Ezyana Kamal Bahrin
Universiti Putra Malaysia
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Featured researches published by Ezyana Kamal Bahrin.
Applied Microbiology and Biotechnology | 2016
Ruqayyah Masran; Zuraidah Zanirun; Ezyana Kamal Bahrin; Mohamad Faizal Ibrahim; Phang Lai Yee; Suraini Abd-Aziz
Abundant lignocellulosic biomass from various industries provides a great potential feedstock for the production of value-added products such as biofuel, animal feed, and paper pulping. However, low yield of sugar obtained from lignocellulosic hydrolysate is usually due to the presence of lignin that acts as a protective barrier for cellulose and thus restricts the accessibility of the enzyme to work on the cellulosic component. This review focuses on the significance of biological pretreatment specifically using ligninolytic enzymes as an alternative method apart from the conventional physical and chemical pretreatment. Different modes of biological pretreatment are discussed in this paper which is based on (i) fungal pretreatment where fungi mycelia colonise and directly attack the substrate by releasing ligninolytic enzymes and (ii) enzymatic pretreatment using ligninolytic enzymes to counter the drawbacks of fungal pretreatment. This review also discusses the important factors of biological pretreatment using ligninolytic enzymes such as nature of the lignocellulosic biomass, pH, temperature, presence of mediator, oxygen, and surfactant during the biodelignification process.
Preparative Biochemistry & Biotechnology | 2012
Ezyana Kamal Bahrin; Mohamad Faizal Ibrahim; M. N. Abd Razak; Suraini Abd-Aziz; U. K. Shah; N. Alitheen; M. Md Salleh
The response surface method was applied in this study to improve cellulase production from oil palm empty fruit bunch (OPEFB) by Botryosphaeria rhodina. An experimental design based on a two-level factorial was employed to screen the significant environmental factors for cellulase production. The locally isolated fungus Botryosphaeria rhodina was cultivated on OPEFB under solid-state fermentation (SSF). From the analysis of variance (ANOVA), the initial moisture content, amount of substrate, and initial pH of nutrient supplied in the SSF system significantly influenced cellulase production. Then the optimization of the variables was done using the response surface method according to central composite design (CCD). Botryosphaeria rhodina exhibited its best performance with a high predicted value of FPase enzyme production (17.95 U/g) when the initial moisture content was at 24.32%, initial pH of nutrient was 5.96, and 3.98 g of substrate was present. The statistical optimization from actual experiment resulted in a significant increment of FPase production from 3.26 to 17.91 U/g (5.49-fold). High cellulase production at low moisture content is a very rare condition for fungi cultured in solid-state fermentation.
Molecules | 2018
Nur Razali; Mohamad Faizal Ibrahim; Ezyana Kamal Bahrin; Suraini Abd-Aziz
This study was conducted in order to optimise simultaneous saccharification and fermentation (SSF) for biobutanol production from a pretreated oil palm empty fruit bunch (OPEFB) by Clostridium acetobutylicum ATCC 824. Temperature, initial pH, cellulase loading and substrate concentration were screened using one factor at a time (OFAT) and further statistically optimised by central composite design (CCD) using the response surface methodology (RSM) approach. Approximately 2.47 g/L of biobutanol concentration and 0.10 g/g of biobutanol yield were obtained after being screened through OFAT with 29.55% increment (1.42 fold). The optimised conditions for SSF after CCD were: temperature of 35 °C, initial pH of 5.5, cellulase loading of 15 FPU/g-substrate and substrate concentration of 5% (w/v). This optimisation study resulted in 55.95% increment (2.14 fold) of biobutanol concentration equivalent to 3.97 g/L and biobutanol yield of 0.16 g/g. The model and optimisation design obtained from this study are important for further improvement of biobutanol production, especially in consolidated bioprocessing technology.
Molecules | 2018
Nur Rizal; Mohamad Faizal Ibrahim; Mohd Rafein Zakaria; Ezyana Kamal Bahrin; Suraini Abd-Aziz; Mohd Fahrul Hassan
The combination of superheated steam (SHS) with ligninolytic enzyme laccase pretreatment together with size reduction was conducted in order to enhance the enzymatic hydrolysis of oil palm biomass into glucose. The oil palm empty fruit bunch (OPEFB) and oil palm mesocarp fiber (OPMF) were pretreated with SHS and ground using a hammer mill to sizes of 2, 1, 0.5 and 0.25 mm before pretreatment using laccase to remove lignin. This study showed that reduction of size from raw to 0.25 mm plays important role in lignin degradation by laccase that removed 38.7% and 39.6% of the lignin from OPEFB and OPMF, respectively. The subsequent saccharification process of these pretreated OPEFB and OPMF generates glucose yields of 71.5% and 63.0%, which represent a 4.6 and 4.8-fold increase, respectively, as compared to untreated samples. This study showed that the combination of SHS with laccase pretreatment together with size reduction could enhance the glucose yield.
Bioresources | 2012
Ezyana Kamal Bahrin; Azhari Samsu Baharuddin; Muhammad Faizal Ibrahim; Muhammad Nafis Abdul Razak; Alawi Sulaiman; Suraini Abd Aziz; Mohd Ali Hassan; Yoshihito Shirai; Haruo Nishida
Bioresources | 2013
Nik Anis Nik Mahmud; Azhari Samsu Baharuddin; Ezyana Kamal Bahrin; Alawi Sulaiman; Mohd Nazli Naim; Rabitah Zakaria; Mohd Ali Hassan; Haruo Nishida; Yoshihito Shirai
Renewable & Sustainable Energy Reviews | 2017
Mohamad Faizal Ibrahim; Norhayati Ramli; Ezyana Kamal Bahrin; Suraini Abd-Aziz
Bioresources | 2012
Nor Amira Farhana Harun; Azhari Samsu Baharuddin; Mohd Huzairi Mohd Zainudin; Ezyana Kamal Bahrin; M. Nazli Naim; Rabitah Zakaria
Australian journal of basic and applied sciences | 2011
Ezyana Kamal Bahrin; Seng PiongYeau; Suraini Abd-Aziz
International Biodeterioration & Biodegradation | 2015
Zuraidah Zanirun; Ezyana Kamal Bahrin; Phang Lai-Yee; Mohd Ali Hassan; Suraini Abd-Aziz