圧縮土ブロックの低炭素安定材としてのアルカリ活性化メタカオリン:機械的・耐久性・熱的・微細構造性能
Alkali-Activated Metakaolin as a Low-Carbon Stabilizer for Compressed Earth Blocks: Mechanical, Durability, Thermal and Microstructural Performance (原題)
Shaik Kabeer Ahmed, Manisha R. Chikane, Suguna B Rao, Anuj Kaushikkumar Chandiwala, Junead M, Shashi Kumar A, Ravikiran M
🤖 gxceed AI 要約
日本語
本研究は、圧縮土ブロック(CEB)の結合材として、普通ポルトランドセメント(OPC)の代替となる低炭素のアルカリ活性化メタカオリン(MK)を評価した。10%MK配合が最適で、強度は3.83 MPaに達し、耐火性に優れ、OPCと比較して炭素排出を削減できる。また、機械学習による材料最適化の可能性も探求した。
English
This study evaluates alkali-activated metakaolin (MK) as a low-carbon binder alternative to ordinary Portland cement (OPC) in compressed earth blocks (CEBs). The 10% MK mix achieved optimal strength (3.83 MPa), excellent fire resistance, and reduced carbon emissions compared to OPC. The paper also explores machine learning for material optimization.
Unofficial AI-generated summary based on the public title and abstract. Not an official translation.
📝 gxceed 編集解説 — Why this matters
日本のGX文脈において
日本の建設分野では、低炭素材料への関心が高まっており、SSBJ開示やカーボンニュートラル政策に貢献する可能性がある。ただし、インドの土壌を用いた研究であり、日本での適用には地域特性の考慮が必要。
In the global GX context
This research contributes to global efforts in low-carbon construction materials, aligning with ISSB and CSRD disclosure trends. The use of geopolymers as cement alternatives offers a pathway for reducing embodied carbon in buildings, relevant for global climate targets.
👥 読者別の含意
🔬研究者:Provides empirical data on MK-based geopolymers for CEBs, useful for further material optimization studies.
🏢実務担当者:Offers a viable low-carbon alternative to OPC for earthen construction, potentially reducing carbon footprint in building projects.
🏛政策担当者:Highlights the potential of geopolymer binders in sustainable construction, informing building codes and carbon reduction policies.
📄 Abstract(原文)
Compressed earth blocks (CEBs) stabilized with ordinary Portland cement (OPC) are extensively used in low-rise construction but exhibit a high embodied carbon footprint. In an effort to minimize the carbon footprint of CEBs, alkali-activated metakaolin (MK) was employed as a low-carbon alternative binder in CEBs prepared from lateritic red soil from Bengaluru, India. Five different systems of CEBs were prepared using 10% OPC as the control and four sodium hydroxide-activated MK systems at 5, 10, 15, and 20% MK to soil ratios. The raw materials were analyzed for particle size distribution, Atterberg limits, XRD analysis, and elemental composition. The Proctor compaction test was performed to determine the optimum moisture content and maximum dry density of each type of CEB. Samples were molded into 70.6 mm cubes and cured in ambient and mild thermal (60 °C) conditions. The samples were tested for compressive strength, dry density, water absorption, fire resistance, and microstructure using scanning electron microscopy (SEM) at 7 days, 28 days of curing, after 24 hours of water exposure, after exposure to 600 °C for 2 hours, and in their raw state. The 10% MK-geopolymer exhibited the highest strength within the geopolymer series (3.83 MPa after full curing, a ≈106% gain over 7-day strength) and retained ≈96% of its ambient strength after being exposed to fire, in comparison to the OPC mixture, which lost 39% of its strength after fire exposure. Furthermore, geopolymer blocks containing 5, 15 and 20% MK experienced disintegration upon immersion in water. SEM analysis of cross sections of geopolymer samples containing 10% MK revealed a more densely-packed and homogeneous structure relative to samples containing higher or lower percentages of MK. Thus, geopolymers containing 10% MK have exhibited various advantageous properties, indicating their potential as an efficient, fire-resilient, and low-carbon cement replacement in the construction of earthen buildings. Furthermore, a compact and exploratory analysis with limited data is also presented in this paper to shed light on the potential use of machine learning in the optimization of these cement-based materials.
🔗 Provenance — このレコードを発見したソース
- openalex https://doi.org/10.70917/ijcisim-2026-5090first seen 2026-08-27 05:01:52
- semanticscholar https://cspub-ijcisim.org/index.php/ijcisim/article/download/5090/4196first seen 2026-08-30 05:23:49 · last seen 2026-09-22 05:12:12
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