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再生コンクリート骨材が酸性鉱山排水の処理に役立つ可能性(Recycled concrete aggregate may help treat acid mine drainage)

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2026-09-16 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チームは、建設・解体廃棄物から得られる再生コンクリート骨材(RCA)を、酸性鉱山排水(AMD)の処理に利用できる可能性を示した。AMDは硫化鉱物の酸化などによって生じる酸性の排水で、鉄やマンガンなどの金属を含み、水生生態系に悪影響を及ぼす。研究では、RCAに含まれるセメント由来のアルカリ性成分に着目し、酸性排水を中和するとともに、溶解した金属の沈殿を促進する効果を調べた。RCAを処理材として利用することで、廃コンクリートの有効利用と鉱山排水処理を同時に実現できる可能性がある。これは、従来廃棄物として扱われる建設資材を環境修復に転用する循環型の技術であり、AMD処理に必要な新規資材の使用量や廃棄物量の削減にもつながり得る。研究は、再生資源を利用した低コストな水質浄化・鉱山環境修復技術の開発に向けた知見を提供するものである。

<関連情報>

酸性鉱山排水(AMD)の受動的処理における中和剤としての2種類の骨材廃棄物の潜在的な有益な利用 Potential Beneficial Use of Two Aggregate Waste Products as Neutralizers of AMD in Passive Treatment

Allison Fenske & Nathaniel Warner

Mine Water and the Environment  Published:11 September 2026

DOI:https://doi.org/10.1007/s10230-026-01142-8

再生コンクリート骨材が酸性鉱山排水の処理に役立つ可能性(Recycled concrete aggregate may help treat acid mine drainage)

Abstract

Two alternative neutralizers derived from waste products, recycled concrete aggregate (RCA) and iron-rich material (IRM) from steel production, were evaluated for their potential use in passive treatment of AMD. They were compared directly against limestone (LMS) in three types of experiments: calcium carbonate equivalence, batch reactor interval bucket tests, and plug flow reaction columns. The interval bucket tests and column tests utilized aggregate that was ≈ 5 cm in diameter. A modified toxicity characteristic leaching procedure (TCLP) test showed that the IRM and RCA leached higher concentrations of aluminium and chromium than the LMS. The IRM had 58% and LMS had 93% calcium carbonate equivalence, while the RCA had less, ranging from 35 to 73%. In the interval bucket test, the RCA outperformed the IRM and LMS for pH neutralization, acidity removal, and alkalinity generation. During the column test, the IRM rapidly failed to neutralize the influent, while there was a steady decrease in the RCA’s neutralization capacity. The IRM and RCA both reduced the concentrations of aluminium and iron in the resulting effluent, but the IRM increased the concentration of manganese. The laboratory results were used to estimate parameters for calculating potential neutralizing capacity. Based on neutralization life, material acquisition, transportation costs, and environmental impact, we predict regions where RCA can potentially be used to treat AMD at a lower cost and less environmental impact than using LMS. The approach presented here could be applied to evaluate the use of alternative products to neutralize mine drainage in other regions.

0803資源循環及び環境
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