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SIDS DOCK, UNIDO and Stimson-ACRE open their COP26 Side Event with two stunning displays of ocean energy innovation – showcases ocean energy for climate resilient economies

23 November 2021 –  SIDS DOCK, the United Nations Industrial Development Organization (UNIDO) and the United States (US)-based Stimson Center Alliance for a Climate Resilience Earth (ACRE), staged a Side Event on 11 November 2021, held on the margins of the 26th United Nations (UN) Climate Change Conference of the Parties 2021 (COP26) on the Call To Action! for the Establishment of the Global Ocean Energy Alliance (GOEA), and hosted at the world-famous Wood House, in Glasgow, Scotland, and conducted remotely by means of conferencing. The Side Event was referred to as “the highlight of COP26” that “rose above the chatter,” by the delegates and observers in attendance.

The audience inside Wood House, predominantly delegates and observers attending COP26, looked at each other in silent amazement at the stunning similarities, as the opening video with the shots of island people dancing and singing in vibrant and colourful costumes and cultural performances played, showing white sandy beaches, cows in a green pasture, and lush fields of sugarcane, and tropical cyclones – everything you would find on a Small Island Developing State (SIDS). Viewers were not prepared for the similarities between SIDS and the island of Kumejima, Japan, home to the Okinawa Ocean Thermal Energy Conversion Demonstration Facility, developed from the research of Professor Haruo Uehara, father of ocean thermal energy research in Japan.

The suitability of the island’s “Kumejima Model” for SIDS was evident when the facility appeared among of lush sugarcane fields, livestock, and blue ocean. In addition to producing power, 24 hours per day, cosmetics, specialized seafood such as shrimp, seaweed, and sea grapes are also produced with the seawater used in the OTEC facility. The water is also used to cool soil in greenhouses which significantly increases production. The facility can also enable the production of significant volumes of desalinated water. The Kumejima Model demonstrated that over a period of eight (8) years, it has contributed to the socio-economic development in Kumejima, and based on those results, the island has set a goal for Net Zero energy by 2050, and OTEC is to provide 50 percent of the energy supply.



For nearly 10 years, since the Barbados Declaration on Achieving Sustainable Energy for All in Small Island Developing States (SIDS), SIDS have been calling for collective action to drive the development of SIDS-Appropriate Technologies to ensure the realisation of the benefits of their renewable energy resources. For islands, they see the development and deployment of the first Floating OTEC Platform, as the first step towards a more resilient future. The development and deployment of the first Floating OTEC Platform using the ocean to generate energy, by the United Kingdom (UK) company, Global OTEC, is being planned for deployment in 2024, in the twin-island of the Democratic Republic of São Tomé and Príncipe as the first SIDS and Least Developed Country (LDC) to pilot an Ocean Thermal Energy Conversion (OTEC) plant. São Tomé and Príncipe is located in the Gulf of Guinea, off the west coast of central Africa. São Tomé and Príncipe is located in the Gulf of Guinea, off the west coast of central Africa, and the project has received initial financial support from a Global Environment Facility (GEF) funded UNIDO project in São Tomé and Príncipe. Jointly with SIDS DOCK, it is the intention to replicate the support in other high potential OTEC countries in SIDS, West and Central Africa, through the Global Network of Regional Sustainable Energy Centers (GN-SEC).

The Floating OTEC Platform operates like a traditional oil platform, the difference is that OTEC technology pumps ocean water, not oil. This is the defining and innovative separation of OTEC technology, it provides clean, environmentally-friendly energy that can provide baseload power, all of the time. The Global OTEC Floating Platform needs two crucial elements to function efficiently – access to a large source of warm and cold water, and a reasonable transmission distance to shore. These two criteria should come as no surprise that this is available across nearly every SIDS.  Ocean Thermal Energy Conversion technology has been around since 1881, one hundred and forty (140) years ago, a technology first proposed by French physicist ‘Jacques d’Arsonval’, who proposed the first practical design for harnessing this energy. Two significant installations which still exist today, in Kumejima Island, Japan, and Hawaii USA, provide a multi-year track record for the efficiency of a closed cycle OTEC plant in a relevant environment.

Over the last five (5) years, Global OTEC’s team of former oil and gas engineers and OTEC technicians have designed a series of Floating OTEC Platform concepts, a result of decades of research and development and deployments across both OTEC demonstration facilities, and Oil and Gas. For generations, SIDS have known that there exists an untapped battery of solar heat energy that can be the answer to islands’ water-food-energy nexus, capable of catalysing sustainable development and liberating SIDS from crippling diesel imports. Small islands also know, and Global OTEC have found this to be true, that the private sector is seen as an important stakeholder.



SIDS DOCK is a United Nations (UN)-recognised international organisation established in 2015, with all the rights and privileges for addressing climate change, resilience, and energy security in small islands. SIDS DOCK represents 32 small islands and low-lying developing states across the globe, and is so named because it is designed as a “DOCKing station,” to connect the energy sector in SIDS with the global markets for finance and sustainable energy technologies. The organisation’s work is coordinated by the Secretariat, in Belmopan, Belize.

CONTACT: Ms. Christine Neves Duncan, Chief of Staff & Project Director, Secretariat of SIDS DOCK;

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