Recent Patents on Biotechnology, ISSN 1872-2083, 09/2019, Volume 13, Issue 3, p. 169
Journal Article
Energy Conversion and Management, ISSN 0196-8904, 05/2018, Volume 164, p. 533
Single-stage cultivation strategy is more favorable than two-stage cultivation owing to the lesser technical obstacles and being more cost-effective in the...
Polyunsaturated fatty acids | Lipids | Glucose | Biomass | Response surface methodology | Palmitic acid | Accumulation | Optimization | Oleic acid | Carbon sources | Productivity | Chlorella | Maximization | Cultivation | Incubation | Algae | Biofuels | Carbon | Biodiesel | Fatty acids | Biodiesel fuels | Strategy | Yield | Diesel | Cellulose acetate | Acetic acid
Polyunsaturated fatty acids | Lipids | Glucose | Biomass | Response surface methodology | Palmitic acid | Accumulation | Optimization | Oleic acid | Carbon sources | Productivity | Chlorella | Maximization | Cultivation | Incubation | Algae | Biofuels | Carbon | Biodiesel | Fatty acids | Biodiesel fuels | Strategy | Yield | Diesel | Cellulose acetate | Acetic acid
Journal Article
Energy Conversion and Management, ISSN 0196-8904, 02/2018, Volume 157, p. 364
The field of second generation production process has immense potential to utilize and convert lignocellulosic biomass to biofuels and biochemicals. Among...
Surface distortion | Cellulose | X-ray diffraction | Raw materials | Biochemistry | Biomass | Response surface methodology | Diffraction patterns | Pore size | Lignocellulose | Sugar | Laccase | Enzymes | Integration | Ethanol | Feasibility studies | Saccharification | Fermentation | Biofuels | Biological activity | Studies | Crystalline cellulose | Biodiesel fuels | Porosity | Surface area
Surface distortion | Cellulose | X-ray diffraction | Raw materials | Biochemistry | Biomass | Response surface methodology | Diffraction patterns | Pore size | Lignocellulose | Sugar | Laccase | Enzymes | Integration | Ethanol | Feasibility studies | Saccharification | Fermentation | Biofuels | Biological activity | Studies | Crystalline cellulose | Biodiesel fuels | Porosity | Surface area
Journal Article
Process Biochemistry, ISSN 1359-5113, 10/2019, Volume 85, pp. 35 - 42
Bacterial cellulose is gaining popularity due to its purity and promising applications in several industries like biomedical, food, packaging industries etc....
Cellulose yield | Characterization | Bacterial cellulose | Microbial synthesis | Leifsonia sp | NITROGEN-SOURCES | BIOCHEMISTRY & MOLECULAR BIOLOGY | ACETOBACTER SP V6 | DIFFERENT CARBON-SOURCES | SYNTHASE | ENGINEERING, CHEMICAL | GLUCONACETOBACTER-XYLINUS | MICROBIAL CELLULOSE | BIOTECHNOLOGY & APPLIED MICROBIOLOGY | SP-NOV | Chemical properties | Sugars | Cellulose | Calcium chloride | Infrared spectroscopy | Soybeans | Additives | Fourier transforms | Calcium | Emission analysis | X-ray diffraction | Food packaging | Whey | pH effects | Optimization | Food industry | pH | Bacteria | Carbon sources | Growth conditions | Scanning electron microscopy | Nitrogen sources | Incubation | Maltose | Field emission microscopy | Process parameters | Packaging | Inoculum
Cellulose yield | Characterization | Bacterial cellulose | Microbial synthesis | Leifsonia sp | NITROGEN-SOURCES | BIOCHEMISTRY & MOLECULAR BIOLOGY | ACETOBACTER SP V6 | DIFFERENT CARBON-SOURCES | SYNTHASE | ENGINEERING, CHEMICAL | GLUCONACETOBACTER-XYLINUS | MICROBIAL CELLULOSE | BIOTECHNOLOGY & APPLIED MICROBIOLOGY | SP-NOV | Chemical properties | Sugars | Cellulose | Calcium chloride | Infrared spectroscopy | Soybeans | Additives | Fourier transforms | Calcium | Emission analysis | X-ray diffraction | Food packaging | Whey | pH effects | Optimization | Food industry | pH | Bacteria | Carbon sources | Growth conditions | Scanning electron microscopy | Nitrogen sources | Incubation | Maltose | Field emission microscopy | Process parameters | Packaging | Inoculum
Journal Article
RSC Advances, ISSN 2046-2069, 2015, Volume 5, Issue 92, pp. 75281 - 75291
Burgeoning population growth and an increased demand for transportation and industrialization has led to the excessive use of fossil fuels, which in turn leads...
Journal Article
Biofuels, ISSN 1759-7269, 01/2019, Volume 10, Issue 1, pp. 61 - 72
Depleting fossil fuel resources and greenhouse gas emissions have become global concerns. To address this issue, a new strategy was adopted in the present...
Lignocellulosic mixture | separate hydrolysis and fermentation | simultaneous saccharification and fermentation | bioethanol | Saccharomyces cerevisiae
Lignocellulosic mixture | separate hydrolysis and fermentation | simultaneous saccharification and fermentation | bioethanol | Saccharomyces cerevisiae
Journal Article
Indian Journal of Biotechnology, ISSN 0972-5849, 07/2018, Volume 17, Issue 3, p. 397
The wide range of functional properties of soy protein and its high nutritive value makes it base of a novel food platform. Various products are in the market...
Proteins | Intervention | Soybeans | Microorganisms | Soy products | Nutritive value | Soybean milk | Soya bean milk | Food production | Whey | Tofu | Liquid wastes
Proteins | Intervention | Soybeans | Microorganisms | Soy products | Nutritive value | Soybean milk | Soya bean milk | Food production | Whey | Tofu | Liquid wastes
Journal Article
Bioresource Technology, ISSN 0960-8524, 08/2016, Volume 214, pp. 386 - 395
A novel approach to overcome the acidification problem has been attempted in the present study by codigesting industrial potato waste (PW) with (PS, an aquatic...
Methane | Anaerobic codigestion | Pistia stratiotes | Potato wastes | Optimization | ENERGY & FUELS | ACTIVATED-SLUDGE | PERFORMANCE | METHANOGENIC ACTIVITY | CO-DIGESTION | PISTIA-STRATIOTES | MANURE | AGRICULTURAL ENGINEERING | BIOTECHNOLOGY & APPLIED MICROBIOLOGY | BIOMASS | METHANE PRODUCTION | RESIDUES | BIOGAS PRODUCTION | Anaerobiosis | Models, Theoretical | Reproducibility of Results | Plant Weeds - chemistry | Waste Products | Fatty Acids, Volatile - analysis | Biotechnology - methods | Regression Analysis | Algorithms | Analysis of Variance | Solanum tuberosum - chemistry | Biofuels - analysis | Aquatic Organisms - chemistry | Hydrogen-Ion Concentration | Neural Networks (Computer) | Models | Neural networks | Analysis | Methods | Potatoes | Mathematical optimization
Methane | Anaerobic codigestion | Pistia stratiotes | Potato wastes | Optimization | ENERGY & FUELS | ACTIVATED-SLUDGE | PERFORMANCE | METHANOGENIC ACTIVITY | CO-DIGESTION | PISTIA-STRATIOTES | MANURE | AGRICULTURAL ENGINEERING | BIOTECHNOLOGY & APPLIED MICROBIOLOGY | BIOMASS | METHANE PRODUCTION | RESIDUES | BIOGAS PRODUCTION | Anaerobiosis | Models, Theoretical | Reproducibility of Results | Plant Weeds - chemistry | Waste Products | Fatty Acids, Volatile - analysis | Biotechnology - methods | Regression Analysis | Algorithms | Analysis of Variance | Solanum tuberosum - chemistry | Biofuels - analysis | Aquatic Organisms - chemistry | Hydrogen-Ion Concentration | Neural Networks (Computer) | Models | Neural networks | Analysis | Methods | Potatoes | Mathematical optimization
Journal Article
Carbohydrate Polymers, ISSN 0144-8617, 10/2016, Volume 150, pp. 359 - 368
Starch being one of the most abundant polysaccharides in nature has been subjected to modification to enhance its applicability. Modification by esterification...
Microwave irradiation | Novel imidazolium surfactant | Lipase | Starch | Esterification | ORGANIC-SYNTHESIS | POLYMER SCIENCE | THERMOPLASTIC STARCH | CHEMISTRY, ORGANIC | ENZYMATIC ESTERIFICATION | CASSAVA STARCH | PHYSICOCHEMICAL PROPERTIES | THERMAL-PROPERTIES | CRYSTALLINE-STRUCTURE | CORN STARCH | CHEMISTRY, APPLIED | IONIC LIQUIDS | RHIZOPUS-ORYZAE LIPASE | Green Chemistry Technology | Starch - chemistry | Rhizopus - enzymology | Imidazoles - chemistry | Water - chemistry | Surface-Active Agents - chemistry | Hot Temperature | Kinetics | Lipase - metabolism | Microwaves | Oleic Acid - chemistry | Surface active agents
Microwave irradiation | Novel imidazolium surfactant | Lipase | Starch | Esterification | ORGANIC-SYNTHESIS | POLYMER SCIENCE | THERMOPLASTIC STARCH | CHEMISTRY, ORGANIC | ENZYMATIC ESTERIFICATION | CASSAVA STARCH | PHYSICOCHEMICAL PROPERTIES | THERMAL-PROPERTIES | CRYSTALLINE-STRUCTURE | CORN STARCH | CHEMISTRY, APPLIED | IONIC LIQUIDS | RHIZOPUS-ORYZAE LIPASE | Green Chemistry Technology | Starch - chemistry | Rhizopus - enzymology | Imidazoles - chemistry | Water - chemistry | Surface-Active Agents - chemistry | Hot Temperature | Kinetics | Lipase - metabolism | Microwaves | Oleic Acid - chemistry | Surface active agents
Journal Article
Enzyme Research, ISSN 2090-0406, 2013, Volume 2013, pp. 367410 - 6
The synthesis of methyl butyrate and octyl acetate through immobilized Rhizopus oryzae NRRL 3562 lipase mediated transesterification was studied under...
Fungi | Physiological aspects | Research | Chemical synthesis | Chemical research
Fungi | Physiological aspects | Research | Chemical synthesis | Chemical research
Journal Article
Energy Conversion and Management, ISSN 0196-8904, 09/2019, Volume 196, pp. 979 - 987
Substituting conventional fossil-based energy with eco-friendly and renewable option is inevitable owing to the harmful environmental emissions and steep...
Biodiesel | Kinetic modelling | Aspergillus awamori | Ricinus communis | MEDIATED LIGNIN DEGRADATION | ENERGY & FUELS | FATTY-ACIDS | ASPERGILLUS-AWAMORI | FILAMENTOUS FUNGI | FEEDSTOCK | MECHANICS | RICINUS-COMMUNIS | OLEAGINOUS YEASTS | THERMODYNAMICS | MICROBIAL LIPID PRODUCTION | OPTIMIZATION | WATER | Oxidases | Benzoic acid | Biomass energy | Fossil fuels | Raw materials | Energy minerals | Restaurants | Organic acids | Emissions (Pollution) | Analysis | Biodiesel fuels | Air pollution | Liquors | Production processes | Clean fuels | Waste treatment | Cinnamic acid | Liquor | Lipids | Response surface methodology | Lignocellulose | Sugar | Clean energy | Iodine | Laccase | Gallic acid | Industrial applications | Nitrogen | Biofuels | Phenolic compounds | Carbon | Emissions | Calorific value | Acids | Phenols | Energy demand | Diesel | Commercialization | Inoculum
Biodiesel | Kinetic modelling | Aspergillus awamori | Ricinus communis | MEDIATED LIGNIN DEGRADATION | ENERGY & FUELS | FATTY-ACIDS | ASPERGILLUS-AWAMORI | FILAMENTOUS FUNGI | FEEDSTOCK | MECHANICS | RICINUS-COMMUNIS | OLEAGINOUS YEASTS | THERMODYNAMICS | MICROBIAL LIPID PRODUCTION | OPTIMIZATION | WATER | Oxidases | Benzoic acid | Biomass energy | Fossil fuels | Raw materials | Energy minerals | Restaurants | Organic acids | Emissions (Pollution) | Analysis | Biodiesel fuels | Air pollution | Liquors | Production processes | Clean fuels | Waste treatment | Cinnamic acid | Liquor | Lipids | Response surface methodology | Lignocellulose | Sugar | Clean energy | Iodine | Laccase | Gallic acid | Industrial applications | Nitrogen | Biofuels | Phenolic compounds | Carbon | Emissions | Calorific value | Acids | Phenols | Energy demand | Diesel | Commercialization | Inoculum
Journal Article
Bioresource Technology, ISSN 0960-8524, 08/2017, Volume 238, pp. 502 - 509
Algae-fungus co-culture was investigated as an alternative biodiesel feedstock. An oleaginous filamentous fungus was co-cultured with MCC 27 and UTEX 2219,...
Chlorella minutissima | FAME | Co-culture | Biodiesel | Aspergillus awamori | ENERGY & FUELS | FEEDSTOCK | MICROALGAE | EXTRACTION | LIPID PRODUCTION | AGRICULTURAL ENGINEERING | BIOTECHNOLOGY & APPLIED MICROBIOLOGY | CARBON-SOURCES | LIPASE | OPTIMIZATION | BIOREACTOR | CULTIVATION | FIXATION | Aspergillus | Lipids | Chlorella | Biomass | Biofuels | Coculture Techniques | Glycerin | Glycerol | Fatty acids | Biodiesel fuels
Chlorella minutissima | FAME | Co-culture | Biodiesel | Aspergillus awamori | ENERGY & FUELS | FEEDSTOCK | MICROALGAE | EXTRACTION | LIPID PRODUCTION | AGRICULTURAL ENGINEERING | BIOTECHNOLOGY & APPLIED MICROBIOLOGY | CARBON-SOURCES | LIPASE | OPTIMIZATION | BIOREACTOR | CULTIVATION | FIXATION | Aspergillus | Lipids | Chlorella | Biomass | Biofuels | Coculture Techniques | Glycerin | Glycerol | Fatty acids | Biodiesel fuels
Journal Article
Energy Conversion and Management, ISSN 0196-8904, 05/2018, Volume 164, pp. 533 - 542
Single-stage cultivation strategy is more favorable than two-stage cultivation owing to the lesser technical obstacles and being more cost-effective in the...
Chlorella minutissima | Glucose | Acetate | Biodiesel | CCRD | RSM | LIGHT-INTENSITY | ENERGY & FUELS | RESPONSE-SURFACE METHODOLOGY | FATTY-ACIDS | ALGAE BIOFUEL | MICROALGAE | MECHANICS | NITROGEN STARVATION | THERMODYNAMICS | BIOMASS | GROWTH | ACCUMULATION | VULGARIS | Enzymes | Monounsaturated fatty acids | Biodiesel fuels | Esters | Saturated fatty acids | Acetates | Dextrose
Chlorella minutissima | Glucose | Acetate | Biodiesel | CCRD | RSM | LIGHT-INTENSITY | ENERGY & FUELS | RESPONSE-SURFACE METHODOLOGY | FATTY-ACIDS | ALGAE BIOFUEL | MICROALGAE | MECHANICS | NITROGEN STARVATION | THERMODYNAMICS | BIOMASS | GROWTH | ACCUMULATION | VULGARIS | Enzymes | Monounsaturated fatty acids | Biodiesel fuels | Esters | Saturated fatty acids | Acetates | Dextrose
Journal Article
Industrial Crops & Products, ISSN 0926-6690, 12/2016, Volume 92, pp. 174 - 185
Lignin degradation using laccase is a cleaner, biocatalytic, and substrate specific alternative to improve holocellulose recovery from lignocellulosic...
Delignification | Simplex centroid algorithm | Lignocellulosic biomass | Reducing sugar production | Laccase | SACCHARIFICATION | AGRONOMY | ENZYMATIC-HYDROLYSIS | IONIC LIQUID | LANTANA-CAMARA | SUGARCANE BAGASSE | FUNGAL PRETREATMENT | RICINUS-COMMUNIS | AGRICULTURAL ENGINEERING | BIOMASS | MIXTURE DESIGN | Oxidases | Lignin | Alcohol | Alcohol, Denatured | Production data
Delignification | Simplex centroid algorithm | Lignocellulosic biomass | Reducing sugar production | Laccase | SACCHARIFICATION | AGRONOMY | ENZYMATIC-HYDROLYSIS | IONIC LIQUID | LANTANA-CAMARA | SUGARCANE BAGASSE | FUNGAL PRETREATMENT | RICINUS-COMMUNIS | AGRICULTURAL ENGINEERING | BIOMASS | MIXTURE DESIGN | Oxidases | Lignin | Alcohol | Alcohol, Denatured | Production data
Journal Article
03/2019, ISBN 1119509939, 346
eBook
Biocatalysis and Agricultural Biotechnology, ISSN 1878-8181, 01/2015, Volume 4, Issue 1, pp. 83 - 90
α-Amylase from IFO-30103 was purified through acetone precipitation, Sephadex G-100 and DEAE-cellulose columns sequentially for biochemical characterization. A...
Characterization | Alcohol tolerant | Purification | α-Amylase | Aspergillus oryzae | Antioxidant
Characterization | Alcohol tolerant | Purification | α-Amylase | Aspergillus oryzae | Antioxidant
Journal Article
Bioresource Technology, ISSN 0960-8524, 07/2016, Volume 212, pp. 47 - 54
Enzymatic delignification is seen as a green step in biofuels production owing to its specificity towards lignin and its proper understanding requires a...
Delignification | Lantana camara | Bioethanol | Kinetic modelling | Laccase | AGRICULTURAL ENGINEERING | BIOTECHNOLOGY & APPLIED MICROBIOLOGY | ENERGY & FUELS | BIOMASS | ETHANOL-PRODUCTION | LIGNIN | Thermodynamics | Temperature | Lignin - chemistry | Laccase - chemistry | Conservation of Energy Resources | Kinetics | Lantana - chemistry | Biofuels | Hydrogen-Ion Concentration | Oxidases | Models | Analysis | Restaurants | Lignin | Biomass energy | Activation energy
Delignification | Lantana camara | Bioethanol | Kinetic modelling | Laccase | AGRICULTURAL ENGINEERING | BIOTECHNOLOGY & APPLIED MICROBIOLOGY | ENERGY & FUELS | BIOMASS | ETHANOL-PRODUCTION | LIGNIN | Thermodynamics | Temperature | Lignin - chemistry | Laccase - chemistry | Conservation of Energy Resources | Kinetics | Lantana - chemistry | Biofuels | Hydrogen-Ion Concentration | Oxidases | Models | Analysis | Restaurants | Lignin | Biomass energy | Activation energy
Journal Article
18.
Full Text
Enzymatic delignification and saccharification of Bambusa bambos for biobutanol production
Industrial Crops & Products, ISSN 0926-6690, 12/2018, Volume 125, pp. 386 - 394
Conversion of lignocellulosic biomass to energy is a transformational approach for addressing the escalating energy demand and environmental concerns along...
Clostridium | C/N ratio | Biomass | Methyl viologen | Biobutanol | CLOSTRIDIUM-BEIJERINCKII BA101 | AGRONOMY | D-XYLOSE | SIMULTANEOUS PRETREATMENT | ACETONE-BUTANOL-ETHANOL | BIOETHANOL PRODUCTION | AGRICULTURAL ENGINEERING | LIGNOCELLULOSIC SUGARS | FERMENTATION | OPTIMIZATION | ACETOBUTYLICUM | Waste management | Enzymes | Production management | Biomass energy | Refuse and refuse disposal | Calcium carbonate | Cellulose | Glucose | Fermentation | Dextrose
Clostridium | C/N ratio | Biomass | Methyl viologen | Biobutanol | CLOSTRIDIUM-BEIJERINCKII BA101 | AGRONOMY | D-XYLOSE | SIMULTANEOUS PRETREATMENT | ACETONE-BUTANOL-ETHANOL | BIOETHANOL PRODUCTION | AGRICULTURAL ENGINEERING | LIGNOCELLULOSIC SUGARS | FERMENTATION | OPTIMIZATION | ACETOBUTYLICUM | Waste management | Enzymes | Production management | Biomass energy | Refuse and refuse disposal | Calcium carbonate | Cellulose | Glucose | Fermentation | Dextrose
Journal Article
Journal of Food Science and Technology, ISSN 0022-1155, 4/2019, Volume 56, Issue 4, pp. 2233 - 2243
Commercialization of citrus fruit juice is always hindered by the bitterness development in juice when stored for a significant period of time. In order to...
Chemistry | Assam lemon | Food Science | Nutrition | Chemistry/Food Science, general | Elemental composition | Response surface methodology | Debittering | Antioxidant property | TANNASE | DELIGNIFICATION | TANNIN ACYL HYDROLASE | SOYBEAN OIL | FOOD SCIENCE & TECHNOLOGY | GALLIC-ACID | COCULTURE | TEMPERATURE | BIOSYNTHESIS | ANTIOXIDANT-ACTIVITY | Temperature | Enzyme activity | Bitterness | Interaction parameters | Biochemistry | Optimization | Antioxidants | Enzymatic activity | Tannase | Ambient temperature | Confidence |
Chemistry | Assam lemon | Food Science | Nutrition | Chemistry/Food Science, general | Elemental composition | Response surface methodology | Debittering | Antioxidant property | TANNASE | DELIGNIFICATION | TANNIN ACYL HYDROLASE | SOYBEAN OIL | FOOD SCIENCE & TECHNOLOGY | GALLIC-ACID | COCULTURE | TEMPERATURE | BIOSYNTHESIS | ANTIOXIDANT-ACTIVITY | Temperature | Enzyme activity | Bitterness | Interaction parameters | Biochemistry | Optimization | Antioxidants | Enzymatic activity | Tannase | Ambient temperature | Confidence |