Global Diesel Vehicle Exhaust Gas Aftertreatment System Market Growth, Share, Size, Trends and Forecast (2024 - 2030)

By Application;

Passenger vehicles and CVs.

By Geography;

North America, Europe, Asia Pacific, Middle East and Africa and Latin America - Report Timeline (2020 - 2030).
Report ID: Rn395800835 Published Date: April, 2024 Updated Date: May, 2024

Introduction

Global Diesel Vehicle Exhaust Gas Aftertreatment System Market (USD Million), 2020 - 2030

In the year 2023, the Global Diesel Vehicle Exhaust Gas Aftertreatment System Market was valued at USD xx.x million. The size of this market is expected to increase to USD xx.x million by the year 2030, while growing at a Compounded Annual Growth Rate (CAGR) of x.x%.

The global diesel vehicle exhaust gas aftertreatment system market is witnessing significant growth driven by stringent emissions regulations and the growing demand for cleaner and more sustainable transportation solutions. Diesel engines emit pollutants such as nitrogen oxides (NOx), particulate matter (PM), and hydrocarbons (HC), contributing to air pollution and public health concerns. In response, governments worldwide are implementing stringent emissions standards for diesel vehicles, mandating the use of exhaust gas aftertreatment systems to reduce harmful emissions. These systems, which include components such as diesel particulate filters (DPFs), selective catalytic reduction (SCR) systems, and diesel oxidation catalysts (DOCs), play a crucial role in mitigating the environmental impact of diesel engines by trapping and converting pollutants into less harmful substances.

Moreover, technological advancements in exhaust gas aftertreatment systems are driving market expansion. Manufacturers are innovating to develop next-generation aftertreatment solutions with improved efficiency, durability, and performance. Advanced catalyst formulations, innovative substrate designs, and intelligent control strategies enable exhaust gas aftertreatment systems to achieve higher conversion efficiencies and lower backpressure, minimizing the impact on engine performance and fuel economy. Additionally, the integration of predictive maintenance algorithms and real-time monitoring capabilities enhances system reliability and reduces downtime for vehicle owners. As automotive OEMs and suppliers invest in research and development to meet increasingly stringent emissions regulations and consumer demands for cleaner vehicles, the global diesel vehicle exhaust gas aftertreatment system market is poised for continued growth.

Furthermore, the transition towards hybrid and electric propulsion presents new opportunities for the diesel vehicle exhaust gas aftertreatment system market. Hybrid vehicles, combining diesel engines with electric powertrains, offer potential benefits such as reduced fuel consumption, lower emissions, and increased operational flexibility. Exhaust gas aftertreatment systems play a critical role in hybrid vehicles by ensuring compliance with emissions regulations and optimizing the performance of diesel engines. Similarly, the electrification of auxiliary systems such as air conditioning, power steering, and hydraulic pumps reduces the mechanical load on diesel engines, further enhancing fuel economy and reducing emissions. As automotive manufacturers increasingly adopt hybrid and electric technologies to meet sustainability goals and regulatory requirements, the demand for advanced exhaust gas aftertreatment systems is expected to grow, presenting lucrative opportunities for market players in the diesel vehicle segment.

  1. Introduction
    1. Research Objectives and Assumptions
    2. Research Methodology
    3. Abbreviations
  2. Market Definition & Study Scope
  3. Executive Summary
    1. Market Snapshot, By Application
    2. Market Snapshot, By Region
  4. Global Diesel Vehicle Exhaust Gas Aftertreatment System Market Dynamics
    1. Drivers, Restraints and Opportunities
      1. Drivers
        1. Stringent Emissions Regulations
        2. Environmental Awareness
        3. Technological Advancements
      2. Restraints
        1. High Initial Costs
        2. Compatibility Issues
        3. Maintenance Complexity
      3. Opportunities
        1. Hybrid and Electric Propulsion Integration
        2. Emerging Market Demand
        3. Advancements in Aftertreatment Technologies
    2. PEST Analysis
      1. Political Analysis
      2. Economic Analysis
      3. Social Analysis
      4. Technological Analysis
    3. Porter's Analysis
      1. Bargaining Power of Suppliers
      2. Bargaining Power of Buyers
      3. Threat of Substitutes
      4. Threat of New Entrants
      5. Competitive Rivalry
  5. Market Segmentation
    1. Global Diesel Vehicle Exhaust Gas Aftertreatment System Market, By Application, 2020 - 2030 (USD Million)
      1. Passenger vehicles
      2. CVs
    2. Global Diesel Vehicle Exhaust Gas Aftertreatment System Market, By Geography, 2020 - 2030 (USD Million)
      1. North America
        1. United States
        2. Canada
      2. Europe
        1. Germany
        2. United Kingdom
        3. France
        4. Italy
        5. Spain
        6. Nordic
        7. Benelux
        8. Rest of Europe
      3. Asia Pacific
        1. Japan
        2. China
        3. India
        4. Australia & New Zealand
        5. South Korea
        6. ASEAN (Association of South East Asian Countries)
        7. Rest of Asia Pacific
      4. Middle East & Africa
        1. GCC
        2. Israel
        3. South Africa
        4. Rest of Middle East & Africa
      5. Latin America
        1. Brazil
        2. Mexico
        3. Argentina
        4. Rest of Latin America
  6. Competitive Landscape
    1. Company Profiles
      1. Tenneco Inc. (including its brands Tenneco Clean Air and Powertrain)
      2. Johnson Matthey
      3. Faurecia
      4. Cummins Inc.
      5. Bosch GmbH
      6. Continental AG
      7. BorgWarner Inc.
      8. Umicore
      9. DENSO Corporation
      10. Delphi Technologies (now part of BorgWarner)
  7. Analyst Views
  8. Future Outlook of the Market

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