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鉱物がコンクリート構造に及ぼす影響を調査(Q&A: Can minerals compromise concrete structures?)

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2025-08-06 ペンシルベニア州立大学(Penn State)

ペンシルベニア州立大学の研究によると、コンクリート中に混入した黄鉄鉱や黄銅鉄鉱などの鉄硫化鉱物が、水と酸素に反応して酸化し、内部に膨張ストレスを引き起こすことで、ひび割れや崩壊といった構造劣化を招く可能性がある。これまで酸性環境での研究が中心だったが、本研究は高アルカリのコンクリート環境下での鉱物反応に焦点を当て、建材の選定や構造物の長期的安全性に重要な示唆を与えている。

鉱物がコンクリート構造に及ぼす影響を調査(Q&A: Can minerals compromise concrete structures?)
Iron sulfide minerals, which can be found across Pennsylvania, can quickly deteriorate concrete structures, according to a group of researchers at Penn State and the University of Georgia. Credit: AgFang/iStock . All Rights Reserved.

<関連情報>

アルカリ溶液中の鉄硫化物鉱物の溶解動力学 Dissolution kinetics of iron sulfide minerals in alkaline solutions

Zhanzhao Li, Christopher A. Gorski, Aaron Thompson, Jeffrey R. Shallenberger, Gopakumar Kaladharan, Aleksandra Radlińska
Cement and Concrete Research  Available online: 11 March 2025
DOI:https://doi.org/10.1016/j.cemconres.2025.107850

Abstract

Deleterious aggregate reactions induced by iron sulfide minerals, especially pyrrhotite and pyrite, have devastated concrete structures across many global regions. While these minerals have been extensively studied under acidic conditions, their behavior in alkaline environments, such as concrete, remains poorly understood. This study investigates the kinetics and mechanisms of iron sulfide dissolution at high pH (13–14). Results revealed that pyrrhotite dissolves orders of magnitude more rapidly than pyrite, with dissolution rates increasing with both pH and temperature. The type of alkali (potassium or sodium) in the solution was not found to affect the dissolution behavior. Kinetic modeling and experimental characterization indicated that the dissolution kinetics of pyrrhotite is controlled by a combination of chemical reactions (oxidation of iron and sulfur species) and diffusion (through an Fe(III)-(oxy)hydroxide layer). These findings provide practical insights into controlling dissolution and mitigating iron sulfide-induced damage in concrete.

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