Comparison of hydrogel- and xerogel-based sorbent from Empty Fruit Bunch (EFB)

Author:

Alias A.B.1,Qarizada D.2,Malik N.S.A.1,Noraini N.M.R.3,Rashid Z.A.1

Affiliation:

1. Industrial Process Reliability & Sustainability (INPRES) Research Group, School of Chemical Engineering, College of Engineering, Universiti Teknologi MARA, Shah Alam, 40450 Selangor, Malaysia

2. Industrial Process Reliability & Sustainability (INPRES) Research Group, School of Chemical Engineering, College of Engineering, Universiti Teknologi MARA, Shah Alam, 40450 Selangor, Malaysia; Faculty of Chemical Engineering, Jawzjan University, Jawzjan, Afghanistan

3. Industrial Process Reliability & Sustainability (INPRES) Research Group, School of Chemical Engineering, College of Engineering, Universiti Teknologi MARA, Shah Alam, 40450 Selangor, Malaysia; National Institute of Occupational Safety & Health (NIOSH), Bandar Baru Bangi, 43650 Selangor, Malaysia

Abstract

This paper focuses on the synthesis and comparison of hydrogel- and xerogel-based sorbents from EFB.Hydrogels were synthesised by polymerisation of EFB biochar with acrylamide (AAm) as a monomer, N, N'-Methylenebisacrylamide (MBA) as cross-linker and ammonium persulfate (APS) as initiator, as well as by internal gelation method of sodium alginate, empty fruit bunch (EFB), calcium carbonate (CaCO3), and glucono delta-lactone (GDL). From the alginate hydrogels obtained, xerogels were synthesised via the oven-drying method. Then, EFB-based hydrogel and xerogel sorbents were analysed and compared based on characterisation analysis by using scanning electron microscopy (SEM), BrunauerEmmettTeller (BET), Fourier-Transform Infrared Spectroscopy (FTIR), and thermogravimetric analysis (TGA).The xerogel-based EFB is a better adsorbent than the hydrogel-based EFB because it has a larger pore volume (0.001449 cm3/g), larger pore size (63.7987 nm), higher moisture content (7.97%), lower ash content (12.55%), and is more thermally stable.The research is to compare two new adsorbents, namely Hydrogel and Xerogel, from EFB in terms of their characteristics.Both adsorbents show a highly toxic material uptake, especially EFB xerogel. This adsorbent is comparable with the other commercialised adsorbent. Thus, this product can be a highly potential adsorbent for gas and wastewater adsorption.The authenticity results of this article were found to be 15% similar. The novelty of this paper is to compare the two adsorbents, namely hydrogel and xerogel, that originated from EFB.

Publisher

Index Copernicus

Subject

General Materials Science

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