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Greece awards 188.9 MW for subsidized battery storage in final auction

Greece’s third energy storage auction has been completed with nine projects selected.

It was the final auction where the state provides subsidies to build battery energy storage systems (BESS). A total of almost 800 MW in capability has been awarded through all three storage auctions.

In the latest bidding, nine projects with a four-hour storage duration have been selected for a total capacity of 188.9 MW.

HELLENiQ Energy and PPC are biggest winners

HELLENiQ Renewables and government-controlled Public Power Corp. (PPC) were the biggest winners, with two plants of 25 MW and one 50 MW plant, respectively. The rest of the list comprises Amber Energy (18 MW), Plain Solar (7.9 MW), Enercoplan (25 MW), Arkadia Storage (10 MW), Heliothema (10 MW) and Ardassa Energy (18 MW).

The facilities will be installed in the Western Macedonia region in northern Greece and in the municipalities of Megalopolis, Tripoli, Gortynia and Oichalia in the Peloponnese region. They are the country’s lignite regions, covered by the Just Transition Development Plan.

The investments will benefit from a public grant of EUR 200,000 per MW and they must now submit a letter of guarantee for EUR 35,000 per MW within the next three months.

Average price rises

As for the average price, it landed at EUR 52,589.16 per MW per year in the auction. The lowest offer was EUR 43,927 per MW, by HELLENiQ Renewables, while the highest was EUR 58,773 per MW, by Plain Solar.

The average prices in the first and second auctions were EUR 49,748 per MW and EUR 47,680 per MW.

It should be pointed out that from now on, new facilities in the sector will operate commercially and get income strictly from the market. The Ministry of Environment and Energy has already published a decree setting the rules for the installation of 4.7 GW of new battery systems until 2030.

Investors are getting ready for future auctions. They will submit their applications to the Regulatory Authority for Energy, Waste and Water (RAEWW or RAAEY). Only last month, applications in the segment reached almost 1.5 GW, showing an enormous interest.

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Montenegro labels 15 energy projects as infrastructure priorities

The most valuable priority infrastructure projects in the energy sector of Montenegro are the Komarnica and Kruševo hydropower plants, the Trans-Balkan Electricity Corridor and the Ionian-Adriatic pipeline.

The Government of Montenegro has adopted a list of priority infrastructure projects for the energy sector to fulfill the final criteria of chapter 21 – Trans-European Network, of the country’s negotiations on the accession to the European Union.

The list consists of 15 projects with a total estimated value of around EUR 1.38 billion, according to the announcement.

The EU will use list to consider financial support from the Western Balkans Investment Framework

The list was updated in line with the Western Balkans Investment Framework (WBIF) methodology. In line with priorities defined at the state level, the list is for the European Commission to select projects for financial support from the scheme.

WBIF is the main mechanism for the EU’s financial support in the region in the period from 2024 to 2027, the government noted.

The following projects are on the list:

  • HPP Komarnica – EUR 315 million
  • Ionian-Adriatic Pipeline for natural gas (IAP) – EUR 210 million
  • interconnection Italy – Montenegro – Serbia – Bosnia and Herzegovina (Trans-Balkan Electricity Corridor) – EUR 163 million
  • HPP Kruševo – EUR 160 million
  • energy efficiency in public and residential buildings – EUR 104 million
  • improving the quality of power supply in tourist regions – EUR 78 million
  • creation of conditions for the integration of renewables and the construction of a new power interconnection – EUR 73.6 million
  • solar power project Solari 10,000+ – EUR 66 million
  • Slano floating solar power plant – EUR 60 million
  • Krupac photovoltaic plant – EUR 40 million
  • smart grid and smart metering system for electricity distribution system operator CEDIS – EUR 35 million
  • A8 unit at HPP Perućica – EUR 24 million
  • smart grid program of electricity transmission system operator CGES – EUR 21 million
  • decarbonization – EUR 21 million
  • reconstruction of oil storage tanks – EUR 10 million.

Montenegro also has a list of priority infrastructure projects, including energy. It was introduced in 2018 and updated in the meantime.

Compared to the list from 2021, the Gvozd wind farm and the ecological reconstruction of the Pljevlja thermal power plant were erased, while the following projects were added: HPP Kruševo, Krupac solar power plant, decarbonization and the reconstruction of oil storage tanks.

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Bring clean heating and cooling to buildings: a circular energy economy in urban environments

Author: Thomas Nowak, EUSEW’s digital ambassador

Efficient heating and cooling is essential, yet much thermal energy goes to waste. What if we could avoid this thermal pollution and instead establish a circular energy economy in urban areas by recovering and recycling waste heat? Thermal networks as heat collectors and transport means, heat pumps as energy lifts, storage, and clean renewable energy sources can turn this dream into reality today.

Clean heating and cooling in cities is not happening

As the climate crisis worsens and urban populations grow, cities face increasing pressure to improve infrastructure and services. Cities need to be made more resilient against extreme weather incidents and heat waves. The use of fossil energy must be replaced by clean alternatives. This is not only a response to climate change, but also an obligation codified in EU law, notably the EU Energy performance of buildings and the Renewable Energy Directives.

The symbiosis of heat pumps, low temperature energy grids and the use of renewable electricity/heat provides a solution.

Low temperature thermal networks to unlock “the energy chest” of cities

Traditional district heating and cooling distributes high temperature thermal energy generated in central plants to its clients. Even using insulated pipes, some energy is lost in the distribution. Changing from central to decentralised networks and reducing operating temperature avoids this disadvantage. Low temperature, multi-input-output networks connect all types of buildings requiring heating and cooling. They collect waste heat from many different sources (e.g. industrial processes, offices, data centres, or public infrastructure) and distribute it where it is needed.  Heat pumps raise the temperature to the required level at the point of demand.

Photo: The symbiosis of heat pumps, thermal energy grids and multiple energy sources for clean heating and cooling of apartments and buildings in cities. Source: Qvantum Industries
© Qvantum Industries AB

Heat pumps for clean thermal energy

Heat pumps extract heat from a source (air, water, ground or a thermal network), lifting it to a higher temperature level to provide heating. At the same time the source is slightly cooled. Heat pumps always provide useful heating and cooling and it depends on the system design which of these services can be used.

Connecting the many energy users and (waste) heat providers in a city through a thermal network and adding heat pumps of different types and capacities in apartments and buildings (see circles) enables the collection of waste heat and highest heating and cooling efficiency. One user’s waste heat becomes another users heat source (see figure 1).

Multiple benefits for cities

The benefits for cities of transforming their heating and cooling infrastructure are plentiful.

  • Replacing fossil fuels with clean energy reduces CO₂ emissions and air pollution, leading to better air quality.
  • Collecting waste heat from cooling limits the heat island effect in cities. Buildings equipped with cooling help citizens withstand heat waves. Cities and citizens are more resilient to already observable climate change.
  • Storage tanks and the energy grid itself operate as thermal battery, balancing the electric grid.
  • Local energy sources, used by European technology solutions and designed and installed by a European workforce, help Europe become largely independent of fossil energy.

Breaking barriers to adoption

Implementing heat pump technology and thermal networks faces challenges. Upfront investment costs, regulatory hurdles, and limited public awareness can slow progress. Cities and policymakers should incentivise modern heat pump-based heating and cooling by making deployment easy and economically attractive. Cities should make thermal networks part of their public waste heat collection infrastructure.

Convincing humans is also key. Campaigns explaining policy, highlighting the benefits of clean heating and cooling and explaining how end users will be supported in their decision making will create trust and accelerate adoption by decision makers.

A path to sustainable cities

Urban heating can become decarbonised, efficient and sustainable while creating cleaner, more affordable, and more resilient communities. The technology exists, its potential is enormous. Let’s make use of it. Clean heating and cooling is not just a choice – it is the cornerstone of Europe’s energy and climate policy.

This opinion editorial is produced in co-operation with the European Sustainable Energy Week 2025. See ec.europa.eu/eusew for open calls.

Disclaimer: This article is a contribution from a partner. All rights reserved.

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Renewables equipment factory to contribute to just transition of coal region in Romania

Monsson Group is preparing to build a manufacturing facility in Petrila for renewable energy equipment, including robots that clean solar panels. The project received funding to contribute to the just transition of Romania’s coal region Jiu valley – Hunedoara.

An investment of nearly EUR 10 million in the first phase is underway in Transylvania, in the town of Petrila, economically devastated after the closure of a coal mine. The project is aimed at reviving the area with a factory for renewable energy equipment such as enclosures for battery energy storage systems, wiring and robots that clean photovoltaic panels.

Monsson Group revealed its facility would also manufacture gear for monitoring environmental parameters and tracking fauna in the area. The Sweden-based company has said 70% of the investment would be covered from Romania’s Just Transition Program which is in turn part of the European Union’s Just Transition Facility.

Romania is planning to prolong the operation of its coal power plants and mines for a smoother switch to renewable sources, in terms of electricity supply. However, such facilities are becoming less financially viable by the day all across the EU. Coal regions are facing economic blows from early shutdowns of power plants and mines.

First major private investment in Petrila

According to Monsson, the new factory would employ more than fifty people in the first phase. It expects to begin construction mid-year.

It is the first major private investment in Petrila, Mayor Vasile Jurca said. He said the project enables reskilling and sustainable development. The local authority provided the land for the factory. Romania has earmarked substantial funding for the construction of renewable energy equipment plants.

The second part of the plan is to install a 20 MWh battery energy storage system to provide system services to the national grid, followed by a 50 MWh unit.

Reskilling program underway

The group, which includes Wind Power Energy and its RenewAcad network of renewable energy training centers, established cooperation with the University of Petroșani in getting skilled workers. Monsson is one of the biggest renewable energy investors in the country.

Petrila is part of the Jiu Valley in Hunedoara county, Romania’s main coal region. It is located near Oltenia, the other coal complex, in the counties of Gorj and Dolj.

Notably, the Maritsa East 3 coal power plant in neighboring Bulgaria ceased operations yesterday again after it was briefly brought back online to maintain energy security.