歐洲替代正極材料市場:專注於電池類型、最終用戶、材料類型和國家 - 分析和預測,2023-2032
市場調查報告書
商品編碼
1481277

歐洲替代正極材料市場:專注於電池類型、最終用戶、材料類型和國家 - 分析和預測,2023-2032

Europe Alternative Cathode Material Market: Focus on Battery Type, End User, Material Type, and Country - Analysis and Forecast, 2023-2032

出版日期: | 出版商: BIS Research | 英文 74 Pages | 商品交期: 1-5個工作天內

價格

歐洲替代正極材料市場介紹

2023年歐洲替代正極材料市場(不包括英國)估值為54.0億美元,預計2023-2032年預測期內複合年成長率為9.01%,到2032年將達到117.4億美元。材料市場將受到對提供更高能量密度的鋰電池的需求不斷成長的推動。此外,與替代陰極材料相關的預期較低費用可能會對市場的成長做出重大貢獻。

主要市場統計數據
預測期 2023 - 2032
2023年評估 54億美元
2032年預測 117.4 億美元
複合年成長率 9.01%

市場介紹

在幾個關鍵因素的推動下,歐洲替代正極材料市場正在經歷顯著成長。隨著對更高能量密度的鋰電池的需求不斷成長,迫切需要能夠滿足這些要求的替代正極材料。該地區對永續性的關注和減少對傳統正極材料的依賴進一步推動了市場的成長。此外,技術和製造流程的進步正在提高替代正極材料的可行性和成本效益。此外,促進環保實踐和鼓勵採用創新電池技術的嚴格法規正在為市場成長創造有利的環境。隨著歐洲對永續發展和創新的承諾,替代正極材料市場為旨在滿足電池行業不斷變化的需求的製造商和利益相關者提供了利潤豐厚的機會。

市場區隔:

區隔 1:依電池類型

  • 鋰離子電池
  • 鉛酸電池
  • 其他

區隔 2:依最終使用者分類

  • 汽車
  • 消費性電子產品
  • 電動工具
  • 儲能系統(ESS)
  • 其他

區隔 3:依材料類型

  • 鎳鈷錳酸鋰 (NMC)
  • 鎳鈷鋁酸鋰 (NCA)
  • 磷酸鐵鋰 (LFP)
  • 錳酸鋰 (LMO)
  • 其他

區隔 4:依國家/地區

  • 德國
  • 西班牙
  • 波蘭
  • 匈牙利
  • 歐洲其他地區

該報告如何為組織增加價值?

產品/創新策略:在替代正極材料領域,技術進步正在改變農業景觀,以創造致勝產品,選擇正確的未滿足需求,瞄準正確的客戶群,並與替代產品競爭。產品部分幫助讀者了解不同類型的替代正極材料。此外,該研究還為讀者提供了基於應用和產品的歐洲替代正極材料市場的詳細了解。

成長/行銷策略:替代正極材料市場見證了主要參與者的顯著成長策略。業務擴張、協作和夥伴關係至關重要。公司正在進軍國外市場、建立聯盟並進行研究合作,以提高其技術實力。科技公司和農業專家之間的合作正在推動尖端監測工具的發展。此外,策略合資企業正在促進不同專業知識的整合,擴大這些解決方案的市場影響力。這種合作方法有助於開發全面、方便用戶使用且高效的替代正極材料。

競爭策略:在替代正極材料的競爭格局中,製造商正在多樣化其產品組合以涵蓋各種應用。區隔市場包括電池類型、最終用戶和材料類型。競爭基準揭示了市場參與者的優勢,強調他們獨特的產品和區域優勢。

目錄

執行摘要

研究範圍

第1章:市場

  • 產業展望
    • 替代正極材料市場:概述
    • 趨勢:當前和未來
    • 供應鍊網路
    • 生態系統/正在進行的計劃
  • 業務動態
    • 業務促進因素
    • 業務課題
    • 商業機會
  • 正極材料開採
  • 各種陰極類型的用例
  • 電池關鍵礦物比較分析
  • 分析:為什麼需要替代正極材料?

第 2 章:區域

  • 歐洲
    • 歐洲:國家層級分析
  • 英國

第 3 章:市場 - 競爭基準化分析與公司概況

  • 競爭基準化分析
  • 市場參與者排名
  • 公司簡介
    • 巴斯夫公司
    • 莊信萬豐
    • 優美科公司

第 4 章:研究方法

  • 資料來源
    • 主要數據來源
    • 二手資料來源
    • 數據三角測量
  • 市場估計與預測
    • 數據預測和建模的因素
Product Code: MCN2071SS

Introduction to Europe Alternative Cathode Material Market

The Europe alternative cathode material market (excluding U.K.) was valued at $5.40 billion in 2023, and it is expected to grow with a CAGR of 9.01% during the forecast period 2023-2032 to reach $11.74 billion by 2032. The growth of the alternative cathode material market is expected to be fueled by increasing demand for lithium batteries offering greater energy densities. Moreover, the anticipated lower expenses associated with alternative cathode materials are likely to contribute significantly to the market's growth.

KEY MARKET STATISTICS
Forecast Period2023 - 2032
2023 Evaluation$5.40 Billion
2032 Forecast$11.74 Billion
CAGR9.01%

Market Introduction

The Europe alternative cathode material market is witnessing significant growth driven by several key factors. With the rising demand for lithium batteries with higher energy densities, there's a pressing need for alternative cathode materials that can meet these requirements. The region's focus on sustainability and reducing dependence on traditional cathode materials further propels market growth. Additionally, advancements in technology and manufacturing processes are enhancing the feasibility and cost-effectiveness of alternative cathode materials. Furthermore, stringent regulations promoting eco-friendly practices and encouraging the adoption of innovative battery technologies are creating a conducive environment for market growth. With Europe's commitment to sustainability and innovation, the alternative cathode material market presents lucrative opportunities for manufacturers and stakeholders aiming to address the evolving demands of the battery industry.

Market Segmentation:

Segmentation 1: by Battery Type

  • Lithium-Ion Batteries
  • Lead-Acid Batteries
  • Others

Segmentation 2: by End User

  • Automotive
  • Consumer Electronics
  • Power Tools
  • Energy Storage Systems (ESS)
  • Others

Segmentation 3: by Material Type

  • Lithium Nickel Manganese Cobalt Oxide (NMC)
  • Lithium Nickel Cobalt Aluminium Oxide (NCA)
  • Lithium Iron Phosphate (LFP)
  • Lithium Manganese Oxide (LMO)
  • Others

Segmentation 4: by Country

  • Germany
  • Spain
  • Poland
  • Hungary
  • Rest-of-Europe

How can this report add value to an organization?

Product/Innovation Strategy: In the realm of alternative cathode material, technological advancements are transforming agricultural landscapes to create winning products, choose the right unmet needs, target the right customer group, and compete with substitute products. The product segment helps the readers understand the different types of alternative cathode materials. Also, the study provides the readers with a detailed understanding of the Europe alternative cathode material market based on application and product.

Growth/Marketing Strategy: The alternative cathode material market has witnessed remarkable growth strategies by key players. Business expansions, collaborations, and partnerships have been pivotal. Companies are venturing into foreign markets, forging alliances, and engaging in research collaborations to enhance their technological prowess. Collaborative efforts between tech companies and agricultural experts are driving the development of cutting-edge monitoring tools. Additionally, strategic joint ventures are fostering the integration of diverse expertise, amplifying the market presence of these solutions. This collaborative approach is instrumental in developing comprehensive, user-friendly, and efficient alternative cathode materials.

Competitive Strategy: In the competitive landscape of alternative cathode material, manufacturers are diversifying their product portfolios to cover various applications. Market segments include battery type, end-user, and material type. Competitive benchmarking illuminates the strengths of market players, emphasizing their unique offerings and regional strengths.

Table of Contents

Executive Summary

Scope of the Study

1 Markets

  • 1.1 Industry Outlook
    • 1.1.1 Alternative Cathode Material Market: Overview
    • 1.1.2 Trends: Current and Future
      • 1.1.2.1 Reducing Cobalt Content in Cathode Materials
      • 1.1.2.2 Shift to Lithium Iron Phosphate (LFP) Batteries
      • 1.1.2.3 Shift toward Electric Vehicles
    • 1.1.3 Supply Chain Network
      • 1.1.3.1 Mining and Processing
      • 1.1.3.2 Material Production
      • 1.1.3.3 Cathode Production
      • 1.1.3.4 Battery assembly
    • 1.1.4 Ecosystem/Ongoing Programs
      • 1.1.4.1 Consortiums and Associations
      • 1.1.4.2 Regulatory Bodies
      • 1.1.4.3 Programs by Research Institutions and Universities
  • 1.2 Business Dynamics
    • 1.2.1 Business Drivers
      • 1.2.1.1 Concerns about Cobalt Availability
      • 1.2.1.2 Rising Demand for Lithium-Ion Batteries with Higher Energy Densities
      • 1.2.1.3 Lower Cost of Alternate Cathode Materials
      • 1.2.1.4 Increasing Renewable Energy Integration
    • 1.2.2 Business Challenges
      • 1.2.2.1 Limited Commercialization
      • 1.2.2.2 Supply Chain Uncertainties
      • 1.2.2.3 Regulatory and Safety Concerns
    • 1.2.3 Business Opportunities
      • 1.2.3.1 Improved Performance
      • 1.2.3.2 Demand for Alternative Cathode Materials in Electric Vehicles (EVs) for Higher Range
  • 1.3 Mining of Cathode Materials
  • 1.4 Use Cases of Various Cathode Types
  • 1.5 Comparative Analysis of Key Battery Minerals
  • 1.6 Analysis: Why is There a Need for Alternative Cathode Materials?

2 Regions

  • 2.1 Europe
    • 2.1.1 Europe: Country-Level Analysis
      • 2.1.1.1 Germany
      • 2.1.1.2 Spain
      • 2.1.1.3 Poland
      • 2.1.1.4 Hungary
      • 2.1.1.5 Rest-of-Europe
  • 2.2 U.K.

3 Markets - Competitive Benchmarking & Company Profiles

  • 3.1 Competitive Benchmarking
  • 3.2 Market Player Ranking
  • 3.3 Company Profiles
    • 3.3.1 BASF SE
      • 3.3.1.1 Company Overview
      • 3.3.1.2 Product Portfolio
      • 3.3.1.3 Analyst View
        • 3.3.1.3.1 Regions of Growth
    • 3.3.2 Johnson Matthey
      • 3.3.2.1 Company Overview
      • 3.3.2.2 Product Portfolio
      • 3.3.2.3 Analyst View
        • 3.3.2.3.1 Regions of Growth
    • 3.3.3 Umicore N.V.
      • 3.3.3.1 Company Overview
      • 3.3.3.2 Product Portfolio
      • 3.3.3.3 Analyst View
        • 3.3.3.3.1 Regions of Growth

4 Research Methodology

  • 4.1 Data Sources
    • 4.1.1 Primary Data Sources
    • 4.1.2 Secondary Data Sources
    • 4.1.3 Data Triangulation
  • 4.2 Market Estimation and Forecast
    • 4.2.1 Factors for Data Prediction and Modeling

List of Figures

  • Figure 1: Europe Alternative Cathode Material Market, $Billion, 2022-2032
  • Figure 2: Europe Alternative Cathode Material Market (by Battery Type), $Billion, 2022-2032
  • Figure 3: Europe Alternative Cathode Material Market (by End User), $Billion, 2022-2032
  • Figure 4: Europe Alternative Cathode Material Market (by Material Type), $Billion, 2022-2032
  • Figure 5: Alternative Cathode Material Market (by Region), $Billion, 2022
  • Figure 6: Alternative Cathode Material Market Supply Chain
  • Figure 7: Global Competitive Benchmarking, 2022
  • Figure 8: BASF SE: Product Portfolio
  • Figure 9: Johnson Matthey: Product Portfolio
  • Figure 10: Umicore N.V.: Product Portfolio
  • Figure 11: Data Triangulation
  • Figure 12: Top-Down and Bottom-Up Approach

List of Tables

  • Table 1: Europe Alternative Cathode Material Market Overview
  • Table 2: Key Companies Profiled
  • Table 3: Key Consortiums and Associations
  • Table 4: Regulatory Bodies
  • Table 5: Programs by Research Institutions and Universities
  • Table 6: Impact of Business Drivers
  • Table 7: Impact of Business Restraints
  • Table 8: Impact of Business Opportunities
  • Table 9: Comparative Analysis of Key Battery Minerals
  • Table 10: Alternative Cathode Material Market (by Region), Kiloton, 2022-2032
  • Table 11: Alternative Cathode Material Market (by Region), $Billion, 2022-2032
  • Table 12: Alternative Cathode Material Market Player Ranking, 2022