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Environmental compatibility of lightweight aggregates from mine tailings and industrial byproducts

Cited 6 time in Web of Science Cited 7 time in Scopus
Authors

Ju, Won Jung; Shin, Doyun; Park, Hyunsik; Nam, Kyoungphile

Issue Date
2017-10
Publisher
Multidisciplinary Digital Publishing Institute (MDPI)
Citation
Metals, Vol.7 No.10, p. 390
Abstract
A lightweight aggregate was produced by sintering the mixture of gold mine tailings, red mud, and limestone at 1150 degrees C. The physical (i.e., skid resistance, abrasion resistance, and bond strength) and environmental (i.e., leachability) feasibility of this aggregate was assessed to consider its potential use as a construction material for bicycle lanes. The skid resistance (British pendulum number of 71) and bond strength (1.5 N.mm(-2)) of the aggregate were found to be appropriate for this use. However, the abrasion loss value of the aggregate was found to be 290 mg, which exceeds the limit of Korean Standard KS F 281 (200 mg). Heavy metals were found to not leach from the aggregate in various leaching tests. These include Korean (Korea Standard Method for Solid Waste), American (Toxic Characteristic Leaching Procedure (TCLP), Synthetic Precipitation Leaching Procedure (SPLP)), and European (BS EN 12457-1) leaching tests, despite the raw materials containing significant amounts of Pb, As, and F. However, leachate extracted from the aggregate exhibited an aquatic toxicity to Daphnia magna of 13.94 TU24hr and 14.25 TU48hr, most likely due to a high pH and Ca concentration originating from the free CaO present in the aggregate. The data suggests that the physical properties of the reconstructed aggregate are appropriate for use in bicycle lane construction, however the dissolution of Ca and the pH level of the leachate need to be controlled to protect aquatic ecosystems.
ISSN
2075-4701
URI
https://hdl.handle.net/10371/206640
DOI
https://doi.org/10.3390/met7100390
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  • College of Engineering
  • Department of Civil & Environmental Engineering
Research Area 지하수 및 토양오염, 환경공학

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