Circularity Criteria and Indicators at the Construction Material Level
Book chapter, 2025

Circular economy (CE) approaches highlight the potential of construction materials to achieve circularity and sustainability in resource-efficient construction systems and industries. Implementing CE at the material level involves factors such as efficiency, durability, waste reduction through recirculation, and replacement, while encompassing criteria that define circularity in building materials. Understanding the inherent characteristics and behaviours of these materials is crucial for maximising their circularity potential. This chapter analyses key properties of traditional construction materials, such as concrete and steel, alongside novel sustainable materials like bamboo, timber, and biomaterials. It identifies and proposes methods to promote circularity at the material level. Additionally, the chapter explores the application of CE principles to both traditional and innovative construction materials. Furthermore, the chapter discusses indicators designed to assess circularity at the material level, serving as valuable tools for informing decision-making and implementation practices in the construction sector. Various types of indicators are presented, categorised as strategic, generic performance, performance, and water consumption indicators. Strategies aligned with waste hierarchy principles are outlined, emphasising the reduction of construction and demolition waste, lowering greenhouse gas emissions, conserving energy, and optimising costs and water resources.

Low-impact cement

Construction materials

Concrete

Built environment

Circular economy

Recycled aggregate

Author

Rocío Pineda-Martos

University of Seville

Rand Askar

Institute for Sustainability and Innovation in Structural Engineering

Ferhat Karaca

Nazarbayev University

Marilena De Simone

University of Calabria

Ruben Paul Borg

University of Malta

Mirjana Malešev

University of Novi Sad

Vlastimir Radonjanin

University of Novi Sad

Bilge Bas

Istanbul Bilgi University

Ayfer Dönmez Çavdar

Karaddeniz Technical University

Genesis Camila Cervantes Puma

Institute for Sustainability and Innovation in Structural Engineering

Leonardo Rosado

Chalmers, Architecture and Civil Engineering

Luís Bragança

Institute for Sustainability and Innovation in Structural Engineering

Springer Tracts in Civil Engineering

Vol. Part F3604 299-333

Subject Categories

Energy Engineering

Construction Management

Environmental Management

DOI

10.1007/978-3-031-73490-8_12

More information

Latest update

12/17/2024