Listing 1 - 8 of 8 |
Sort by
|
Choose an application
Sculpture --- sculpture [visual works] --- poplar [wood] --- willow [wood] --- Müller, Josef Felix
Choose an application
Iconography --- Art --- Sculpture --- ships --- totems --- sculpting --- wood [plant material] --- chestnut [wood] --- oak [wood] --- poplar [wood] --- Hillen, Jaak --- Belgium
Choose an application
Iconography --- Art --- Sculpture --- dishes [vessels for food] --- installations [visual works] --- art [discipline] --- burning --- sculpting --- pillars [structural elements] --- wood [plant material] --- poplar [wood] --- fir [wood] --- Hillen, Jaak --- Belgium
Choose an application
The articles in this Special Issue cover a very wide range of topics related to the cultivation, management and use of fast-growing tree species. In addition to research on breeding and on the influence of pruning practices on the height growth of paulownia, three articles deal with the influence of site characteristics and nutrient availability on the physiology and yield security of fast-growing tree species. Another article focuses on the modeling of soil carbon in Salix plantations, while the article by Boruszewski et al. reports on potentially suitable areas for the planting of fast-growing tree species in Poland. Zitzmann and Rode examine the impact of short-rotation plantation management on phytodiversity, while Helbig et al. deal with the influence of leaf feeding on the growth of poplars and willows. Finally, Hernandez-Estrada et al. describe the dry matter loss of poplar wood chips during storage.
Research & information: general --- Biology, life sciences --- Forestry & related industries --- woody biomass crops --- bioenergy --- biodiversity --- species richness --- flora --- vascular plants --- short rotation coppices --- poplars --- willows --- feeding simulation --- defoliation --- herbivory --- short rotation coppice --- phosphatase activity --- nutrient content --- growth stages --- biomass --- willow --- Salix --- capacity --- European larch --- fast-growing trees --- plantations --- plantation area --- poplar cultivar "Hybrid 275" --- sown area --- biomass production --- life cycle assessment --- climate impact --- soil organic carbon --- genotypic difference --- CRISPR/Cas9 --- genome editing --- Populus --- INRA 717-1B4 --- pyramidal plant habitus --- leaf petiole angle --- branch angle --- nitrogen --- phosphorus --- carbon --- physiology --- F. mandshurica --- Robinia pseudoacacia L. --- photosynthetic vitality --- chlorophyll and phenol content --- nutrition supply --- dry matter yield --- land reclamation --- spring pruning --- year-long pruning --- branching --- angle diversion of sprout --- dry matter losses --- poplar wood chips --- laboratory scale --- cultivable saproxylic microbiota --- woody biomass crops --- bioenergy --- biodiversity --- species richness --- flora --- vascular plants --- short rotation coppices --- poplars --- willows --- feeding simulation --- defoliation --- herbivory --- short rotation coppice --- phosphatase activity --- nutrient content --- growth stages --- biomass --- willow --- Salix --- capacity --- European larch --- fast-growing trees --- plantations --- plantation area --- poplar cultivar "Hybrid 275" --- sown area --- biomass production --- life cycle assessment --- climate impact --- soil organic carbon --- genotypic difference --- CRISPR/Cas9 --- genome editing --- Populus --- INRA 717-1B4 --- pyramidal plant habitus --- leaf petiole angle --- branch angle --- nitrogen --- phosphorus --- carbon --- physiology --- F. mandshurica --- Robinia pseudoacacia L. --- photosynthetic vitality --- chlorophyll and phenol content --- nutrition supply --- dry matter yield --- land reclamation --- spring pruning --- year-long pruning --- branching --- angle diversion of sprout --- dry matter losses --- poplar wood chips --- laboratory scale --- cultivable saproxylic microbiota
Choose an application
The articles in this Special Issue cover a very wide range of topics related to the cultivation, management and use of fast-growing tree species. In addition to research on breeding and on the influence of pruning practices on the height growth of paulownia, three articles deal with the influence of site characteristics and nutrient availability on the physiology and yield security of fast-growing tree species. Another article focuses on the modeling of soil carbon in Salix plantations, while the article by Boruszewski et al. reports on potentially suitable areas for the planting of fast-growing tree species in Poland. Zitzmann and Rode examine the impact of short-rotation plantation management on phytodiversity, while Helbig et al. deal with the influence of leaf feeding on the growth of poplars and willows. Finally, Hernandez-Estrada et al. describe the dry matter loss of poplar wood chips during storage.
Research & information: general --- Biology, life sciences --- Forestry & related industries --- woody biomass crops --- bioenergy --- biodiversity --- species richness --- flora --- vascular plants --- short rotation coppices --- poplars --- willows --- feeding simulation --- defoliation --- herbivory --- short rotation coppice --- phosphatase activity --- nutrient content --- growth stages --- biomass --- willow --- Salix --- capacity --- European larch --- fast-growing trees --- plantations --- plantation area --- poplar cultivar “Hybrid 275” --- sown area --- biomass production --- life cycle assessment --- climate impact --- soil organic carbon --- genotypic difference --- CRISPR/Cas9 --- genome editing --- Populus --- INRA 717-1B4 --- pyramidal plant habitus --- leaf petiole angle --- branch angle --- nitrogen --- phosphorus --- carbon --- physiology --- F. mandshurica --- Robinia pseudoacacia L. --- photosynthetic vitality --- chlorophyll and phenol content --- nutrition supply --- dry matter yield --- land reclamation --- spring pruning --- year-long pruning --- branching --- angle diversion of sprout --- dry matter losses --- poplar wood chips --- laboratory scale --- cultivable saproxylic microbiota --- n/a --- poplar cultivar "Hybrid 275"
Choose an application
The articles in this Special Issue cover a very wide range of topics related to the cultivation, management and use of fast-growing tree species. In addition to research on breeding and on the influence of pruning practices on the height growth of paulownia, three articles deal with the influence of site characteristics and nutrient availability on the physiology and yield security of fast-growing tree species. Another article focuses on the modeling of soil carbon in Salix plantations, while the article by Boruszewski et al. reports on potentially suitable areas for the planting of fast-growing tree species in Poland. Zitzmann and Rode examine the impact of short-rotation plantation management on phytodiversity, while Helbig et al. deal with the influence of leaf feeding on the growth of poplars and willows. Finally, Hernandez-Estrada et al. describe the dry matter loss of poplar wood chips during storage.
woody biomass crops --- bioenergy --- biodiversity --- species richness --- flora --- vascular plants --- short rotation coppices --- poplars --- willows --- feeding simulation --- defoliation --- herbivory --- short rotation coppice --- phosphatase activity --- nutrient content --- growth stages --- biomass --- willow --- Salix --- capacity --- European larch --- fast-growing trees --- plantations --- plantation area --- poplar cultivar “Hybrid 275” --- sown area --- biomass production --- life cycle assessment --- climate impact --- soil organic carbon --- genotypic difference --- CRISPR/Cas9 --- genome editing --- Populus --- INRA 717-1B4 --- pyramidal plant habitus --- leaf petiole angle --- branch angle --- nitrogen --- phosphorus --- carbon --- physiology --- F. mandshurica --- Robinia pseudoacacia L. --- photosynthetic vitality --- chlorophyll and phenol content --- nutrition supply --- dry matter yield --- land reclamation --- spring pruning --- year-long pruning --- branching --- angle diversion of sprout --- dry matter losses --- poplar wood chips --- laboratory scale --- cultivable saproxylic microbiota --- n/a --- poplar cultivar "Hybrid 275"
Choose an application
This book focuses on fundamental and applied research on polymer processing and its effect on the final surface as the optimization of polymer surface properties results in the unique applicability of these over other materials. The development and testing of the next generation of polymeric and composite materials is of particular interest. Special attention is given to polymer surface modification, external stimuli-responsive surfaces, coatings, adhesion, polymer and composites fatigue analysis, evaluation of the surface quality and microhardness, processing parameter optimization, characterization techniques, among others.
Research & information: general --- Biology, life sciences --- thermoplastic polyurethanes blends --- pressure sensitive adhesives --- viscoelastic properties --- adhesion properties --- tack --- creep --- cohesion properties --- nano-structure functional film --- magnetron sputtering --- cellulose insulation polymer --- space charge --- hydrophobicity --- zinc oxide --- polytetrafluoroethylene --- bromoisobutyryl esterification --- cornstarch --- synthesis process --- past stability --- adhesion --- film properties --- mullite --- whiskers --- nonaqueous precipitation method --- aluminum fluoride --- polar transformation --- screw --- aspect ratio --- carbon nanotube --- dispersion --- masterbatch --- nanocomposite --- polyamide --- polyamide 6 --- halloysite nanotube --- functionalizing agent --- in situ polymerization --- melt blending --- polymorphism --- hydrothermal ageing --- polymers --- octaglycidyl-POSS --- DGEBA --- dicyandiamide --- accelerators --- corrosion --- protective coatings --- infrared spectroscopy --- rheology --- poplar wood --- waterborne UV lacquer product --- wood modification --- contact angle --- spectroscopy --- super-hydrophobic coating --- elastic sensor --- carbon nanotubes --- wearable electronics --- monitoring of breathing --- strain sensor --- polymer composite --- CNTs --- construction composite --- friction resistance --- surface state --- low dielectric constant --- PI --- irradiation --- dielectric loss --- tin compounds --- valsartan --- poly(vinyl chloride) --- additives --- average molecular weight --- weight loss --- functional group index --- PET --- polymer --- plasma jet --- tilted application --- ROS distribution --- UV --- VUV --- epoxy --- Joule heating --- fast curing --- accelerated forming --- shape memory --- Acrylonitrile Butadiene Styrene --- sound absorption --- 3D printing technology --- frequency --- thickness --- air gap --- polyvinyl alcohol --- cationic polyacrylamide --- polyvinyl chloride --- azodicarbonamide --- micro-structure --- diffusion plate --- micro injection molding --- grinding --- ethylene-octene-copolymer --- carbon fibers --- polyaniline --- polypyrrole --- thermoelectric composites --- surface coating --- dopamine hydrochloride --- graphene oxide --- surgical suture --- friction --- Poly(vinylidene chloride-co-acrylonitrile) (P(VDC-co-AN )) --- thermo-dynamic surface characterization --- surface free energy --- inverse gas chromatography --- visual traits --- computer vision and image processing --- basalt fiber --- epoxy composite --- glass transition temperature --- DMA --- TMA --- creep recovery --- stress-relaxation --- heterogeneous nucleation --- cell morphology --- injection molding foaming --- composite materials --- visualization --- gloss transition defect --- surface defect --- surface gloss --- shrinkage --- mold surface replication --- surface analysis --- injection molding --- polymer surface modification --- hydrophobic properties --- optimization --- mathematical modeling --- poly(ethylene glycol) (PEG) --- conjugation --- N,N′-disuccinimidyl carbonate (DSC) --- immobilization --- surface modification --- ultra-high molecular weight polyethylene --- cellulose nanofiber --- bionanocomposite --- melt-blending --- ethanol mixing --- thermoplastic polyurethanes blends --- pressure sensitive adhesives --- viscoelastic properties --- adhesion properties --- tack --- creep --- cohesion properties --- nano-structure functional film --- magnetron sputtering --- cellulose insulation polymer --- space charge --- hydrophobicity --- zinc oxide --- polytetrafluoroethylene --- bromoisobutyryl esterification --- cornstarch --- synthesis process --- past stability --- adhesion --- film properties --- mullite --- whiskers --- nonaqueous precipitation method --- aluminum fluoride --- polar transformation --- screw --- aspect ratio --- carbon nanotube --- dispersion --- masterbatch --- nanocomposite --- polyamide --- polyamide 6 --- halloysite nanotube --- functionalizing agent --- in situ polymerization --- melt blending --- polymorphism --- hydrothermal ageing --- polymers --- octaglycidyl-POSS --- DGEBA --- dicyandiamide --- accelerators --- corrosion --- protective coatings --- infrared spectroscopy --- rheology --- poplar wood --- waterborne UV lacquer product --- wood modification --- contact angle --- spectroscopy --- super-hydrophobic coating --- elastic sensor --- carbon nanotubes --- wearable electronics --- monitoring of breathing --- strain sensor --- polymer composite --- CNTs --- construction composite --- friction resistance --- surface state --- low dielectric constant --- PI --- irradiation --- dielectric loss --- tin compounds --- valsartan --- poly(vinyl chloride) --- additives --- average molecular weight --- weight loss --- functional group index --- PET --- polymer --- plasma jet --- tilted application --- ROS distribution --- UV --- VUV --- epoxy --- Joule heating --- fast curing --- accelerated forming --- shape memory --- Acrylonitrile Butadiene Styrene --- sound absorption --- 3D printing technology --- frequency --- thickness --- air gap --- polyvinyl alcohol --- cationic polyacrylamide --- polyvinyl chloride --- azodicarbonamide --- micro-structure --- diffusion plate --- micro injection molding --- grinding --- ethylene-octene-copolymer --- carbon fibers --- polyaniline --- polypyrrole --- thermoelectric composites --- surface coating --- dopamine hydrochloride --- graphene oxide --- surgical suture --- friction --- Poly(vinylidene chloride-co-acrylonitrile) (P(VDC-co-AN )) --- thermo-dynamic surface characterization --- surface free energy --- inverse gas chromatography --- visual traits --- computer vision and image processing --- basalt fiber --- epoxy composite --- glass transition temperature --- DMA --- TMA --- creep recovery --- stress-relaxation --- heterogeneous nucleation --- cell morphology --- injection molding foaming --- composite materials --- visualization --- gloss transition defect --- surface defect --- surface gloss --- shrinkage --- mold surface replication --- surface analysis --- injection molding --- polymer surface modification --- hydrophobic properties --- optimization --- mathematical modeling --- poly(ethylene glycol) (PEG) --- conjugation --- N,N′-disuccinimidyl carbonate (DSC) --- immobilization --- surface modification --- ultra-high molecular weight polyethylene --- cellulose nanofiber --- bionanocomposite --- melt-blending --- ethanol mixing
Choose an application
This book focuses on fundamental and applied research on polymer processing and its effect on the final surface as the optimization of polymer surface properties results in the unique applicability of these over other materials. The development and testing of the next generation of polymeric and composite materials is of particular interest. Special attention is given to polymer surface modification, external stimuli-responsive surfaces, coatings, adhesion, polymer and composites fatigue analysis, evaluation of the surface quality and microhardness, processing parameter optimization, characterization techniques, among others.
thermoplastic polyurethanes blends --- pressure sensitive adhesives --- viscoelastic properties --- adhesion properties --- tack --- creep --- cohesion properties --- nano-structure functional film --- magnetron sputtering --- cellulose insulation polymer --- space charge --- hydrophobicity --- zinc oxide --- polytetrafluoroethylene --- bromoisobutyryl esterification --- cornstarch --- synthesis process --- past stability --- adhesion --- film properties --- mullite --- whiskers --- nonaqueous precipitation method --- aluminum fluoride --- polar transformation --- screw --- aspect ratio --- carbon nanotube --- dispersion --- masterbatch --- nanocomposite --- polyamide --- polyamide 6 --- halloysite nanotube --- functionalizing agent --- in situ polymerization --- melt blending --- polymorphism --- hydrothermal ageing --- polymers --- octaglycidyl-POSS --- DGEBA --- dicyandiamide --- accelerators --- corrosion --- protective coatings --- infrared spectroscopy --- rheology --- poplar wood --- waterborne UV lacquer product --- wood modification --- contact angle --- spectroscopy --- super-hydrophobic coating --- elastic sensor --- carbon nanotubes --- wearable electronics --- monitoring of breathing --- strain sensor --- polymer composite --- CNTs --- construction composite --- friction resistance --- surface state --- low dielectric constant --- PI --- irradiation --- dielectric loss --- tin compounds --- valsartan --- poly(vinyl chloride) --- additives --- average molecular weight --- weight loss --- functional group index --- PET --- polymer --- plasma jet --- tilted application --- ROS distribution --- UV --- VUV --- epoxy --- Joule heating --- fast curing --- accelerated forming --- shape memory --- Acrylonitrile Butadiene Styrene --- sound absorption --- 3D printing technology --- frequency --- thickness --- air gap --- polyvinyl alcohol --- cationic polyacrylamide --- polyvinyl chloride --- azodicarbonamide --- micro-structure --- diffusion plate --- micro injection molding --- grinding --- ethylene-octene-copolymer --- carbon fibers --- polyaniline --- polypyrrole --- thermoelectric composites --- surface coating --- dopamine hydrochloride --- graphene oxide --- surgical suture --- friction --- Poly(vinylidene chloride-co-acrylonitrile) (P(VDC-co-AN )) --- thermo-dynamic surface characterization --- surface free energy --- inverse gas chromatography --- visual traits --- computer vision and image processing --- basalt fiber --- epoxy composite --- glass transition temperature --- DMA --- TMA --- creep recovery --- stress-relaxation --- heterogeneous nucleation --- cell morphology --- injection molding foaming --- composite materials --- visualization --- gloss transition defect --- surface defect --- surface gloss --- shrinkage --- mold surface replication --- surface analysis --- injection molding --- polymer surface modification --- hydrophobic properties --- optimization --- mathematical modeling --- poly(ethylene glycol) (PEG) --- conjugation --- N,N′-disuccinimidyl carbonate (DSC) --- immobilization --- surface modification --- ultra-high molecular weight polyethylene --- cellulose nanofiber --- bionanocomposite --- melt-blending --- ethanol mixing
Listing 1 - 8 of 8 |
Sort by
|