
Development of enzymatic pretreatment of palm oil mill
Development of enzymatic pretreatment of palm oil mill effluent for monomers towards biogas production Islam, MS Tajul and Alam, Md. Zahangir and Mamun, Abdullah Al and Elgharbawy, Amal A. and Riyadi, Fatimah Azizah (2017) Development of enzymatic pretreatment of palm oil mill effluent for monomers towards biogas production.
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Development of Acid-Base-Enzyme Pretreatment and Hydrolysis
Request PDF | Development of Acid-Base-Enzyme Pretreatment and Hydrolysis of Palm Oil Mill Effluent for Bioethanol Production | This chapter contains sections titled: Introduction Biomass Energy
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Development of enzymatic pretreatment of palm oil mill
Development of enzymatic pretreatment of palm oil mill effluent for monomers towards biogas production Tajul Islam, M. S. and Alam, Md. Zahangir and Al-Mamun, Abdullah and Elgharbawy, Amal A. and Riyadi , Fatimah A (2016) Development of enzymatic pretreatment of palm oil mill effluent for monomers towards biogas production.
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Ball Milling Pretreatment of Oil Palm Biomass for Enhancing
Oil palm biomass, namely empty fruit bunch and frond fiber, were pretreated using a planetary ball mill. Particle sizes and crystallinity index values of the oil palm biomass were significantly reduced with extended ball mill processing time. The treatment efficiency was evaluated by the generation of glucose, xylose, and total sugar conversion yields from the pretreatment process compared to
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Palm oil mill effluent as the pretreatment solvent of oil
During palm oil milling process, the yield of crude palm oil is about 20% of fresh fruit bunch by wet weight, while empty fruit bunch fiber is constituted up to 23% (Pradeepkumar et al., 2008). Besides, approximately 2.5–3.8 tons of palm oil mill effluent (POME) will also be discharged for each ton of crude palm oil production (Wu et al
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Microwave Assisted Alkaline Pretreatment and Microwave
Microwave Assisted Alkaline Pretreatment and Microwave Assisted Enzymatic Hydrolysis of Palm Oil Mill Effluent (POME) for Optimum Fermentable Sugar Yield SAIFUDDINNOMANBHAY* and REFALHUSSAIN Centre of Renewable Energy, University Tenaga Nasional, Jalan IKRAM-UNITEN-43000, Kajang, Selangor, Malaysia [email protected]
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Development of pretreatment of empty fruit bunches for
To achieve an accomplished optimized condition for enzymatic saccharification of palm oil mill empty fruit bunches (EFB) for higher yield of sugar hydrolysis, a comprehensive pretreatment of EFB was carried out using the laboratory produced cellulase enzyme through bioconversion of palm oil mill
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Statistical analysis of xylanase production from solid state
The result of xylanase optimization from this study is potential to be applied in palm oil mill effluent (POME) pre-treatment. The parameters tested are chemical oxygen demand (COD) and total solid (TS) with 10% dilution of xylanase enzyme to POME and were digested for 6 days.
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(PDF) Enzymatic Pre-treatment of Palm Oil Mill Effluent (POME
Enzymatic Pre-treatment of Palm Oil Mill Effluent (POME) For Enhanced Anaerobic Digestion Conference Paper (PDF Available) · January 2015 with 429 Reads How we measure 'reads'
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Optimization of enzymatic pretreatment and biogas production
Liew, Yuh Xiu (2019) Optimization of enzymatic pretreatment and biogas production for palm oil mill effluent (POME). PhD thesis, University of Nottingham.
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Effect of Palm Oil Mill Sterilization Process on the
In the processing of palm oil, the main by-product and wastes produced are Empty Fruit Bunches (EFB), Palm Oil Mill Effluent (POME), palm fiber and palm kernel shell (Yusoff, 2006). On average, for every tonne of Fresh Fruit Bunches (FFB) processed, of 230-250 kg of Empty Fruit Bunch (EFB), 130-150 kg of fiber, 60-65 kg of shell and 55-60 kg of
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Microwave Assisted Alkaline Pretreatment and Microwave
Microwave Assisted Alkaline Pretreatment and Microwave Assisted Enzymatic Hydrolysis of Palm Oil Mill Effluent (POME) for Optimum Fermentable Sugar Yield SAIFUDDINNOMANBHAY* and REFALHUSSAIN Centre of Renewable Energy, University Tenaga Nasional, Jalan IKRAM-UNITEN-43000, Kajang, Selangor, Malaysia [email protected]
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Enzymatic Saccharification of Pretreated Solid Palm Oil Mill
As the largest palm oil producer in the world, Malaysian palm oil industries have generated high export revenue because of the favorable price situation. Unfortunately, the production of palm oil from oil palm, Elaeis guineensis, also results to concomitant production of wastes such as palm oil mill effluent (POME) and oil palm fruit fiber
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Development of pretreatment of empty fruit bunches for
To achieve an accomplished optimized condition for enzymatic saccharification of palm oil mill empty fruit bunches (EFB) for higher yield of sugar hydrolysis, a comprehensive pretreatment of EFB was carried out using the laboratory produced cellulase enzyme through bioconversion of palm oil mill
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The Enzymatic Hydrolysis of Oil Palm Empty Fruit Bunches to
pretreatment, temperature, pH, substrate concentration, and potential inhibitors in the EFB hydrolysis process, as well as the kinetics study of the process. 2. Material and methods 2.1 Raw materials EFB was collected from Incasi Raya palm oil mill, West Sumatera, Indonesia. EFB was washed with tap water and oven dried at 105 ℃ overnight.
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Separation of Cellulase Enzyme from Fermentation Broth of
the separation process of cellulase enzyme, a bioconversion product of palm oil mill effluent (POME) by . Trichoderma reesei -30. RUT C Microfiltration (MF) was used as a pretreatment process for the ultrafiltration of the cellulase enzyme broth to discard the suspended solids and unwanted macromolecules. A 0.45 µm membrane of
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Enzymatic Saccharification of Pretreated Solid Palm Oil Mill
As the largest palm oil producer in the world, Malaysian palm oil industries have generated high export revenue because of the favorable price situation. Unfortunately, the production of palm oil from oil palm, Elaeis guineensis, also results to concomitant production of wastes such as palm oil mill effluent (POME) and oil palm fruit fiber
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Separation of Cellulase Enzyme from Fermentation Broth of
the separation process of cellulase enzyme, a bioconversion product of palm oil mill effluent (POME) by . Trichoderma reesei -30. RUT C Microfiltration (MF) was used as a pretreatment process for the ultrafiltration of the cellulase enzyme broth to discard the suspended solids and unwanted macromolecules. A 0.45 µm membrane of
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TREATABILITY OF PALM OIL MILL EFFLUENT (POME) USING BLACK
2.1 Chemical composition on dry basis of palm fibre and palm kernel shell 9 2.2 Characteristics of untreated palm oil mill effluent (POME) 10 2.3 Parameter limits for watercourse discharge for palm oil mill effluent 10 2.4 Reactions for the different (bio) process strategies 18 2.5 Biogas composition for various substrates 25
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Fat interesterification
Enzymatic Interesterification occurs when an enzyme is introduced into two oils; in most cases one oil is liquid and the other is a solid oil . Hard fats are defined as fully hydrogenated fats. This process may occur in oils that already contain solids like palm oil or lauric fats that are not “hard fats."
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Microwave-Assisted Alkaline Pretreatment and Microwave
of pretreatment and enzymatic hydrolysis by combina-tion of microwave-alkali and Microwave Irradiation- Enzyme Coupling Catalysis (MIECC) on EFB to enhance fermentable sugar production. 2. Materials and Methodology . 2.1. Materials and Reagents . Oil palm EFB were collected from Seri Ulu Langat Palm Oil Mill in Dengkil, Selangor, Malaysia. EFB
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Lipase-catalyzed ethanolysis for biodiesel production of
Palm oil mill effluent (POME), a liquid waste from the palm oil industry, presents an alternative source for biodiesel production without interfering with food supply. This study attempted to produce biodiesel from untreated POME with aqueous ethanol using Thermomyces lanuginosus lipase as a biocatalyst. The effects of enzyme concentration
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Microwave-Assisted Alkaline Pretreatment and Microwave
The palm trunks and fronds, empty fruit bunches (EFB), pressed fruit fibers (mesocarp fibers), shells and palm oil mill effluent (POME), which is produced at the palm oil mill, have economic values. In the past, these products of oil palm were not effectively utilised and in many instances had caused severe pollution problems.
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Statistical modeling and optimization of enzymatic
EFB, obtained as a residue in the palm oil industry during the process of crude palm oil production, is abundant and readily available to source for biofuel production processes. Pretreatment of EFB with laccase enzyme was advocated in this study based on the role of laccase enzymes in phenolic compound oxidation (Archibald et al . 1997).
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