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- W4312977605 abstract "Global warming caused by CO 2 emissions makes reactive magnesium cement (RMC) increasingly attractive due to its ability to sequester CO 2 , however, the diffusion of CO 2 in RMC is severely limited by the dense hydrated magnesium carbonates (HMCs) formed on the outer layer. This work utilizes hollow natural fiber (e.g., sisal fiber) to facilitate the diffusion of CO 2 into the deep part of the RMC specimen. Combining with adding silica sand as a filling agent, the mechanical strength can be enhanced from 42.4 MPa of the control group to 92.6 MPa of the specimen with 2 vol.% sisal fiber, this is attributed to that the addition of sisal fiber significantly enhances the carbonation depth. FTIR and XPS results further prove that the addition of 2 vol.% or more sisal fiber can improve the carbonation degree by over 200%, leading to a sharp reduction of CO 2 emission from 37 kg/(m 3 >MPa) of the control group to 12.1 kg/(m 3 ∘MPa) of the specimen with 2 vol.% sisal fiber. Therefore, adding hollow natural fiber and silica sand to RMC can be a promising approach to make RMC stronger and more sustainable." @default.
- W4312977605 created "2023-01-05" @default.
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- W4312977605 date "2022-01-01" @default.
- W4312977605 modified "2023-10-14" @default.
- W4312977605 title "High-performance Reactive Magnesium Cement Incorporating Hollow Natural Fiber and Silica Sand" @default.
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- W4312977605 doi "https://doi.org/10.1051/matecconf/202236405011" @default.
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