Search results for "Abelmoschus"

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Fast pyrolysis of hot-water-extracted and soda-AQ-delignified okra (Abelmoschus esculentus) and miscanthus (miscanthus x giganteus) stalks by Py-GC/MS

2018

Abstract The thermochemical behavior of various samples of okra ( Abelmoschus esculentus ) and miscanthus ( Miscanthus x giganteus ) stalks (initial, hot-water-extracted, and those from sulfur-free delignification) were studied by pyrolysis-gas chromatography/mass spectrometry (Py-GC/MS). In all cases, major GC-amenable condensable products were measured semi-quantitatively and classified into several product groups. The formation of these product groups from different feedstock samples with varying mass portions of their structural constituents (carbohydrates and lignin) was investigated at 500 °C and 700 °C with a residence time of 5 s and 20 s. The main product groups were aliphatic comp…

0106 biological sciencesbiomassa020209 energypyrolysis-gas chromatographySyringol02 engineering and technologyhot-water extractionkuivatislausRaw materialcondensable products01 natural scienceschemistry.chemical_compoundokraerotusmenetelmät010608 biotechnology0202 electrical engineering electronic engineering information engineeringLigninPhenolOrganic chemistrybiomassa (teollisuus)ta116ta215Waste Management and Disposalta218soda-AQ delignificationbiologyRenewable Energy Sustainability and the EnvironmentligniiniForestryMiscanthusbiology.organism_classificationchemistrymiscanthusAbelmoschusGuaiacolAgronomy and Crop SciencePyrolysisBiomass and Bioenergy
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Chemical characterization of okra stalk (Abelmoschus esculentus) as potential raw material for biorefinery utilization

2018

In the present work, okra stalk (Abelmoschus esculentus) was chemically characterized to evaluate its appropriate exploitation as a biorefinery feedstock. The chemical composition of this renewable lignocellulosic material yielding maximum up to 120 tons per hectare was primarily determined by methods of wood chemical analysis. In terms of its main organic constituents, its dry matter contained 65.0% carbohydrates (cellulose, hemicelluloses and other polysaccharides), 20.5% lignin and 5.0% extractives. In addition, thermogravimetric analyses revealed that the content of proteins and inorganics was 6.6 and 3.3% of the dry matter, respectively. Among the inorganic elements determined by induc…

Abelmoschus esculentusokrabiorefining carbohydratesraaka-aineetextractivesligniinikemiallinen koostumuscomplex mixturesinorganicsbiojalostamot
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