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Article detail · 2026

Investigation Using Granular Material Obtained from High-Density Polyethylene and Polypropylene Plastic Waste as Aggregate in Cementitious Systems

Polymers

YÖKSİS OpenAlex ISSN 2073-4360 DOI 10.3390/polym18040542 Citations 1 Open access · gold SJR Q1 · 2025 JCR Q1 · 2025

10.3390/polym18040542

YÖKSİS YÖKSİS article record

OpenAlex OpenAlex enrichment (abstract, citations, topics)

Abstract

OpenAlex record

English (OpenAlex)

The accumulation of plastic waste represents a significant environmental challenge worldwide, and its reuse in construction materials offers a sustainable management alternative. This study investigates the use of recycled high-density polyethylene (HDPE) and polypropylene (PP) granules as partial volumetric replacements (10%, 20%, and 30%) for limestone aggregate in mortar mixtures. A total of seven mixtures were produced and evaluated in terms of flow value, unit weight, water absorption, porosity, compressive strength, flexural strength, and capillary water absorption. In comparison to the control mixture, it was found that the use of plastic aggregate improved the workability. It was found that the flexural and compressive strengths of mixtures decrease when plastic aggregate is added. Additionally, it was understood that utilization of plastic aggregate in mixtures caused an increase in water absorption rate and porosity values. HDPE and PP plastic aggregates increased flow by 9% to 13% and reduced unit weight by 15 to 15.3%, while compressive and flexural strengths decreased by 48 to 30% and 46 to 54%, respectively. The optimum replacement level was 10% for both HDPE and PP mixtures.

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Topics

  • Innovative concrete reinforcement materials
  • Natural Fiber Reinforced Composites
  • Recycled Aggregate Concrete Performance

Type: article Innovative concrete reinforcement materials

Index information

WoS (JCR) and Scopus (SJR) quartiles by ISSN and publication year. · 2026

Scopus (SJR) / WoS (JCR)

Polymers

Scopus (SJR) Q1 0,928 Nearest year: 2025

Article year 2026; shown index year 2025.

WoS (JCR) Q1 JIF 5,8 Nearest year: 2025

Article year 2026; shown index year 2025.

Universities

  • BURSA ULUDAĞ ÜNİVERSİTESİ

Authors

  1. ŞEMSİ YAZICI
  2. Göksu Pılsım
  3. Hatice Gizem Şahin
  4. ALİ MARDANİ BURSA ULUDAĞ ÜNİVERSİTESİ
  5. DEMET YAVUZ