表紙:航空用水素インフラ:市場および技術の予測 (~2033年)
市場調査レポート
商品コード
1720933

航空用水素インフラ:市場および技術の予測 (~2033年)

Hydrogen Infrastructure for Aviation - Market and Technology Forecast to 2033


出版日
ページ情報
英文 161 Pages
納期
即日から翌営業日
価格
価格表記: USDを日本円(税抜)に換算
本日の銀行送金レート: 1USD=148.90円
航空用水素インフラ:市場および技術の予測 (~2033年)
出版日: 2025年04月17日
発行: Market Forecast
ページ情報: 英文 161 Pages
納期: 即日から翌営業日
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  • 概要
  • 目次
概要

航空業界は環境負荷の低減に対する圧力をますます受けており、水素は持続可能な飛行を実現するための有望な技術として注目されています。本レポートでは、2033年までの航空分野における水素インフラの市場および技術の予測を提供します。技術革新は、水素の生産、貯蔵、輸送、補給といったバリューチェーン全体で急速に進んでいます。短距離の水素航空機は、2035年までに運用開始される可能性があります。各国政府や規制当局は、水素の航空分野での導入を促進するため、さまざまな政策や支援策を強化しています。多くの可能性がある一方で、技術開発、インフラ整備、コスト削減といった面では依然として大きな課題が残されています。

航空を含むすべての分野で脱炭素化が急務となっている背景には、環境の健全性に対する懸念の増大と、地球規模の気候目標を達成する必要性があります。国際航空運送協会 (IATA) は、2050年までに航空業務における二酸化炭素排出量のネットゼロを実現することを表明しています。水素は、航空における有力な代替燃料として注目されており、航空機の運航において直接的な二酸化炭素排出をゼロにする可能性を秘めています。水素の大きな利点は質量当たりのエネルギー比率が高いことであり、これは特に航空宇宙用途にとって有利です。

最近の技術革新としては、2024年3月に米国国立再生可能エネルギー研究所 (NREL) が燃料電池の出力密度を20%向上させることに成功し、旅客機への適性を高めたことが挙げられます。2024年6月には、エアバスと大手燃料電池メーカーが、コーティングと膜技術を改良したプロトタイプを発表し、燃料電池の寿命を大幅に延ばしました。協力的な取り組みも勢いを増しています。

掲載企業

  • Air Liquide
  • Airbus Hydrogen
  • Alaka'i Technologies
  • Boeing
  • Conscious Aerospace
  • GKN Aerospace
  • Gardner Aerospace
  • Hexagon Purus
  • Honeywell Aerospace
  • Joby Aviation
  • Kawasaki Heavy Industries
  • Linde plc
  • MTU Aero Engines
  • Nel Hydrogen
  • Plug Power
  • Rolls-Royce
  • Safran
  • Shell Aviation
  • Thales
  • ZeroAvia

当レポートでは、世界の航空用水素インフラの市場および技術を調査し、技術概要および技術ロードマップ、市場影響因子の分析、市場規模の推移・予測、各種区分・地域/主要国別の詳細分析、競合情勢、主要企業のプロファイルなどをまとめています。

目次

第1章 エグゼクティブサマリー

第2章 イントロダクション

第3章 技術と開発

  • 技術概要
  • 技術の種類
    • 極低温技術の役割
    • 水素航空機の設計とインフラ要件

第4章 重要な原材料

第5章 市場概要

  • イントロダクション
  • 現在の市場概要
    • 世界の航空業界の現在のエネルギー消費パターンと二酸化炭素排出量
    • 航空業界における既存の水素インフラの情勢
    • 水素導入に影響を与える地域市場の変動と規制枠組み
  • 現在の市場規模と成長予測
  • リスクアセスメント
  • 研究開発
    • 米国
    • EU
    • アジア太平洋
  • 投資要件
  • 事業開発マネージャー向けの市場評価
  • 政府および民間バイヤー向けの市場評価
  • 予測期間中の地域別分布
    • 主要市企業の概要
    • 主力製品
    • 最近の契約の概要
    • 主要顧客の概要
    • サプライチェーンの概要

第6章 市場力学と予測要因

  • 市場セグメンテーション
  • 促進要因
  • 動向
  • 機会
  • 課題
  • 予測要因と市場への影響
    • 基本シナリオ
    • 成長シナリオ

第7章 国別分析

  • 概要
  • 北米諸国
  • 欧州諸国
  • アジア太平洋諸国
  • ラテンアメリカ諸国
  • 中東・アフリカ諸国

第8章 航空用水素インフラ市場:地域別

  • 概要:地域別
  • 概要:インフラコンポーネント別
    • 北米
    • 欧州
    • アジア太平洋
    • 中東・アフリカ
    • イラテンアメリカ

第9章 航空用水素インフラ市場:インフラコンポーネント別

  • 概要:インフラコンポーネント別
  • 概要:地域別
    • 生産
    • 貯蔵
    • 輸送
    • 空港流通

第10章 成長シナリオ

  • 成長シナリオ
    • 概要:地域別
    • 概要:インフラコンポーネント別

第11章 主要企業

  • Airbus SE (Group)
  • Blue Spirit Aero
  • China Aviation Oil (Singapore) Corporation Ltd
  • Dassault Aviation
  • Embraer
  • Joby Aviation
  • MTU Aero Engines AG
  • Safran S.A.
  • The Boeing Company
  • Topsoe
  • TotalEnergies
  • ZeroAvia
  • その他の興味深い企業
    • Everfuel Galp Energia GreenSinnergy Norwegian Hydrogen Saudi Aramco Verbund

第12章 調査結果・総論

第13章 市場予測について

付録A:言及された企業

付録B:略語

目次
Product Code: MF252368

Market forecasts by Region and Infrastructure Components. Technologies and Market Overview, Country Analysis, Growth Scenario, and Leading Companies

The aviation industry faces increasing pressure to reduce its environmental impact, and hydrogen has emerged as a promising technology to achieve sustainable flight. This report provides a market and technology forecast for hydrogen infrastructure in aviation up to 2033. Technological advancements are rapidly occurring across the hydrogen value chain, from production and storage to transportation and refuelling. Short-range hydrogen-powered aircraft could potentially enter service by 2035. Governments and regulatory bodies are increasingly providing support through initiatives and policies to drive the adoption of hydrogen in aviation. Despite the considerable opportunities, significant challenges remain in terms of technological development, infrastructure build-out, and cost reduction.

The urgent need for decarbonization across all sectors, including aviation, is driven by growing concerns about environmental health and the imperative to meet global climate goals. The International Air Transport Association (IATA) has committed to achieving net-zero carbon emissions from their operations by 2050. Hydrogen stands out as a compelling alternative fuel for aviation, offering the potential for zero direct carbon emissions from aircraft operations. A key advantage of hydrogen is its high energy-to-mass ratio, which is particularly beneficial for aerospace applications. Recent innovations include the National Renewable Energy Laboratory's (NREL) achievement in increasing fuel cell power density by 20% in March 2024, enhancing their suitability for passenger aircraft. In June 2024, Airbus and a leading fuel cell manufacturer unveiled a prototype with improved coatings and membrane technologies, significantly extending fuel cell lifespan. Collaborative efforts are also gaining momentum.

In response to the escalating demand for hydrogen in aviation, Amsterdam-based Market Forecast has published a comprehensive report, "Hydrogen Infrastructure for Aviation - Market and Technology Forecast to 2033." This study aims to provide readers with an in-depth understanding of the latest developments within this rapidly evolving sector, encompassing both market trends and technological advancements crucial for the implementation of hydrogen-powered aircraft.

Covered in this study:

  • Market forecasts: Detailed market size projections for each Hydrogen Infrastructure for Aviation type from 2025 to 2033, segmented by Region, Type, Application and End User
  • Technology Roadmaps: In-depth analysis of the technological evolution, challenges, and breakthroughs anticipated for each Hydrogen Infrastructure for Aviation applications.
  • Procurement Insights: Examination of procurement strategies, trends, and forecasts for both commercial sectors
  • Regional Analysis:Uncovering region-specific regulatory environments, infrastructure development, and market opportunities
  • Competitive Landscape: Overview of key players, innovators, and new entrants shaping the future of Hydrogen Infrastructure for Aviation

Segmentation

The market is segmented in regions and Infrastructure Components.

Region

  • North America
  • Europe
  • Asia-Pacific
  • Middle East and Africa
  • Latin America

Infrastructure Components

  • Production
  • Storage
  • Transportation
  • Airport Distribution

Reasons to buy:

  • Determine prospective investment areas based on a detailed trend analysis of the global Hydrogen Infrastructure for Aviation Market over the next eight years.
  • Gain in-depth understanding about the underlying factors driving demand for different systems segments in the top spending countries across the world and identify the opportunities offered by each of them
  • Strengthen your understanding of the market in terms of demand drivers, industry trends, and the latest technological developments, among others
  • Identify the major channels that are driving the global Hydrogen Infrastructure for Aviation business, providing a clear picture about future opportunities that can be tapped, resulting in revenue expansion
  • Channelize resources by focusing on the ongoing programs that are being undertaken by the ministries of different countries within the Hydrogen Infrastructure for Aviation Market
  • Make correct business decisions based on thorough analysis of the total competitive landscape of the sector with detailed profiles of the top systems providers around the world which include information about their products, alliances, recent contract wins and financial analysis wherever available

Companies Listed:

  • Air Liquide
  • Airbus Hydrogen
  • Alaka'i Technologies
  • Boeing
  • Conscious Aerospace
  • GKN Aerospace
  • Gardner Aerospace
  • Hexagon Purus
  • Honeywell Aerospace
  • Joby Aviation
  • Kawasaki Heavy Industries
  • Linde plc
  • MTU Aero Engines
  • Nel Hydrogen
  • Plug Power
  • Rolls-Royce
  • Safran
  • Shell Aviation
  • Thales
  • ZeroAvia

Table of Contents

1. Executive Summary

  • 1.1. Trends and Insights
  • 1.2. Main Findings
    • 1.2.1. Hydrogen Infrastructure for Aviation market summary by Region
    • 1.2.2. Hydrogen Infrastructure for Aviation market summary by Infrastructure Components
  • 1.3. Key Conclusions

2. Introduction

  • 2.1. Scope
  • 2.2. Methodology
    • 2.2.1. Data Collection and Sources
    • 2.2.2. Market Forecasting Model
    • 2.2.3. Hydrogen Transportation Cost Calculation
    • 2.2.4. Infrastructure Development and Deployment Modelling
    • 2.2.5. Validation and Cross-Verification
  • 2.3. Who will benefit from this study?

3. Technologies and Developments

  • 3.1. Technology overview
  • 3.2. Types of Technologies
    • 3.2.1. Role of Cryogenic Technology
    • 3.2.2. Hydrogen Aircraft Design And Infrastructure Requirements

4. Critical Raw Materials

5. Market Overview

  • 5.1. Introduction
  • 5.2. Current Market Overview
    • 5.2.1. Global aviation industry's current energy consumption patterns and carbon footprint
    • 5.2.2. Existing hydrogen infrastructure landscape in aviation
    • 5.2.3. Regional market variations and regulatory frameworks affecting hydrogen adoption
    • 5.2.4. Regional market variations and regulatory frameworks affecting hydrogen adoption
  • 5.3. Current Market Size and Growth Projections
  • 5.4. Risk Assessment
  • 5.5. Research and Development
    • 5.5.1. Research and Development in the US
    • 5.5.2. Research and Development in the European Union
    • 5.5.3. Research and Development in the Asia-Pacific
  • 5.6. Investment Requirements
  • 5.7. Market Assessment for Business Development Managers
  • 5.8. Market Assessment for Government and Commercial Buyers
  • 5.9. Hydrogen Infrastructure for Aviation market volume distribution over forecast period by Region
    • 5.9.1. Main Market Players Overview
    • 5.9.2. Leading Products
    • 5.9.3. Recent Contracts Overview
    • 5.9.4. Main Customers Overview
    • 5.9.5. Supply Chain Overview

6. Market Dynamics and Forecast Factors

  • 6.1. Market Segmentation
  • 6.2. Drivers
  • 6.3. Trends
  • 6.4. Opportunities
  • 6.5. Challenges
  • 6.6. Forecast factors and Market Impact
    • 6.6.1. Base Scenario
    • 6.6.2. Growth Scenario

7. Country Analysis

  • 7.1. Overview
  • 7.2. Countries in North America
  • 7.3. Countries in Europe
  • 7.4. Countries in Asia Pacific
  • 7.5. Countries in Latin America
  • 7.6. Countries in Middle East and Africa

8. Hydrogen Infrastructure for Aviation market to 2033 by Region

  • 8.1. Hydrogen Infrastructure for Aviation market by Region overview
  • 8.2. Hydrogen Infrastructure for Aviation market Region by Infrastructure Components overview
    • 8.2.1. North America market by Infrastructure Components overview
    • 8.2.2. Europe market by Infrastructure Components overview
    • 8.2.3. Asia-Pacific market by Infrastructure Components overview
    • 8.2.4. Middle-East & Africa market by Infrastructure Components overview
    • 8.2.5. Latin America market by Infrastructure Components overview

9. Hydrogen Infrastructure for Aviation market to 2033 by Infrastructure Components

  • 9.1. Hydrogen Infrastructure for Aviation market by Infrastructure Components overview
  • 9.2. Hydrogen Infrastructure for Aviation market Infrastructure Components by Region overview
    • 9.2.1. Market by Region overview
    • 9.2.2. Market by Region overview
    • 9.2.3. Storage market by Region overview
    • 9.2.4. Market by Region overview

10. Growth Scenario

  • 10.1. Growth Scenario
    • 10.1.1. Hydrogen Infrastructure for Aviation market summary by Region
    • 10.1.2. Hydrogen Infrastructure for Aviation market summary by Infrastructure Components

11. Leading Companies

  • 11.1. Airbus SE (Group)
    • 11.1.1. Introduction
    • 11.1.2. Products and Services
    • 11.1.3. Recent Contracts and Developments
    • 11.1.4. SWOT Analysis
  • 11.2. Blue Spirit Aero
    • 11.2.1. Introduction
    • 11.2.2. Products and Services
    • 11.2.3. Recent Contracts and Developments
    • 11.2.4. SWOT Analysis
  • 11.3. China Aviation Oil (Singapore) Corporation Ltd
    • 11.3.1. Introduction
    • 11.3.2. Products and Services
    • 11.3.3. Recent Contracts and Developments
    • 11.3.4. SWOT Analysis
  • 11.4. Dassault Aviation
    • 11.4.1. Introduction
    • 11.4.2. Products and Services
    • 11.4.3. Recent Contracts and Developments
    • 11.4.4. SWOT Analysis
  • 11.5. Embraer
    • 11.5.1. Introduction
    • 11.5.2. Products and Services
    • 11.5.3. Recent Contracts and Developments
    • 11.5.4. SWOT Analysis
  • 11.6. Joby Aviation
    • 11.6.1. Introduction
    • 11.6.2. Products and Services
    • 11.6.3. Recent Developments and Contracts
    • 11.6.4. SWOT Analysis
  • 11.7. MTU Aero Engines AG
    • 11.7.1. Introduction
    • 11.7.2. Products and Services
    • 11.7.3. Recent Contracts and Developments
    • 11.7.4. SWOT Analysis
  • 11.8. Safran S.A.
    • 11.8.1. Introduction
    • 11.8.2. Products and Services
    • 11.8.3. Recent Contracts and Developments
    • 11.8.4. SWOT Analysis
  • 11.9. The Boeing Company
    • 11.9.1. Introduction
    • 11.9.2. Products and Services
    • 11.9.3. Recent Contracts and Developments
    • 11.9.4. SWOT Analysis
  • 11.10. Topsoe
    • 11.10.1. Introduction
    • 11.10.2. Products and Services
    • 11.10.3. Recent Contracts and Developments
    • 11.10.4. SWOT Analysis
  • 11.11. TotalEnergies
    • 11.11.1. Introduction
    • 11.11.2. Products and Services
    • 11.11.3. Recent Contracts and Developments
    • 11.11.4. SWOT Analysis
  • 11.12. ZeroAvia
    • 11.12.1. Introduction
    • 11.12.2. Products and Services
    • 11.12.3. Recent Contracts and Developments
    • 11.12.4. SWOT Analysis
  • 11.13. Other companies of interest
    • 11.13.1. Everfuel
    • 11.13.2. Galp Energia
    • 11.13.3. GreenSinnergy
    • 11.13.4. Norwegian Hydrogen
    • 11.13.5. Saudi Aramco
    • 11.13.6. Verbund

12. Results and Conclusions

13. About Market Forecast

  • 13.1. General
  • 13.2. Contact us
  • 13.3. Disclaimer
  • 13.4. License

Appendix A: Companies Mentioned

Appendix B: Abbreviations

List of figures

  • Figure 1: Hydrogen Infrastructure for Aviation market summary by Region
  • Figure 2: Hydrogen Infrastructure for Aviation Size by Region
  • Figure 3: Hydrogen Infrastructure for Aviation CAGR by Region in US$ millions
  • Figure 4: Hydrogen Infrastructure for Aviation market summary by Infrastructure Components
  • Figure 5: Hydrogen Infrastructure for Aviation Size by Infrastructure Components
  • Figure 6: Hydrogen Infrastructure for Aviation CAGR by Infrastructure Components in US$ millions
  • Figure 7: Critical Raw Materials producing countries
  • Figure 8: Critical Raw Materials dependence [%] and volume [Mt] by producing countries
  • Figure 9: Certification Readiness of the expected architectures for hydrogen on aircraft
  • Figure 10: Market volume distribution over the forecast period by region
  • Figure 11: LH2-ISO-Container (HYLICS)
  • Figure 12: Poseidon 20MW process module
  • Figure 13: Hydrogen Infrastructure for Aviation - Supply Chain Flowchart
  • Figure 14: Market Segmentation and Sub Segmentation Hydrogen Infrastructure for Aviation Market
  • Figure 15: Subscale Nimble Sparrow-H
  • Figure 16: Liquid hydrogen test facility
  • Figure 17: Hydrogen hub
  • Figure 18: Hydrogen Infrastructure for Aviation market to 2033 by Region [US$ millions]
  • Figure 19: Hydrogen Infrastructure for Aviation market to 2033 by Region %
  • Figure 20: North America Hydrogen Infrastructure for Aviation market to 2033 by Infrastructure Components
  • Figure 21: North America - Hydrogen Infrastructure for Aviation market to 2033 by Infrastructure Components
  • Figure 22: Europe Hydrogen Infrastructure for Aviation market to 2033 by Infrastructure Components
  • Figure 23: Europe - Hydrogen Infrastructure for Aviation market to 2033 by Infrastructure Components
  • Figure 24: Asia-Pacific Hydrogen Infrastructure for Aviation market to 2033 by Infrastructure Components
  • Figure 25: Asia-Pacific - Hydrogen Infrastructure for Aviation market to 2033 by Infrastructure Components
  • Figure 26: Middle-East & Africa Hydrogen Infrastructure for Aviation market to 2033 by Infrastructure Components
  • Figure 27: Middle-East & Africa - Hydrogen Infrastructure for Aviation market to 2033 by Infrastructure Components
  • Figure 28: Latin America Hydrogen Infrastructure for Aviation market to 2033 by Infrastructure Components
  • Figure 29: Latin America - Hydrogen Infrastructure for Aviation market to 2033 by Infrastructure Components
  • Figure 30: Hydrogen Infrastructure for Aviation market to 2033 by Infrastructure Components [US$ millions]
  • Figure 31: Hydrogen Infrastructure for Aviation market to 2033 by Infrastructure Components %
  • Figure 32: Hydrogen Infrastructure for Aviation market to 2033 by Region
  • Figure 33: - Hydrogen Infrastructure for Aviation market to 2033 by Region
  • Figure 34: Hydrogen Infrastructure for Aviation market to 2033 by Region
  • Figure 35: - Hydrogen Infrastructure for Aviation market to 2033 by Region
  • Figure 36: Storage Hydrogen Infrastructure for Aviation market to 2033 by Region
  • Figure 37: Storage - Hydrogen Infrastructure for Aviation market to 2033 by Region
  • Figure 38: Hydrogen Infrastructure for Aviation market to 2033 by Region
  • Figure 39: - Hydrogen Infrastructure for Aviation market to 2033 by Region
  • Figure 40: Hydrogen Infrastructure for Aviation market summary by Region
  • Figure 41: Hydrogen Infrastructure for Aviation Size by Region
  • Figure 42: Hydrogen Infrastructure for Aviation CAGR by Region in US$ millions
  • Figure 43: Market volumes over the forecast period per region
  • Figure 44: Hydrogen Infrastructure for Aviation market summary by Infrastructure Components
  • Figure 45: Hydrogen Infrastructure for Aviation Size by Infrastructure Components
  • Figure 46: Hydrogen Infrastructure for Aviation CAGR by Infrastructure Components in US$ millions

List of tables

  • Figure 1: Hydrogen Infrastructure for Aviation market summary by Region
  • Figure 2: Hydrogen Infrastructure for Aviation Size by Region
  • Figure 3: Hydrogen Infrastructure for Aviation CAGR by Region in US$ millions
  • Figure 4: Hydrogen Infrastructure for Aviation market summary by Infrastructure Components
  • Figure 5: Hydrogen Infrastructure for Aviation Size by Infrastructure Components
  • Figure 6: Hydrogen Infrastructure for Aviation CAGR by Infrastructure Components in US$ millions
  • Figure 7: Critical Raw Materials producing countries
  • Figure 8: Critical Raw Materials dependence [%] and volume [Mt] by producing countries
  • Figure 9: Certification Readiness of the expected architectures for hydrogen on aircraft
  • Figure 10: Market volume distribution over the forecast period by region
  • Figure 11: LH2-ISO-Container (HYLICS)
  • Figure 12: Poseidon 20MW process module
  • Figure 13: Hydrogen Infrastructure for Aviation - Supply Chain Flowchart
  • Figure 14: Market Segmentation and Sub Segmentation Hydrogen Infrastructure for Aviation Market
  • Figure 15: Subscale Nimble Sparrow-H
  • Figure 16: Liquid hydrogen test facility
  • Figure 17: Hydrogen hub
  • Figure 18: Hydrogen Infrastructure for Aviation market to 2033 by Region [US$ millions]
  • Figure 19: Hydrogen Infrastructure for Aviation market to 2033 by Region %
  • Figure 20: North America Hydrogen Infrastructure for Aviation market to 2033 by Infrastructure Components
  • Figure 21: North America - Hydrogen Infrastructure for Aviation market to 2033 by Infrastructure Components
  • Figure 22: Europe Hydrogen Infrastructure for Aviation market to 2033 by Infrastructure Components
  • Figure 23: Europe - Hydrogen Infrastructure for Aviation market to 2033 by Infrastructure Components
  • Figure 24: Asia-Pacific Hydrogen Infrastructure for Aviation market to 2033 by Infrastructure Components
  • Figure 25: Asia-Pacific - Hydrogen Infrastructure for Aviation market to 2033 by Infrastructure Components
  • Figure 26: Middle-East & Africa Hydrogen Infrastructure for Aviation market to 2033 by Infrastructure Components
  • Figure 27: Middle-East & Africa - Hydrogen Infrastructure for Aviation market to 2033 by Infrastructure Components
  • Figure 28: Latin America Hydrogen Infrastructure for Aviation market to 2033 by Infrastructure Components
  • Figure 29: Latin America - Hydrogen Infrastructure for Aviation market to 2033 by Infrastructure Components
  • Figure 30: Hydrogen Infrastructure for Aviation market to 2033 by Infrastructure Components [US$ millions]
  • Figure 31: Hydrogen Infrastructure for Aviation market to 2033 by Infrastructure Components %
  • Figure 32: Hydrogen Infrastructure for Aviation market to 2033 by Region
  • Figure 33: - Hydrogen Infrastructure for Aviation market to 2033 by Region
  • Figure 34: Hydrogen Infrastructure for Aviation market to 2033 by Region
  • Figure 35: - Hydrogen Infrastructure for Aviation market to 2033 by Region
  • Figure 36: Storage Hydrogen Infrastructure for Aviation market to 2033 by Region
  • Figure 37: Storage - Hydrogen Infrastructure for Aviation market to 2033 by Region
  • Figure 38: Hydrogen Infrastructure for Aviation market to 2033 by Region
  • Figure 39: - Hydrogen Infrastructure for Aviation market to 2033 by Region
  • Figure 40: Hydrogen Infrastructure for Aviation market summary by Region
  • Figure 41: Hydrogen Infrastructure for Aviation Size by Region
  • Figure 42: Hydrogen Infrastructure for Aviation CAGR by Region in US$ millions
  • Figure 43: Market volumes over the forecast period per region
  • Figure 44: Hydrogen Infrastructure for Aviation market summary by Infrastructure Components
  • Figure 45: Hydrogen Infrastructure for Aviation Size by Infrastructure Components
  • Figure 46: Hydrogen Infrastructure for Aviation CAGR by Infrastructure Components in US$ millions