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Tytuł pozycji:

Application of Iron Tailings-Based Composite Supplementary Cementitious Materials (SCMs) in Green Concrete

Tytuł:
Application of Iron Tailings-Based Composite Supplementary Cementitious Materials (SCMs) in Green Concrete
Autorzy:
Yannian Zhang
Daokui Yang
Xiaowei Gu
Hao Chen
Zhijun Li
Temat:
solid waste resourcing
ternary system
iron ore tailings
phosphate slag
steel slag
pore structure
Technology
Electrical engineering. Electronics. Nuclear engineering
TK1-9971
Engineering (General). Civil engineering (General)
TA1-2040
Microscopy
QH201-278.5
Descriptive and experimental mechanics
QC120-168.85
Źródło:
Materials, Vol 15, Iss 11, p 3866 (2022)
Wydawca:
MDPI AG, 2022.
Rok publikacji:
2022
Kolekcja:
LCC:Technology
LCC:Electrical engineering. Electronics. Nuclear engineering
LCC:Engineering (General). Civil engineering (General)
LCC:Microscopy
LCC:Descriptive and experimental mechanics
Typ dokumentu:
article
Opis pliku:
electronic resource
Język:
English
ISSN:
1996-1944
Relacje:
https://www.mdpi.com/1996-1944/15/11/3866; https://doaj.org/toc/1996-1944
DOI:
10.3390/ma15113866
Dostęp URL:
https://doaj.org/article/ef1f2424b3fb4ebaa34c9a7cdaddc0a1  Link otwiera się w nowym oknie
Numer akcesji:
edsdoj.f1f2424b3fb4ebaa34c9a7cdaddc0a1
Czasopismo naukowe
How to treat the iron tailings of mining solid waste with high value is an urgent problem on a global scale. In recent years, the application of iron tailings in the building materials industry has attracted the attention of many scholars. The conversion of iron tailings into green building materials helps achieve carbon neutrality and high-value utilization of solid waste, and promotes sustainable development. Although iron tailings have been extensively studied as supplementary cementitious materials, the performance of concrete is not ideal due to its low activity. In this study, the hybrid supplementary cementitious materials system was prepared by iron tailings, phosphorus slag, and steel slag, and the effects of supplementary cementitious materials type, iron tailings content, iron tailings grinding time, and supplementary cementitious materials content on concrete performance were studied. The compressive properties, iron tailings properties, pore structure, interfacial transition zone, and element distribution of hydration products of concrete were tested by compressive strength tests, X-ray Diffractometer (XRD), X-ray Photoelectron Spectroscopy (XPS), Mercury Intrusion Porosimetry (MIP), Backscattering Electron Tests (BSE), and Energy Dispersive Spectrometer (EDS). The results show that further grinding improves the iron tailings activity. There is a synergistic mechanism between steel slag and phosphorus slag in the composite supplementary cementitious materials, which overcomes the low activity defect of iron tailings and produces concrete with a compressive strength exceeding 40 MPa. The composite supplementary cementitious materials can optimize the interfacial transition zone of the concrete interface and reduce the calcium–silicon ratio of the hydration products. However, it will deteriorate the pore structure of the concrete matrix, cause part of the concrete matrix to be damaged and lead to a loss of compressive strength, and the loss is acceptable. This work broadens the methods of comprehensive utilization of iron tailings and also provides a reference for a more detailed understanding of the properties of iron tailings-based concrete.
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