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May 5, 2026SHILAP Revista de lepidopterología0 citationsOpen Access

Review of Toward A Circular Economy In The Tire Industry: Integrating Life Cycle Assessments And Recycling Innovations

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SSSiti Nadiah binti Mohd SaffeAAAhmad Zaki AbadiMRMohd Nizar Mhd Razali

Key Points

  • The review aims to analyze current life-cycle assessment methods and recycling innovations within the tire industry to promote circularity.
  • Synthesized life-cycle assessment (LCA) evidence and recycling innovations like pyrolysis and microwave devulcanization.
  • Identified gaps in LCA methods, policy incentives, and recycling scalability.
  • Proposed an integrated framework for standardized LCAs and modular pyrolysis.
  • Proposed framework connects tire design to end-of-life performance, enhancing circularity.
  • Identified need for standardized data and policy realignment to support recycling advances.
  • Highlighted potential for positive environmental impacts across production, use, and disposal stages.

Abstract

The global tire industry generates ~1.5 billion end-of-life tires annually, amplifying waste, emissions, and health risks. This review synthesizes contemporary life-cycle assessment (LCA) evidence and recycling innovations—including pyrolysis, microwave devulcanization, and hybrid thermochemical routes—to map credible pathways toward circularity. We identify four persistent gaps: heterogeneous LCA methods and data silos; misaligned policy incentives; scalability and profitability limits of advanced recycling; and fragmented adoption of sustainable materials. To address these, we propose an integrated framework that couples standardized, sector-specific and dynamic LCAs with modular, upgraded pyrolysis for high-value recovery (carbon black substitutes, oils, steel), design-for-circularity (renewable elastomers, sensor-enabled tires), and enabling instruments (extended producer responsibility, differentiated subsidies, carbon crediting). The framework establishes feedback loops between tire design and end-of-life performance, supports regionally deployable solutions, and prioritizes interoperable data platforms, pilot deployments, and policy realignment. Collectively, these measures can accelerate the tire sector’s transition from linear to circular models while minimizing environmental burdens across production, use, and end-of-life stages.

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Cite This Study

Saffe et al. (2026) studied this question.

synapsesocial.com/papers/69f9895b15588823dae18507https://doi.org/10.5935/jetia.v12i58.3211
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Circular economy in India’s tire sector: material flow analysis and review of end-of-life management strategies2026
  2. 2Closed-loop supply chain network design in the tire industry: a review of recent work, opportunities and unexplored directions2026
  3. 3Advancements in sustainable materials for environmentally responsible tyre production: a comprehensive review2025 · 8 citations
  4. 4Optimization of the end‐of‐life tire repartition within the European treatment system to minimize its environmental impacts2024 · 7 citations
  5. 5Closed-loop recycling of End-of-Life tires via devulcanized rubber: Life Cycle Assessment and circularity evaluation with durability trade-offs2026