Effect of Metakaolin and Biochar Addition on the Performance of 3D Concrete Printing (2025-11)¶
Iqbal Imtiaz, , Inqiad Waleed, , , , Rahman Mujib
Journal Article - Sustainability, Vol. 17, Iss. 23, No. 10725
Abstract
Three-dimensional (3D) concrete printing (3DCP) is an emerging digital construction technology that enables geometrically complex structures with reduced labour, material waste, and formwork. However, the sustainability of 3DCP remains constrained by its heavy reliance on Portland cement, a major source of global CO2 emissions. This study systematically examines metakaolin (MK) and biochar (BC) as sustainable additives for 3DCP, focusing on their independent effects on mechanical performance, printability, dimensional stability, and environmental impact. A comprehensive literature review (2015 to June 2025) identified 254 publications, of which 21 met the inclusion criteria for quantitative meta-analysis, contributing a total of 95 datasets for compressive and flexural strength. Pooled effect sizes were calculated using a random-effects model, supported by risk-of-bias and heterogeneity analyses. The results indicate statistically significant improvements in mechanical properties, with an overall pooled ratio of means (ROM) of 1.12 (95% CI: 1.06–1.20; I2 = 48.9%), representing the overall mechanical performance effect across all datasets, while ROM for compressive and flexural strength was calculated separately in the main analysis. Meta-regression revealed that BC increased compressive and flexural strengths by 7% and 9%, respectively, while MK achieved greater enhancements of 21% and 13.4%. Optimum performance was observed at 15–20% MK for compressive strength and 10–15% for flexural strength, whereas BC performed best at 3–5% and 2–5%, respectively. BC contributed to CO2 reductions of up to 43% through clinker substitution and biogenic carbon sequestration. These findings demonstrate that MK and BC are complementary eco-efficient modifiers capable of enhancing both structural and environmental performance in 3DCP. Future research should address long-term durability, standardisation of printing parameters, and cradle-to-grave life cycle assessments to strengthen practical implementation.
¶
37 References
- Abdalla Hadeer, Fattah Kazi, Abdallah Mohamed, Tamimi Adil (2021-10)
Environmental Footprint and Economics of a Full-Scale 3D Printed House - Aghimien Douglas, Aigbavboa Clinton, Aghimien Lerato, Thwala Wellington et al. (2020-01)
Making a Case for 3D Printing for Housing Delivery in South Africa - Allouzi Rawan, Azhari Wael, Allouzi Rabab (2020-05)
Conventional Construction and 3D Printing:
A Comparison Study on Material-Cost in Jordan - Besklubova Svetlana, Tan Bing, Zhong Ray, Spicek Nikola (2023-04)
Logistic-Cost-Analysis for 3D Printing Construction Projects Using a Multi-Stage Network-Based Approach - Bradshaw James, Si Wen, Khan Mehran, McNally Ciaran (2025-07)
Emerging Insights into the Durability of 3D-Printed Concrete:
Recent Advances in Mix Design Parameters and Testing - Dai Xiaodi, Tao Yaxin, Zhang Yi, Ding Luchuan et al. (2024-08)
Development of 3D Printable Alkali-Activated Slag-Metakaolin Concrete - Diniz Hugo, Martinelli Antônio, Cabral Kleber, Ferreira Ruan et al. (2023-01)
Synergistic Effects of the Use of Metakaolin, Sand and Water on the Properties of Cementitious Composites for 3D Printing - Duan Zhenhua, Li Lei, Yao Qinye, Zou Shuai et al. (2022-08)
Effect of Metakaolin on the Fresh and Hardened Properties of 3D Printed Cementitious Composite - Falliano Devid, Domenico Dario, Cosenza Paolo, Ricciardi Giuseppe et al. (2021-04)
Green High-Performance Mortars for 3D Printing Applications - Falliano Devid, Restuccia Luciana, Ferro Giuseppe (2022-06)
Biochar Addition for 3DCP:
A Preliminary Study - Federowicz Karol, Cendrowski Krzysztof, Sikora Paweł (2024-10)
Low-Carbon Cementitious Composite Incorporated with Biochar and Recycled Fines Suitable for 3D Printing Applications:
Hydration, Shrinkage and Early-Age Performance - Han Yilong, Yang Zhihan, Ding Tao, Xiao Jianzhuang (2020-08)
Environmental and Economic Assessment on 3D Printed Buildings with Recycled Concrete - Hassan Amer, Alomayri Thamer, Noaman Mohammed, Zhang Chunwei (2025-01)
3D Printed Concrete for Sustainable Construction:
A Review of Mechanical Properties and Environmental Impact - Hossain Md., Zhumabekova Altynay, Paul Suvash, Kim Jong (2020-10)
A Review of 3D Printing in Construction and Its Impact on the Labor Market - Ibrahim Kamoru, Zijl Gideon, Babafemi Adewumi (2023-03)
Influence of Limestone-Calcined-Clay-Cement on Properties of 3D Printed Concrete for Sustainable Construction - Inaty Francois, Baz Bilal, Aouad Georges (2022-07)
Long-Term Durability-Assessment of 3D Printed Concrete - Jaji Mustapha, Zijl Gideon, Babafemi Adewumi (2024-03)
Durability and Pore-Structure of Metakaolin-Based 3D Printed Geopolymer Concrete - Marczyk Joanna, Ziejewska Celina, Gądek Szymon, Korniejenko Kinga et al. (2021-11)
Hybrid Materials Based on Fly-Ash, Metakaolin, and Cement for 3D Printing - Markin Slava, Krause Martin, Otto Jens, Schröfl Christof et al. (2021-06)
3D Printing with Foam-Concrete:
From Material Design and Testing to Application and Sustainability - Mishra Sanjeet, Upadhyay Bikash, Das B. (2025-06)
Exploring the Role of Metakaolin in Binary and Ternary Blended 3D Printable Mortars:
Deep Insights into Printability - Murtaza Ghulam, Baldinelli Giorgio (2025-08)
Revolutionizing Architecture:
3D Printing in Large Construction Industry and Strategic Innovations for Enhanced Performance - Muthukrishnan Shravan, Kua Harn, Yu Ling, Chung Jacky (2020-05)
Fresh Properties of Cementitious Materials Containing Rice-Husk-Ash for Construction 3D Printing - Pan Yifan, Zhang Yulu, Zhang Dakang, Song Yuying (2021-05)
3D Printing in Construction:
State of the Art and Applications - Raza Muhammad, Besklubova Svetlana, Zhong Ray (2024-07)
Economic Analysis of Offsite and Onsite 3D Construction Printing Techniques for Low-Story Buildings:
A Comparative Value-Stream-Assessment - Schutter Geert, Lesage Karel, Mechtcherine Viktor, Nerella Venkatesh et al. (2018-08)
Vision of 3D Printing with Concrete:
Technical, Economic and Environmental Potentials - Tabassum Toiba, Ahmad Mir Ajaz (2023-08)
A Review of 3D Printing Technology:
The Future of Sustainable Construction - Tarhan Yeşim, Tarhan İsmail, Şahin Remzi (2024-12)
Comprehensive Review of Binder Matrices in 3D Printing Construction:
Rheological Perspectives - Thajeel Marwah, Kopecskó Katalin, Balázs György (2025-04)
Enhancing Printability of 3D Printed Concrete by Using Metakaolin and Silica Fume - Vergara Luis, Pérez Juan, Colorado Henry (2023-05)
3D Printing of Ordinary Portland Cement with Waste-Wood-Derived Biochar Obtained from Gasification - Wang Lei, Nerella Venkatesh, Li Dianmo, Zhang Yuying et al. (2024-11)
Biochar-Augmented Climate-Positive 3D Printable Concrete - 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 - Xiao Jianzhuang, Ji Guangchao, Zhang Yamei, Ma Guowei et al. (2021-06)
Large-Scale 3D Printing Concrete Technology:
Current Status and Future Opportunities - Yang Hongxiong, Chung Jacky, Chen Yuhong, Li Yijia (2018-06)
The Cost Calculation Method of Construction 3D Printing Aligned with Internet of Things - Zaid Osama, Ouni Mohamed (2024-04)
Advancements in 3D Printing of Cementitious Materials:
A Review of Mineral Additives, Properties, and Systematic Developments - Zhang Yu, Zhang Yunsheng, Yang Lin, Liu Guojian et al. (2021-02)
Hardened Properties and Durability of Large-Scale 3D Printed Cement-Based Materials - Zhang Junyi, Zhang Chao, Zhang Yuying, Li Muduo et al. (2025-09)
Designing Printable Cement Composites with Porous Biochar Using an Extended Water Film Thickness Theory - Zhao Zhihui, Chen Mingxu, Zhong Xu, Huang Yongbo et al. (2021-07)
Effects of Bentonite, Diatomite and Metakaolin on the Rheological Behavior of 3D Printed Magnesium-Potassium-Phosphate-Cement Composites
0 Citations
BibTeX
@article{iqba_kasi_inqi_besk.2025.EoMaBAotPo3CP,
author = "Imtiaz Iqbal and Tala Kasim and Waleed bin Inqiad and Svetlana Besklubova and Payam Sadrolodabaee and Daniel Jozef Nowakowski and Mujib Rahman",
title = "Effect of Metakaolin and Biochar Addition on the Performance of 3D Concrete Printing: A Meta-Analysis Approach",
doi = "10.3390/su172310725",
year = "2025",
journal = "Sustainability",
volume = "17",
number = "23",
pages = "10725",
}
Formatted Citation
I. Iqbal, “Effect of Metakaolin and Biochar Addition on the Performance of 3D Concrete Printing: A Meta-Analysis Approach”, Sustainability, vol. 17, no. 23, p. 10725, 2025, doi: 10.3390/su172310725.
Iqbal, Imtiaz, Tala Kasim, Waleed bin Inqiad, Svetlana Besklubova, Payam Sadrolodabaee, Daniel Jozef Nowakowski, and Mujib Rahman. “Effect of Metakaolin and Biochar Addition on the Performance of 3D Concrete Printing: A Meta-Analysis Approach”. Sustainability 17, no. 23 (2025): 10725. https://doi.org/10.3390/su172310725.