
Energy in Lebanon is characterized by a heavy reliance on imported fuels, which has led to significant challenges in ensuring a stable and sufficient supply of . The country’s energy sector has been severely affected by a combination of internal instability, external conflicts, and systemic corruption. The reliance on imported energy, coupled with rising demand and frequent infrastructure failures, has led to an ongoing . This crisis has been further. [pdf]
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The primary energy use in 2009 in Lebanon was 77 TWh, 18 TWh per million persons. In 2019, the total solar PV capacity was 78MW. Mtoe = 11.63 TWh, Prim. energy includes energy losses.
The analysis shows that Lebanon has the potential to supply 30% of its electricity consumed in 2030 from renewables, based on the updated targets and most recent electricity reform paper released in 2019.
Electricite du Liban, the public entity that currently is the country's primary provider, was founded in 1954, under the name Office d'Electricite et des Transports en Commun. Ensued a period during which the state invested massively in infrastructure, notably the first major thermoelectric plant, which started operating in 1956 in Zouk.
There was a power blackout throughout Lebanon in October 2021 after Lebanon's two largest power stations—the Zahrani and the Deir Ammar power stations—were shut down due to fuel shortages, leaving Lebanon with no centrally generated electricity, and not enough fuel for private electricity generators.
In May 2021, Turkish Karpowership, which provided Lebanon with 370 megawatts (MW) at a cost of $850 million per year, ceased supplying electricity due to payment arrears of $100 million, and legal threats to its two barges, MV Karadeniz Powership Fatmagül Sultan and MV Karadeniz Powership Orhan Bey.

The first were installed in 2009, and are not associated with storage. The installed capacity is 13 MW, in particular via the Longoni power plant, inaugurated in 2010. Solar energy is the only renewable energy with significant development potential on the island; the wind potential (22 MW according to a study) would not lead to a significant production because the wind blows only 6 months per year. [pdf]

Quaise, Inc was founded in 2018 to develop a drilling system for converting existing power stations to use superdeep . The system would repurpose existing technology to drill 20 kilometers beneath the surface, where temperatures exceed 400°C. No fracking would be required, avoiding the potential for in other geothermal systems. Drilling using this technique is hoped to be fast, with boreholes aime. [pdf]
US-based start-up Quaise Energy was founded in 2018 to develop a millimetre-wave drilling system for converting existing thermal power stations to use superdeep geothermal energy.
Quaise Energy | 14,283 followers on LinkedIn. Unlocking the true power of clean geothermal energy. | Quaise develops millimeter wave drilling systems for deep geothermal heat access. Our technology is the only approach in the world with the potential to build geothermal wells at unprecedented depths and temperatures.
New funding will expand field operations and secure supply chain toward clean energy abundance CAMBRIDGE, Mass., March 12, 2024 -- (BUSINESS WIRE)-- Quaise Energy, the company unlocking terawatt-scale geothermal, announced today the closing of a $21 Million Series A1 financing round led by Prelude Ventures and Safar Partners.
CAMBRIDGE, Mass., March 12, 2024--Quaise Energy raises $21 M toward terawatt-scale geothermal energy. The funding will expand field operations and secure the company's supply chain.
CAMBRIDGE, Mass., March 12, 2024 -- (BUSINESS WIRE)-- Quaise Energy, the company unlocking terawatt-scale geothermal, announced today the closing of a $21 Million Series A1 financing round led by Prelude Ventures and Safar Partners. Mitsubishi Corporation and Standard Investments are among several new investors participating in the round.
Unlocking the true power of clean geothermal energy. Quaise develops millimeter wave drilling systems for deep geothermal heat access. Our technology is the only approach in the world with the potential to build geothermal wells at unprecedented depths and temperatures.
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