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Asia-Pacific Automotive Circular Economy Market: Focus on Application Type, Product Type, and Country - Analysis and Forecast, 2024-2034

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    Report

  • 85 Pages
  • June 2025
  • Region: Asia Pacific
  • BIS Research
  • ID: 6092584
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The Asia-Pacific automotive circular economy market was valued at $48.25 billion in 2024 and is projected to grow at a CAGR of 10.70%, reaching $133.31 billion by 2034. The market is growing as the automotive sector in Asia-Pacific quickly adopts circular economy principles such material reuse, recycling, and remanufacturing. Regional manufacturers and regulators are prioritising resource efficiency and environmental practices, which is expected to increase demand for totally recyclable, remanufactured, and refurbished automotive parts.

Tighter emission standards, initiatives to increase vehicle lifespans, and production process optimisation all contribute to this momentum. The automotive circular economy market in Asia-Pacific is expected to expand significantly over the next ten years due to national circular economy initiatives throughout the area, growing usage of electric vehicles, and advancements in green technologies.

Market Introduction

The Asia-Pacific (APAC) automotive circular economy market is growing as a vital component of the region's overall sustainability agenda, fuelled by fast industrial growth and rising environmental concerns. In the automotive industry, a circular economy is the continuous cycle of designing, producing, utilising, and reprocessing automobiles and their parts in order to reduce waste and maximise resource efficiency. This method covers remanufacturing, recycling, reusing, refurbishment, and second-life uses, especially of electric vehicle (EV) batteries, in Asia-Pacific, which is home to some of the biggest automakers in the world as well as the fastest-growing customer bases.

Policies that require end-of-life recycling, impose extended producer responsibility, and encourage environmentally friendly manufacture are being implemented by governments in China, India, Japan, and Southeast Asia. Automakers, suppliers, and aftermarket service providers are now able to engage in closed-loop supply chains because to these regulations and the growing demand from consumers for green mobility solutions. Remanufacturing auto parts, recycling composite materials, repurposing EV batteries for energy storage, and vehicle-as-a-service models that prolong product lifespans are important market areas.

Notwithstanding the market's encouraging development potential, obstacles include a lack of adequate recycling infrastructure, the complexity of modern material processing technology, and differing regulatory maturity levels. However, it is anticipated that the automotive circular economy sector in Asia will grow significantly over the next ten years due to continued developments in green technologies, government incentives, and growing EV usage.

Market Segmentation:

Segmentation 1: by Vehicle Type

  • Passenger Vehicles
  • Commercial Vehicles
  • Light Commercial Vehicles
  • Trucks
  • Buses

Segmentation 2: by Propulsion Type

  • Internal Combustion Engine Vehicles
  • Electric Vehicles
  • Hybrid Electric Vehicles
  • Plug-In Hybrid Electric Vehicles
  • Battery Electric Vehicles

Segmentation 3: by End-User Type

  • Original Equipment Manufacturers (OEMs)
  • Automotive Aftermarket
  • Others

Segmentation 4: by Process Type

  • Recycled Products
  • Remanufactured Products
  • Refurbished Products
  • Reused Products

Segmentation 5: by Component Type

  • Battery
  • Tire
  • Polymers
  • Body Parts
  • Brakes and Suspensions
  • Others

Segmentation 6: by Region

  • Asia-Pacific: China, Japan, South Korea, India, Australia, Rest-of-Asia-Pacific

APAC Automotive Circular Economy Market Trends, Drivers and Challenges

Trends

  • Rise of remanufacturing and reverse logistics for automotive components.
  • Growing reuse and second-life applications of EV batteries for energy storage.
  • Increased adoption of closed-loop recycling for automotive plastics.
  • Expansion of green manufacturing initiatives by major automakers.

Drivers

  • Implementation of stricter environmental regulations across APAC.
  • Advancements in technologies such as battery management systems (BMS).
  • Rising consumer demand for eco-friendly and sustainably produced vehicles.

Challenges

  • Technical complexity and cost of recycling automotive plastics and composites.
  • Difficulty in scaling circular practices and generating consistent demand.
  • Risk of economic and labor displacement during the circular transition.
  • Higher upfront costs for circular materials and production processes.

How can this report add value to an organization?

Product/Innovation Strategy: The APAC automotive circular economy market is segmented based on various applications, vehicle types, propulsion types, and product categories, providing valuable insights into the industry's shift toward sustainability. The application segmentation includes a focus on vehicle components such as body parts, tires, batteries, and other key elements that are recycled, remanufactured, refurbished, and reused.

By vehicle type, the market is divided into passenger vehicles and commercial vehicles, with the latter further segmented into light commercial vehicles, trucks, and buses. Propulsion types include internal combustion engine vehicles and electric vehicles, which are sub-categorized into hybrid electric vehicles, plug-in hybrid electric vehicles, and battery electric vehicles. The market is also analyzed by end-user type, including original equipment manufacturers (OEMs), the automotive aftermarket, and others.

Additionally, the market focuses on product types such as recycled, remanufactured, refurbished, and reused products. Key components in this circular economy include batteries, tires, polymers, body parts, and brakes and suspensions. As the automotive industry seeks to reduce waste and improve resource efficiency, these circular economy practices are becoming integral to achieving sustainability goals and driving growth in the market.

Growth/Marketing Strategy: The APAC automotive circular economy market has been growing at a rapid pace. The market offers enormous opportunities for existing and emerging market players. Some of the strategies covered in this segment are mergers and acquisitions, product launches, partnerships and collaborations, business expansions, and investments. The strategies preferred by companies to maintain and strengthen their market position primarily include product development.

Competitive Strategy: The key players in the APAC automotive circular economy market analyzed and profiled in the study include professionals with expertise in the automobile and automotive domains. Additionally, a comprehensive competitive landscape such as partnerships, agreements, and collaborations are expected to aid the reader in understanding the untapped revenue pockets in the market.

Key Market Players and Competition Synopsis

The companies that are profiled in the Asia-Pacific automotive circular economy market have been selected based on inputs gathered from primary experts who have analyzed company coverage, product portfolio, and market penetration.

Some of the prominent names in this market are:

  • Sims Metal (Sims Limited)
  • TOYOTA MOTOR CORPORATION.
  • Marelli Holdings Co., Ltd.

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Table of Contents

Executive SummaryScope and Definition
1 Markets
1.1 Trends: Current and Future Impact Assessment
1.1.1 Increasing Focus on Battery Recycling and Second Life Applications
1.1.2 Growth of Vehicle Remanufacturing
1.2 Supply Chain Overview
1.3 Regulatory Landscape
1.4 Impact Analysis for Key Events
1.4.1 Implementation of Stringent Environmental Regulations
1.4.2 Climate Agreements and ESG Initiatives
1.5 Market Dynamics Overview
1.5.1 Market Drivers
1.5.1.1 Stringent Government Regulations and Policies
1.5.1.2 Growing Corporate ESG and Sustainability Commitments
1.5.2 Market Restraints
1.5.2.1 Complex Supply Chains and Infrastructure Challenges
1.5.2.2 Inconsistent Regulations
1.5.3 Market Opportunities
1.5.3.1 Growing EV adoption Creating Substantial Opportunities in Repurposing Batteries
1.5.3.2 Expansion of Circular Supply Chains and Partnerships
1.6 Investment Landscape
1.7 Automotive Circular Economy Market Case Studies
1.8 Automotive Circular Economy Overview
1.8.1 Need for Circular Economy in the Automotive Industry
1.8.2 Sustainability and ESG Goals of Key Automotive Companies
1.8.3 Impact of Circular Economy on Various Automotive Lifecycle Stages
1.8.3.1 Manufacturing
1.8.3.2 Retail
1.8.3.3 Aftermarket
1.8.4 Impact of Automotive Circular Economy
1.8.4.1 Recycled Materials
1.8.4.2 Green Steel
1.8.4.3 Climate Neutral Vehicles
1.8.4.4 Sustainable Manufacturing Plants
1.8.4.5 Green Dealerships
1.8.4.6 Second-Life Batteries
2 Regions
2.1 Regional Summary
2.2 Asia-Pacific
2.2.1 Regional Overview
2.2.2 Driving Factors for Market Growth
2.2.3 Factors Challenging the Market
2.2.4 Application
2.2.5 Product
2.2.6 Asia-Pacific (by Country)
2.2.6.1 China
2.2.6.1.1 Application
2.2.6.1.2 Product
2.2.6.2 Japan
2.2.6.2.1 Application
2.2.6.2.2 Product
2.2.6.3 South Korea
2.2.6.3.1 Application
2.2.6.3.2 Product
2.2.6.4 India
2.2.6.4.1 Application
2.2.6.4.2 Product
2.2.6.5 Australia
2.2.6.5.1 Application
2.2.6.5.2 Product
2.2.6.6 Rest-of-Asia-Pacific
2.2.6.6.1 Application
2.2.6.6.2 Product
3 Markets - Competitive Benchmarking and Company Profiles
3.1 Next Frontiers
3.2 Geographic Assessment
3.3 Recycling Companies
3.3.1 Sims Metal (Sims Limited)
3.3.1.1 Overview
3.3.1.2 Top Products/Product Portfolio
3.3.1.3 Top Competitors
3.3.1.4 Target Customers/End Users
3.3.1.5 Key Personnel
3.3.1.6 Analyst View
3.3.1.7 Market Share, 2023
3.4 Integrated Circular Economy Solutions
3.4.1 TOYOTA MOTOR CORPORATION.
3.4.1.1 Overview
3.4.1.2 Top Products/Product Portfolio
3.4.1.3 Top Competitors
3.4.1.4 Target Customers/End Users
3.4.1.5 Key Personnel
3.4.1.6 Analyst View
3.4.1.7 Market Share, 2023
3.5 Parts and Components Suppliers
3.5.1 Marelli Holdings Co., Ltd.
3.5.1.1 Overview
3.5.1.2 Top Products/Product Portfolio
3.5.1.3 Top Competitors
3.5.1.4 Target Customers/End Users
3.5.1.5 Key Personnel
3.5.1.6 Analyst View
3.5.1.7 Market Share, 2023
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
List of Figures
Figure 1: Asia-Pacific Automotive Circular Economy Market (by Scenario), $Million, 2024, 2028, and 2034
Figure 2: Asia-Pacific Automotive Circular Economy Market (by Vehicle Type), $Million, 2023, 2027, and 2034
Figure 3: Asia-Pacific Automotive Circular Economy Market (by Propulsion Type), $Million, 2023, 2027, and 2034
Figure 4: Asia-Pacific Automotive Circular Economy Market (by End-User Type), $Million, 2023, 2027, and 2034
Figure 5: Asia-Pacific Automotive Circular Economy Market (by Process Type), $Million, 2023, 2027, and 2034
Figure 6: Asia-Pacific Automotive Circular Economy Market (by Component Type), $Million, 2023, 2027, and 2034
Figure 7: Key Events
Figure 8: Projected Battery Recycling Capacity (by Region), 2023-2030
Figure 9: Supply Chain
Figure 10: Impact Analysis of Market Navigating Factors, 2023-2034
Figure 11: Nissan Motor Co., Ltd. and Sumitomo
Figure 12: Omega Seiki Mobility and Attero
Figure 13: Mahindra Last Mile Mobility and Attero
Figure 14: China Tower Corporation
Figure 15: China Automotive Circular Economy Market, $Million, 2023-2034
Figure 16: Japan Automotive Circular Economy Market, $Million, 2023-2034
Figure 17: South Korea Automotive Circular Economy Market, $Million, 2023-2034
Figure 18: India Automotive Circular Economy Market, $Million, 2023-2034
Figure 19: Australia Automotive Circular Economy Market, $Million, 2023-2034
Figure 20: Rest-of-Asia-Pacific Automotive Circular Economy Market, $Million, 2023-2034
Figure 21: Strategic Initiatives, January 2022-March 2025
Figure 22: Share of Strategic Initiatives, 2023
Figure 23: Data Triangulation
Figure 24: Top-Down and Bottom-Up Approach
Figure 25: Assumptions and Limitations
List of Tables
Table 1: Market Snapshot
Table 2: Opportunities across Region
Table 3: Competitive Landscape Snapshot
Table 4: Trends Overview
Table 5: Regulations for Automotive Circular Economy
Table 6: Investment Landscape in the Automotive Circular Economy Market
Table 7: Sustainability and ESG Goals of Key Automotive Companies
Table 8: Automotive Circular Economy Market (by Region), $Million, 2023-2034
Table 9: Asia-Pacific Automotive Circular Economy Market (by Vehicle Type), $Million, 2023-2034
Table 10: Asia-Pacific Automotive Circular Economy Market (by Propulsion Type), $Million, 2023-2034
Table 11: Asia-Pacific Automotive Circular Economy Market (by End-User Type), $Million, 2023-2034
Table 12: Asia-Pacific Automotive Circular Economy Market (by Process Type), $Million, 2023-2034
Table 13: Asia-Pacific Automotive Circular Economy Market (by Component Type), $Million, 2023-2034
Table 14: China Automotive Circular Economy Market (by Vehicle Type), $Million, 2023-2034
Table 15: China Automotive Circular Economy Market (by Propulsion Type), $Million, 2023-2034
Table 16: China Automotive Circular Economy Market (by End-User Type), $Million, 2023-2034
Table 17: China Automotive Circular Economy Market (by Process Type), $Million, 2023-2034
Table 18: China Automotive Circular Economy Market (by Component Type), $Million, 2023-2034
Table 19: Japan Automotive Circular Economy Market (by Vehicle Type), $Million, 2023-2034
Table 20: Japan Automotive Circular Economy Market (by Propulsion Type), $Million, 2023-2034
Table 21: Japan Automotive Circular Economy Market (by End-User Type), $Million, 2023-2034
Table 22: Japan Automotive Circular Economy Market (by Process Type), $Million, 2023-2034
Table 23: Japan Automotive Circular Economy Market (by Component Type), $Million, 2023-2034
Table 24: South Korea Automotive Circular Economy Market (by Vehicle Type), $Million, 2023-2034
Table 25: South Korea Automotive Circular Economy Market (by Propulsion Type), $Million, 2023-2034
Table 26: South Korea Automotive Circular Economy Market (by End-User Type), $Million, 2023-2034
Table 27: South Korea Automotive Circular Economy Market (by Process Type), $Million, 2023-2034
Table 28: South Korea Automotive Circular Economy Market (by Component Type), $Million, 2023-2034
Table 29: India Automotive Circular Economy Market (by Vehicle Type), $Million, 2023-2034
Table 30: India Automotive Circular Economy Market (by Propulsion Type), $Million, 2023-2034
Table 31: India Automotive Circular Economy Market (by End-User Type), $Million, 2023-2034
Table 32: India Automotive Circular Economy Market (by Process Type), $Million, 2023-2034
Table 33: India Automotive Circular Economy Market (by Component Type), $Million, 2023-2034
Table 34: Australia Automotive Circular Economy Market (by Vehicle Type), $Million, 2023-2034
Table 35: Australia Automotive Circular Economy Market (by Propulsion Type), $Million, 2023-2034
Table 36: Australia Automotive Circular Economy Market (by End-User Type), $Million, 2023-2034
Table 37: Australia Automotive Circular Economy Market (by Process Type), $Million, 2023-2034
Table 38: Australia Automotive Circular Economy Market (by Component Type), $Million, 2023-2034
Table 39: Rest-of-Asia-Pacific Automotive Circular Economy Market (by Vehicle Type), $Million, 2023-2034
Table 40: Rest-of-Asia-Pacific Automotive Circular Economy Market (by Propulsion Type), $Million, 2023-2034
Table 41: Rest-of-Asia-Pacific Automotive Circular Economy Market (by End-User Type), $Million, 2023-2034
Table 42: Rest-of-Asia-Pacific Automotive Circular Economy Market (by Process Type), $Million, 2023-2034
Table 43: Rest-of-Asia-Pacific Automotive Circular Economy Market (by Component Type), $Million, 2023-2034
Table 44: Market Share
Table 45: Developments (by Company)

Companies Mentioned

  • Sims Metal (Sims Limited)
  • TOYOTA MOTOR CORPORATION.
  • Marelli Holdings Co., Ltd.

Table Information