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市場調査レポート
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溶融塩電池の世界市場:市場規模・シェア分析 (種類別・充電方式別・用途別・電池容量別 (低容量、中容量、高容量))、産業需要の予測 (~2030年)

Molten Salt Batteries Market Size and Share Analysis by Type, Charging, Application, Battery Capacity (Low, Medium, High ) - Global Industry Demand Forecast to 2030


出版日
ページ情報
英文 220 Pages
納期
2~3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=144.08円
溶融塩電池の世界市場:市場規模・シェア分析 (種類別・充電方式別・用途別・電池容量別 (低容量、中容量、高容量))、産業需要の予測 (~2030年)
出版日: 2024年04月04日
発行: Prescient & Strategic Intelligence
ページ情報: 英文 220 Pages
納期: 2~3営業日
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  • 概要
  • 目次
概要

市場概要

溶融塩電池市場は、2023年に24億6,110万米ドルを生み出し、2030年には115億4,320万米ドルに成長し、24.9%のCAGRで成長します。これは主に、再生可能エネルギー源から生み出されるエネルギーを効率的に貯蔵する必要性が高まっているためです。この電池は、安全性の向上、寿命の延長、エネルギー密度の向上など、多くの利点を提供します。

グリッドストレージと電気自動車 (EV) は、溶融塩電池の潜在的な用途の一部です。EVは主電源または二次電源 (PHEVやHEVの場合) として電池を搭載しているため、EVの需要増大が業界を牽引する大きな要因となっています。高速走行と航続距離は、EVが受け入れられるための重要な限界であるため、溶融塩電池の高いエネルギー密度が解決策を提供することができます。

市場の洞察

北米はこの業界への貢献が最も大きく、2030年には約52億米ドルを生み出し、引き続き最大となる可能性が高いです。これは、EVに対するニーズが急増しているためです。特に米国が業界をリードしており、今後数年間は25.0%のCAGRで成長するとみられます。これは、再生可能エネルギー源が重視されるようになり、エネルギー・電力産業でこれらのシステムに対するニーズが急増しているためです。

欧州は、再生可能エネルギーの生産能力が盛んなため、CAGRが大幅に上昇しています。2023年には、液体金属電池が30%のシェアを占め、業界への貢献が最大となりました。これは、グリッドレベルでのエネルギー貯蔵に理想的で、拡張性が高いためです。

再充電可能なカテゴリーは、電子機器廃棄物の削減に貢献しエコフレンドリーであるため、より高い収益源になります。

グリッドストレージは、これらのデバイスが膨大な量のエネルギーを蓄えることができるため、主要な活用領域です。

高容量 (100kWh以上) 電池は、さまざまな時間にわたって電力を供給できるため、需要が高いです。また急速充電タイプでもあるため、大型EVや送電網、その他さまざまな大規模用途に最適です。

2023年の主要エンドユーザーは発電所で、シェアは40%です。これは、エネルギー産業への投資の増加に支えられ、太陽光発電所計画が増加しているためです。再生可能エネルギーの生産増加に伴い、伝熱流体システム、集光型太陽熱発電 (CSP) プラント、その他様々な用途で溶融塩蓄熱のニーズが高まる。

当レポートでは、世界の溶融塩電池の市場について分析し、市場の基本構造・最新情勢や主な促進・抑制要因、世界全体および地域別・主要国の市場規模の動向見通し (金額ベース、2017~2030年)、種類別・充電方式別・用途別・電池容量別の詳細動向、現在の市場競争の状況、主要企業のプロファイルなどを調査しております。

目次

第1章 調査範囲

第2章 調査手法

第3章 エグゼクティブサマリー

第4章 市場指標

第5章 業界の展望

  • 市場力学
    • 動向
    • 促進要因
    • 抑制要因/課題
    • 促進要因/抑制要因の影響分析
  • 新型コロナウイルス感染症 (COVID-19) の影響
  • ポーターのファイブフォース分析

第6章 世界市場

  • 概要
  • 市場収益:種類別 (2017~2030年)
  • 市場収益:充電方式別 (2017~2030年)
  • 市場収益:用途別 (2017~2030年)
  • 市場収益:電池容量別 (2017~2030年)
  • 市場収益:地域別 (2017~2030年)

第7章 北米市場

  • 概要
  • 市場収益:種類別 (2017~2030年)
  • 市場収益:充電方式別 (2017~2030年)
  • 市場収益:用途別 (2017~2030年)
  • 市場収益:電池容量別 (2017~2030年)
  • 市場収益:国別 (2017~2030年)

第8章 欧州市場

第9章 アジア太平洋市場

第10章 ラテンアメリカ市場

第11章 中東・アフリカ市場

第12章 米国市場

  • 概要
  • 市場収益:種類別 (2017~2030年)
  • 市場収益:充電方式別 (2017~2030年)
  • 市場収益:用途別 (2017~2030年)
  • 市場収益:電池容量別 (2017~2030年)

第13章 カナダ市場

第14章 ドイツ市場

第15章 フランス市場

第16章 英国市場

第17章 イタリア市場

第18章 スペイン市場

第19章 日本市場

第20章 中国市場

第21章 インド市場

第22章 オーストラリア市場

第23章 韓国市場

第24章 ブラジル市場

第25章 メキシコ市場

第26章 サウジアラビア市場

第27章 南アフリカ市場

第28章 アラブ首長国連邦 (UAE) 市場

第29章 競合情勢

  • 市場参入企業とその提供品目の一覧
  • 主要企業の競合ベンチマーク
  • 主要企業の製品ベンチマーク
  • 最近の戦略展開状況

第30章 企業プロファイル

  • NGK Insulators Ltd.
  • Ambri Inc.
  • Sumitomo Electric Industries Ltd.

第31章 付録

目次
Product Code: 12819

Market Insights

The molten salt batteries market generated a value of USD 2,461.1 million in 2023, which will rise to USD 11,543.2 million, growing at a 24.9% CAGR, by 2030.

This is mainly because of the rising need for storing energy efficiently, specifically that created by renewable sources.

These batteries provide many advantages, such as improved safety, longer lives, and greater energy densities.

The industry is basically thriving due to the increasing emphasis on sustainable and reliable power sources.

For large-scale usage, batteries that have liquid components are employed because they have a greater current density as well as a longer life.

Grid storage and EVs are some potential applications for the molten salt battery.

The increasing need for EVs is a major factor driving the industry because these vehicles have a battery as their main or secondary (in the case of PHEVs and HEVs) power source.

Since speed driving and range are some key limits in their acceptance, the greater energy density of molten salt batteries can offer a solution.

These devices utilize molten salts as the electrolyte and offer a great power density.

Market Insights

North America is the largest contributor to the industry, and it is likely to remain the largest, generating approximately USD 5.2 billion, in 2030. This can be because of the surging need for EVs.

The U.S. is leading the industry in North America, and it is likely to advance at a 25.0% CAGR in the coming years.

This will be because of the rising emphasis on renewable energy sources and the surging need for these systems in the energy and power industry.

Europe is advancing at a significant compound annual growth rate, because of the thriving renewable energy capacity.

Liquid-metal batteries was the largest contributor to the industry in 2023, with a 30% share. This is because they are ideal for storing energy at the grid level as well as very scalable.

This means that they can be made larger without affecting their effectiveness negatively.

Also, they are considered safer compared to other types of batteries because they reduce the danger of thermal explosions because of the chemical reactions that happen within.

The rechargeable category will be a higher revenue generator as these types are eco-friendly because they contribute to reducing e-waste.

This reduces the rate of water pollution, global warming, air acidification, and air pollution.

Grid storage is a major application as these devices can store an enormous amount of energy, which can be utilized later when needed.

Even though the grid is immense, it is not always capable of meeting the high need for power in most settings.

The high (over 100 kWh) batteries are in high demand because they can provide electricity over varying times.

They are rapid-charging types, making them ideal for heavy-duty EVs, grids, and various other large-scale applications

Power plants are the key end users in 2023, with a 40% share, because of the rising count of solar power plant plans, assisted by the growing investment in the energy industry.

With the increasing production of renewable energy, the need for molten salt thermal energy storage for heat transfer fluid systems, concentrating solar power (CSP) plants, and various other applications will increase.

Table of Contents

Chapter 1. Research Scope

  • 1.1. Research Objectives
  • 1.2. Market Definition
  • 1.3. Analysis Period
  • 1.4. Market Size Breakdown by Segments
    • 1.4.1. Market size breakdown, by type
    • 1.4.2. Market size breakdown, by charging
    • 1.4.3. Market size breakdown, by application
    • 1.4.4. Market size breakdown, by battery capacity
    • 1.4.5. Market size breakdown, by region
    • 1.4.6. Market size breakdown, by country
  • 1.5. Market Data Reporting Unit
    • 1.5.1. Value
  • 1.6. Key Stakeholders

Chapter 2. Research Methodology

  • 2.1. Secondary Research
    • 2.1.1. Paid
    • 2.1.2. Unpaid
    • 2.1.3. P&S Intelligence database
  • 2.2. Primary Research
  • 2.3. Market Size Estimation
  • 2.4. Data Triangulation
  • 2.5. Currency Conversion Rates
  • 2.6. Assumptions for the Study
  • 2.7. Notes and Caveats

Chapter 3. Executive Summary

Chapter 4. Market Indicators

Chapter 5. Industry Outlook

  • 5.1. Market Dynamics
    • 5.1.1. Trends
    • 5.1.2. Drivers
    • 5.1.3. Restraints/challenges
    • 5.1.4. Impact analysis of drivers/restraints
  • 5.2. Impact of COVID-19
  • 5.3. Porter's Five Forces Analysis
    • 5.3.1. Bargaining power of buyers
    • 5.3.2. Bargaining power of suppliers
    • 5.3.3. Threat of new entrants
    • 5.3.4. Intensity of rivalry
    • 5.3.5. Threat of substitutes

Chapter 6. Global Market

  • 6.1. Overview
  • 6.2. Market Revenue, by Type (2017-2030)
  • 6.3. Market Revenue, by Charging (2017-2030)
  • 6.4. Market Revenue, by Application (2017-2030)
  • 6.5. Market Revenue, by Battery Capacity (2017-2030)
  • 6.6. Market Revenue, by Region (2017-2030)

Chapter 7. North America Market

  • 7.1. Overview
  • 7.2. Market Revenue, by Type (2017-2030)
  • 7.3. Market Revenue, by Charging (2017-2030)
  • 7.4. Market Revenue, by Application (2017-2030)
  • 7.5. Market Revenue, by Battery Capacity (2017-2030)
  • 7.6. Market Revenue, by Country (2017-2030)

Chapter 8. Europe Market

  • 8.1. Overview
  • 8.2. Market Revenue, by Type (2017-2030)
  • 8.3. Market Revenue, by Type (2017-2030)
  • 8.4. Market Revenue, by Charging (2017-2030)
  • 8.5. Market Revenue, by Application (2017-2030)
  • 8.6. Market Revenue, by Battery Capacity (2017-2030)
  • 8.7. Market Revenue, by Country (2017-2030)

Chapter 9. APAC Market

  • 9.1. Overview
  • 9.2. Market Revenue, by Type (2017-2030)
  • 9.3. Market Revenue, by Charging (2017-2030)
  • 9.4. Market Revenue, by Application (2017-2030)
  • 9.5. Market Revenue, by Battery Capacity (2017-2030)
  • 9.6. Market Revenue, by Country (2017-2030)

Chapter 10. LATAM Market

  • 10.1. Overview
  • 10.2. Market Revenue, by Type (2017-2030)
  • 10.3. Market Revenue, by Charging (2017-2030)
  • 10.4. Market Revenue, by Application (2017-2030)
  • 10.5. Market Revenue, by Battery Capacity (2017-2030)
  • 10.6. Market Revenue, by Country (2017-2030)

Chapter 11. MEA Market

  • 11.1. Overview
  • 11.2. Market Revenue, by Type (2017-2030)
  • 11.3. Market Revenue, by Charging (2017-2030)
  • 11.4. Market Revenue, by Application (2017-2030)
  • 11.5. Market Revenue, by Battery Capacity (2017-2030)
  • 11.6. Market Revenue, by Country (2017-2030)

Chapter 12. U.S. Market

  • 12.1. Overview
  • 12.2. Market Revenue, by Type (2017-2030)
  • 12.3. Market Revenue, by Charging (2017-2030)
  • 12.4. Market Revenue, by Application (2017-2030)
  • 12.5. Market Revenue, by Battery Capacity (2017-2030)

Chapter 13. Canada Market

  • 13.1. Overview
  • 13.2. Market Revenue, by Type (2017-2030)
  • 13.3. Market Revenue, by Charging (2017-2030)
  • 13.4. Market Revenue, by Application (2017-2030)
  • 13.5. Market Revenue, by Battery Capacity (2017-2030)

Chapter 14. Germany Market

  • 14.1. Overview
  • 14.2. Market Revenue, by Type (2017-2030)
  • 14.3. Market Revenue, by Charging (2017-2030)
  • 14.4. Market Revenue, by Application (2017-2030)
  • 14.5. Market Revenue, by Battery Capacity (2017-2030)

Chapter 15. France Market

  • 15.1. Overview
  • 15.2. Market Revenue, by Type (2017-2030)
  • 15.3. Market Revenue, by Charging (2017-2030)
  • 15.4. Market Revenue, by Application (2017-2030)
  • 15.5. Market Revenue, by Battery Capacity (2017-2030)

Chapter 16. U.K. Market

  • 16.1. Overview
  • 16.2. Market Revenue, by Type (2017-2030)
  • 16.3. Market Revenue, by Charging (2017-2030)
  • 16.4. Market Revenue, by Application (2017-2030)
  • 16.5. Market Revenue, by Battery Capacity (2017-2030)

Chapter 17. Italy Market

  • 17.1. Overview
  • 17.2. Market Revenue, by Type (2017-2030)
  • 17.3. Market Revenue, by Charging (2017-2030)
  • 17.4. Market Revenue, by Application (2017-2030)
  • 17.5. Market Revenue, by Battery Capacity (2017-2030)

Chapter 18. Spain Market

  • 18.1. Overview
  • 18.2. Market Revenue, by Type (2017-2030)
  • 18.3. Market Revenue, by Charging (2017-2030)
  • 18.4. Market Revenue, by Application (2017-2030)
  • 18.5. Market Revenue, by Battery Capacity (2017-2030)

Chapter 19. Japan Market

  • 19.1. Overview
  • 19.2. Market Revenue, by Type (2017-2030)
  • 19.3. Market Revenue, by Charging (2017-2030)
  • 19.4. Market Revenue, by Application (2017-2030)
  • 19.5. Market Revenue, by Battery Capacity (2017-2030)

Chapter 20. China Market

  • 20.1. Overview
  • 20.2. Market Revenue, by Type (2017-2030)
  • 20.3. Market Revenue, by Charging (2017-2030)
  • 20.4. Market Revenue, by Application (2017-2030)
  • 20.5. Market Revenue, by Battery Capacity (2017-2030)

Chapter 21. India Market

  • 21.1. Overview
  • 21.2. Market Revenue, by Type (2017-2030)
  • 21.3. Market Revenue, by Charging (2017-2030)
  • 21.4. Market Revenue, by Application (2017-2030)
  • 21.5. Market Revenue, by Battery Capacity (2017-2030)

Chapter 22. Australia Market

  • 22.1. Overview
  • 22.2. Market Revenue, by Type (2017-2030)
  • 22.3. Market Revenue, by Charging (2017-2030)
  • 22.4. Market Revenue, by Application (2017-2030)
  • 22.5. Market Revenue, by Battery Capacity (2017-2030)

Chapter 23. South Korea Market

  • 23.1. Overview
  • 23.2. Market Revenue, by Type (2017-2030)
  • 23.3. Market Revenue, by Charging (2017-2030)
  • 23.4. Market Revenue, by Application (2017-2030)
  • 23.5. Market Revenue, by Battery Capacity (2017-2030)

Chapter 24. Brazil Market

  • 24.1. Overview
  • 24.2. Market Revenue, by Type (2017-2030)
  • 24.3. Market Revenue, by Charging (2017-2030)
  • 24.4. Market Revenue, by Application (2017-2030)
  • 24.5. Market Revenue, by Battery Capacity (2017-2030)

Chapter 25. Mexico Market

  • 25.1. Overview
  • 25.2. Market Revenue, by Type (2017-2030)
  • 25.3. Market Revenue, by Charging (2017-2030)
  • 25.4. Market Revenue, by Application (2017-2030)
  • 25.5. Market Revenue, by Battery Capacity (2017-2030)

Chapter 26. Saudi Arabia Market

  • 26.1. Overview
  • 26.2. Market Revenue, by Type (2017-2030)
  • 26.3. Market Revenue, by Charging (2017-2030)
  • 26.4. Market Revenue, by Application (2017-2030)
  • 26.5. Market Revenue, by Battery Capacity (2017-2030)

Chapter 27. South Africa Market

  • 27.1. Overview
  • 27.2. Market Revenue, by Type (2017-2030)
  • 27.3. Market Revenue, by Charging (2017-2030)
  • 27.4. Market Revenue, by Application (2017-2030)
  • 27.5. Market Revenue, by Battery Capacity (2017-2030)

Chapter 28. U.A.E. Market

  • 28.1. Overview
  • 28.2. Market Revenue, by Type (2017-2030)
  • 28.3. Market Revenue, by Charging (2017-2030)
  • 28.4. Market Revenue, by Application (2017-2030)
  • 28.5. Market Revenue, by Battery Capacity (2017-2030)

Chapter 29. Competitive Landscape

  • 29.1. List of Market Players and their Offerings
  • 29.2. Competitive Benchmarking of Key Players
  • 29.3. Product Benchmarking of Key Players
  • 29.4. Recent Strategic Developments

Chapter 30. Company Profiles

  • 30.1. NGK Insulators Ltd.
    • 30.1.1. Business overview
    • 30.1.2. Product and service offerings
    • 30.1.3. Key financial summary
  • 30.2. Ambri Inc.
    • 30.2.1. Business overview
    • 30.2.2. Product and service offerings
    • 30.2.3. Key financial summary
  • 30.3. Sumitomo Electric Industries Ltd.
    • 30.3.1. Business overview
    • 30.3.2. Product and service offerings
    • 30.3.3. Key financial summary

Chapter 31. Appendix

  • 31.1. Abbreviations
  • 31.2. Sources and References
  • 31.3. Related Reports