2023
DOI: 10.28991/hij-2023-04-02-07
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Physicochemical and Microstructural Characterization of Klias Peat, Lumadan POFA, and GGBFS for Geopolymer Based Soil Stabilization

Adriana E. Amaludin,
Hidayati Asrah,
Habib M. Mohamad
et al.

Abstract: Peat soils are highly heterogeneous and considered problematic because they have a high moisture content and low shear strength. It requires stabilization to enhance its engineering properties before it is transformed into a viable construction material. The use of geopolymers as stabilizer materials for weak soils has been on the rise recently due to their low carbon footprint compared to the use of conventional stabilizer materials like cement. Geopolymerization occurs as a result of the alkali activation of… Show more

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Cited by 54 publications
(3 citation statements)
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“…In essence, the rising of FVER with the progression of the flexural load application is due to the fracture induces the dispersion of concrete particles, resulting in the formation of wider gaps or voids between them. The expanded gaps impede the movement of electrons, resulting in a rise in the electrical resistivity even when the material is experiencing failure (44,(48)(49)(50)(51).…”
Section: Behavior Of Self-sensing Of the Prismatic Samples Under Flex...mentioning
confidence: 99%
“…In essence, the rising of FVER with the progression of the flexural load application is due to the fracture induces the dispersion of concrete particles, resulting in the formation of wider gaps or voids between them. The expanded gaps impede the movement of electrons, resulting in a rise in the electrical resistivity even when the material is experiencing failure (44,(48)(49)(50)(51).…”
Section: Behavior Of Self-sensing Of the Prismatic Samples Under Flex...mentioning
confidence: 99%
“…As expected, the use of high-volume, low-calcium material helps to increase reactivity. Consequently, increasing calcium content above a certain quantity causes degradation in strength [22,23].…”
Section: Introductionmentioning
confidence: 99%
“…The required characteristics for an eligible waste to be employed in geopolymerization are its amorphous nature and its content of silica and alumina and possibly a low dimension. Therefore, glass waste, construction and demolition waste (i.e., concrete, bricks) and even the residuals of organic matter combustion such as rice husk ash or peat soil palm oil fuel ash (POFA) [12] have been selected to produce alkali-activated binders.…”
Section: Introductionmentioning
confidence: 99%