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Process parameter optimization of pretreated pineapple leaves fiber for enhancement of sugar recovery

Nashiruddin, N. I. and Mansor, A. F. and Rahman, R. A. and Ilias, R. M. and Yussof, H. W. (2020) Process parameter optimization of pretreated pineapple leaves fiber for enhancement of sugar recovery. Industrial Crops and Products, 152 . ISSN 0926-6690

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Official URL: http://www.dx.doi.org/10.1016/j.indcrop.2020.11251...

Abstract

Pineapple leaves fibers (PALF) is one of the abundant biofibers that have high cellulose content. The complex structure arrangement of PALF that contains a bundle of packed fiber filled with fiber matrix makes it hard to remove lignin and disrupt hemicellulose–lignin complex structure, thus difficult to produce reducing sugar. Dilute sulfuric acid (H2SO4), sodium hydroxide (NaOH), and hot water pretreatment were employed in this study to determine the digestibility of PALF prior to enzyme hydrolysis as a pretreatment method. PALF pretreated with 0.5 % (w/v) NaOH gave the highest yield of reducing sugar (11.65 mg/mL) compared to dilute H2SO4 (8.11 mg/mL) and hot water pretreatment (6.50 mg/mL). The structural changes of PALF after pretreatments were observed through scanning electron microscopy (SEM) and confirmed the structural modification caused by NaOH pretreatment. The optimization of NaOH pretreatment was further carried out by using Box–Behnken design (BBD) to enhance the yield of reducing sugar from PALF and the parameters considered for the optimization include NaOH concentration (0.5 %–2.5 % (w/v)), temperature (80–100 °C), and pretreatment time (30–90 min). The model developed for the response (reducing sugar yield) indicates that the optimum operating condition is 2.43 % (w/v) of NaOH, 87 °C, and 57.15 min of pretreatment time with 17.26 mg/mL of reducing sugar via enzymatic hydrolysis. This result indicates that the pretreatment condition significantly improved the rate of enzymatic hydrolysis and sugar recovery.

Item Type:Article
Uncontrolled Keywords:optimization, pineapple leaves fiber, pretreatment
Subjects:T Technology > TP Chemical technology
Divisions:Chemical and Energy Engineering
ID Code:87032
Deposited By: Narimah Nawil
Deposited On:31 Oct 2020 12:16
Last Modified:23 Feb 2021 03:15

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