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市場調査レポート
商品コード
1394598
超伝導材料の世界市場の評価:製品タイプ別、要素タイプ別、用途別、エンドユーザー別、地域別、機会、予測(2016年~2030年)Superconducting Materials Market Assessment, By Product Type, By Element Type, By Application, By End-user, By Region, Opportunities and Forecast, 2016-2030F |
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カスタマイズ可能
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超伝導材料の世界市場の評価:製品タイプ別、要素タイプ別、用途別、エンドユーザー別、地域別、機会、予測(2016年~2030年) |
出版日: 2023年12月13日
発行: Market Xcel - Markets and Data
ページ情報: 英文 215 Pages
納期: 3~5営業日
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世界の超伝導材料の市場規模は、2022年の20億7,000万米ドルから2030年に46億米ドルに達し、2023年~2030年の予測期間においてCAGRで10.5%の成長が見込まれています。材料の開発と進歩が超伝導材料の導入につながっています。医療、エネルギー、輸送における市場の拡大が、超伝導材料の技術スペクトルを大きく牽引しています。
欧州委員会は、2030年までに約6,330億米ドルを投資し、先進の欧州送電網を開発するDigitalization of the energy systemに向けた2022年行動計画を実施しています。中国はすでに、2021年~2025年に4,420億米ドルを投資し、電力網システムの近代化と強化への取り組みを実施しています。米国は2022年、送電網のアップグレードと拡張を目的に、105億米ドルの資金を投じてGrid Resilience Innovative Partnership(GRIP)プログラムを開始しました。
磁気共鳴画像(MRI)ユニットの密度がもっとも高いのは日本で、人口100万人あたり55台以上であり、米国、ドイツがそれに続きます。ドイツのSiemensは、優れた画質を生み出すAIベースの技術を搭載した全身MRIスキャナー、Magentom Free Starの販売を開始しました。
インドのMinistry of TextilesMinistry of Textilesが発表したデータによると、FDIは2017年~2022年にテキスタイル部門に15億2,223万米ドルを投資しています。2022年に米国で製造された繊維、テキスタイル、アパレルの総額は推定658億米ドルを超え、繊維とテキスタイルの輸出は約340億米ドルに寄与しました。欧州連合(EU)全体の約33%の企業がテキスタイルをベースにしており、零細企業や中小企業からなっています。このような申し分のない数字から、欧州は従来技術に取って代わる驚異的な機会を生み出す超伝導材料市場として、極めて大きな可能性を秘めています。
COVID-19の発生は、超伝導材料を含む多くの部門に深刻な影響を及ぼし、業務の停止や労働力の減少を余儀なくされました。テキスタイル生産の需要の低下により、磁気軸受の人気がなくなったことから、超伝導材料の組み込みが大幅に見送られました。さまざまな工業製造ユニットの閉鎖は、配電網を管理するためのリソースを減少させ、超伝導材料市場を大幅に悪化させました。
世界の超伝導材料市場は、過熱や損失のない送電能力に対する需要の増加に伴い、順調に成長しています。Nexans S.A.は、混雑した都市送電網の大容量送電を支援する超伝導ケーブルを開発しました。送電ケーブルは3.2GWの大容量で、HDCケーブルの電圧レベルは±320kVです。Nexans S.A.は、超伝導ケーブルシステムと超伝導限流器の製造で世界をリードしています。また、フランスの交通機関への超伝導ケーブルの敷設や、スマートシティグリッドの開発のように、驚異的なインフラを創造し、送電の未来の形成に携わっています。
2021年9月、Nexans S.A.はシカゴのレジリエンス電力網プロジェクトに超伝導ケーブルを敷設し、試運転を行いました。これは、予測不可能な天候や深刻な大災害から電力網を守るために不可欠なものです。
当レポートでは、世界の超伝導材料市場について調査分析し、市場規模と予測、市場力学、主要企業の情勢と見通しなどを提供しています。
Global superconducting materials market size was valued at USD 2.07 billion in 2022, expected to reach USD 4.6 billion in 2030, with a CAGR of 10.5% for the forecast period between 2023 and 2030. The development and advancement in materials has led to the introduction of superconducting materials. The growing market in healthcare, energy, and transportation has significantly driven the technologies spectrum for superconducting materials.
High temperature superconductors are used for round conductors and solenoid applications in healthcare and electrical sectors. Superconducting magnetic systems are truly reliable and deliver high performance by ensuring safety parameters, used as current limiters and in lead applications. Superconductor magnetic bearing is used in high-speed textile and processing machines to run dynamic yarn processing effectively. Resilient electric grid is developed using advanced superconducting materials using high power medium voltage cable technology.
Considering the objective of net zero goals transport, heating and similar industries need to be electrified during the upcoming years. Superconducting cables are potentially great to transmit humongous electricity in a small space for congested urban grids. Superconducting cables transform urban power by eliminating heating, electric and magnetic fields. High temperature superconductors make power grid units and transmission cables by providing cryogenic compound insulation, usually liquid nitrogen surrounding the cable.
Brass metal is extensively used in high-current AC or DC applications like power transmission and distribution without affecting the voltage and providing high strength and stability. Copper metal find the application in power dense coils for developing synchronous motors, generators, and magnets. The market for superconducting materials can be emphasized as its incorporation in building resilience electrical power grid and distribution network.
The European Commission has executed an action plan for 2022 for "Digitalization of the energy system" to invest around USD 633 billion by 2030 to develop an advanced European electricity grid. China has already implemented measures to modernize and enhance the power grid system by investing USD 442 billion from 2021 to 2025. The United States commenced the Grid Resilience Innovative Partnership (GRIP) program in 2022 with a funding amount of USD 10.5 billion with the objective to upgrade and expand grid networks.
The conventional equipment for performing magnetic resonance imaging usually takes around 1-2 hours, but with the introduction of superconducting materials, the MRI examination time has come down to minutes. Superconductivity is considered important for MRI scanning devices that assist in creating unprecedented views of structures deep inside the human body. Conventional MRI with novel elements, like magnesium and titanium, can generate magnetic fields at higher rates. For instance, Hitachi has exceptionally developed a 1.1-m-diameter magnesium bromide superconducting magnet where the time required to perform MRI examinations is 10 minutes. All modern MRI scanners are equipped with niobium-titanium (NbTi) superconducting materials with multiple NbTi microfilaments embedded in a copper core. These advanced MRI scanners provides superior soft-tissue imaging to assist doctors in predicting various diseases like cancer, Alzheimer, trauma injury, etc.
Japan has the highest density of magnetic resonance imaging (MRI) units, accounting for over 55 units per every million of its population, followed by the United States and Germany. Siemens in Germany has commenced a whole-body MRI scanner Magentom Free Star that is enabled with AI-based technology that generates superior image quality.
Cooled superconductors require an additional positioning system, which is significantly replaced by superconductor magnetic bearings in a stable position. Shock-staple yarn production is progressively achieved by the ring spinning technique operating at a maximum speed of 25,000 rpm and is widely adopted across the textile industry. The SMBs are used as twist elements that comprise a rotating permanent-magnetic ring that handles the yarn twisting. The problem of friction-induced heat generation in the ring-traveler twist element during ring spinning is overcome through superconductive magnetic bearings.
Data released by the Ministry of Textiles, India states that FDI has invested USD 1522.23 million in the textile sector from 2017-2022. In 2022, the net value of the United States manufactured fiber, textile, and apparel shipments accounted for an estimated over USD 65.8 billion, whereas the export of fibers and textiles contributed to around USD 34 billion. Around 33% of companies across the European Union are textile-based, accounting for micro and SMEs. With such impeccable figures, Europe has extreme potential for a superconducting materials market that generates phenomenal opportunities to replace conventional technologies.
The outbreak of COVID-19 severely impacted numerous sectors with a shutdown of industrial operations due to imposed lockdowns and less workforce, including Superconducting Materials. The lowering demand for textile production has substantially de-structured the incorporation of superconducting materials as the magnetic bearing was significantly discouraged. The closure of various industrial manufacturing units has reduced resources to manage the electric-grid distribution network which substantially degraded the market of superconducting materials.
The global superconducting materials market is successfully growing with the increasing demand for power transmission capacity without overheating and losses. Nexans S.A. has developed superconducting cables that assist in transmitting large electricity for congested urban grids. Transmission cables have a massive capacity of 3.2 GW with a voltage level of ± 320 kV for HDC cables. Nexans S.A. is leading globally in manufacturing superconducting cable systems and superconducting fault current limiters. They are involved in creating incredible infrastructure and shaping the future of electrical transmission, like installing superconducting cables in French transportation, developing smart city grids, etc.
In September 2021, Nexans S.A. installed and commissioned superconducting cables for Chicago's resilient electric grid project that are imperative in preventing power grids from unpredictable weather and severe catastrophic events.
All segments will be provided for all regions and countries covered:
Companies mentioned above DO NOT hold any order as per market share and can be changed as per information available during research work.