Porous 3D Printed Concrete Beams Show an Environmental Promise (2022-06)¶
Gislason Styrmir, , , , ,
Journal Article - Clean Technologies and Environmental Policy
Abstract
3D Concrete Printing (3DCP) is a rapidly expanding area in the field of architecture, engineering, and construction, but very limited research has quantitatively investigated its environmental impact. The existing Life Cycle Assessment (LCA) studies on 3DCP lack clearly defined functional units of comparison, especially considering load-bearing structures. This paper investigates the potential environmental benefits of 3DCP over conventional concrete construction for structural beams based on a cradle-to-grave comparative LCA. Unlike existing studies, this paper employs a recarbonation model to account for the carbon offsetting from the use-stage of 3DP concrete, which shows significant results. The assessment includes three-beam designs, each analyzed for both prefabrication and on-site construction scenarios. While currently, 3DCP has a generally higher environmental impact due to the larger quantity of cement employed in the process, the reduction of material through infill optimization for printed beams is a promising design principle to positively offset the environmental impacts in the construction sector. The paper draws recommendations for future research on material- and recarbonation-efficient 3DCP design for load-bearing structures, as well as on material development, e.g. integration of larger aggregates and low-clinker cement.
¶
30 References
- Agustí-Juan Isolda, Müller Florian, Hack Norman, Wangler Timothy et al. (2017-04)
Potential Benefits of Digital Fabrication for Complex Structures:
Environmental Assessment of a Robotically Fabricated Concrete Wall - Alhumayani Hashem, Gomaa Mohamed, Soebarto Veronica, Jabi Wassim (2020-06)
Environmental Assessment of Large-Scale 3D Printing in Construction:
A Comparative Study between Cob and Concrete - Anton Ana-Maria, Reiter Lex, Wangler Timothy, Frangez Valens et al. (2020-12)
A 3D Concrete Printing Prefabrication Platform for Bespoke Columns - Bai Gang, Wang Li, Ma Guowei, Sanjayan Jay et al. (2021-03)
3D Printing Eco-Friendly Concrete Containing Under-Utilised and Waste Solids as Aggregates - Bhattacherjee Shantanu, Basavaraj Anusha, Rahul Attupurathu, Santhanam Manu et al. (2021-06)
Sustainable Materials for 3D Concrete Printing - Bos Freek, Wolfs Robert, Ahmed Zeeshan, Salet Theo (2016-08)
Additive Manufacturing of Concrete in Construction:
Potentials and Challenges of 3D Concrete Printing - Breseghello Luca, Naboni Roberto (2021-07)
Adaptive Tool-Path:
Enhanced Design and Process-Control for Robotic 3DCP - Breseghello Luca, Naboni Roberto (2022-05)
Tool-Path -Based Design for 3D Concrete Printing of Carbon-Efficient Architectural Structures - Breseghello Luca, Sanin Sandro, Naboni Roberto (2021-04)
Tool-Path Simulation, Design and Manipulation in Robotic 3D Concrete Printing - Burger Joris, Lloret-Fritschi Ena, Scotto Fabio, Demoulin Thibault et al. (2020-04)
Eggshell:
Ultra-Thin Three-Dimensional Printed Formwork for Concrete Structures - Buswell Richard, Silva Wilson, Bos Freek, Schipper Roel et al. (2020-05)
A Process Classification Framework for Defining and Describing Digital Fabrication with Concrete - Buswell Richard, Silva Wilson, Jones Scott, Dirrenberger Justin (2018-06)
3D Printing Using Concrete-Extrusion:
A Roadmap for Research - Chen Yu, He Shan, Zhang Yu, Wan Zhi et al. (2021-08)
3D Printing of Calcined-Clay-Limestone-Based Cementitious Materials - Gebhard Lukas, Mata-Falcón Jaime, Anton Ana-Maria, Dillenburger Benjamin et al. (2021-04)
Structural Behavior of 3D Printed Concrete Beams with Various Reinforcement-Strategies - Labonnote Nathalie, Rønnquist Anders, Manum Bendik, Rüther Petra (2016-09)
Additive Construction:
State of the Art, Challenges and Opportunities - Le Thanh, Austin Simon, Lim Sungwoo, Buswell Richard et al. (2012-01)
Mix-Design and Fresh Properties for High-Performance Printing Concrete - Maitenaz Sébastien, Mesnil Romain, Onfroy Paul, Metge Nicolas et al. (2020-07)
Sustainable Reinforced Concrete Beams:
Mechanical Optimization and 3D Printed Formwork - Mohammad Malek, Masad Eyad, Ghamdi Sami (2020-12)
3D Concrete Printing Sustainability:
A Comparative Life Cycle Assessment of Four Construction Method Scenarios - Naboni Roberto, Breseghello Luca (2020-07)
High-Resolution Additive Formwork for Building-Scale Concrete Panels - Nerella Venkatesh, Mechtcherine Viktor (2019-02)
Studying the Printability of Fresh Concrete for Formwork-Free Concrete Onsite 3D Printing Technology (CONPrint3D) - Panda Biranchi, Paul Suvash, Tan Ming (2017-07)
Anisotropic Mechanical Performance of 3D Printed Fiber-Reinforced Sustainable Construction-Material - Paul Suvash, Zijl Gideon, Tan Ming, Gibson Ian (2018-05)
A Review of 3D Concrete Printing Systems and Materials Properties:
Current Status and Future Research Prospects - Salet Theo, Ahmed Zeeshan, Bos Freek (2018-05)
3D Printed Concrete Bridge - Schutter Geert, Lesage Karel, Mechtcherine Viktor, Nerella Venkatesh et al. (2018-08)
Vision of 3D Printing with Concrete:
Technical, Economic and Environmental Potentials - Soto Borja, Agustí-Juan Isolda, Hunhevicz Jens, Joss Samuel et al. (2018-05)
Productivity of Digital Fabrication in Construction:
Cost and Time-Analysis of a Robotically Built Wall - Suiker Akke (2018-01)
Mechanical Performance of Wall Structures in 3D Printing Processes:
Theory, Design Tools and Experiments - Vantyghem Gieljan, Corte Wouter, Shakour Emad, Amir Oded (2020-01)
3D Printing of a Post-Tensioned Concrete Girder Designed by Topology-Optimization - Wang Li, Jiang Hailong, Li Zhijian, Ma Guowei (2020-02)
Mechanical Behaviors of 3D Printed Lightweight Concrete Structure with Hollow Section - Wang Weiqiang, Konstantinidis Nikolaos, Austin Simon, Buswell Richard et al. (2020-07)
Flexural Behavior of AR-Glass-Textile-Reinforced 3D Printed Concrete Beams - Weng Yiwei, Li Mingyang, Ruan Shaoqin, Wong Teck et al. (2020-03)
Comparative Economic, Environmental and Productivity-Assessment of a Concrete Bathroom Unit Fabricated Through 3D Printing and a Pre-Cast Approach
20 Citations
- Mu Xiaoshao, Zhang Xiaoling, He Gang, Liew Kim (2026-01)
Toward Low-Carbon 3D Concrete Printing Through Circular Construction and Waste Valorization - Masri Abdullah, Vazquez Elaine, Haddad Assed, Najjar Mohammed (2025-10)
Life Cycle Costing in 3D Printing:
A Literature Review - Ataei Sarah, Jafari Amirhosein (2025-10)
Comparative Environmental Impact Assessment of 3D Concrete Printing and Precast Techniques in Bridge Construction:
A Case Study Analysis - Mahdy Deena, Marais Eugene, Abdelrahim Marwa, Dubor Alexandre et al. (2025-06)
Life Cycle Assessment of Earth-Based Residential Unit “TOVA”:
A 3D Printed On-Site Load-Bearing Structure - Mahdy Deena, Dara Seni, Abdelrahim Marwa (2025-06)
Evaluating Structure Stability of Self-Supporting 3D Printed Earth-Based Cantilevers Using Robotic ARM - Zhang Bo, Corte Wouter, Ooms Ticho, Wan-Wendner Roman (2025-05)
Mechanical Properties of Particle-Bed 3D Printed Concrete Infill Patterns - Vargas José, Westerlind Helena, Breseghello Luca, Silfwerbrand Johan (2025-03)
Design of Porous Structures in 3D Concrete Printing Using Procedural Print Patterns - Vargas José, Westerlind Helena, Breseghello Luca, Silfwerbrand Johan (2025-03)
Design of Porous Structures in 3D Concrete Printing Using Procedural Print Patterns - Jørgensen Henrik, Hansen Steen, Jespersen Esra, Florenzano Daniele et al. (2024-11)
Experimental Investigation of Key Structural Parameters for Structural Design of 3D Printed Concrete - Habibi Alireza, Buswell Richard, Osmani Mohamed, Aziminezhad Mohamadmahdi (2024-11)
Sustainability Principles in 3D Concrete Printing:
Analysing Trends, Classifying Strategies, and Future Directions - Abbasnejad Behzad, Soltani Sahar, Karamoozian Amirhossein, Gu Ning (2024-08)
A Systematic Literature Review on the Integration of Industry 4.0 Technologies in Sustainability Improvement of Transportation Construction Projects:
State of the Art and Future Directions - Balkhy Wassim, Valera Elias, Karmaoui Dorra, Lafhaj Zoubeir et al. (2024-06)
Motives and Barriers for Offsite and Onsite Construction 3D Printing - Kajzr Daniel, Myslivec Tomáš, Černohorský Josef (2024-05)
Modelling, Analysis and Comparison of Robot Energy Consumption for Three-Dimensional Concrete Printing Technology - Breseghello Luca, Hajikarimian Hamed, Naboni Roberto (2024-05)
3DLightSlab:
Design to 3D Concrete Printing Workflow for Stress-Driven Ribbed Slabs - Lu Yue, Xiao Jianzhuang, Li Yan (2024-03)
3D Printing Recycled Concrete Incorporating Plant-Fibers:
A Comprehensive Review - Bianchi Iacopo, Volpe Stelladriana, Fiorito Francesco, Forcellese Archimede et al. (2024-01)
Life Cycle Assessment of Building Envelopes Manufactured Through Different 3D Printing Technologies - Wang Li, Wang Fucheng, Li Rong, Wang Qiao (2023-12)
Interfacial Constitutive Model of 3D Printed Fiber-Reinforced Concrete Composites and Its Experimental Validation - Mousavi Seyed, Dehestani Mehdi (2023-07)
On the Possibility of Using Waste-Disposable-Gloves as Recycled Fibers in Sustainable 3D Concrete Printing Using Different Additives - Jesus Manuel, Pessoa Ana Sofia, Guimarães Ana, Rangel Bárbara et al. (2023-06)
A Reflection on Sustainable Opportunities for 3D Printing in Construction - Heywood Kate, Nicholas Paul (2023-06)
Sustainability and 3D Concrete Printing:
Identifying a Need for a More Holistic Approach to Assessing Environmental Impacts
BibTeX
@article{gisl_bruh_bres_sen.2022.P3PCBSaEP,
author = "Styrmir Gislason and Simon Bruhn and Luca Breseghello and Burak Sen and Gang Liu and Roberto Naboni",
title = "Porous 3D Printed Concrete Beams Show an Environmental Promise: A Cradle-to-Grave Comparative Life Cycle Assessment",
doi = "10.1007/s10098-022-02343-9",
year = "2022",
journal = "Clean Technologies and Environmental Policy",
}
Formatted Citation
S. Gislason, S. Bruhn, L. Breseghello, B. Sen, G. Liu and R. Naboni, “Porous 3D Printed Concrete Beams Show an Environmental Promise: A Cradle-to-Grave Comparative Life Cycle Assessment”, Clean Technologies and Environmental Policy, 2022, doi: 10.1007/s10098-022-02343-9.
Gislason, Styrmir, Simon Bruhn, Luca Breseghello, Burak Sen, Gang Liu, and Roberto Naboni. “Porous 3D Printed Concrete Beams Show an Environmental Promise: A Cradle-to-Grave Comparative Life Cycle Assessment”. Clean Technologies and Environmental Policy, 2022. https://doi.org/10.1007/s10098-022-02343-9.