G. Xue, R. Wang, P. Sheng, G. Qiao | 2025 | Construction and Building Materials
DOI 10.1016/j.conbuildmat.2025.144695Review state
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This paper investigates the alkali activation characteristics of lunar regolith simulant HIT-L-2 and its impact on geopolymer performance. The study highlights the reactivity of amorphous phases, dissolution activation energies for Si and Al, and the correlation between leaching rates and compressive strength of geopolymers. The simulant is used to model and predict the behavior of lunar regolith geopolymers under terrestrial conditions. The provided text appears to be a series of URLs related to academic content, likely from Elsevier's database. These URLs are formatted with query parameters such as 'httpAccept=%2A%2F%2A' which suggests they are intended for web services or APIs. The URLs point to various resources, possibly including articles, figures, or supplementary materials. However, the content itself does not contain any meaningful text or data that can be summarized. The URLs are likely placeholders or links to content that is not accessible without proper authentication or context. The paper investigates the reactive components and alkali leaching behavior of a lunar regolith simulant (HIT-L-2) for geopolymer production. It outlines experimental programs, including raw m
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HIT-L-2 | Lunar regolith simulant
CE-5 | lunar regolith sample
Chang'e-5 | sample
Lunar soil | sample
Compressive strength testing
mechanical testing | Construction and infrastructure
Alkali leaching procedures
Leaching
Dissolution characteristics
Dissolution
Dissolution kinetic process
Kinetic
Geopolymer production
Material synthesis
Main Document
Primary Content
Figure 1
Visual Representation
Figure 2
Visual Representation
Alkali leaching behavior
Studied in HIT-L-2
Dissolution characteristics
Dependent on alkali concentration and temperature
Kinetic process
Age-dependent leaching behavior
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File Type
Image
File Type
SVG
Paper Identifier
S0950061825048470
File Type
SVG (Scalable Vector Graphics)