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Review

Naturally Derived Cements Learned from the Wisdom of Ancestors: A Literature Review Based on the Experiences of Ancient China, India and Rome

1
Division of Sustainable Resources Engineering, Graduate School of Engineering, Hokkaido University, Sapporo 060-8628, Japan
2
Division of Sustainable Resources Engineering, Faculty of Engineering, Hokkaido University, Sapporo 060-8628, Japan
*
Author to whom correspondence should be addressed.
Materials 2023, 16(2), 603; https://doi.org/10.3390/ma16020603
Submission received: 29 November 2022 / Revised: 4 January 2023 / Accepted: 5 January 2023 / Published: 8 January 2023
(This article belongs to the Special Issue Characterization of Biopolymer–Concrete Composites in Construction)

Abstract

For over a thousand years, many ancient cements have remained durable despite long-term exposure to atmospheric or humid agents. This review paper summarizes technologies of worldwide ancient architectures which have shown remarkable durability that has preserved them over thousands of years of constant erosion. We aim to identify the influence of organic and inorganic additions in altering cement properties and take these lost and forgotten technologies to the production frontline. The types of additions were usually decided based on the local environment and purpose of the structure. The ancient Romans built magnificent structures by making hydraulic cement using volcanic ash. The ancient Chinese introduced sticky rice and other local materials to improve the properties of pure lime cement. A variety of organic and inorganic additions used in traditional lime cement not only changes its properties but also improves its durability for centuries. The benefits they bring to cement may also be useful in enzyme-induced carbonate precipitation (EICP) and microbially induced carbonate precipitation (MICP) fields. For instance, sticky rice has been confirmed to play a crucial role in regulating calcite crystal growth and providing interior hydrophobic conditions, which contribute to improving the strength and durability of EICP- and MICP-treated samples in a sustainable way.
Keywords: naturally derived cement; Portland cement; enzyme-induced carbonate precipitation (EICP); microbially induced carbonate precipitation (MICP) naturally derived cement; Portland cement; enzyme-induced carbonate precipitation (EICP); microbially induced carbonate precipitation (MICP)

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MDPI and ACS Style

Su, Z.; Yan, Z.; Nakashima, K.; Takano, C.; Kawasaki, S. Naturally Derived Cements Learned from the Wisdom of Ancestors: A Literature Review Based on the Experiences of Ancient China, India and Rome. Materials 2023, 16, 603. https://doi.org/10.3390/ma16020603

AMA Style

Su Z, Yan Z, Nakashima K, Takano C, Kawasaki S. Naturally Derived Cements Learned from the Wisdom of Ancestors: A Literature Review Based on the Experiences of Ancient China, India and Rome. Materials. 2023; 16(2):603. https://doi.org/10.3390/ma16020603

Chicago/Turabian Style

Su, Zhan, Zhen Yan, Kazunori Nakashima, Chikara Takano, and Satoru Kawasaki. 2023. "Naturally Derived Cements Learned from the Wisdom of Ancestors: A Literature Review Based on the Experiences of Ancient China, India and Rome" Materials 16, no. 2: 603. https://doi.org/10.3390/ma16020603

APA Style

Su, Z., Yan, Z., Nakashima, K., Takano, C., & Kawasaki, S. (2023). Naturally Derived Cements Learned from the Wisdom of Ancestors: A Literature Review Based on the Experiences of Ancient China, India and Rome. Materials, 16(2), 603. https://doi.org/10.3390/ma16020603

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