An Experimental Study on Mechanical and Durability Properties of Zeolite Concrete
ゼオライトコンクリートの機械的特性と耐久性に関する実験的研究 (AI 翻訳)
Dhilshadh P C
🤖 gxceed AI 要約
日本語
ゼオライトをコンクリートに添加した場合の機械的特性と耐久性を実験的に調査。セメントを部分的に代替することで、コンクリートの強度向上や耐久性改善、CO2排出削減の可能性を検証。最適なゼオライト置換率を特定し、持続可能な建設に貢献。
English
This study experimentally investigates the effect of zeolite addition on mechanical and durability properties of concrete. By partially substituting cement with zeolite, the research aims to improve strength, reduce permeability, and lower carbon footprint. Optimal replacement percentages are identified to support sustainable construction.
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
日本ではコンクリートのCO2排出削減が課題。ゼオライトを利用したセメント代替技術は、日本の建設業界の脱炭素化に貢献する可能性がある。ただし、SSBJや開示制度との直接的な関連は薄い。
In the global GX context
Globally, cement production accounts for ~8% of CO2 emissions. This study explores zeolite as a supplementary cementitious material to reduce carbon footprint. It aligns with sustainable construction goals but does not directly address climate disclosure or transition finance.
👥 読者別の含意
🔬研究者:This paper provides experimental data on zeolite concrete mechanical properties, useful for sustainable construction materials research.
🏢実務担当者:Construction companies could use zeolite to reduce cement content in concrete, lowering carbon footprint.
📄 Abstract(原文)
This study investigates the effects of adding zeolite in concrete mix on the mechanical and durability properties of concrete, aiming to enhance performance and sustainability. Zeolite, a microporous aluminosilicate mineral, is renowned for its molecular sieve properties, which enable it to improve strength of concrete, reduce permeability, and offer environmental benefits by decreasing the cement content required in concrete mixtures. By introducing zeolite as a partial substitute, this research aims to identify the optimal replacement percentage that maximizes structural integrity while maintaining or improving durability. The experimental methodology involves preparing a series of concrete mixes with varying zeolite contents to systematically assess changes in key mechanical properties, such as compressive, flexural, tensile, and bond strength. Durability characteristics are also evaluated, including resistance to acid and base exposure, chloride-induced corrosion which measures the material’s susceptibility to water absorption. The approach combines meticulous material collection, precise mix proportioning, and rigorous mechanical and durability testing to capture the effects of zeolite on concrete performance comprehensively. These insights are expected to contribute to sustainable construction practices by reducing cement dependency and, consequently, the carbon footprint of concrete production. If effective, zeolite could be a promising addition to the construction industry, potentially increasing lifespan of concrete, resilience to environmental stressors, and suitability for eco-friendly infrastructure. Through this research, potential of zeolite as a sustainable additive is highlighted, offering an innovative approach to develop concrete with enhanced structural integrity and extended service life, supporting green building initiatives, and contributing to more durable and environmentally conscious infrastructure solutions.
🔗 Provenance — このレコードを発見したソース
- semanticscholar https://doi.org/10.22214/ijraset.2026.77846first seen 2026-06-29 07:40:18
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