‎South Korea unveils Sustainable Future Technology Drivers, targets first Moon Landing by 2030

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‎‎South Korea on Wednesday released an ambitious sustainable technology strategy centred on Seven (7) key projects ranging from nuclear energy and quantum computing ⁠to space and biotechnology, as the country seeks to secure new growth engines beyond semiconductors and AI.

The “Seven (7) ‌Major SEED” initiative,  was announced during a Blue House meeting chaired by South Korean President Lee Jae Myung, brought together Sustainable Technology goals including commercial deployment of indigenous small modular reactors (SMRs) by 2035, a moon landing by 2030, development of a domestic 100-qubit quantum computer by 2029 and commercialisation of brain-computer interface products by 2035.

‎‎Lee said South Korea should use the opportunity created by a boom in the ⁠semiconductor industry and the rapid expansion of AI ⁠to prepare the country’s next growth drivers before they emerge.

‎‎”The Seven SEED projects we are discussing today will become next-generation ⁠growth ‌engines and core strategic national assets,” Lee said.

‎‎The initiative covers SMRs, fusion energy, next-generation renewable energy, quantum technology, space and aviation, advanced biotechnology, and critical minerals and materials supply chains, according to Science Minister Bae Kyung-hoon.

‎‎The plan comes ⁠as South Korea grapples with a shrinking working-age population and slowing potential growth, while competing to secure an edge ‌in emerging technologies increasingly viewed as critical to economic competitiveness and national security.

‎‎”We will help these seeds grow ⁠and build a South Korea that no one can rival in 10 or 20 years,” Bae said.

‎‎Under the strategy, South Korea aims to commercialise a domestically developed SMR by 2035 and begin construction of non-light-water SMRs in the 2030s, while also pursuing fusion-based electricity generation in the late 2030s.

‎The ⁠renewable energy component includes plans to develop ultra-efficient solar cells, advanced offshore wind technologies, hydrogen production systems and AI-based power-grid technologies, according to a government press release.

‎‎In quantum technology, the government aims to develop a domestic error-corrected 100-qubit quantum processor by 2029 and become the world’s leading quantum-chip manufacturing nation by 2035.

‎‎The space programme ⁠includes a domestic moon landing mission in 2030, a second lunar lander mission in 2032 and construction of an independent low-Earth-orbit satellite communications network by 2035.


The South Korean government also plans to develop technologies related to space data centres and support South Korean participation in next-generation commercial aircraft programmes.

‎‎In Biotechnology, South Korea aims to establish an AI-bio infrastructure by 2030 and commercialise brain-computer interface products by 2035, while supporting AI-driven drug discovery, autonomous laboratories and advanced gene and cell ⁠therapies.

‎The supply-chain component includes measures to expand domestic processing and recycling of critical minerals, increase strategic stockpiles, diversify sourcing and invest 10 trillion won ($7.1 billion) in materials, parts and equipment technologies by 2030.

‎Officials also ‌said a public-private task force would be created to help accelerate commercialisation through regulatory reforms.

‎‎”Whether we become leaders enjoying unlimited opportunities or followers exposed to the risk of falling behind depends on our choice,” Lee said.