- 영문명
- Assessment on Cement Mortar Containing Biochar for Carbon Neutral Wave Dissipating Block
- 발행기관
- 한국연안방재학회
- 저자명
- 이우진(Woojin Lee) 이기열(Giyeol Lee) 노희진(Heejin Roh) 류용욱(Yonguk Ryu)
- 간행물 정보
- 『한국연안방재학회지』제11권 제4호, 197~207쪽, 전체 11쪽
- 주제분류
- 자연과학 > 지질학
- 파일형태
- 발행일자
- 2024.12.31

국문 초록
This study provides a foundational investigation on the potential of sequestering biochar with high carbon content in wave dissipating block, especially tetrapod. By replacing some portion of cement for mortar with rice husks and wood materials in type of biochar, the research evaluates the workability and mechanical properties of biochar-mixed mortar based on varying biochar replacement ratios. The findings reveal that workability remained consistent through all replacement ratios, while mechanical properties showed variability depending on the biochar type. For rice husk biochar, compressive strength increased with higher replacement ratios, albeit with variations under different curing conditions. Both flexural and compressive strengths met standard requirements up to a 6% replacement ratio. In contrast, wood biochar showed a decline in compressive and splitting tensile strengths as the replacement ratio increased, with curing conditions significantly influencing the results. However, flexural strength remained comparable to conventional paving concrete. Overall, both flexural and compressive strengths satisfied standard requirements up to a 6% replacement ratio for both biochar types. The strengths shows possibility for replacement with biochar mortar for tetrapod material.
영문 초록
목차
1. 서 론
2. 시험
3. 시험 결과
4. 결 론
감사의 글
References
해당간행물 수록 논문
참고문헌
- Science of the Total Environment
- Journal of the Korea Concrete Institute
- Journal of Environmental Quality
- Journal of the Korean Society for Advanced Composite Structures
- Journal of the Korea Academia-Industrial cooperation Society
- Biosystems Engineering
- Construction and Building Materials
- Theoretical and Applied Fracture Mechanics
- Bioresource Technology
- Journal of the Korean Society for Advanced Composite Structures
- Construction and Building Materials
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