電力と液体水素を同一パイプラインで輸送するハイブリッドエネルギー技術の実現可能性 (Hybrid energy revolution: superconducting cables and liquid hydrogen)

2026-03-09 サステナビリティ研究所(RIFS)

ドイツのRIFSポツダム研究所は、超電導ケーブルと液体水素を組み合わせた「ハイブリッドエネルギーシステム」が将来のエネルギー輸送を大きく変える可能性を示した。超電導ケーブルは電気抵抗がほぼゼロで大量の電力を効率的に送電できる一方、冷却のために極低温環境が必要である。研究では、この冷却環境を液体水素の輸送と共用する仕組みを提案した。液体水素はエネルギーキャリアとして長距離輸送が期待されており、同じ低温インフラを利用することで電力と水素を同時に輸送できる。これによりエネルギー輸送効率を高め、再生可能エネルギーの長距離供給や都市部への大容量電力供給を支える新しいエネルギーインフラの構築が可能になる。研究は、将来の脱炭素社会に向けて電力網と水素エネルギーシステムを統合する重要な技術的選択肢を示すものとされる。

電力と液体水素を同一パイプラインで輸送するハイブリッドエネルギー技術の実現可能性 (Hybrid energy revolution: superconducting cables and liquid hydrogen)
© SCARLET
A ‘hybrid’ or ‘dual’ transmission system combining electricity and liquid hydrogen offers a more efficient and affordable way to deliver energy.

<関連情報>

超伝導高出力ケーブル・線路の開発状況と技術ロードマップ Superconducting high-power cables and lines—development status and technology roadmap

M Noe, T Puig, X Obradors, D C van der Laan, S A Dönges, J D Weiss, K Radcliff, P Cheetham, S Pamidi, D N Nguyen,…
Superconductor Science and Technology  Published: 2 February 2026
DOI:10.1088/1361-6668/ae15c2

Abstract

The energy transition requires a tremendous investment in electric grids, mainly due to electrification of heat and mobility sectors and due to the huge expansion of renewable energy. Superconductors offer an extremely high current density while having no resistance. In the past years, the cost-performance of high-temperature superconducting tapes decreased constantly, and the manufacturing capacity was expanded considerably.

In parallel, many AC and DC superconducting cables for various applications from low-voltage up to high-voltage levels have been developed, successfully tested and operated in field tests. The availability of the high-temperature superconducting tapes and the increasing need for network expansion result in an increased interest on the development of superconducting cables.

In this paper, the most important and most recent R&D activities on superconducting cables are summarized. The paper is structured in four main parts. Firstly, an introduction is given not only on the history of R&D but also on the high-temperature superconducting materials and conductors. The main part shows some selected R&D projects in more detail, while in the third part common issues relevant to all cables like cooling are discussed. The paper ends with contributions to hybrid superconducting cables, where electricity transport is combined with chemical energy carriers like liquid hydrogen.

It can be summarized that several projects demonstrated, that superconducting cables can fulfil all technical requirements for a long-term field operation and first permanent installations are realized. Attractive applications for superconducting cables include electric grids, high-current industry bus bars, data centers and aviation.

0401発送配変電
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