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  5. Optimization of NaOH molarity, LUSI mud/alkaline activator, and Na₂SiO₃/NaOH ratio to produce lightweight aggregate-based geopolymer
 
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Optimization of NaOH molarity, LUSI mud/alkaline activator, and Na₂SiO₃/NaOH ratio to produce lightweight aggregate-based geopolymer

Journal
International Journal of Molecular Sciences
ISSN
1422-0067
Date Issued
2015
Author(s)
Rafiza Abd Razak
Universiti Malaysia Perlis
Mohd. Mustafa Al Bakri Abdullah
Universiti Malaysia Perlis
Djwantoro Hardjito
Petra Christian University
Kamarudin Hussin
Universiti Malaysia Perlis
Khairul Azwan Ismail
Universiti Malaysia Perlis
Zarina Yahya
Universiti Malaysia Perlis
DOI
10.3390/ijms160511629
Abstract
This paper presents the mechanical function and characterization of an artificial lightweight geopolymer aggregate (ALGA) using LUSI (Sidoarjo mud) and alkaline activator as source materials. LUSI stands for LU-Lumpur and SI-Sidoarjo, meaning mud from Sidoarjo which erupted near the Banjarpanji-1 exploration well in Sidoarjo, East Java, Indonesia on 27 May 2006. The effect of NaOH molarity, LUSI mud/Alkaline activator (LM/AA) ratio, and Na₂SiO₃/NaOH ratio to the ALGA are investigated at a sintering temperature of 950 °C. The results show that the optimum NaOH molarity found in this study is 12 M due to the highest strength (lowest AIV value) of 15.79% with lower water absorption and specific gravity. The optimum LUSI mud/Alkaline activator (LM/AA) ratio of 1.7 and the Na2SiO3/NaOH ratio of 0.4 gives the highest strength with AIV value of 15.42% with specific gravity of 1.10 g/cm3 and water absorption of 4.7%. The major synthesized crystalline phases were identified as sodalite, quartz and albite. Scanning Electron Microscope (SEM) image showed more complete geopolymer matrix which contributes to highest strength of ALGA produced.
Subjects
  • Artificial lightweigh...

  • Geopolymer

  • Aggregate impact valu...

  • SEM

  • X-ray Diffraction (XR...

  • Fourier Transform Inf...

File(s)
Optimization of NaOH Molarity, LUSI MudAlkaline Activator, and Na2SiO3NaOH Ratio to Produce Lightweight Aggregate-Based Geopolymer.pdf (2.42 MB)
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Nov 19, 2024
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Acquisition Date
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