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2081239

多孔陶瓷市場預測(2034 年)-按產品類型、孔隙結構、製造流程、應用、產業和地區分類的全球分析

Porous Ceramics Market Forecasts to 2034 - Global Analysis By Product Type, Pore Structure, Manufacturing Process, Application, Industry and Geography

出版日期: | 出版商: Stratistics Market Research Consulting | 英文 | 商品交期: 2-3個工作天內

價格

全球多孔陶瓷市場預計到 2026 年將達到 68 億美元,並在預測期內以 9.9% 的複合年成長率成長,到 2034 年將達到 145 億美元。

多孔陶瓷是一種陶瓷材料,其特徵在於其結構中存在可控的互連或獨立孔隙網路。這些材料具有獨特的性能,例如低密度、高比表面積、隔熱性、過濾能力和化學穩定性。多孔陶瓷廣泛應用於過濾系統、觸媒撐體、生物醫學植入、溫度控管、環境應用和能源技術領域。其可自訂的孔隙結構使其性能能夠滿足特定的工業需求。對先進過濾技術、能源效率和永續技術日益成長的需求正在推動全球多孔陶瓷市場的成長。

過濾解決方案的需求日益成長

多孔陶瓷材料在各種工業領域被廣泛應用,以在嚴苛的運作環境下實現高效的分離和淨化過程。這些材料具有優異的耐化學性和熱穩定性,使其適用於液體和氣體的過濾應用。先進的過濾技術正在水處理廠、化工廠和環境管理系統中得到更廣泛的應用。製造商致力於研發使用壽命更長、過濾性能更穩定的材料。人們對水質和工業排放日益成長的關注,正推動著多孔陶瓷材料在許多工業領域的應用。

機械強度限制

多孔結構會降低承載能力,並在惡劣條件下增加機械損傷的風險。某些應用需要能夠承受高應力並保持結構完整性的材料。製造商常常面臨平衡孔隙率和強度要求的挑戰。提高耐久性可能需要額外的加工工藝,從而增加生產複雜性和成本。機械性能的限制可能會使其無法用於承受高壓或衝擊的應用場合。

先進觸媒撐體應用

可控的孔結構能夠實現催化劑的高效分散,從而提高整個工業製程的反應效率。化工企業擴大將多孔陶瓷用作催化劑體系的載體材料。其高比表面積特性有利於催化劑與反應物之間的相互作用,有助於提高製程性能。隨著對高效化工製造技術的需求不斷成長,陶瓷材料設計領域的創新也不斷推進。能源、石油化學和環保產業正在尋求先進的觸媒撐體方案以提高生產效率。不斷擴大的工業流程最佳化工作有望創造新的成長機會。

材料性能劣化的風險

長期暴露於強腐蝕化學物質和極端操作條件下,會逐漸影響材料的孔隙結構和功能特性。材料性能的變化可能導致過濾效率和運作可靠性隨時間推移而降低。如果劣化影響到系統效能,則維護負擔可能會增加。在惡劣環境下運作的產業必須在部署前仔細評估材料的耐久性。性能問題可能迫使一些最終用戶考慮使用替代材料。確保長期可靠性仍然是製造商和研究人員面臨的關鍵挑戰。

新型冠狀病毒(COVID-19)的影響:

新冠疫情對多孔陶瓷市場的影響喜憂參半。一方面,對過濾和淨化技術的需求激增,推動了多孔陶瓷材料在多個關鍵工業和醫療領域的應用。另一方面,供應鏈中斷影響了原料供應和生產營運。疫情初期,工業領域的臨時停工導致部分終端用戶市場需求下降。營運限制也延緩了研發活動。隨著製造業和基礎設施項目的復甦,市場勢頭逐漸恢復。人們對過濾效率和環境保護意識的提高,也重新激發了對先進陶瓷材料的興趣。

在預測期內,氧化鋁陶瓷細分市場預計將佔據最大的市場佔有率。

氧化鋁基材料兼具化學穩定性、耐熱性和成本績效等優點,預計在預測期內,氧化鋁陶瓷將佔據最大的市場佔有率。這些陶瓷廣泛應用於過濾、觸媒撐體、隔熱材料和工業製程等領域。由於其優異的耐腐蝕性和耐磨性,氧化鋁適用於嚴苛的工作環境。製造商青睞氧化鋁陶瓷,是因為其製造流程成熟且應用範圍廣泛。化學和環保產業的持續需求正在推動該領域的成長。此外,材料的不斷改進也進一步提升了其性能。

在預測期內,互連孔隙段預計將呈現最高的複合年成長率。

在預測期內,由於互連孔隙結構增強了流體傳輸能力,提高了過濾效率和傳質性能,預計其成長率將最高。互連孔隙網路使液體和氣體能夠在陶瓷結構內更有效率地流動。各行各業對具有更高加工能力和更最佳化運行性能的材料的需求日益成長。先進的製造技術使得對孔隙結構和材料功能進行更精確的控制成為可能。多個產業對高效過濾和催化處理系統的需求持續成長。研究活動正在加速創新多孔結構的發展。

市佔率最大的地區:

在預測期內,北美預計將佔據最大的市場佔有率,這主要得益於環境技術、化學加工產業和先進製造業的強勁需求。該地區受益於對過濾系統的巨額投資以及為最佳化工業流程所做的努力。各公司正積極採用高性能陶瓷材料來提高營運效率並符合監管要求。研究機構和材料科學組織持續支持先進陶瓷領域的創新。對水處理和污染控制應用日益成長的興趣也促進了市場擴張。完善的工業基礎設施進一步推動了該地區的需求。

複合年成長率最高的地區:

在預測期內,亞太地區預計將呈現最高的複合年成長率,這主要得益於工業生產擴張對先進過濾和分離技術日益成長的需求。化學加工、水處理、電子和製造業的快速發展,為多孔陶瓷材料創造了巨大的需求。各國政府正在投資環境管理項目,而這些項目需要高效率的淨化解決方案。工業現代化努力正在推動各關鍵產業採用高性能材料。人們對資源效率的日益重視,也促進了先進過濾系統的廣泛應用。當地製造商正在擴大產能以滿足不斷成長的需求。預計亞太地區將成為多孔陶瓷市場成長最快的區域市場。

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目錄

第1章執行摘要

  • 市場概覽及主要亮點
  • 促進因素、挑戰與機遇
  • 競爭格局概述
  • 戰略洞察與建議

第2章:研究框架

  • 研究目標和範圍
  • 相關人員分析
  • 研究假設和限制
  • 調查方法

第3章 市場動態與趨勢分析

  • 市場定義與結構
  • 主要市場促進因素
  • 市場限制與挑戰
  • 投資成長機會和重點領域
  • 產業威脅與風險評估
  • 技術與創新展望
  • 新興市場/高成長市場
  • 監管和政策環境
  • 新冠疫情的影響及復甦前景

第4章:競爭環境與策略評估

  • 波特五力分析
    • 供應商的議價能力
    • 買方的議價能力
    • 替代品的威脅
    • 新進入者的威脅
    • 競爭公司之間的競爭
  • 主要公司市佔率分析
  • 產品基準評效和效能比較

第5章 全球多孔陶瓷市場:依產品類型分類

  • 氧化鋁陶瓷
  • 碳化矽陶瓷
  • 氧化鋯陶瓷
  • 二氧化鈦陶瓷
  • 其他產品類型

第6章:全球多孔陶瓷市場:依孔隙結構分類

  • 開孔
  • 封閉式
  • 互連孔隙
  • 梯度孔隙
  • 其他孔隙結構

第7章 全球多孔陶瓷市場:依製造流程分類

  • 副本方法
  • 發泡法
  • 冷凍鑄造
  • 積層製造
  • 其他製造程序

第8章 全球多孔陶瓷市場:依應用領域分類

  • 過濾
  • 觸媒撐體
  • 隔熱材料
  • 生物醫學植入
  • 其他用途

第9章 全球多孔陶瓷市場:依產業分類

  • 化學品
  • 衛生保健
  • 環境領域
  • 工業製造
  • 其他行業

第10章 全球多孔陶瓷市場:依地區分類

  • 北美洲
    • 美國
    • 加拿大
    • 墨西哥
  • 歐洲
    • 英國
    • 德國
    • 法國
    • 義大利
    • 西班牙
    • 荷蘭
    • 比利時
    • 瑞典
    • 瑞士
    • 波蘭
    • 其他歐洲國家
  • 亞太地區
    • 中國
    • 日本
    • 印度
    • 韓國
    • 澳洲
    • 印尼
    • 泰國
    • 馬來西亞
    • 新加坡
    • 越南
    • 其他亞太國家
  • 南美洲
    • 巴西
    • 阿根廷
    • 哥倫比亞
    • 智利
    • 秘魯
    • 其他南美國家
  • 世界其他地區(RoW)
    • 中東
      • 沙烏地阿拉伯
      • 阿拉伯聯合大公國
      • 卡達
      • 以色列
      • 其他中東國家
    • 非洲
      • 南非
      • 埃及
      • 摩洛哥
      • 其他非洲國家

第11章 策略市場資訊

  • 工業價值網路和供應鏈評估
  • 空白區域和機會地圖
  • 產品演進與市場生命週期分析
  • 通路、經銷商和打入市場策略的評估

第12章 產業趨勢與策略舉措

  • 併購
  • 夥伴關係、聯盟和合資企業
  • 新產品發布和認證
  • 擴大生產能力和投資
  • 其他策略舉措

第13章:公司簡介

  • CoorsTek, Inc.
  • CeramTec GmbH
  • Morgan Advanced Materials plc
  • Saint-Gobain SA
  • KYOCERA Corporation
  • NGK Insulators, Ltd.
  • Corning Incorporated
  • Schunk Group
  • Vesuvius plc
  • Rauschert GmbH
  • Elan Technology
  • Ortech Advanced Ceramics
  • 3M Company
  • Tosoh Corporation
  • IBIDEN Co., Ltd.
Product Code: SMRC37720

According to Stratistics MRC, the Global Porous Ceramics Market is accounted for $6.8 billion in 2026 and is expected to reach $14.5 billion by 2034 growing at a CAGR of 9.9% during the forecast period. Porous ceramics are ceramic materials characterized by a controlled network of interconnected or isolated pores within their structure. These materials offer unique properties such as low density, high surface area, thermal insulation, filtration capability, and chemical stability. Porous ceramics are widely used in filtration systems, catalyst supports, biomedical implants, thermal management, environmental applications, and energy technologies. Their customizable pore structures enable tailored performance for specific industrial requirements. Increasing demand for advanced filtration, energy efficiency, and sustainable technologies is driving growth in the porous ceramics market globally.

Market Dynamics:

Driver:

Increasing demand for filtration solutions

Industrial sectors are adopting porous ceramic materials to achieve efficient separation and purification processes in demanding operating environments. These materials offer excellent chemical resistance and thermal stability, making them suitable for filtration applications involving liquids and gases. Water treatment facilities, chemical processing plants, and environmental management systems are expanding the use of advanced filtration technologies. Manufacturers are focusing on materials that provide longer service life and consistent filtration performance. Growing concerns regarding water quality and industrial emissions are supporting adoption across multiple industries.

Restraint:

Limited mechanical strength properties

Highly porous structures can reduce load-bearing capability and increase susceptibility to mechanical damage under demanding conditions. Certain applications require materials that can withstand significant stress while maintaining structural integrity. Manufacturers often face challenges in balancing porosity levels with strength requirements. Additional processing techniques may be necessary to improve durability, increasing production complexity and costs. Mechanical limitations can restrict usage in applications involving high pressure or impact exposure.

Opportunity:

Advanced catalyst support applications

Controlled pore architectures enable effective catalyst dispersion and enhance reaction efficiency across industrial processing operations. Chemical manufacturers are increasingly utilizing porous ceramics as support materials in catalytic systems. High surface area characteristics improve interaction between catalysts and reactants, supporting better process performance. Demand for efficient chemical production technologies is encouraging innovation in ceramic material design. Energy, petrochemical, and environmental industries are exploring advanced catalyst support solutions to improve productivity. Expanding industrial process optimization efforts are expected to create new growth opportunities.

Threat:

Material performance degradation risks

Prolonged exposure to harsh chemicals and extreme operating conditions can gradually affect pore structure and functional performance. Changes in material characteristics may reduce filtration efficiency and operational reliability over time. Maintenance requirements can increase when degradation affects system effectiveness. Industries operating in aggressive environments must carefully evaluate material durability before deployment. Performance concerns may encourage some end users to consider alternative materials. Ensuring long-term reliability remains an important focus for manufacturers and researchers.

Covid-19 Impact:

The COVID-19 pandemic had a mixed impact on the Porous Ceramics market. Growing demand for filtration and purification technologies supported usage of porous ceramic materials in several essential industrial and healthcare applications. At the same time, supply chain disruptions affected raw material availability and manufacturing operations. Temporary shutdowns across industrial sectors reduced demand from certain end-use markets during the initial stages of the pandemic. Research and development activities experienced delays due to operational restrictions. Recovery in manufacturing and infrastructure projects gradually restored market momentum. Increased awareness of filtration efficiency and environmental protection contributed to renewed interest in advanced ceramic materials.

The alumina ceramics segment is expected to be the largest during the forecast period

The alumina ceramics segment is expected to account for the largest market share during the forecast period as alumina-based materials provide an attractive combination of chemical stability, thermal resistance, and cost-effective performance. These ceramics are widely utilized in filtration, catalyst support, insulation, and industrial processing applications. Strong resistance to corrosion and wear makes alumina suitable for demanding operating environments. Manufacturers prefer alumina ceramics because of their established production processes and broad application versatility. Continuous demand from chemical and environmental industries supports segment growth. Ongoing material improvements are further enhancing performance characteristics.

The interconnected pores segment is expected to have the highest CAGR during the forecast period

Over the forecast period, the interconnected pores segment is predicted to witness the highest growth rate due to enhanced fluid transport capabilities that improve filtration efficiency and mass transfer performance. Interconnected pore networks allow liquids and gases to move more effectively through ceramic structures. Industries are increasingly seeking materials that deliver higher throughput and optimized operational performance. Advanced manufacturing techniques are enabling greater control over pore architecture and material functionality. Demand for efficient filtration and catalytic processing systems continues to increase across multiple sectors. Research activities are accelerating the development of innovative porous structures.

Region with largest share:

During the forecast period, the North America region is expected to hold the largest market share owing to strong demand from environmental technologies, chemical processing industries, and advanced manufacturing sectors. The region benefits from significant investments in filtration systems and industrial process optimization initiatives. Companies are actively adopting high-performance ceramic materials to improve operational efficiency and regulatory compliance. Research institutions and material science organizations continue to support innovation in advanced ceramics. Growing emphasis on water treatment and pollution control applications contributes to market expansion. Established industrial infrastructure further strengthens regional demand.

Region with highest CAGR:

Over the forecast period, the Asia Pacific region is anticipated to exhibit the highest CAGR driven by expanding industrial production that is increasing the need for advanced filtration and separation technologies. Rapid growth in chemical processing, water treatment, electronics, and manufacturing industries is creating substantial demand for porous ceramic materials. Governments are investing in environmental management projects that require efficient purification solutions. Industrial modernization initiatives are encouraging adoption of high-performance materials across key sectors. Rising awareness of resource efficiency is supporting broader utilization of advanced filtration systems. Local manufacturers are expanding production capabilities to meet growing demand. Asia Pacific is expected to emerge as the fastest-growing regional market for porous ceramics.

Key players in the market

Some of the key players in Porous Ceramics Market include CoorsTek, Inc., CeramTec GmbH, Morgan Advanced Materials plc, Saint-Gobain S.A., KYOCERA Corporation, NGK Insulators, Ltd., Corning Incorporated, Schunk Group, Vesuvius plc, Rauschert GmbH, Elan Technology, Ortech Advanced Ceramics, 3M Company, Tosoh Corporation and IBIDEN Co., Ltd.

Key Developments:

In January 2026, KYOCERA Corporation announced a structural consolidation of its high-performance manufacturing framework, integrating two major Kagoshima plants into the unified Kagoshima Kirishima Plant. This operational realignment is intentionally engineered to optimize production efficiency and accelerate the market delivery of advanced non-oxide fine ceramics for specialized electronics and semiconductor processing equipment.

In August 2025, Morgan Advanced Materials plc completed the final phases of its £55 million capital investment program engineered for power electronics applications. The strategic project features a major production capacity ramp-up scheduled through late 2026, reinforcing the company's market footprint in specialized high-purity silicon carbide semiconductor ceramics and advanced aerospace thermal protection materials.

Product Types Covered:

  • Alumina Ceramics
  • Silicon Carbide Ceramics
  • Zirconia Ceramics
  • Titania Ceramics
  • Other Product Types

Pore Structures Covered:

  • Open-Cell
  • Closed-Cell
  • Interconnected Pores
  • Gradient Pores
  • Other Pore Structures

Manufacturing Processes Covered:

  • Replica Method
  • Foaming Method
  • Freeze Casting
  • Additive Manufacturing
  • Other Manufacturing Processes

Applications Covered:

  • Filtration
  • Catalyst Supports
  • Thermal Insulation
  • Biomedical Implants
  • Other Applications

Industries Covered:

  • Chemicals
  • Healthcare
  • Environmental
  • Industrial Manufacturing
  • Other Industries

Regions Covered:

  • North America
    • United States
    • Canada
    • Mexico
  • Europe
    • United Kingdom
    • Germany
    • France
    • Italy
    • Spain
    • Netherlands
    • Belgium
    • Sweden
    • Switzerland
    • Poland
    • Rest of Europe
  • Asia Pacific
    • China
    • Japan
    • India
    • South Korea
    • Australia
    • Indonesia
    • Thailand
    • Malaysia
    • Singapore
    • Vietnam
    • Rest of Asia Pacific
  • South America
    • Brazil
    • Argentina
    • Colombia
    • Chile
    • Peru
    • Rest of South America
  • Rest of the World (RoW)
    • Middle East
  • Saudi Arabia
  • United Arab Emirates
  • Qatar
  • Israel
  • Rest of Middle East
    • Africa
  • South Africa
  • Egypt
  • Morocco
  • Rest of Africa

What our report offers:

  • Market share assessments for the regional and country-level segments
  • Strategic recommendations for the new entrants
  • Covers Market data for the years 2023, 2024, 2025, 2026, 2027, 2028, 2030, 2032 and 2034
  • Market Trends (Drivers, Constraints, Opportunities, Threats, Challenges, Investment Opportunities, and recommendations)
  • Strategic recommendations in key business segments based on the market estimations
  • Competitive landscaping mapping the key common trends
  • Company profiling with detailed strategies, financials, and recent developments
  • Supply chain trends mapping the latest technological advancements

Free Customization Offerings:

All the customers of this report will be entitled to receive one of the following free customization options:

  • Company Profiling
    • Comprehensive profiling of additional market players (up to 3)
    • SWOT Analysis of key players (up to 3)
  • Regional Segmentation
    • Market estimations, Forecasts and CAGR of any prominent country as per the client's interest (Note: Depends on feasibility check)
  • Competitive Benchmarking
    • Benchmarking of key players based on product portfolio, geographical presence, and strategic alliances

Table of Contents

1 Executive Summary

  • 1.1 Market Snapshot and Key Highlights
  • 1.2 Growth Drivers, Challenges, and Opportunities
  • 1.3 Competitive Landscape Overview
  • 1.4 Strategic Insights and Recommendations

2 Research Framework

  • 2.1 Study Objectives and Scope
  • 2.2 Stakeholder Analysis
  • 2.3 Research Assumptions and Limitations
  • 2.4 Research Methodology
    • 2.4.1 Data Collection (Primary and Secondary)
    • 2.4.2 Data Modeling and Estimation Techniques
    • 2.4.3 Data Validation and Triangulation
    • 2.4.4 Analytical and Forecasting Approach

3 Market Dynamics and Trend Analysis

  • 3.1 Market Definition and Structure
  • 3.2 Key Market Drivers
  • 3.3 Market Restraints and Challenges
  • 3.4 Growth Opportunities and Investment Hotspots
  • 3.5 Industry Threats and Risk Assessment
  • 3.6 Technology and Innovation Landscape
  • 3.7 Emerging and High-Growth Markets
  • 3.8 Regulatory and Policy Environment
  • 3.9 Impact of COVID-19 and Recovery Outlook

4 Competitive and Strategic Assessment

  • 4.1 Porter's Five Forces Analysis
    • 4.1.1 Supplier Bargaining Power
    • 4.1.2 Buyer Bargaining Power
    • 4.1.3 Threat of Substitutes
    • 4.1.4 Threat of New Entrants
    • 4.1.5 Competitive Rivalry
  • 4.2 Market Share Analysis of Key Players
  • 4.3 Product Benchmarking and Performance Comparison

5 Global Porous Ceramics Market, By Product Type

  • 5.1 Alumina Ceramics
  • 5.2 Silicon Carbide Ceramics
  • 5.3 Zirconia Ceramics
  • 5.4 Titania Ceramics
  • 5.5 Other Product Types

6 Global Porous Ceramics Market, By Pore Structure

  • 6.1 Open-Cell
  • 6.2 Closed-Cell
  • 6.3 Interconnected Pores
  • 6.4 Gradient Pores
  • 6.5 Other Pore Structures

7 Global Porous Ceramics Market, By Manufacturing Process

  • 7.1 Replica Method
  • 7.2 Foaming Method
  • 7.3 Freeze Casting
  • 7.4 Additive Manufacturing
  • 7.5 Other Manufacturing Processes

8 Global Porous Ceramics Market, By Application

  • 8.1 Filtration
  • 8.2 Catalyst Supports
  • 8.3 Thermal Insulation
  • 8.4 Biomedical Implants
  • 8.5 Other Applications

9 Global Porous Ceramics Market, By Industry

  • 9.1 Chemicals
  • 9.2 Healthcare
  • 9.3 Environmental
  • 9.4 Industrial Manufacturing
  • 9.5 Other Industries

10 Global Porous Ceramics Market, By Geography

  • 10.1 North America
    • 10.1.1 United States
    • 10.1.2 Canada
    • 10.1.3 Mexico
  • 10.2 Europe
    • 10.2.1 United Kingdom
    • 10.2.2 Germany
    • 10.2.3 France
    • 10.2.4 Italy
    • 10.2.5 Spain
    • 10.2.6 Netherlands
    • 10.2.7 Belgium
    • 10.2.8 Sweden
    • 10.2.9 Switzerland
    • 10.2.10 Poland
    • 10.2.11 Rest of Europe
  • 10.3 Asia Pacific
    • 10.3.1 China
    • 10.3.2 Japan
    • 10.3.3 India
    • 10.3.4 South Korea
    • 10.3.5 Australia
    • 10.3.6 Indonesia
    • 10.3.7 Thailand
    • 10.3.8 Malaysia
    • 10.3.9 Singapore
    • 10.3.10 Vietnam
    • 10.3.11 Rest of Asia Pacific
  • 10.4 South America
    • 10.4.1 Brazil
    • 10.4.2 Argentina
    • 10.4.3 Colombia
    • 10.4.4 Chile
    • 10.4.5 Peru
    • 10.4.6 Rest of South America
  • 10.5 Rest of the World (RoW)
    • 10.5.1 Middle East
      • 10.5.1.1 Saudi Arabia
      • 10.5.1.2 United Arab Emirates
      • 10.5.1.3 Qatar
      • 10.5.1.4 Israel
      • 10.5.1.5 Rest of Middle East
    • 10.5.2 Africa
      • 10.5.2.1 South Africa
      • 10.5.2.2 Egypt
      • 10.5.2.3 Morocco
      • 10.5.2.4 Rest of Africa

11 Strategic Market Intelligence

  • 11.1 Industry Value Network and Supply Chain Assessment
  • 11.2 White-Space and Opportunity Mapping
  • 11.3 Product Evolution and Market Life Cycle Analysis
  • 11.4 Channel, Distributor, and Go-to-Market Assessment

12 Industry Developments and Strategic Initiatives

  • 12.1 Mergers and Acquisitions
  • 12.2 Partnerships, Alliances, and Joint Ventures
  • 12.3 New Product Launches and Certifications
  • 12.4 Capacity Expansion and Investments
  • 12.5 Other Strategic Initiatives

13 Company Profiles

  • 13.1 CoorsTek, Inc.
  • 13.2 CeramTec GmbH
  • 13.3 Morgan Advanced Materials plc
  • 13.4 Saint-Gobain S.A.
  • 13.5 KYOCERA Corporation
  • 13.6 NGK Insulators, Ltd.
  • 13.7 Corning Incorporated
  • 13.8 Schunk Group
  • 13.9 Vesuvius plc
  • 13.10 Rauschert GmbH
  • 13.11 Elan Technology
  • 13.12 Ortech Advanced Ceramics
  • 13.13 3M Company
  • 13.14 Tosoh Corporation
  • 13.15 IBIDEN Co., Ltd.

List of Tables

  • Table 1 Global Porous Ceramics Market Outlook, By Region (2023-2034) ($MN)
  • Table 2 Global Porous Ceramics Market, By Product Type (2023-2034) ($MN)
  • Table 3 Global Porous Ceramics Market, By Alumina Ceramics (2023-2034) ($MN)
  • Table 4 Global Porous Ceramics Market, By Silicon Carbide Ceramics (2023-2034) ($MN)
  • Table 5 Global Porous Ceramics Market, By Zirconia Ceramics (2023-2034) ($MN)
  • Table 6 Global Porous Ceramics Market, By Titania Ceramics (2023-2034) ($MN)
  • Table 7 Global Porous Ceramics Market, By Other Product Types (2023-2034) ($MN)
  • Table 8 Global Porous Ceramics Market, By Pore Structure (2023-2034) ($MN)
  • Table 9 Global Porous Ceramics Market, By Open-Cell (2023-2034) ($MN)
  • Table 10 Global Porous Ceramics Market, By Closed-Cell (2023-2034) ($MN)
  • Table 11 Global Porous Ceramics Market, By Interconnected Pores (2023-2034) ($MN)
  • Table 12 Global Porous Ceramics Market, By Gradient Pores (2023-2034) ($MN)
  • Table 13 Global Porous Ceramics Market, By Other Pore Structures (2023-2034) ($MN)
  • Table 14 Global Porous Ceramics Market, By Manufacturing Process (2023-2034) ($MN)
  • Table 15 Global Porous Ceramics Market, By Replica Method (2023-2034) ($MN)
  • Table 16 Global Porous Ceramics Market, By Foaming Method (2023-2034) ($MN)
  • Table 17 Global Porous Ceramics Market, By Freeze Casting (2023-2034) ($MN)
  • Table 18 Global Porous Ceramics Market, By Additive Manufacturing (2023-2034) ($MN)
  • Table 19 Global Porous Ceramics Market, By Other Manufacturing Processes (2023-2034) ($MN)
  • Table 20 Global Porous Ceramics Market, By Application (2023-2034) ($MN)
  • Table 21 Global Porous Ceramics Market, By Filtration (2023-2034) ($MN)
  • Table 22 Global Porous Ceramics Market, By Catalyst Supports (2023-2034) ($MN)
  • Table 23 Global Porous Ceramics Market, By Thermal Insulation (2023-2034) ($MN)
  • Table 24 Global Porous Ceramics Market, By Biomedical Implants (2023-2034) ($MN)
  • Table 25 Global Porous Ceramics Market, By Other Applications (2023-2034) ($MN)
  • Table 26 Global Porous Ceramics Market, By Industry (2023-2034) ($MN)
  • Table 27 Global Porous Ceramics Market, By Chemicals (2023-2034) ($MN)
  • Table 28 Global Porous Ceramics Market, By Healthcare (2023-2034) ($MN)
  • Table 29 Global Porous Ceramics Market, By Environmental (2023-2034) ($MN)
  • Table 30 Global Porous Ceramics Market, By Industrial Manufacturing (2023-2034) ($MN)
  • Table 31 Global Porous Ceramics Market, By Other Industries (2023-2034) ($MN)

Note: Tables for North America, Europe, APAC, South America, and Rest of the World (RoW) are also represented in the same manner as above.