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Micro and macro properties of silico-aluminophosphate geopolymer: Role of incinerated sewage sludge ash (ISSA)

  • Yazan Alrefaei
  • , Hafiz Asad Ali
  • , Jian-Cong Lao
  • , Jian-Guo Dai*
  • , Chi Sun Poon
  • *Corresponding author for this work

Research output: Journal Publications and ReviewsRGC 21 - Publication in refereed journalpeer-review

Abstract

The mechanistic insights into silico-aluminophosphate (SAP) geopolymer formation remain an enigma. Here, we aim to elucidate this process and improve the early-age performance of SAP geopolymers by utilizing incinerated sewage sludge ash (ISSA). Interestingly, phosphoric acid-ISSA interaction released Ca2+ and Al3+ ions from ISSA faster than the dealumination of metakaolin. These ions agglutinated with the active soluble (PO4)3- units, evidenced by transmission electron microscopy (TEM), enhancing the early-age compressive strength of ISSA-incorporated SAP geopolymer binders. In contrast, the later strengths were relatively similar to the reference. Such binders had primary silico-alumino-phosphate (S-A-P) gels, possibly intimate with calcium-phosphate (C-P) and alumino-phosphate (A-P) gels, improving the micromechanical properties of the binder. The elastic moduli of these gels lay between 23–25 GPa, higher than conventional N-A-S-H gels. Furthermore, ISSA switched the chemistry of reaction products by favoring AlIV-OP units over AlVI-OP units in SAP geopolymers, even though the Si environment remained unchanged, as confirmed by NMR. © 2024 Elsevier Ltd.

Original languageEnglish
Article number135231
JournalConstruction and Building Materials
Volume416
Online published3 Feb 2024
DOIs
Publication statusPublished - 16 Feb 2024

Funding

The authors acknowledge the financial support received from the RGC General Research Fund (Project code: 15223120 ), Collaborative Research Fund ( C1014–22GF ) and NSFC/RGC Joint Research Scheme ( N_PolyU542/20 ). The first author would like to sincerely thank Dr. Kenneth Yan for his effort in conducting the MAS NMR experiments. The support of the University Research Facility on Chemical and Environmental Analysis ( UCEA ) of the Hong Kong Polytechnic University is gratefully acknowledged. The authors appreciate the effort of the assigned editor and the anonymous reviewers who improved the shape of this paper.

UN SDGs

This output contributes to the following UN Sustainable Development Goals (SDGs)

  1. SDG 12 - Responsible Consumption and Production
    SDG 12 Responsible Consumption and Production

Research Keywords

  • Geopolymer
  • Incinerated sewage sludge ash
  • Metakaolin
  • Phosphoric acid
  • Waste management

RGC Funding Information

  • RGC-funded

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