sunflower oil and lipase production

sunflower oil and lipase production

sunflower oil and lipase production

Silk-Cocoon Matrix Immobilized Lipase CatalyzedBiodiesel from sunflower oil using lipase chemically immobilized on silk-cocoon matrix in a packed-bed bioreactor was investigated. The immobilization was demonstrated by field-emission scanning electron

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sunflower oil transesterification with methanol using immobilized lipase enzymes | request pdf

Sunflower oil transesterification with methanol using immobilized lipase enzymes | Request PDF

transesterification of sunflower oil with methanol, using immobilized lipase enzymes as catalysts, was studied.Optimization of lipase production from organic solid waste by anaerobic digestion and its application in biodiesel production Article Oct 2017

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biodegradable sunflower oil waste as a raw material for microbial production of lipases

Biodegradable sunflower oil waste as a raw material for microbial production of lipases

Biodegradable sunflower oil waste as a raw material for microbial production of lipases Irina Mladenoska * Department of Food Technology and Biotechnology Faculty of Technology and Metallurgy, University of Ss. Cyril and Methodius, Skopje, R. Macedonia e

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utilization of oleochemical industry residues as substrates for lipase production for enzymatic sunflower oil hydrolysis - sciencedirect

Utilization of oleochemical industry residues as substrates for lipase production for enzymatic sunflower oil hydrolysis - ScienceDirect

The present work deals with the production of lipase by Candida rugosa ATCC 14830 and focuses on the effect of different substrates on lipase production by submerged fermentation. Two industrial wastes from oil refining and the oleochemical industry were

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continuous lipase-catalyzed production of esters from crude high-oleic sunflower oil - sciencedirect

Continuous lipase-catalyzed production of esters from crude high-oleic sunflower oil - ScienceDirect

The objective of this work was to develop an economically relevant enzymatic process of butyl ester production using crude high-oleic sunflower oil. Novozym 435, a non-regiospecific biocatalyst, provided the best compromise between activity and butyl-ester yield.

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production of fame and faee via alcoholysis of sunflower oil by eversa lipases immobilized on hydrophobic supports

Production of FAME and FAEE via Alcoholysis of Sunflower Oil by Eversa Lipases Immobilized on Hydrophobic Supports

Production of FAME and FAEE via Alcoholysis of Sunflower Oil by Eversa Lipases Immobilized on Hydrophobic Supports Daniela Remonatto1 & J. Vladimir de Oliveira1 & J. Manuel Guisan2 & Débora de Oliveira1 & Jorge Ninow1 & Gloria Fernandez-Lorente3

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silk-cocoon matrix immobilized lipase catalyzed transesterification of sunflower oil for production of biodiesel

Silk-Cocoon Matrix Immobilized Lipase Catalyzed Transesterification of Sunflower Oil for Production of Biodiesel

Biodiesel from sunflower oil using lipase chemically immobilized on silk-cocoon matrix in a packed-bed bioreactor was investigated.Journal of Catalysts is a peer-reviewed, Open Access journal that publishes original research articles as well as review articles

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production of biodiesel from sunflower oil and ethanol by base catalyzed transesterification

Production of biodiesel from sunflower oil and ethanol by base catalyzed transesterification

Production of biodiesel from sunflower oil and ethanol by base catalysed transesterification Production of biodiesel from sunflower oil and ethanol by base catalyzed transesterification MSc Thesis Alejandro Sales Supervisor Rolando Zanzi Vigouroux Department of

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production of lipase from micrococcus flavus and influence of bioparameters

Production of lipase from Micrococcus flavus and influence of bioparameters

Production of lipase from Micrococcus flavus and influence of bioparameters www.iosrjournals.org 69 | Page 10. 12. 14. 16. 24. FIGURE- 1- LIPASE ACTIVITY (IU/L) ON SUNFLOWER OIL pH-4 ,270CpH-4 , 370C pH-5, 270C pH

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characterization of different oil soapstocks and their application in the lipase production by aspergillus n iger under solid state fermentation

Characterization of Different Oil Soapstocks and Their Application in the Lipase Production by Aspergillus n iger under Solid State Fermentation

Characterization of Different Oil Soapstocks and Their Application in the Lipase Production by Aspergillus niger under Solid State Fermentation Regiane Ribeiro dos Santos 1, Livia Nolasco Macedo Muruci 1, Lucielen Oliveira Santos 1, Rosemar Antoniassi 2, Janine

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characterization of different oil soapstocks and their application in the lipase production by aspergillus n iger under solid state fermentation

Characterization of Different Oil Soapstocks and Their Application in the Lipase Production by Aspergillus n iger under Solid State Fermentation

Characterization of Different Oil Soapstocks and Their Application in the Lipase Production by Aspergillus niger under Solid State Fermentation Regiane Ribeiro dos Santos 1, Livia Nolasco Macedo Muruci 1, Lucielen Oliveira Santos 1, Rosemar Antoniassi 2, Janine

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lipase from marine strain using cooked sunflower oil waste: production optimization and application for hydrolysis and thermodynamic studies

Lipase from marine strain using cooked sunflower oil waste: production optimization and application for hydrolysis and thermodynamic studies

The marine strain Pseudomonas otitidis was isolated to hydrolyze the cooked sunflower oil (CSO) followed by the production of lipase. The optimum culture conditions for the maximum lipase production were determined using Plackett–Burman design and response surface methodology. The maximum lipase

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sunflower oil for biodiesel production, sunflower oil for biodiesel production

Sunflower Oil For Biodiesel Production, Sunflower Oil For Biodiesel Production

About 32% of these are sunflower oil. A wide variety of sunflower oil for biodiesel production options are available to you, such as plastic bottle, bulk, and drum.

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production and use of lipases in bioenergy: a review from the feedstocks to biodiesel production

Production and Use of Lipases in Bioenergy: A Review from the Feedstocks to Biodiesel Production

In studies of lipase production by the fungus Penicillium restrictum using SSF and SmF, different significant physiologies were observed between the two systems when simple (oleic acid and glucose) and complex (olive oil and starch) sources of carbon were

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lipase fermentation: progress and prospects

Lipase fermentation: Progress and prospects

Keywords: lipase, enzyme production, solid-state fermentation, whole cell immobilization, fats and oilssunflower oil showed improved conversion23. Another major industrial application of lipases is in resolving racemic mixtures24-26. Optimization of the

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rhamnolipid and lipase production by pseudomonas aeruginosa san-ai: the process comparison analysis by statistical approach

Rhamnolipid and lipase production by Pseudomonas aeruginosa san-ai: The process comparison analysis by statistical approach

Rhamnolipid and lipase production by Pseudomonas aeruginosa san-ai: The process comparison analysis by statistical approachfermentation, concentration of sunflower oil and concentration of Tween® 80. The most important finding was that regression

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lipase - catalyzed glycerolysis of sunflower oil to produce partial glycerides

Lipase - Catalyzed glycerolysis of sunflower oil to produce partial glycerides

Lipase - Catalyzed glycerolysis of sunflower oil to produce partial glycerides. Partial glycerides were prepared by glycerolysis of sunflower oil in presence of lipase enzyme as catalyst. Six lipases of different origins were used and compared for their catalytic

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effect of vegetable oils in the secretion of lipase from candida rugosa (dsm 2031) - lakshmi - 1999 - letters in applied microbiology - wiley

Effect of vegetable oils in the secretion of lipase from Candida rugosa (DSM 2031) - Lakshmi - 1999 - Letters in Applied Microbiology - Wiley

(1992) proposed a mathematical model for the production of lipase from C. rugosa for oil hydrolysis,The lipolytic activity at the end of 48 h was significantly higher in the case of sesame oil followed by groundnut, sunflower, palm, coconut and castor oil as The

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vol. 3, issue 6, june 2014 evaluation of lipase production from

Vol. 3, Issue 6, June 2014 Evaluation of Lipase Production from

Evaluation of Lipase Production from A. Japonicus Using Various Vegetable Oil Substrates and Physico-Chemical Factors Affecting Lipase

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effect of carbon and nitrogen sources on lipase production by isolated lipase-producing soil yeast

Effect of Carbon and Nitrogen Sources on Lipase Production by Isolated Lipase-Producing Soil Yeast

supplemented with palm oil in order to study the effect of carbohydrate carbon sources on lipase production. Palm oil, soybean oil, corn oil, sunflower oil and rice bran oil were added to the basal medium supplemented with glucose in order to study the

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effect of vegetable oils in the secretion of lipase from candida rugosa (dsm 2031) - lakshmi - 1999 - letters in applied microbiology - wiley

Effect of vegetable oils in the secretion of lipase from Candida rugosa (DSM 2031) - Lakshmi - 1999 - Letters in Applied Microbiology - Wiley

(1992) proposed a mathematical model for the production of lipase from C. rugosa for oil hydrolysis,The lipolytic activity at the end of 48 h was significantly higher in the case of sesame oil followed by groundnut, sunflower, palm, coconut and castor oil as The

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rhamnolipid and lipase production by pseudomonas aeruginosa san-ai: the process comparison analysis by statistical approach

Rhamnolipid and lipase production by Pseudomonas aeruginosa san-ai: The process comparison analysis by statistical approach

Rhamnolipid and lipase production by Pseudomonas aeruginosa san-ai: The process comparison analysis by statistical approachfermentation, concentration of sunflower oil and concentration of Tween® 80. The most important finding was that regression

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study on the production of biodiesel from sunflower oil

Study on the Production of Biodiesel from Sunflower Oil

Study on the Production of Biodiesel from Sunflower Oil Aye Hnin Khine1, Aye Aye Tun2 1Department of Chemistry, Yangon University, Myanmar; ahkhine2012@gmail

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lipase-producing bacterium and its enzyme characterization

Lipase-Producing Bacterium and its Enzyme Characterization

There were various kinds of oils used in this experiment, such as olive oil, soybean oil, used cooking (palm) oil, and palm oil. These oils might induce lipase production. The bacterial isolates were inoculated into nutrient broth containing each kind of oil.

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evaluation of lipase production from a. japonicus using various vegetable oil substrates and physico-chemical factors affecting lipase activity by

Evaluation of Lipase Production from A. Japonicus Using Various Vegetable Oil Substrates and Physico-Chemical Factors Affecting Lipase Activity by

In all the oils, pH 6 and a temperature of 300C were found to be ideal conditions for the production of lipase. For sunflower oil alone, highest enzyme activity was obtained at pH 6 and a temperature of 500 C. With these preliminary results, further experiments

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transesterification of waste cooking sunflower oil by porcine pancreas lipase using response surface methodology for biodiesel production

Transesterification of Waste Cooking Sunflower Oil by Porcine Pancreas Lipase Using Response Surface Methodology for Biodiesel Production

Transesterification of Waste Cooking Sunflower Oil by Porcine Pancreas Lipase Using Response Surface Methodology for Biodiesel Production Soraya Ebrahimi1, Ghasem D

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transesterification of waste cooking sunflower oil by porcine pancreas lipase using response surface methodology for biodiesel production

Transesterification of Waste Cooking Sunflower Oil by Porcine Pancreas Lipase Using Response Surface Methodology for Biodiesel Production

Transesterification of Waste Cooking Sunflower Oil by Porcine Pancreas Lipase Using Response Surface Methodology for Biodiesel Production Background and Objective: Biodiesel production from recycled vegetable oils is considered as an

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biodiesel production from sunflower oil - scientific.net

Biodiesel Production from Sunflower Oil - Scientific.Net

Southern Africa is composed of some of the poorest countries in the world. The energy demand in these countries compels them to spend millions of dollars in the purchases of mineral oil and gas to meet their demands while these countries have the ability to

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