Global Stationary Emission Control Catalyst Market - Segmented by Metal, Process, End-user Industry, and Geography - Growth, Trends, and Forecast (2018 - 2023)

  • ID: 4515080
  • Report
  • Region: Global
  • 121 pages
  • Mordor Intelligence
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FEATURED COMPANIES

  • BASF SE
  • Clariant
  • Corning Incorporated
  • DCL International Inc.
  • Hitachi Zosen Corporation
  • Johnson Matthey
  • MORE
The global stationary emission control catalyst market is expected to register a CAGR of around 10% during the forecast period, 2018 to 2023. Europe accounted for the largest market in 2017. Asia-Pacific is also expected to register the fastest growth during the forecast period.

Stringent Regulations Regarding Industrial Emissions

Today, the environmental concerns have increased in most countries and manufacturing industrial plants have been using catalysts to minimize the air pollutant level and are following the standards set in their respective countries. The use of catalysts or technology depends on the industry and the standard criteria for the particular industry emissions. For instance, coal-fired power plant mostly uses the Selective Catalytic Reduction (SCR) process for reducing NOx to nitrogen (N2) and water (H2O) by a series of chemical reactions. The EPA’s New Source Performance Standards (NSPS) and Reciprocating Internal Combustion Engines National Emission Standards for Hazardous Air Pollutants (RICE NESHAP) regulations are also limiting the amount of NOx, CO, formaldehyde, acetaldehyde, methanol, VOC emission, among others, from the stationary engines. These regulations are the key factors driving the emission control catalysts and the Best Available Techniques (BAT) for reducing the pollutant emissions.

Palladium – The Dominant Metal Type

Palladium is a highly ductile metal, resistant to corrosion and oxidation. It alloys well with other precious metals and thus, provides desired characteristics. Owing to its properties, palladium is extensively used as an oxidation catalyst in stationary diesel engines and lean burn gas engines, where it helps to reduce hydrocarbon and carbon monoxide emissions. Palladium is also used to reduce particulate emissions of diesel engines by oxidizing the soluble organic fraction of the particulate matter. The strict emission regulation standards set by the European Union, further adoption of equivalent emission standards by China and other Asia-Pacific countries, and increase in demand for diesel oxidation catalysts are driving the market for palladium-based emission control catalysts.

Europe the Largest Market

The European region holds a significant portion of the industrial and commercial applications across the globe. It has various large chemical companies, waste incineration plants, fossil fuel-based power generation plants, metal finishing, metallurgy plants, and various other industrial and chemical plants that emit volatile organic compounds (VOC) and other hazardous chemicals in the environment. The stringent regulations by the European Union and different countries respectively have led to the increasing usage of emission control catalysts by countries in the region.

Major Players: Johnson Matthey, Haldor Topsoe A/S, CORMETECH, Inc., Hitachi Zosen Corporation, BASF SE, IBIDEN Porzellanfabrik Frauenthal, and CRI Catalyst Company, amongst others.

Reasons to Purchase this Report
  • How the stringent regulations regarding industrial emissions will drive the market
  • Analyzing various perspectives of the market with the help of Porter’s five forces analysis
  • Metal type and process that are expected to dominate the market
  • Region that is expected to witness fastest growth during the forecast period
  • Identifying the latest developments, market shares and strategies employed by the major market players.
  • 3-month analyst support, along with the Market Estimate sheet in excel
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FEATURED COMPANIES

  • BASF SE
  • Clariant
  • Corning Incorporated
  • DCL International Inc.
  • Hitachi Zosen Corporation
  • Johnson Matthey
  • MORE
1. Introduction
1.1 Research Phases
1.2 Study Deliverables
1.3 Scope of the Report

2. Executive Summary

3. Market Insights
3.1 Industry Value Chain Analysis
3.2 Industry Attractiveness – Porter’s Five Forces Analysis
3.2.1 Bargaining Power of Suppliers
3.2.2 Bargaining Power of Buyers
3.2.3 Threat of New Entrants
3.2.4 Threat of Substitute Products and Services
3.2.5 Degree of Competition
3.3 Technology Snapshot

4. Market Dynamics
4.1 Drivers
4.1.1 Stringent Regulations Regarding Industrial Emissions
4.1.2 Increasing Adoption by Petroleum Industries in Refining Units
4.2 Restraints
4.2.1 Volatility in Precious Group Metal Prices
4.2.2 Other Restraints
4.3 Opportunities
4.3.1 Recovery of Platinum Group Metals (PGMs)
4.3.2 Developments of New Products & Solutions

5. Market Segmentation and Analysis (Market Size, Growth, and Forecast)
5.1 By Metal
5.1.1 Platinum
5.1.2 Palladium
5.1.3 Rhodium
5.1.4 Others
5.2 By Process
5.2.1 Selective Catalytic Reduction
5.2.2 Catalytic Oxidation
5.2.3 Catalytic Incineration
5.2.4 Catalytic Filters & Others
5.3 By End-user Industry
5.3.1 Power Plants (Fossil Fuel-based)
5.3.2 Refineries & Petrochemicals Processing Plants
5.3.3 Chemical Plants
5.3.4 Waste Incinerators
5.3.5 Metal Finishing & Metallurgy
5.3.6 Others

6. Regional Market Analysis (Market Size, Growth, and Forecast)
6.1 Asia-Pacific
6.1.1 China
6.1.2 India
6.1.3 Japan
6.1.4 South Korea
6.1.5 ASEAN Countries
6.1.6 Rest of Asia-Pacific
6.2 North America
6.2.1 United States
6.2.2 Canada
6.2.3 Mexico
6.2.4 Rest of North America
6.3 Europe
6.3.1 Germany
6.3.2 United Kingdom
6.3.3 France
6.3.4 Italy
6.3.5 Rest of Europe
6.4 South America
6.4.1 Brazil
6.4.2 Argentina
6.4.3 Rest of South America
6.5 Middle East & Africa
6.5.1 Saudi Arabia
6.5.2 South Africa
6.5.3 Rest of Middle East & Africa

7. Competitive Landscape
7.1 Mergers & Acquisitions, Joint Ventures, Collaborations and Agreements
7.2 Market Share Analysis**
7.3 Strategies Adopted by Leading Players

8. Company Profiles (Overview, Financials**, Products & Services, Recent Developments, and Analyst View)
8.1 BASF SE
8.2 Cataler Corporation
8.3 CDTi Advanced Materials, Inc.
8.4 Clariant
8.5 CRI Catalyst Company
8.6 CORMETECH, Inc.
8.7 Corning Incorporated
8.8 DCL International Inc.
8.9 Haldor Topsoe A/S
8.10 Hitachi Zosen Corporation
8.11 Honeywell International Inc
8.12 IBIDEN Porzellanfabrik Frauenthal
8.13 JGC C&C
8.14 Johnson Matthey
8.15 Kunming Sino- Platinum Metals Catalyst Co., Ltd
8.16 Nikki-Universal Co., Ltd
8.17 Umicore
*(List Not Exhaustive)

9. Disclaimer
**Subject to availability on public domain
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  • BASF SE
  • Cataler Corporation
  • CDTi Advanced Materials Inc.
  • Clariant
  • CRI Catalyst Company
  • CORMETECH Inc.
  • Corning Incorporated
  • DCL International Inc.
  • Haldor Topsoe A/S
  • Hitachi Zosen Corporation
  • Honeywell International Inc
  • IBIDEN Porzellanfabrik Frauenthal
  • JGC C&C
  • Johnson Matthey
  • Kunming Sino- Platinum Metals Catalyst Co. Ltd
  • Nikki-Universal Co. Ltd
  • Umicore
Note: Product cover images may vary from those shown
5 of 4
Note: Product cover images may vary from those shown
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