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Energy Conversion and Management, ISSN 0196-8904, 12/2015, Volume 106, pp. 1309 - 1317
Journal Article
Algal research (Amsterdam), ISSN 2211-9264, 2014, Volume 6, pp. 91 - 97
The biochemical composition of microalgae is a major factor in the feasibility of microalgae biofuel systems. Currently full compositional analysis entails... 
Pyrolysis | Biochemical composition | Microalgae | Py–GC–MS | Analytical method | Py-GC-MS | SPECTROSCOPY | BIOTECHNOLOGY & APPLIED MICROBIOLOGY | NANNOCHLOROPSIS-OCULATA | LIPID COMPONENTS | CULTIVATION | STRAIN | PY-GC/MS
Journal Article
Fuel, ISSN 0016-2361, 06/2013, Volume 108, pp. 216 - 230
► Thermochemical properties of biomass in terms of fast pyrolysis products were compared. ► Crops selected for this study were: straw, perennial grasses and... 
Py-GC–MS | Biomass | Fast pyrolysis | Bio-oil | TGA | Py-GC-MS | COMBUSTION | HEMICELLULOSE | WILLOW | YIELD | ENERGY & FUELS | SWITCHGRASS | MISCANTHUS | ENGINEERING, CHEMICAL | KINETICS | CELLULOSE | Pyrolysis | Grasses | Comparative analysis | Biomass energy
Journal Article
Journal of analytical and applied pyrolysis, ISSN 0165-2370, 2015, Volume 113, pp. 186 - 192
•Effect of different catalyst on lignin degradation was evaluated.•HZSM-5, Y-zeolite, Pd on carbon and powder charcoal were studied catalysts.•Experiments were... 
Py-GC–MS | Lignin | HZSM-5 | Catalytic pyrolysis | Pd/C | Y-zeolite | Py-GC-MS | CHEMISTRY, ANALYTICAL | WOOD | CONVERSION | ENERGY & FUELS | DEPOLYMERIZATION | THERMAL-DEGRADATION PRODUCTS | PY-GC/MS | ENGINEERING, CHEMICAL | OIL | BIOMASS | Palladium catalysts | Pyrolysis | Zeolites
Journal Article
Journal of Agricultural and Food Chemistry, ISSN 0021-8561, 01/2015, Volume 63, Issue 2, pp. 603 - 613
Journal Article
Journal of Analytical and Applied Pyrolysis, ISSN 0165-2370, 01/2016, Volume 117, pp. 116 - 124
•Analytical TGA–FTIR and Py–GC/MS were conducted on pyrolysis process of alkali lignin.•Drying, fast degradation and slow degradation were the main three... 
Py–GC/MS | Pyrolysis | TGA–FTIR | Kinetics | Alkali lignin | Bio-oil | Py-GC/MS | TGA-FTIR | CHEMISTRY, ANALYTICAL | CONVERSION | ENERGY & FUELS | FAST PYROLYSIS | ENGINEERING, CHEMICAL | WOOD LIGNIN | ASPEN | SOFTWOOD | Lignin | Catechin | Mass spectrometry | Activation energy
Journal Article
Energies (Basel), ISSN 1996-1073, 2010, Volume 3, Issue 11, pp. 1805 - 1820
Fast pyrolysis of poplar wood followed with catalytic cracking of the pyrolysis vapors was performed using analytical pyrolysis-gas chromatography/mass... 
Biomass | Py-GC/MS | Fast pyrolysis | Nano metal oxides | Catalytic cracking | SAWDUST | biomass | MECHANISM | ENERGY & FUELS | COMPONENTS | PROMISING METHOD | nano metal oxides | PRODUCTS | BIO-OIL | catalytic cracking | CELLULOSE | ZEOLITE | fast pyrolysis | WATER-INSOLUBLE FRACTION | LIQUIDS
Journal Article
Bioresource technology, ISSN 0960-8524, 2017, Volume 234, pp. 48 - 52
•Fast pyrolysis of lignocellulosic and algal biomass were studied by using Py-GC/MS.•The compositional difference between the two kinds of pyrolytic vapor was... 
Pyrolysis | Py/GC–MS | Lignocellulosic biomass | Algae | PROTEIN | ENERGY & FUELS | COMPONENTS | MICROALGAE | AGRICULTURAL ENGINEERING | BIOTECHNOLOGY & APPLIED MICROBIOLOGY | BIO-OIL | PRODUCT | Py/GC-MS | LIGNIN | Phenols | Chlorella | Gas Chromatography-Mass Spectrometry | Biomass | Comparative analysis | Chromatography | Heterocyclic compounds | Fatty acids | Spectrum analysis
Journal Article
Biomass and Bioenergy, ISSN 0961-9534, 12/2016, Volume 95, pp. 55 - 63
In this work, the cellulose-hemicellulose interaction during pyrolysis was investigated to study the impacts of sample preparation, temperature, mixing ratio... 
Pyrolysis | Hemicellulose | Py-GC-MS | Interaction | Cellulose | WOODY BIOMASS | ENERGY & FUELS | ANALYTICAL PY-GC/MS | LIGNIN INTERACTIONS | STEAM GASIFICATION | THERMAL-DECOMPOSITION | AGRICULTURAL ENGINEERING | PRODUCTS | BIOTECHNOLOGY & APPLIED MICROBIOLOGY | RAPID PYROLYSIS | XYLAN | PREDICT GAS YIELDS | CONSTITUENTS | Lignin | Analysis | Methods
Journal Article
Arabian journal of chemistry, ISSN 1878-5352, 2018, Volume 11, Issue 6, pp. 782 - 792
In this paper, the organic solvent extract was analyzed by Fourier transform infrared spectroscopy (FT-IR) and gas chromatography–mass spectrometry (GC–MS),... 
GC–MS | TD–GC–MS | Dalbergia stevenson | Py–GC–MS | Extractives | GC-MS | Py-GC-MS | BAMBOO | TD-GC-MS | WOOD EXTRACTIVES | CHEMISTRY, MULTIDISCIPLINARY
Journal Article
Energies (Basel), ISSN 1996-1073, 2015, Volume 8, Issue 6, pp. 5107 - 5121
Pyrolysis is a promising approach that is being investigated to convert lignin into higher value products including biofuels and phenolic chemicals. In this... 
Lignin | Py-GC/MS | Phenolic compounds | Fast pyrolysis | KRAFT LIGNIN | OIL | CONVERSION | CHEMICALS | ENERGY & FUELS | BIOMASS | phenolic compounds | lignin | fast pyrolysis
Journal Article
Geoderma, ISSN 0016-7061, 01/2014, Volume 213, pp. 400 - 407
High variability in the literature is reported on the soil depth affected by forest fires because many factors are involved. We study the fire-induced changes... 
Py–GC/MS | Soil aggregate stability | Wettability | Topsoil depth | Forest fire | Soil organic carbon | Py-GC/MS | CARBON | STABILITY | EROSION | INFILTRATION | RECOVERY | SOIL SCIENCE | ASH | RUNOFF | WILDFIRE | VEGETATION | Lignin | Fatty acids | Forest fires | Topsoil | Pine | Fires | Horizon | Outdoor | Combustion | Soil (material)
Journal Article
Journal of Analytical and Applied Pyrolysis, ISSN 0165-2370, 11/2016, Volume 122, pp. 13 - 23
•Compared with viscose nonwoven fabric, calcium alginate nonwoven fabric owns much better flame retardancy.•Pyrolysis process of calcium alginate produces much... 
Thermal properties | Py-GC–MS | Calcium alginate nonwoven fabric | Flame retardancy | Cone | TG-FTIR | CHEMISTRY, ANALYTICAL | MECHANISM | BEHAVIOR | TIME | PYROLYSIS PRODUCTS | PY-GC/MS | FIBERS | Py-GC-MS | FILMS | SPECTROSCOPY | POLYSACCHARIDES | CELLULOSE | Fireproofing agents | Pyrolysis | Nonwoven fabrics | Mass spectrometry | Analysis
Journal Article
Polymer degradation and stability, ISSN 0141-3910, 2015, Volume 118, pp. 59 - 68
The pyrolysis behavior of aluminum alginate is compared with that of alginic acid. The thermal degradation and pyrolysis behavior of aluminum alginate have... 
Pyrolysis | Py-GC-MS | TG-FTIR-MS | Aluminum alginate | Thermal degradation | TG-FTIR-MS Py-GC-MS | OXIDATION | SAWDUST | POLYMER SCIENCE | ACID | ESTERIFICATION | SODIUM ALGINATE | PHOSPHATE | FIBERS | FLAME RETARDANCY | DEHYDRATION | METAL-IONS | Textile fabrics | Fireproofing agents | Analysis | Catalysis | Mass spectrometry | Investigations
Journal Article
Renewable energy, ISSN 0960-1481, 2018, Volume 125, pp. 465 - 471
Journal Article
Journal of analytical and applied pyrolysis, ISSN 0165-2370, 2012, Volume 97, Issue 5, pp. 158 - 163
► Thermal and photo degradation of PVAc paint samples were studied by Py–GC/MS with double-shot and single-shot techniques. ► Changes of the PVAc paint samples... 
Degradation | Py–GC/MS | Artworks | Paints | Polyvinyl acetate (PVAc) | Py-GC/MS | POLY(VINYL ACETATE) | CHEMISTRY, ANALYTICAL | FILMS | SPECTROSCOPY | BEHAVIOR | SPECTROMETRY | Py–GC
Journal Article