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[PDF] Top 20 Production of Cellulase from Oil Palm Biomass as Substrate by Solid State Bioconversion

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Production of Cellulase from Oil Palm Biomass as Substrate by Solid State Bioconversion

Production of Cellulase from Oil Palm Biomass as Substrate by Solid State Bioconversion

... [r] ... See full document

4

SELECTION OF THERMOPHILIC AND THERMOTOLERANT FUNGI FOR THE PRODUCTION OF CELLULASES AND XYLANASES UNDER SOLID-STATE FERMENTATION

SELECTION OF THERMOPHILIC AND THERMOTOLERANT FUNGI FOR THE PRODUCTION OF CELLULASES AND XYLANASES UNDER SOLID-STATE FERMENTATION

... isolated from soil, decaying organic matter and sugarcane piles based on their ability to grow at 45°C on medium containing corn straw and cardboard as carbon ...majority of the isolated strains produced ... See full document

10

Utilization of palm oil mill effluent as a novel and promising substrate for biosurfactant production by Nevskia ramosa NA3

Utilization of palm oil mill effluent as a novel and promising substrate for biosurfactant production by Nevskia ramosa NA3

... obtained from the samples taken from various palm oil contaminated sources in the south of Thailand, including from Krabi Province (NA1, NA2, NA3, KB4, KB5), Satun Province (ST1, ... See full document

10

Partial Purification and Properties of Cellulase-Free Alkaline Xylanase Produced by Rhizopus stolonifer in Solid- State Fermentation

Partial Purification and Properties of Cellulase-Free Alkaline Xylanase Produced by Rhizopus stolonifer in Solid- State Fermentation

... Lipase of Rhizopus sp was used by Kolossváry (1996) for the optimization of the hydrolysis activity of the ...used by Ikasari and Mitchell (1996) for the production of ... See full document

7

Fermentation of Oil Palm Frond Juice for Solvent production Using Clostridium acetobutylicum (ATCC4259)

Fermentation of Oil Palm Frond Juice for Solvent production Using Clostridium acetobutylicum (ATCC4259)

... rate of fossil fuel depletion over the decade, coupled with the environmental deterioration resulting from consumptions of the products as transportation fuels, the recognition of the fact ... See full document

3

Effect of Delaying Sporulation by Addition of Ammonium Sulphate on the Fermentation of Palm Kernal Cake Based Substrate by <i>Aspergillus niger</i>

Effect of Delaying Sporulation by Addition of Ammonium Sulphate on the Fermentation of Palm Kernal Cake Based Substrate by <i>Aspergillus niger</i>

... group of fungi and the ultimate limiting factor in fungal biomass ...the biomass in terms of mycelial production and the same time increase production of ...levels ... See full document

4

Use of Plackett-Burman design for rapid screening of nitrogen and carbon sources for the production of lipase in solid state fermentation by Yarrowia lipolytica from mustard oil cake (Brassica napus)

Use of Plackett-Burman design for rapid screening of nitrogen and carbon sources for the production of lipase in solid state fermentation by Yarrowia lipolytica from mustard oil cake (Brassica napus)

... the substrate must possess enough moisture to support the growth and metabolism of ...application of this culture in upgrading the food and industrial wastes and in the production of ... See full document

7

REVIEW Bioconversion of Biomass: A Case Study of Ligno-cellulosics Bioconversions in Solid State Fermentation

REVIEW Bioconversion of Biomass: A Case Study of Ligno-cellulosics Bioconversions in Solid State Fermentation

... co-culturing of two fungal strains showed improved hydrolytic and β-glucosidase activities as compared to the occasions when they were used ...enzyme production (Gupte & Madamwar ...higher ... See full document

12

MATERIALS AND METHODS Materials

MATERIALS AND METHODS Materials

... aim of this work was to produce lipases by solid-state fermentation (SSF) using, as substrate, agroindustrial residue supplemented with by-products from corn oil ... See full document

6

USE OF ELEPHANT GRASS (Pennisetum purpureum) AS SUBSTRATE FOR CELLULASE AND XYLANASE PRODUCTION IN SOLID-STATE CULTIVATION BY Penicillium echinulatum

USE OF ELEPHANT GRASS (Pennisetum purpureum) AS SUBSTRATE FOR CELLULASE AND XYLANASE PRODUCTION IN SOLID-STATE CULTIVATION BY Penicillium echinulatum

... produced from sugar and starch feedstocks; however, the interest in using biomass and bioenergy has been initiated due to the recognition that the global crude oil reserve is finite, and its ... See full document

10

Relation between Citric Acid Production by Solid-State Fermentation from Cassava Bagasse and Respiration of

Relation between Citric Acid Production by Solid-State Fermentation from Cassava Bagasse and Respiration of

... acid production and other characteristic parameters, such as substrate consumption, pH evolution and biomass, were followed during SSF of ...SSF of CB in horizontal drum ...g of ... See full document

8

PRODUCTION OF CELLULASE BY ASPERGILLUS NIGER UNDER SUBMERGED AND SOLID STATE FERMENTATION USING COIR WASTE AS A SUBSTRATE Soma Mrudula , Rangasamy Murugammal

PRODUCTION OF CELLULASE BY ASPERGILLUS NIGER UNDER SUBMERGED AND SOLID STATE FERMENTATION USING COIR WASTE AS A SUBSTRATE Soma Mrudula , Rangasamy Murugammal

... obtained from submerged fermentation (SmF) because of the ease of handling and greater control of environmental factors such as temperature and ...However, solid state ... See full document

9

Bioremediation of a complex industrial effluent by biosorbents derived from freshwater macroalgae.

Bioremediation of a complex industrial effluent by biosorbents derived from freshwater macroalgae.

... sourced from Tarong Ash Dam and cultivated in f/2 ...resulting biomass contained elements from f/2 media that are required for growth and some of these elements leached when the dried ... See full document

9

PRODUCTION AND OPTIMIZATION OF GROWTH CONDITIONS FOR INVERTASE ENZYME BY ASPERGILLUS SP., IN SOLID STATE FERMENTATION (SSF) USING PAPAYA PEEL AS SUBSTRATE

PRODUCTION AND OPTIMIZATION OF GROWTH CONDITIONS FOR INVERTASE ENZYME BY ASPERGILLUS SP., IN SOLID STATE FERMENTATION (SSF) USING PAPAYA PEEL AS SUBSTRATE

... data from this work will be useful for industrial production of invertase enzyme in SSF using fruit peel waste as substrate by Aspergillus ...preparation of jams and candies, ... See full document

4

Key words: Exo-polygalacturonase, Bacillus subtilis CM5, response surface methodology, solid state

Key words: Exo-polygalacturonase, Bacillus subtilis CM5, response surface methodology, solid state

... mixed by gentle tapping. After 4 days of incubation, the bottles were taken out at interval of one day ...ml of distilled water (1: ... See full document

13

Braz. J. Chem. Eng.  vol.33 número1

Braz. J. Chem. Eng. vol.33 número1

... for cellulase production by ...tiveness of this system, a similar set of cultivations was conducted under static aeration ...effect of initial moisture content on ... See full document

11

Optimization of Thermostable α- Amylase Production by Streptomyces erumpens MTCC 7317 in Solid-state

Optimization of Thermostable α- Amylase Production by Streptomyces erumpens MTCC 7317 in Solid-state

... because of the denaturation or decomposition of α -amylase due to interaction with other components in the culture medium (Gangadharan et ...loss of moisture with prolonged incubation at 50 0 C ... See full document

9

Low carbonnitrogen ratio increases laccase production from basidiomycetes in solid substrate cultivation

Low carbonnitrogen ratio increases laccase production from basidiomycetes in solid substrate cultivation

... values of the equations obtained for laccase production (Figures 4, 5 and 6) of the three fungi shown that ...synthesis by L. edodes is affected by nitrogen ...terms of laccase ... See full document

6

Production of biofuels from microalgal biomass

Production of biofuels from microalgal biomass

... produced from this microalgae achieved a good quality, only failing on the density, viscosity and phosphorus specifications (EN 14214 and ASTM ...digestion of the defatted biomass proved to be more ... See full document

84

Biosurfactants production by yeasts using soybean oil and glycerol as low cost substrate

Biosurfactants production by yeasts using soybean oil and glycerol as low cost substrate

... obtained from the assessed isolates presented high surfactant activity, reducing surface tension in water to values close to 30 ...presence of the obtained bioproducts. Initial surface tension of ... See full document

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