Investment in the renewable sectors of Germany

Renewable energy investment in Germany is growing mainly in solar and wind power sectors, which form the backbone of the energy security and sustainability of Europe’s largest economy.

Germany has been a global leader in renewable energy adoption and investment for a long time.

Country’s total renewable energy production has increased from less than 100 TWh in 2009 to 256 TWh in 2022, and this figure continues to grow. Recent geopolitical changes have given a powerful impetus to the RES development, requiring to reduce dependence on imported hydrocarbons.

CP Finance UK supports the development of modern energy projects throughout Europe, including Germany. Our team offers financing for the construction and modernization of solar power plants, wind farms, hydroelectric power plants and geothermal projects.

We are ready to facilitate obtaining long-term bank financing and attract a large investment loan from private investors for your ambitious plans.

Contact us to find out more.

Renewable energy sector in Germany

The renewable energy investment in Germany has been a key focus area for the country’s transition to a low-carbon economy.

With vast and diverse natural resources, this country prefers to develop solar power plants and large wind farms as the most technologically advanced and affordable sources of green energy. New geothermal technologies are also actively developed and researched here.

According to recent global reports, Germany is not among the world leaders in the development of renewable energy, behind countries such as the United States, China, Brazil and India in terms of absolute installed capacity added. However, Germany has been considered a leader in specific renewable energy sectors. For example, it has been at the forefront of wind energy installations, both onshore and offshore, and has made significant investments in solar photovoltaics.

Germany has a strong agricultural sector that plays a crucial role in the country’s economy.

No wonder that Germany has also a large bioenergy sector, including biomass, biogas, and biofuel production.

This sector has created investment opportunities in areas such as biomass sourcing, biogas plant operations, and biofuel manufacturing.

Germany has implemented various incentives to support the growth of renewables. The Renewable Energy Sources Act (Erneuerbare-Energien-Gesetz, EEG) guarantees feed-in tariffs for renewable energy producers, providing long-term investment security. The government has also set targets for the share of renewable energy in the total energy mix, aiming for 65% by 2030 and 80% by 2050.

The growth of the renewable energy investments in Germany has led to the creation of thousands jobs. According to the Federal Ministry for Economic Affairs and Energy, the renewable energy industry employed around 290,000 people in 2020. These jobs span across various segments of the sector, including manufacturing of electrical equipment and components, engineering, installation, operation and maintenance services.

Germany’s commitment to renewable energy has not only reduced its reliance on fossil fuels but has also positioned the country as one of European leaders in clean energy and sustainable technologies.

The ongoing transition to renewable energy investment in Germany has attracted large investments, driven capital-intensive innovation, and contributed to the country’s efforts to combat climate change.

Wind energy sector development in Germany

With around 30,000 wind turbines across the country, both offshore and onshore, Germany is one of the European leaders in wind power investment.

It is a significant contributor to country’s RES mix.

Germany has historically utilized a very effective and flexible feed-in tariff system to incentivize investment in RES sector, including wind power. Under the EEG, wind energy producers receive guaranteed payments for the electricity they generate. The feed-in tariffs are set based on various factors such as project size, location, and technology.

The country has invested heavily in the construction of offshore wind farms in the North and Baltic Seas. At the end of 2022, Germany’s offshore wind park had over 1,500 turbines with a total installed capacity of over 8 GW. Previously, German government has set a target of installing 20 GW of offshore wind capacity by 2030 as part of its efforts to achieve an energy transition.

Germany has a substantial onshore wind capacity as well.

The Federal Network Agency (Bundesnetzagentur, BNetzA) reported that by the end of 2020, the onshore wind capacity in Germany was approximately 54 GW.

There are tens of thousands of wind turbines all over the country, especially in the flat regions with rich wind resources in northern Germany.

For example, Lower Saxony (Niedersachsen) is considered the largest onshore wind power region in Germany. It has a diverse landscape that includes flat areas, hills, and coastal regions, making it favorable for wind energy production. The region has a very high concentration of onshore wind turbines, particularly in areas such as Aurich, Emden, and Wilhelmshaven.

Here are some of the largest wind farms in Germany with their installed capacities:

• EnBW Hohe See and Albatros wind farms. These offshore facilities consist of 87 wind turbines, which are located in the North Sea close to each other and about 100 kilometers from the coast. With a total installed capacity of 640 MW, both power plants generate 2.5 billion kWh of energy annually, enough to power more than 700,000 German households.

• Amrumbank West Offshore Wind Farm. Situated in the North Sea, Amrumbank West Offshore Wind Farm has an installed capacity of 302 MW. It consists of 80 wind turbines and is operated by E.ON. The wind farm began operations in 2015.

• Gode Wind 1 & 2 Offshore Wind Farms. Located in the North Sea, Gode Wind 1 and Gode Wind 2 are adjacent offshore wind farms. Gode Wind 1 has an installed capacity of 330 MW, while Gode Wind 2 has a capacity of 252 MW.

• Riffgat Offshore Wind Farm. Located in the North Sea, the Riffgat Offshore Wind Farm has an installed capacity of 108 MW. It consists of 30 large wind turbines and is operated by EWE AG. The wind farm began operations in 2014.

• BARD Offshore 1 Wind Farm. BARD Offshore 1, situated in the North Sea, was one of the first commercial-scale offshore wind farms in Germany. It has an installed capacity of 400 MW, consisting of 80 wind turbines. The wind farm began operations in 2013.

• Alpha Ventus Offshore Wind Farm. Alpha Ventus in the North Sea was Germany’s first offshore wind farm. It has an installed capacity of 60 MW, generated by 12 wind turbines. The wind farm was commissioned in 2009 and serves as a test field for new technologies.

Germany has transitioned to an auction-based system for allocating wind energy projects.

Since 2017, offshore and onshore wind projects are awarded through competitive auctions. This shift has led to cost reductions in the sector and increased efficiency in project development.

Germany has also been focusing on repowering, which involves replacing old wind turbines with newer and more efficient ones. Repowering investment projects contribute to increasing the overall capacity and optimizing the energy output of wind farms. By repowering existing sites, country aims to maximize the potential of wind energy resources in several years.

As the wind energy sector expands, Germany faces challenges in integrating renewable energy into the grid effectively.

The country is investing in grid infrastructure upgrades, energy storage solutions, and demand-response mechanisms to manage the variability of wind energy generation.

Thanks to huge private investments and government support, Germany has become a global leader in wind energy technology and has successfully exported its expertise and technology to other countries. Local companies are involved in manufacturing wind turbines, components, and providing consulting services for wind energy projects worldwide.

Germany is home to prominent companies that manufacture turbines and wind power equipment. Below we have listed several major wind energy equipment manufacturers based in Germany.

• Siemens Gamesa Renewable Energy. Siemens Gamesa is a leading global provider of wind turbines and related services. The company manufactures onshore and offshore wind turbines ranging from 2 to 15 MW. Siemens Gamesa has a significant presence in the wind energy market and is involved in projects around the world.

• Enercon GmbH. Enercon is a company specializing in the production of onshore wind turbines. It offers a range of turbine models, including direct-drive and gearless turbines. Enercon is known for its innovative technology and has a substantial market share in Germany and internationally.

• Nordex Group. Nordex is a global wind turbine manufacturer headquartered in Germany. The company produces onshore wind turbines with capacities ranging from 2.4 to 6.0 MW. Nordex has a strong presence in Europe and other international markets and offers a comprehensive range of wind energy solutions.

• Senvion SE. Senvion is a large wind turbine manufacturer that provides onshore and offshore wind turbines. The company offers a wide range of turbine models suitable for various wind conditions and project sizes. Senvion focuses on technological advancements and has a strong presence in the global wind energy market.

Germany continues to invest in research and development to enhance wind energy technologies.

Advancements in turbine design, improved efficiency, and grid integration solutions are among the most important ongoing research areas. Innovations such as floating offshore wind turbines and hybrid renewable energy systems are being explored to expand the potential of wind energy.

For example, Leibniz University Hannover hosts the Institute of Turbomachinery and Fluid Dynamics, which conducts research on wind turbine aerodynamics, rotor blade design, and wind energy system optimization. The TUM Department of Mechanical Engineering has a dedicated Wind Energy Research Group that conducts research in turbine aerodynamics, control systems, and wind farm optimization.

RWTH Aachen University, University of Stuttgart, and University of Oldenburg are also actively engaged in research and development in the field of wind energy.

Germany has a powerful waste-to-energy sector (WtE), which involves the conversion of municipal solid waste and industrial waste into electricity and heat. Waste incineration plants equipped with energy recovery systems play a crucial role in country’s renewable energy production.

Germany has limited geothermal resources compared to other countries, but it has been steadily investing its geothermal sector. Geothermal energy utilizes heat from beneath the Earth’s surface for electricity generation and heating. The focus in Germany is on the so-called deep geothermal energy, which involves drilling deep wells to access hot water or steam. Several geothermal power plants and district heating systems are currently in operation.

If you are interested in the development of a new renewable energy investment in Germany, our company is ready to assist your business at all stages.

We offer long-term financing for the construction of power plants and energy infrastructure in Germany, as well as provide a full range of professional management, engineering and financial consulting services.

Contact the CP Finance UK for more information.

CP Finance UK FINANCE LIMITED
Website:https://c-pfinanceuk.com/
E-mail:finance@cpuk-financeltd.com
Alt-Email:admin@cpukfinanceltd.com

 

Read More

Financing the renewable energy sector of Germany

According to recent global reports, Germany is not among the world leaders in the development of renewable energy, behind countries such as the United States, China, Brazil and India in terms of absolute installed capacity added. However, Germany has been considered a leader in specific renewable energy sectors. For example, it has been at the forefront of wind energy installations, both onshore and offshore, and has made significant values in solar photovoltaics and Investment of renewable energy in Germany

Germany has a strong agricultural sector that plays a crucial role in the country’s economy.

Investment of renewable energy in Germany has been a key focus area for the country’s transition to a low-carbon economy.

With vast and diverse natural resources, this country prefers to develop solar power plants and large wind farms as the most technologically advanced and affordable sources of green energy. New geothermal technologies are also actively developed and researched here.

No wonder that Germany has also a large bioenergy sector, including biomass, biogas, and biofuel production.

This sector has created investment opportunities in areas such as biomass sourcing, biogas plant operations, and biofuel manufacturing.

Germany has implemented various incentives to support the growth of renewables. The Renewable Energy Sources Act (Erneuerbare-Energien-Gesetz, EEG) guarantees feed-in tariffs for renewable energy producers, providing long-term investment security. The government has also set targets for the share of renewable energy in the total energy mix, aiming for 65% by 2030 and 80% by 2050.

The growth in the Investment of renewable energy in Germany has led to the creation of thousands jobs. According to the Federal Ministry for Economic Affairs and Energy, the renewable energy industry employed around 290,000 people in 2020. These jobs span across various segments of the sector, including manufacturing of electrical equipment and components, engineering, installation, operation and maintenance services.

Renewable energy has not only reduced its reliance on fossil fuels but has also positioned Germany as one of European leaders in clean energy and sustainable technologies.

The ongoing transition to renewable energy has attracted large investments, driven capital-intensive innovation, and contributed to the country’s efforts to combat climate change.

Investment of renewable energy in Germany

Country’s total renewable energy production has increased from less than 100 TWh in 2009 to 256 TWh in 2022, and this figure continues to grow. Recent geopolitical changes have given a powerful impetus to the RES development, requiring to reduce dependence on imported hydrocarbons.

Investment of renewable energy in Germany is growing mainly in solar and wind power sectors, which form the backbone of the energy security and sustainability of Europe’s largest economy.

Germany has been a global leader in renewable energy adoption and investment for a long time.

CP Finance UK supports the development of modern energy projects throughout Europe, including Germany.

We offer financing for the construction and modernization of solar power plants, wind farms, hydroelectric power plants and geothermal projects.

We are ready to facilitate obtaining long-term bank financing and attract a large investment loan from private investors for your ambitious plans.

Contact us to find out more.

Wind energy sector development in Germany

Germany has historically utilized a very effective and flexible feed-in tariff system to incentivize investment in RES sector, including wind power. Under the EEG, wind energy producers receive guaranteed payments for the electricity they generate. The feed-in tariffs are set based on various factors such as project size, location, and technology.

The country has invested heavily in the construction of offshore wind farms in the North and Baltic Seas. At the end of 2022, Germany’s offshore wind park had over 1,500 turbines with a total installed capacity of over 8 GW. Previously, German government has set a target of installing 20 GW of offshore wind capacity by 2030 as part of its efforts to achieve an energy transition.

With around 30,000 wind turbines across the country, both offshore and onshore, Germany is one of the European leaders in wind power investment.

It is a significant contributor to country’s RES mix.

The Federal Network Agency (Bundesnetzagentur, BNetzA) reported that by the end of 2020, the onshore wind capacity in Germany was approximately 54 GW.

There are tens of thousands of wind turbines all over the country, especially in the flat regions with rich wind resources in northern Germany.

For example, Lower Saxony (Niedersachsen) is considered the largest onshore wind power region in Germany. It has a diverse landscape that includes flat areas, hills, and coastal regions, making it favorable for wind energy production. The region has a very high concentration of onshore wind turbines, particularly in areas such as Aurich, Emden, and Wilhelmshaven.

Some of the largest wind farms in Germany with their installed capacities:

• BARD Offshore 1 Wind Farm. BARD Offshore 1, situated in the North Sea, was one of the first commercial-scale offshore wind farms in Germany. It has an installed capacity of 400 MW, consisting of 80 wind turbines. The wind farm began operations in 2013.

• Alpha Ventus Offshore Wind Farm. Alpha Ventus in the North Sea was Germany’s first offshore wind farm. It has an installed capacity of 60 MW, generated by 12 wind turbines. The wind farm was commissioned in 2009 and serves as a test field for new technologies.

• EnBW Hohe See and Albatros wind farms. These offshore facilities consist of 87 wind turbines, which are located in the North Sea close to each other and about 100 kilometers from the coast. With a total installed capacity of 640 MW, both power plants generate 2.5 billion kWh of energy annually, enough to power more than 700,000 German households.

• Amrumbank West Offshore Wind Farm. Situated in the North Sea, Amrumbank West Offshore Wind Farm has an installed capacity of 302 MW. It consists of 80 wind turbines and is operated by E.ON. The wind farm began operations in 2015.

• Gode Wind 1 & 2 Offshore Wind Farms. Located in the North Sea, Gode Wind 1 and Gode Wind 2 are adjacent offshore wind farms. Gode Wind 1 has an installed capacity of 330 MW, while Gode Wind 2 has a capacity of 252 MW.

Germany has transitioned to an auction-based system for allocating wind energy projects.

Since 2017, offshore and onshore wind projects are awarded through competitive auctions. This shift has led to cost reductions in the sector and increased efficiency in project development.

Germany has also been focusing on repowering, which involves replacing old wind turbines with newer and more efficient ones. Repowering investment projects contribute to increasing the overall capacity and optimizing the energy output of wind farms. By repowering existing sites, country aims to maximize the potential of wind energy resources in several years.

As the wind energy sector expands, Germany faces challenges in integrating renewable energy into the grid effectively.

The country is investing in grid infrastructure upgrades, energy storage solutions, and demand-response mechanisms to manage the variability of wind energy generation.

Thanks to huge investment of renewable energy in Germany and government support, Germany has become a global leader in wind energy technology and has successfully exported its expertise and technology to other countries.

Local companies are involved in manufacturing wind turbines, components, and providing consulting services for wind energy projects worldwide.

Germany is home to prominent companies that manufacture turbines and wind power equipment. Below we have listed several major wind energy equipment manufacturers based in Germany.

• Siemens Gamesa Renewable Energy. Siemens Gamesa is a leading global provider of wind turbines and related services. The company manufactures onshore and offshore wind turbines ranging from 2 to 15 MW. Siemens Gamesa has a significant presence in the wind energy market and is involved in projects around the world.

• Enercon GmbH. Enercon is a company specializing in the production of onshore wind turbines. It offers a range of turbine models, including direct-drive and gearless turbines. Enercon is known for its innovative technology and has a substantial market share in Germany and internationally.

• Nordex Group. Nordex is a global wind turbine manufacturer headquartered in Germany. The company produces onshore wind turbines with capacities ranging from 2.4 to 6.0 MW. Nordex has a strong presence in Europe and other international markets and offers a comprehensive range of wind energy solutions.

• Senvion SE. Senvion is a large wind turbine manufacturer that provides onshore and offshore wind turbines. The company offers a wide range of turbine models suitable for various wind conditions and project sizes. Senvion focuses on technological advancements and has a strong presence in the global wind energy market.

Germany continues to invest in research and development to enhance wind energy technologies.

Advancements in turbine design, improved efficiency, and grid integration solutions are among the most important ongoing research areas. Innovations such as floating offshore wind turbines and hybrid renewable energy systems are being explored to expand the potential of wind energy.

For example, Leibniz University Hannover hosts the Institute of Turbomachinery and Fluid Dynamics, which conducts research on wind turbine aerodynamics, rotor blade design, and wind energy system optimization. The TUM Department of Mechanical Engineering has a dedicated Wind Energy Research Group that conducts research in turbine aerodynamics, control systems, and wind farm optimization.

RWTH Aachen University, University of Stuttgart, and University of Oldenburg are also actively engaged in research and development in the field of wind energy.

Investment in geothermal power, biomass, and other renewables

Although these energy alternatives account for a relatively small share of total renewable energy investments, German companies and scientific institutions are developing these areas as an important underpinning to photovoltaics and wind energy.

Tidal energy:
Germany has been exploring the potential of tidal energy, primarily in the North Sea and Baltic Sea. Tidal power involves capturing the energy from ocean tides and converting it into electricity using turbines. Several small experimental and commercial tidal energy investment projects are under development, with the aim of tapping into the country’s coastal resources.

Waste-to-energy technologies:
Germany has a powerful waste-to-energy sector (WtE), which involves the conversion of municipal solid waste and industrial waste into electricity and heat. Waste incineration plants equipped with energy recovery systems play a crucial role in country’s renewable energy production.

Solar thermal energy:
Solar thermal energy harnesses the sun’s heat to generate hot water, space heating, and process heat. Solar thermal systems, such as solar water heaters and solar district heating, are deployed across Germany, but investment in this technology is relatively low.

Geothermal energy:
Germany has limited geothermal resources compared to other countries, but it has been steadily investing its geothermal sector. Geothermal energy utilizes heat from beneath the Earth’s surface for electricity generation and heating. The focus in Germany is on the so-called deep geothermal energy, which involves drilling deep wells to access hot water or steam. Several geothermal power plants and district heating systems are currently in operation.

Biomass:
Biomass plays a vital role in renewable energy mix, especially in agricultural regions. It involves the use of organic materials, such as wood pellets, agricultural residues, and energy crops, to produce heat, electricity, and biofuels. Biomass power plants and combined heat and power (CHP) systems are deployed across the country. In 2021, biomass accounted for up to 8% of Germany’s total electricity generation.

If you are interested in the development of a new investment project in the field of renewable energy, our company is ready to assist your business at all stages.

We offer long-term financing for the construction of power plants and energy infrastructure in Germany, as well as provide a full range of professional management, engineering and financial consulting services.

Contact the CP Finance UK for more information.

Email:finance@cpuk-financeltd.com
Website:https://c-pfinanceuk.com/

 

Read More

Financing and construction loans for geothermal power plants

The focal points and main interests of many companies who are interested  developing capital-intensive projects to exploit the internal heat of different parts of the globe is geared towards Geothermal power plants financing 

According to research, 99% of the planet has temperatures above 1000°C, with temperatures over 5000°C prevailing in the interior of the Earth.

The heat content of our planet is 1010 exajoules.

This energy is theoretically sufficient to cover the energy needs of mankind for 250,000 years.

Nevertheless, despite the enormous economic potential, geothermal energy still covers no more than 1% of all our needs. In 2020, the world produced about 90 TWh of electricity from geothermal sources (excluding thermal energy), which corresponds to only 0.3 exajoules.

Geothermal energy, unlike solar and wind energy, is constant throughout the day and is not subject to weather fluctuations that require support from other energy sources. 

An important advantage of geothermal power plants is a high capacity factor, often exceeding 90%, which is significantly superior to other renewable energy technologies.

The growing popularity of geothermal heat pump heating systems is driving the rapid development of technology in this area, making pumps more efficient and profitable.

Geothermal power plants financing cost

Many governments are supporting these investments by setting preferential conditions for financing geothermal energy. Some market experts predict that the number of geothermal power plants in Europe will double in the next 5-6 years.

Geothermal energy projects today are in the process of intensive development, continuing to change based on new research around the world.

The construction of a medium-sized geothermal power plant usually requires an investment of several tens of millions of euros.

The cost of such facilities reaches 5.5 million euros per megawatt of installed capacity, but this figure can vary greatly depending on the technology used, geological features, temperature and other factors. Easily accessible heat sources located at a shallow depth underground make it possible to reduce the cost of a geothermal power plant to 2.5 million euros per megawatt of installed capacity and even lower.

Factors that affect investment costs for Geothermal power plants financing :
Research and exploration work.
Location selection and development of the site.
Choice of technology and engineering solution.
Labor costs and related costs.
Operating and maintenance costs.

An analysis of the costs of building geothermal power plants shows that equipment costs are linearly related to installed capacity. The cost of the above-ground part of a geothermal facility is on average 1 million euros per 1 MW, although this figure is dependent on the technology chosen.

Significant funds are needed initially for the purchase of land, since each megawatt of installed capacity requires an average of 2000 to 3000 square meters of land, not counting the surrounding “safety belt” around the power plant.

All this, together with the huge costs of engineering services, licenses and permits, means that only serious companies with significant financial resources or government support can afford the construction of geothermal power plants.

Meanwhile, the cost of electricity produced by geothermal power plants built after 2020 averages 2.5 euro cents per kilowatt. This makes geothermal energy quite competitive even when compared to more common renewable energy investment alternatives.

Financing geothermal projects from planning to launch

In the vast majority of cases, the construction of large geothermal power plant takes 6-12 years from the planning and exploration stage to launch. However, the construction phase can take 18 months or more depending on the chosen technology, equipment availability and funding.

Geothermal power plants financing can be technically complex and multifaceted, which depends on the natural conditions in a particular area.

The successful development of geothermal power plants and related investments requires significant funds at the stages of exploration and evaluation of thermal resources, which leads to the widespread use of long-term debt instruments.

In the vast majority of cases, the construction of large geothermal power plant takes 6-12 years from the planning and exploration stage to launch. However, the construction phase can take 18 months or more depending on the chosen technology, equipment availability and funding.

This industry is highly dependent on the results of exploration work, which requires uninterrupted funding in the very early stages of the project. Since it is difficult to predict the results of a future project at this point, companies usually have to start with internal financial resources rather than relying on borrowed funds. At the initial stage of any geothermal project, participants must ensure access to significant financial resources and develop an optimal insurance model to cover the high geological risks associated with exploration.

The following scheme for the construction of a geothermal power plant worth 90 million euros gives a good idea of the stages and scale of financing an investment project at different phases:

Initial capital costs are the biggest concern for any large geothermal project, especially one located in a so-called new geothermal area. In particular, the planning and permitting phase can cost up to 10% of the total capital costs, while drilling wells can cost up to half of the project budget.

If we add to this the costs of consulting, engineering services and insurance, then by the time the construction site is cleared and the foundation is poured, the project initiators can bear much more than 50% of the total costs of the project.

Providers of corporate debt may require company assets as collateral, which reduces the risk of this type of investment and makes debt instruments more accessible. In this case, financing terms and risks are assessed taking into account the financial health of the borrowing company, and not a specific project. Companies with good financial prospects can raise additional capital on attractive terms through the debt markets.

This capital can be directed to any existing need, including the development of projects at an early stage (exploration, permitting, engineering).

Mezzanine capital providers offer rather expensive financial resources, which may be required at the stage of drilling geothermal wells. This debt is secured by the project’ assets, allowing the lender to gain control of the land, equipment, and wells in the event of bankruptcy.

Mezzanine financing of geothermal projects usually also requires the initiator’s participation at the level of about 25-30%.

Loans for the construction of geothermal power plants

Given the very high costs of building geothermal power plants, the high cost of purchasing equipment and developing customized engineering solutions, syndicated loans play an important role in the development of geothermal energy.

In favorable conditions, loans for the construction of a geothermal power plant cover up to 80-90% of the total cost of the project.

However, this can be achieved mainly after a successful exploration phase, when the company can confirm the high production potential of a particular project and the key performance indicators look attractive and reliable.

In this case, refinancing is also appropriate, which allows the owners to extend the use of borrowed capital for the required period.

A typical construction loan is issued for a period of 7-8 years, including 2 years of construction and 5-6 years of subsequent debt repayment during the operation of the geothermal facility. Usually this period is enough to return the loan funds, especially given the rising cost of energy and the unstable situation in the hydrocarbon markets. Complex financial schemes using bridge loans are also used.

Financing geothermal projects across the EU

The right combination of financing instruments is critical to the success of geothermal investment projects.

This is proved by the practical experience of European countries, which is mainly based on attracting private capital with effective government support.

As we have said, unlike other renewable energy technologies, “deep” geothermal energy requires a huge initial investment. Only completed wells can prove whether a project will be successful or not. For this reason, the initial costs are in the tens of millions of euros, but there is no guarantee of success. Some European countries are trying to reduce this barrier with innovative tools, such as risk guarantees in the event of project failure, which allow the state to bear some of the costs.

In Europe, geothermal energy is being promoted in many ways and with great variety.

For geothermal projects, these include feed-in tariff costs, risk guarantees, subsidies, long-term loans, tax breaks, municipal investment funds, and even a wage subsidy for builders and employees of geothermal power plants.

Practice shows that where governments and municipalities provide innovative tools, geothermal sector is booming, as in France and Germany. On the other hand, Switzerland has for many years held one of the last places in such areas as financial support for drilling, soft loans and research grants.

If you need geothermal power plants financing / heating systems in the European Union, please contact our team.

CP Finance UK will find the best solution for your investment project.

Email:finance@cpuk-financeltd.com
Website:https://c-pfinanceuk.com/

Read More