Synthesis and Characterization of Metakaolin–Wollastonite Geopolymer Foams for Removal of Heavy Metal Ions from Water

Mazen Alshaaer, Bader Alharbi, Obaid Alqahtani, Mohammed S. Alotaibi, Abdullah Alzayed, Juma’a Al-Kafawein

Research output: Contribution to journalArticlepeer-review

Abstract

Over the past few decades, researchers have focused on developing new compositions and preparation techniques for geopolymers, as multifunctional products, to optimize their characteristics for use in multiple applications. Therefore, this paper investigates metakaolin geopolymer foam and introduces new geopolymer foams based on hybrid metakaolin and wollastonite mineral precursors for water purification. The geopolymer foams were prepared using an alkaline activator, mineral-based powders (wollastonite and metakaolin), a foaming agent (aluminum powder), and a foam stabilizer (olive oil). In addition to mechanical tests and assessments of the adsorption capacity of heavy metal ions, the geopolymer foams were characterized using X-ray diffraction (XRD), scanning
electron microscopy (SEM), and X-ray photoelectron spectroscopy (XPS). The geopolymer foams exhibited unique pore structures, containing four classes of pore networks with diameters around 1000 µm, 25 µm, 3 µm, and a well-arranged mesopore network of 50 nm. The utilization of wollastonite (CaSiO3) alongside metakaolin as a hybrid precursor led to fundamental changes in the composition of the geopolymer binders: a new crystal phase, Ca5(SiO4)2(OH)2, was formed, and the Si-Al-Na crystal phase disappeared, which led to an increase in the amorphous phase from 87% to 92%. The adsorption rate of heavy metal
ions, namely Cr, Co, Cu, Zn, Pd, and As, increased upon introducing wollastonite as a precursor, with absorption rates ranging from 11% to 68%. The findings also revealed that wollastonite significantly increased the geopolymers foams’ compressive strength and elastic modulus from 30 KPa to 67 KPa and from 31 MPa to 126 MPa, respectively.
Original languageEnglish
Article number678
Pages (from-to)1-16
Number of pages <span style="color:red"p> <font size="1.5"> ✽ </span> </font>16
JournalMaterials
Volume18
Issue number3
DOIs
Publication statusPublished - 4 Feb 2025

Bibliographical note

Funding Information:
This study is supported via funding from Prince Sattam bin Abdulaziz University project number (PSAU/2024/01/28483).

Publisher Copyright:
© 2025 by the authors.

Keywords

  • wollastonite; geopolymers; metakaolin; XRD; foam

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