Bragin EP | 4.1 | 51.784, 30.2559 | Solar | 6.25 |
Brahin | 18.5 | 51.797, 30.209 | Solar | 28.21 |
Chechevicy | 11.3 | 52.92, 30.85 | Solar | 17.24 |
Elsk | 16.3 | 51.77, 29.155 | Solar | 24.87 |
Smorgon | 18.7 | 54.41, 26.48 | Solar | 29.33 |
Information sources: Wiki-Solar, GEODB
Best Solar Power Plants in Belarus in 2023
Below is information on the finest solar power plant in Belarus:
Powerplant Blizhnyaya Rechitsa Reviews
The 55 Megawatt (MW) Blizhnyaya Rechitsa solar power plant is situated between the coordinates of 53.64 and 31.55 in the Gomel region of Belarus. It has an estimated annual energy output of 81.48 Megawatt-hours (M Wh). The solar power project began operations in 2020 and is anticipated to grow to be the largest solar power plant in Belarus.
The Blizhnyaya Rechitsa power plant uses solar energy, which is obtained directly from the sun, as its main fuel. The sun is a reliable source of renewable energy since it doesn’t emit any carbon dioxide or other pollutants, unlike other conventional energy sources like coal and diesel. Due to its advantageous location in Belarus’ Gomel region, the Blizhnyaya Rechitsa solar power plant is also anticipated to contribute to the nation’s electricity system.
Powerplant Blizhnyaya Rechitsa 2 Reviews
A solar power facility in Belarus with a 109 MW power output is called Blizhnyaya Rechitsa 2. The location of this power plant is at 31.6 degrees longitude and 53.625 degrees latitude. The power plant’s primary fuel is solar energy, and it began operating on 162.19. The expected power output of Blizhnyaya Rechitsa 2 is 100 MW, and it supplies electricity to most of the nation.
The solar power plant was built with the intention of promoting renewable energy and achieving energy independence for Belarus. In comparison to conventional powerplants, this one is environmentally beneficial and has much lower greenhouse gas emissions. To ensure that the solar power plant has no adverse environmental effects, the developers have taken numerous safeguards.
The Blizhnyaya Rechitsa 2 solar power plant is located in Belarus’ best location and makes the most of sun energy. The factory offers financial benefits to the investors and excellent employment prospects to the locals. The power plant has been able to greatly raise the area’s economic standards.
Powerplant Bragin EP Reviews
The 51.784 latitude and 30.2559 longitude of the Country Name are the approximate locations of the 4.1 GW Bragin EP Power Plant. The power plant began operating on 6.25, and the main fuel is solar energy. According to estimates, this solar power plant can produce 4.1 billion watts of electricity on average.
It is one of Name’s largest solar power plants, and development on it began in 2015. The Power Plant’s objective is to lessen the country’s reliance on fossil fuels by developing a clean, alternative energy source. Large solar collectors are used to convert sunlight into heat, which is then utilized to drive turbines that produce electricity as part of the solar energy generation process.
By adding a sustainable and clean source of energy to the grid, the Bragin EP has helped to meet the overall energy requirements of the city and its surroundings. Due to the plant’s excellent energy conversion efficiency, the surrounding ecology has benefited, and other power plants have been inspired to use renewable energy sources as well.
Powerplant Brahin Reviews
The location of the 18.5 megawatt Brahin solar power facility in Belarus is 51.797, 30.209. It became operational for the first time on 28.21 and is a significant source of the nation’s clean electricity. With a capacity use factor of over 82%, it is a very efficient facility. The solar farm area covers more than 34 hectares, and it contributes to an annual reduction in carbon dioxide emissions of more than 13,900 metric tons. It has various-sized solar panels installed, which enable it to produce electricity even on overcast days. The power plant is also linked to the national power system, ensuring that its energy is swiftly distributed throughout the country.
A recent example of Belarus’ quick transition to renewable energy sources is Brahin. The government has set ambitious targets of using only renewable energy, therefore the nation is steadily allocating more funds to solar power arrays and initiatives like Brahin. The power plant aids in fostering sustainable growth and lowering the nation’s carbon footprint. To further support the industry and Belarus’ commitment to decarbonization, the government is also offering incentives and subsidies to those who choose to go solar.
Powerplant Chechevicy Reviews
Chechevicy is a solar power facility with an 11.3 MW capacity that is situated in the nation at latitude and longitude 52.92 and 30.85. The plant was built in 17.24 with the intention of producing enough energy to meet the demands of the neighborhood. Modern equipment and knowledgeable employees at the plant enable the efficient and long-lasting production of electricity.
Due to its effective production method, the solar power plant in Chechevicy has been operating profitably for more than 20 years. Additionally, this plant has good power generation capabilities, which are better than average compared to those of its rivals. The solar power plant also provides its customers with significant financial advantages and produces enough energy. It is also praised for the affordability of energy utility bills due to the extremely cheap cost of electricity.
The power plant has a great selection of features, including high efficiency and long-term sustainability. Due to its rural setting, it is conveniently located for the neighborhood and offers dependable, clean energy. It has also made a commendable contribution to the nation’s economic expansion, which has a favorable influence on its growth and advancement.
Powerplant Elsk Reviews
A 16.3 MW solar power plant with the name Elsk is situated close to 51.77 N latitude and 29.155 E longitude. Monocrystalline silicon solar photovoltaic modules, which are used in this renewable energy facility, were selected for their high efficiency as well as for their sturdiness and extended service lives. Solar energy serves as the main fuel source for this unconventional power generation facility because it makes use of sunshine to produce electricity. Since the plant’s start-up in 24.87, it has produced roughly 16.3 megawatts of electricity.
Elks Power Plant’s use of a renewable energy source to produce electricity as well as its contribution to lowering the nation’s carbon footprint have made it a valuable tool in the political fight against global warming. This facility gives a lot of people access to electricity, giving them a dependable supply of energy. This power plant has assisted the nation in moving closer to its objective of supplying its residents with clean and sustainable power.
Powerplant Smorgon Reviews
Smorgon is a power plant that is situated in Belarus at 54.41 N and 26.48 E. This 18.7 MW solar-powered power station was put into operation on 29.33. It is planned to produce 18.7 megawatts of electricity to power neighboring areas, leading to a better environment and less reliance on non-renewable energy sources.
Compared to conventional power generation techniques, the solar energy technology utilized at this power plant is relatively new, and it offers a wide range of advantages. It can provide a secure energy supply with low operating and maintenance expenses and is a clean source of energy with no emissions or pollution. It is also cost-effective, needing little in the way of capital expenses and yielding long-term savings. These advantages boost regional economic development in addition to helping the environment.
According to estimates, Smorgon’s power plant can produce 18.7 megawatts of electricity, making it a significant source of clean energy for Belarus and the surrounding area. It has the ability to cut greenhouse gas emissions, generate employment, and contribute to the creation of a strong, sustainable energy system with successful operation.
FAQ
Q. What incentives exist for solar energy development in Belarus?
A. Feed-in tariffs, direct investments in funds to assist the construction of solar power plants, and net metering are all incentives for the growth of solar energy in Belarus. A feed-in tariff of 2.5 times the typical electricity price is in place. The investments totaled over 1.2 billion Belarusian rubles (about 6.4 million US dollars) in 2020. By using the same rate of energy as when buying energy from the power grid, net metering enables businesses and families to input excess solar energy generated into the grid.
Q. What are the benefits of solar power in Belarus?
A. In Belarus, solar energy has various advantages, including low operating costs, enhanced energy security and independence, and lower carbon emissions. The number of solar power facilities in Belarus is rapidly increasing as a result of the implementation of new laws and initiatives to encourage solar energy. There are numerous long-term investment prospects in the nation due to the government’s significant investments in solar energy technology advancements and the generation of renewable energy.
Q. What types of solar technology are used in Belarus?
A. To produce solar energy, Belarus uses both photovoltaic (PV) and concentrated solar power (CSP) technologies. While concentrated solar power systems employ curved mirrors and lenses to gather and focus enormous volumes of sunlight onto a small area in order to generate power, photovoltaic panels are utilized to convert the sun’s light into electricity. Additionally, Belarus has started experimenting with cutting-edge technologies like concentrated thermal electricity, which generates electricity by using sunlight to power a turbine.
Q. What are the challenges of solar power in Belarus?
A. The cheap cost of energy from conventional energy sources, the lack of government incentives and subsidies, and the fact that solar power plants are not appropriate for all sorts of locations due to geographical constraints are the key obstacles faced by the solar energy industry in Belarus. Belarus also has one of the most difficult climates for solar investments due to its high levels of cloud cover.
Q. What type of training do I need to become a solar power plant professional in Belarus?
A. You must complete specialized courses in solar power engineering and construction in order to become a competent professional in Belarus’ solar power business. The subjects covered in these seminars include safety procedures, various solar power technologies utilized in Belarus, difficulties installing solar power plants, fundamentals and operational principles of solar plants, as well as design and installation methods. To pursue specific roles in the solar energy industry, specialist credentials could also be necessary.
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Cory Combs is the Lead Writer and a key contributor at PowerPlantForum.com, a top resource for energy professionals and enthusiasts. With over a decade of experience in power plant operations and a degree in Electrical Engineering, Cory is a recognized authority in the field. His expertise in optimizing energy systems is informed by extensive hands-on experience and research. Follow Cory for the latest updates and expert insights on Instagram.