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maize --- maize --- Corn starch --- Corn starch --- Corn flour --- Corn flour --- Drying --- Drying --- Sorption --- Sorption --- Temperature. --- Temperature --- Keeping quality --- Keeping quality
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The e-book and Special Issue “Improving the Sensory, Nutritional and Physicochemical Quality of Fresh Meat” is composed of six original papers about recent advances in the area of Meat Science about the effect of production system in lamb meat quality, the effect of animal feed supplements in cattle meat, treatment of cattle carcasses to improve tenderness, and the characterization of volatile compounds associated with sensory attributes. Moreover, studies regarding the developments in the processing of meat are also included in this publication.
Research & information: general --- Biology, life sciences --- stevioside --- organic selenium --- Hanwoo cattle --- fatty acid profile --- oxidative status --- sensory attributes --- polyamide-alginate film --- nanoparticle --- nisin --- ε-polylysine --- frankfurter --- plant extract --- active packaging --- beef --- electrical stimulation --- glycolytic potential --- quality --- temperature decline --- beef patties --- corn starch --- Osan --- tenderness --- cooking loss --- back fat --- boar taint --- entire male pig --- GC-MS --- lipid oxidation --- meat quality --- pork meat --- SPME --- VOC --- Bordaleira-de-Entre-Douro-e-Minho --- rearing system --- pasture --- concentrate --- volatile compounds --- stevioside --- organic selenium --- Hanwoo cattle --- fatty acid profile --- oxidative status --- sensory attributes --- polyamide-alginate film --- nanoparticle --- nisin --- ε-polylysine --- frankfurter --- plant extract --- active packaging --- beef --- electrical stimulation --- glycolytic potential --- quality --- temperature decline --- beef patties --- corn starch --- Osan --- tenderness --- cooking loss --- back fat --- boar taint --- entire male pig --- GC-MS --- lipid oxidation --- meat quality --- pork meat --- SPME --- VOC --- Bordaleira-de-Entre-Douro-e-Minho --- rearing system --- pasture --- concentrate --- volatile compounds
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The e-book and Special Issue “Improving the Sensory, Nutritional and Physicochemical Quality of Fresh Meat” is composed of six original papers about recent advances in the area of Meat Science about the effect of production system in lamb meat quality, the effect of animal feed supplements in cattle meat, treatment of cattle carcasses to improve tenderness, and the characterization of volatile compounds associated with sensory attributes. Moreover, studies regarding the developments in the processing of meat are also included in this publication.
Research & information: general --- Biology, life sciences --- stevioside --- organic selenium --- Hanwoo cattle --- fatty acid profile --- oxidative status --- sensory attributes --- polyamide-alginate film --- nanoparticle --- nisin --- ε-polylysine --- frankfurter --- plant extract --- active packaging --- beef --- electrical stimulation --- glycolytic potential --- quality --- temperature decline --- beef patties --- corn starch --- Osan --- tenderness --- cooking loss --- back fat --- boar taint --- entire male pig --- GC-MS --- lipid oxidation --- meat quality --- pork meat --- SPME --- VOC --- Bordaleira-de-Entre-Douro-e-Minho --- rearing system --- pasture --- concentrate --- volatile compounds --- n/a
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The e-book and Special Issue “Improving the Sensory, Nutritional and Physicochemical Quality of Fresh Meat” is composed of six original papers about recent advances in the area of Meat Science about the effect of production system in lamb meat quality, the effect of animal feed supplements in cattle meat, treatment of cattle carcasses to improve tenderness, and the characterization of volatile compounds associated with sensory attributes. Moreover, studies regarding the developments in the processing of meat are also included in this publication.
stevioside --- organic selenium --- Hanwoo cattle --- fatty acid profile --- oxidative status --- sensory attributes --- polyamide-alginate film --- nanoparticle --- nisin --- ε-polylysine --- frankfurter --- plant extract --- active packaging --- beef --- electrical stimulation --- glycolytic potential --- quality --- temperature decline --- beef patties --- corn starch --- Osan --- tenderness --- cooking loss --- back fat --- boar taint --- entire male pig --- GC-MS --- lipid oxidation --- meat quality --- pork meat --- SPME --- VOC --- Bordaleira-de-Entre-Douro-e-Minho --- rearing system --- pasture --- concentrate --- volatile compounds --- n/a
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This thesis approaches impact resistance in dense suspensions from a new perspective. The most well-known example of dense suspensions, a mixture of cornstarch and water, provides enough impact resistance to allow a person to run across its surface. In the past, this phenomenon had been linked to "shear thickening" under a steady shear state attributed to hydrodynamic interactions or granular dilation. However, neither explanation accounted for the stress scales required for a person to run on the surface. Through this research, it was discovered that the impact resistance is due to local compression of the particle matrix. This compression forces the suspension across the jamming transition and precipitates a rapidly growing solid mass. This growing solid, as a result, absorbs the impact energy. This is the first observation of such jamming front, linking nonlinear suspension dynamics in a new way to the jamming phase transition known from dry granular materials.
Physics. --- Soft and Granular Matter, Complex Fluids and Microfluidics. --- Fluid- and Aerodynamics. --- Spectroscopy and Microscopy. --- Physique --- Amorphous substances. --- Condensed matter. --- Plasma spectroscopy. --- Physics --- Physical Sciences & Mathematics --- Atomic Physics --- Solidification. --- Cornstarch. --- Corn-starch --- Fluids. --- Complex fluids. --- Spectroscopy. --- Microscopy. --- Corn products --- Starch --- Crystallization --- Heat --- Melting points --- Solutions, Solid --- Analysis, Microscopic --- Light microscopy --- Micrographic analysis --- Microscope and microscopy --- Microscopic analysis --- Optical microscopy --- Optics --- Analysis, Spectrum --- Spectra --- Spectrochemical analysis --- Spectrochemistry --- Spectrometry --- Spectroscopy --- Chemistry, Analytic --- Interferometry --- Radiation --- Wave-motion, Theory of --- Absorption spectra --- Light --- Spectroscope --- Hydraulics --- Mechanics --- Hydrostatics --- Permeability --- Complex liquids --- Fluids, Complex --- Amorphous substances --- Liquids --- Soft condensed matter --- Qualitative --- Analytical chemistry
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In recent years, the development of biopolymers based on constituents obtained from natural resources has been gaining considerable attention. The utilization of biopolymers to engineer advanced bionanocomposites and hybrid materials is the focus of increasing scientific activity, explained by growing environmental concerns and interest in the novel features and multiple functionalities of these macromolecules.In this Special Issue, we aim to present the current state of the art in research pertaining to biopolymer-based bionanocomposites and hybrid materials, and their advanced applications. Contributions on the processing of biopolymers and bionanocomposites, the use of diverse biopolymer sources such as polysaccharides, the reinforcement of nanosized materials with biopolymers, and applications of these biopolymers, bionanocomposites, and biohybrid materials will constitute the backbone of this Special Issue.
Technology: general issues --- History of engineering & technology --- 3D printing --- 4D printing --- additive manufacturing --- biocomposite --- industry revolution --- polymer --- polycaprolactone --- green biocomposites --- hybrid biocomposites --- mechanical properties --- thermal properties --- natural fiber --- polylactic acid --- polylactic acid blends --- polylactic acid composites --- arrowroot fibers --- arrowroot starch --- plasticizer --- physical properties --- morphological properties --- Cymbopogan citratus fibre --- starch --- natural fibre --- biodegradation --- chitosan --- chitosan blends --- chitosan nanocomposites --- cellulose --- nanocellulose --- bamboo fibers --- hybrid --- composites --- thermoplastic --- thermoset --- mechanical --- thermal --- cellulose nanocrystals --- liquid crystals --- biomimetic --- corn starch --- kenaf fibre --- tensile properties --- water barrier properties --- rubber-based membrane --- filler --- adsorbent --- ENR/PVC --- thermoplastic elastomer --- wastewater treatment --- woven kenaf --- woven polyester --- DMA --- flammability --- Cymbopogan citratus fiber --- palm wax --- alkali treatment --- n/a
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This Special Issue reprint presents articles from researchers working on materials processing via electron beams as well as on their characterization, properties, and applications. The articles presented cover various topics, including metal melting and welding, additive manufacturing, electron beam irradiation, electron beam lithography, process modeling, etc.
electron-beam welding --- welded metal structure --- dynamic positioning of an electron beam --- electron beam --- additive manufacturing --- titanium alloys --- wire feed process --- residual stresses --- mechanical properties --- EBI --- γ-ray --- GC-MS --- FT-IR --- larch sapwood --- wood extractives --- melting --- melting temperature --- numerical simulation --- electron beam additive manufacturing --- nanoindentation --- strain rate sensitivity --- creep --- corn starch --- potato starch --- moisture content --- specific heat capacity --- pH --- color parameters --- copper technogenic material --- thermodynamic analysis --- removal efficiency --- patterned sapphire substrate --- electron etching --- gold --- cathodoluminescent analysis --- anisotropy --- light-emitting diodes --- windows --- electron beam welding --- aluminum 6082 --- porosity --- beam figure --- electron-beam lithography --- Monte Carlo method --- proximity function --- electrons scattering --- technogenic Co–Cr–Mo alloy --- electron beam recycling --- refining process --- degree of removal
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This Special Issue reprint presents articles from researchers working on materials processing via electron beams as well as on their characterization, properties, and applications. The articles presented cover various topics, including metal melting and welding, additive manufacturing, electron beam irradiation, electron beam lithography, process modeling, etc.
Research & information: general --- Physics --- electron-beam welding --- welded metal structure --- dynamic positioning of an electron beam --- electron beam --- additive manufacturing --- titanium alloys --- wire feed process --- residual stresses --- mechanical properties --- EBI --- γ-ray --- GC-MS --- FT-IR --- larch sapwood --- wood extractives --- melting --- melting temperature --- numerical simulation --- electron beam additive manufacturing --- nanoindentation --- strain rate sensitivity --- creep --- corn starch --- potato starch --- moisture content --- specific heat capacity --- pH --- color parameters --- copper technogenic material --- thermodynamic analysis --- removal efficiency --- patterned sapphire substrate --- electron etching --- gold --- cathodoluminescent analysis --- anisotropy --- light-emitting diodes --- windows --- electron beam welding --- aluminum 6082 --- porosity --- beam figure --- electron-beam lithography --- Monte Carlo method --- proximity function --- electrons scattering --- technogenic Co–Cr–Mo alloy --- electron beam recycling --- refining process --- degree of removal --- electron-beam welding --- welded metal structure --- dynamic positioning of an electron beam --- electron beam --- additive manufacturing --- titanium alloys --- wire feed process --- residual stresses --- mechanical properties --- EBI --- γ-ray --- GC-MS --- FT-IR --- larch sapwood --- wood extractives --- melting --- melting temperature --- numerical simulation --- electron beam additive manufacturing --- nanoindentation --- strain rate sensitivity --- creep --- corn starch --- potato starch --- moisture content --- specific heat capacity --- pH --- color parameters --- copper technogenic material --- thermodynamic analysis --- removal efficiency --- patterned sapphire substrate --- electron etching --- gold --- cathodoluminescent analysis --- anisotropy --- light-emitting diodes --- windows --- electron beam welding --- aluminum 6082 --- porosity --- beam figure --- electron-beam lithography --- Monte Carlo method --- proximity function --- electrons scattering --- technogenic Co–Cr–Mo alloy --- electron beam recycling --- refining process --- degree of removal
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This Special Issue reprint presents articles from researchers working on materials processing via electron beams as well as on their characterization, properties, and applications. The articles presented cover various topics, including metal melting and welding, additive manufacturing, electron beam irradiation, electron beam lithography, process modeling, etc.
Research & information: general --- Physics --- electron-beam welding --- welded metal structure --- dynamic positioning of an electron beam --- electron beam --- additive manufacturing --- titanium alloys --- wire feed process --- residual stresses --- mechanical properties --- EBI --- γ-ray --- GC-MS --- FT-IR --- larch sapwood --- wood extractives --- melting --- melting temperature --- numerical simulation --- electron beam additive manufacturing --- nanoindentation --- strain rate sensitivity --- creep --- corn starch --- potato starch --- moisture content --- specific heat capacity --- pH --- color parameters --- copper technogenic material --- thermodynamic analysis --- removal efficiency --- patterned sapphire substrate --- electron etching --- gold --- cathodoluminescent analysis --- anisotropy --- light-emitting diodes --- windows --- electron beam welding --- aluminum 6082 --- porosity --- beam figure --- electron-beam lithography --- Monte Carlo method --- proximity function --- electrons scattering --- technogenic Co–Cr–Mo alloy --- electron beam recycling --- refining process --- degree of removal
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With daily signals, Nature is communicating us that its unconscious wicked exploitation is no more sustainable. Our socio-economic system focuses on production increasing without considering the consequences. We are intoxicating ourselves on a daily bases just to allow the system to perpetuate itself. The time to switch into more natural solutions is come and the scientific community is ready to offer more natural product with comparable performance then the market products we are used to deal with. This book collects a broad set of scientific examples in which research groups from all over the world, aim to replace fossil fuel-based solutions with biomass derived materials. In here, some of the most innovative developments in the field of bio-materials are reported considering topics which goes from biomass valorization to the synthesis of high preforming bio-based materials.
chitosan --- graphene oxide --- microstructure --- autoxidation --- heavy metals --- polycaprolactone --- precipitation --- thermosetting polymers --- thermal degradation --- humidity sensor --- asphalt rubber --- tung oil --- nanobiocomposites --- ionic liquid --- GC-MS --- hybrid nonisocyanate polyurethane --- physicochemical properties --- alginate sponge --- Bioflex --- dimer acid --- bio-asphalt --- benzoyl cellulose --- Peptone --- transparent wood --- biocomposite --- nanoclays --- storage stability --- solvent- and catalyst-free --- microcellulose fiber --- lignin-containing cellulose nanofibrils --- polylactic acid (PLA) --- bio-inspired interfaces --- polyhydroxyalkanoates --- strain sensor --- enzymatic saccharification --- headspace solid phase microextraction --- PHBV --- electrical resistance --- melt condensation --- cement --- solution casting --- orange waste --- hybrid composites --- biopolymers --- TEMPO oxidation --- pollutant adsorbents --- Escherichia coli --- bio-nanocomposites --- TiO2 anatase --- metal binding --- liquid natural rubber --- hydrotropic treatment --- metal chloride --- feast-famine --- biomass resources --- wood --- electroless deposition --- one-pot synthesis --- thermoplastic starch --- films --- lignin-carbohydrate complex --- cellulose --- corn starch --- microencapsulated phase change material (MPCM) --- differential scanning calorimetry --- compatibility --- natural fibers --- workability --- silkworm cocoons --- lignin content --- polylactic acid --- porous structure --- electrospinning --- nanocellulose fibers --- H2O2 bleaching treatment --- polysaccharides --- mixing sequence --- porosity --- lignocellulosic nanofibrils --- dense structure --- alkali lignin --- polydopamine coating --- nuclear magnetic resonance --- cationic dyes --- poly(lactic acid) and composite films --- endothermic effect --- HSQC-NMR --- Microbial nutrient --- n/a --- toughening --- X-ray diffraction --- water resistance --- waste biomass --- lignin --- UV light --- ultrafiltration --- two-step lyophilization --- mechanical degradation --- bio-based --- methylene blue --- stearoyl cellulose --- ONP fibers --- anionic surfactants --- Hatscheck process --- osteoblast proliferation --- resource recovery --- dissolution --- copper coating --- bacterial cellulose --- hydrogel --- iron chelation --- knotwood --- sensitivity --- mixed microbial cultures --- dimensional stability --- volatiles --- lignocellulose --- Artemisia vulgaris --- surface modification --- PHA --- crosslinked microparticles --- pyrene --- composites --- galactoglucomannan --- polymeric composites --- kaempferol --- tannin-furanic foam --- Solanyl --- wastewater treatments --- adsorption capacity --- heat treatment --- thermal gravimetric analysis --- WAXS --- unsaturated polyester resins --- pulp fibers --- free-radical polymerization --- larixol --- delignification --- antifouling --- chemical composition --- hemicellulose --- tissue engineering --- extrusion-compounding --- membrane --- photodegradation --- structural plastics --- scanning electron microscope --- phenanthrene --- thermal properties --- immobilized TEMPO --- Staphylococcus aureus --- adsorption --- wood modification --- structure–property relationship --- physical property --- film --- mechanical properties --- tannin --- Bio-based foams --- latex state --- paper-based scaffolds --- skincare --- pyrolysis mechanism --- emulsion-solvent evaporation method --- bioplastics --- imidazolium --- fractionation --- cost --- fiber-cement --- lyocell fiber --- recycling --- kenaf fiber --- thermal stability --- transport properties --- SAXS --- silanization --- cellulose nanofibers --- taxifolin --- tannin polymer --- vibrational spectroscopy --- robust fiber network --- nanocelluloses --- poly(lactic acid) --- Anti-bacterial silver nanoparticle --- cellulose nanocrystals --- structure-property relationship
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