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Enhancing the sustainability and mechanical properties of ultra-high-performance concrete through CO2 sequestration
- Choi, Hong-Joon;
- Kim, Soonho;
- Bae, Sungchul;
- Kim, Jong Kyu;
- Yoo, Doo-Yeol
WEB OF SCIENCE
6SCOPUS
6초록
Carbon dioxide (CO2)-consuming ultra-high-performance concrete (CC-UHPC) is a sustainable, high-performance material distinguished by its excellent mechanical properties and carbon sequestration capabilities. This study proposes an optimal type of mixing water for CC-UHPC, utilizing nano-sized bubbles known for their superior physical characteristics and efficient element transport. Experimental results reveal that these nano-sized bubbles generate additional gel pores by collapsing micro-scale pores within the UHPC matrix, thereby enhancing compressive strength. The increased nano-scale porosity also improves the equivalent bond strength between the embedded steel fibers and the matrix, inducing a slip-hardening response. Furthermore, the presence of nanosized bubbles promotes the formation of numerous microcracks-approximately 10 mu m in size-significantly boosting the tensile strain capacity of CC-UHPC. Notably, CC-UHPC prepared with CO2-capturing nano-sized bubbles in the mixing water exhibited both high CO2 uptake capacity and improved fiber bond strength, thereby achieving the dual goals of sustainability and superior mechanical performance.
키워드
- 제목
- Enhancing the sustainability and mechanical properties of ultra-high-performance concrete through CO2 sequestration
- 저자
- Choi, Hong-Joon; Kim, Soonho; Bae, Sungchul; Kim, Jong Kyu; Yoo, Doo-Yeol
- 발행일
- 2025-08
- 유형
- Article
- 권
- 489