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TopsoeにおけるPower-to-XおよびSOE活動の最近の進展

Recent advances in Power-to-X and SOE activities at Topsoe (原題)

Mai, Andreas, Blennow, Peter, Heiredal-Clausen, Thomas, Hauch, Anne, Schandel, Christian Bækhøj, Sehested, Jens, Zaravelis, Fotios, Vejle, Rasmus, Helmig, Kristian Bek, Dannesboe, Christian, Birkmose, Malte Fittkau, Menjon, Ian

Zenodoプレプリント2026-09-24#水素Origin: EU経営インパクト: コスト削減対象セクター: power
DOI: 10.5281/zenodo.23008961
原典: https://zenodo.org/records/23008961
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🤖 gxceed AI 要約

日本語

Topsoeが固体酸化物電解(SOE)技術を用いたPower-to-X(PtX)プラントの最新動向を報告。500MW/年のSOE製造施設を建設・試運転中で、12スタックCore(700kW入力、230Nm³H2/h)を8基組み合わせたSectionをPtXプラントの構成単位とする。16,000時間超の長期スタック試験やCO2共電解によるeSAF製造の可能性も示す一方、市場不確実性により商業化戦略を見直している。

English

Topsoe reports progress on solid oxide electrolysis (SOE) for Power-to-X plants, commissioning a 500 MW/year SOE manufacturing facility. Stack modules form 12-stack Cores (700 kW input, 230 Nm³ H2/h), with 8 Cores per Section as building blocks for ~100 MW plants producing 300,000 Nm³ H2/h, 300 MTPD ammonia or methanol. Long-term stack tests exceeding 16,000 h and CO2/co-electrolysis for eSAF are presented, though commercialization strategy is under revision amid market uncertainty.

Unofficial AI-generated summary based on the public title and abstract. Not an official translation.

📝 gxceed 編集解説 — Why this matters

日本のGX文脈において

日本は水素・アンモニアの大規模導入とeSAF国産化を政策目標に掲げており、SOE電解技術の製造能力・耐久性データは国内PtX事業の技術選定やサプライチェーン構築に直接参考となる。特に16,000時間超のスタック耐久試験は商用プラントの稼働率・コスト試算に有用。

In the global GX context

This industrial report illustrates the scale-up of SOE electrolysis for Power-to-X, relevant to global hydrogen and eSAF value chains. It provides rare long-duration stack durability data (16,000+ h) that informs techno-economic assessments and transition finance for hard-to-abate sectors, though it is a vendor perspective rather than independent research.

👥 読者別の含意

🔬研究者:SOEスタックの長期耐久性・サイクリング試験データは、電解技術の性能評価やPtXシステム設計の実証的基礎を提供する。

🏢実務担当者:SOEベースPtXプラントのモジュール構成・生産能力・スケールアップ設計は、水素・eSAF事業の設備計画や技術選定に活用できる。

🏛政策担当者:水素・eSAF国産化政策において、SOE製造能力の拡張性と商業化リスクを踏まえた支援策の検討材料となる。

📄 Abstract(原文)

Topsoe is a leading global provider of advanced technology and solutions for the energy transition. We offer world-leading solutions for transforming renewable resources into fuels and chemicals. We started to work on SOCs in 1989 and in 2012 we switched the activities to SOE. Our energy-efficient solid oxide electrolyzer (SOE) technology is integral to future Power-to-X plants. As one of the few global companies with wide-ranging expertise and technologies, we transform renewable electricity, steam, biomass, and waste into zero-emission fuels and chemicals, contributing to a sustainable future. We have been constructing and are currently commissioning an SOE manufacturing facility to produce SOE cells, stacks and stack modules with an initial annual capacity of 500 MW, expandable as needed. The stack modules are combined in 12-stack Cores with a production capacity of 230 Nm³ H2 / h at an input power of 700 kWel, operating at a pressure of 2.5 barg. We combine 8 of these Cores into Sections, which are then the building blocks for larger PtX plants, with sizes in the order of magnitude of 100 MW electrical input and outputs of 300'000 Nm³ H2 / h, 300 metric tons per day (MTPD) Ammonia or 300 MTPD Methanol. This contribution presents our PtX plant concepts, e.g. for green methanol plants we're planning with customers to materialize in the next years. Additionally, we present the latest results of our long-term stack test operated for more than 16'000 h in electrolysis as well as results of stack cycling tests, demonstrating thermo-cycles and hot-standby cycles. We also report on some results with CO2- and Co-electrolysis, which we see especially fitting for a future production of sustainable aviation fuel (eSAF). Finally, we also show results on our industrial-size Core, integrating 12 stacks. Despite all of this, we are currently also facing challenges: Due to the current general global market uncertainty Topsoe is revising the commercialisation strategy [1].

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