Azli Sulaiman
Universiti Teknologi Malaysia
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Featured researches published by Azli Sulaiman.
Critical Reviews in Analytical Chemistry | 2014
Wan Aini Wan Ibrahim; Layth Imad Abd Ali; Azli Sulaiman; Mohd Marsin Sanagi; Hassan Y. Aboul-Enein
The progress of novel sorbents and their function in preconcentration techniques for determination of trace elements is a topic of great importance. This review discusses numerous analytical approaches including the preparation and practice of unique modification of solid-phase materials. The performance and main features of ion-imprinting polymers, carbon nanotubes, biosorbents, and nanoparticles are described, covering the period 2007–2012. The perspective and future developments in the use of these materials are illustrated.
Talanta | 2016
Layth Imad Abd Ali; Wan Aini Wan Ibrahim; Azli Sulaiman; Muhammad Afzal Kamboh; Mohd Marsin Sanagi
This study describes the synthesis, characterization and application of a new chrysin-based silica core-shell magnetic nanoparticles (Fe3O4@SiO2-N-chrysin) as an adsorbent for the preconcentration of Cu(II) from aqueous environment. The morphology, thermal stability and magnetic property of Fe3O4@SiO2-N-chrysin were analyzed using FTIR, FESEM, TEM, XRD, thermal analysis and VSM. The extraction efficiency of Fe3O4@SiO2-N-chrysin was analyzed using the batch wise method with flame atomic absorption spectrometry. Parameters such as the pH, the sample volume, the adsorption-desorption time, the concentration of the desorption solvent, the desorption volume, the interference effects and the regeneration of the adsorbent were optimized. It was determined that Cu(II) adsorption is highly pH-dependent, and a high recovery (98%) was achieved at a pH 6. The limit of detection (S/N=3), the limit of quantification (S/N=10), the preconcentration factor and the relative standard deviation for Cu(II) extraction were 0.3 ng mL(-1), 1 ng mL(-1), 100 and 1.9% (concentration=30 ng mL(-1), n=7), respectively. Excellent relative recoveries of 97-104% (%RSD<3.12) were achieved from samples from a spiked river, a lake and tap water. The MSPE method was also validated using certified reference materials SLRS-5 with good recovery (92.53%).
PROCEEDINGS OF THE INTERNATIONAL CONFERENCE ON EDUCATION, MATHEMATICS AND SCIENCE 2016 (ICEMS2016) IN CONJUNCTION WITH 4TH INTERNATIONAL POSTGRADUATE CONFERENCE ON SCIENCE AND MATHEMATICS 2016 (IPCSM2016) | 2017
Anuar Othman; Azli Sulaiman; Shamsul Kamal Sulaiman
Hydrated lime also known as calcium hydroxide with chemical formula Ca(OH)2 was used in this study as neutralization agent in acid mine drainage (AMD) treatment. Hydrated lime that is used to treat pool water samples from tin tailings located in Pengkalan Hulu, Perak was obtained from Simpang Pulai, Perak. The pH of water sample was around 2.6 to 2.8. Ten different variables of hydrated lime weights were used to treat 1 L of water sample. The weights of hydrated lime used were 0.2 g, 0.4 g, 0.6 g, 0.8 g, 1.0 g, 1.2 g, 1.4 g, 1.6 g, 1.8 g and 2.0 g. Time interval used was every 5 minutes up to minutes 30. Jar test method was used in this study. The maximum pH value of 5.93 ± 0.03 most approaches standard A and had complied standard B have been obtained using 2.0 g hydrated lime in 30-minute time interval. The concentration of arsenic, cadmium and chromium had decreased but only cadmium concentration did not comply with Standards A and B.
Jurnal Teknologi | 2003
W. Aini W. Ibrahim; S. M. Monjurul Alam; Azli Sulaiman
Jurnal Teknologi | 2015
Anuar Othman; Azli Sulaiman; Shamsul Kamal Sulaiman
Jurnal Teknologi | 2014
Layth Imad Abd Ali; Wan Aini Wan Ibrahima; Azli Sulaiman; Mohd Marsin Sanagi
Materials Today: Proceedings | 2018
Azli Sulaiman; Anuar Othman; Ismail Ibrahim
Journal of water process engineering | 2017
Anuar Othman; Azli Sulaiman; Shamsul Kamal Sulaiman
The Malaysian Journal of Analytical Sciences | 2015
Layth Imad Abd Ali; Wan Aini Wan Ibrahim; Azli Sulaiman; Mohd Marsin Sanagi
Archive | 2015
Azli Sulaiman; Shamsul Kamal Sulaiman; Anuar Othman