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Cited article:

Development of a lightweight self-compacting mortar based on an agricultural by-product (walnut shells) as fine aggregates

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Combined effect of recycled alternative waste materials for cement and sand substitution: impact on bio-concrete mechanical properties

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Optimizing flowable sand concrete with seashells waste and ceramic waste for improved mechanical and durability properties

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Experimental investigation on mechanical and durability properties of sand concrete reinforced by vegetable fibers

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Physical and mechanical performance of eco-friendly self-compacting sand concrete with industrial blast furnace slag waste as fine aggregate

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STUDIES IN ENGINEERING AND EXACT SCIENCES 6 (1) e13625 (2025)
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Study of the physical and mechanical properties of green flowable sand concrete based on waste foundry sand as fine aggregate

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Feasibility of recycling marble waste powder as fine aggregate in self-compacting sand concrete

Mohamed Guendouz, Djamila Boukhelkhal, Loubna Benatallah, Somia Hamraoui and Moussa Hadjadj
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Mechanical strength and durability enhancement of self-compacting concrete by using dam mud waste as cementitious material

Djamila Boukhelkhal, Mohamed Guendouz, Somia Hamraoui, Loubna Benatallah, Moussa Hadjadj and Sofiane Benslimi
STUDIES IN ENGINEERING AND EXACT SCIENCES 6 (1) e13460 (2025)
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Mechanical strength and compactness of bio self-compacting sand concrete containing granite industrial waste as fine aggregate

Moussa Hadjadj, Mohamed Guendouz and Djamila Boukhelkhal
STUDIES IN ENGINEERING AND EXACT SCIENCES 5 (3) e12576 (2024)
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Waste incineration bottom ash as a fine aggregate in mortar: An assessment of engineering properties, durability, and microstructure

Trong-Phuoc Huynh and Si-Huy Ngo
Journal of Building Engineering 52 104446 (2022)
https://doi.org/10.1016/j.jobe.2022.104446

Waste Incineration Bottom Ash as a Fine Aggregate in Green Mortar: An Assessment of Engineering Properties, Durability, and Microstructure

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SSRN Electronic Journal (2021)
https://doi.org/10.2139/ssrn.3988676