Search results for " pretreatment"

showing 10 items of 24 documents

Ligninolytic potential of Curvularia kusanoi L7 laccases for animal production

2020

The present research was conducted with the objective of evaluating the ligninolytic potential of Curvularia kusanoi L7 laccases in improving the nutritional quality of fibrous substrates for animal feed. Laccase production was obtained from C. kusanoi L7 under native conditions by solid submerged fermentation of wheat bran and by biological interactions with Trichoderma viride M5-2 and Trichoderma pleuroticola. The enzymes were purified from the culture broths by triphasic partition. The degradative potential of native and induced laccases where evaluated by determining foliar lignololytic capacity, raw wheat (Triticum aestivum) straw delignification and the effect of enzyme pretreatment o…

Enzyme induction fiber pretreatment in vitro digestibility
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Effect of pretreatments and drying processo on health-promoting components of goji berries

2020

Drying is one of the most common preservation methods used to extend the shelf life of fruits and vegetables by reducing water content so as to prevent the growth and reproduction of microorganisms and to inactivate many of the moisture-mediated alterative reactions. Goji berries are mainly consumed dried. Several methods can be used to dry goji berries, such as sun drying, hot air drying, vacuum drying, and freeze drying. In this chapter the most used pre-treatment and drying processes found in literature on goji berries are described, together with their effect on their health promoting components, such as carotenoids, tocols, vitamin C, flavonoids and phenols. Moreover the effect of diff…

Goji drying pretreatments carotenoidsSettore AGR/15 - Scienze E Tecnologie Alimentari
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Liquid hot water pretreatment of Arundo Donax: a comparison between batch and a flow-through systems

2014

LHW biomass pretreatment lignocellulosic biomass
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Thermal Decomposition and Combustion of Microwave Pre-Treated Biomass Pellets

2021

The objective of the study was to investigate a more effective use of commercially available biomass pellets (wheat straw, wood, peat) using microwave pretreatment to improve heat production. Pellets were pretreated using the originally designed microwave torrefaction device. The effects of microwave (mw) pretreatment were quantified, providing measurements of the weight loss and elemental composition of pellets and estimating the effect of mw pretreatment on their porosity, surface area and calorific values at pretreatment temperatures of T = 448–553 K. Obtained results show that the highest structural variations and elemental composition during mw pretreatment were obtained for wheat stra…

Materials science0211 other engineering and technologiesPelletsBioengineering02 engineering and technology010501 environmental sciencesCombustionlcsh:Chemical technology01 natural scienceslcsh:ChemistryChemical Engineering (miscellaneous)lcsh:TP1-1185021108 energythermal decomposition0105 earth and related environmental sciencesheating valuewheat strawProcess Chemistry and TechnologyThermal decompositionfood and beveragesStrawTorrefactionPulp and paper industrypelletsAdiabatic flame temperaturereactivitylcsh:QD1-999peatHeat of combustionMass fractionmicrowave pretreatmentwoodcombustionProcesses
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Autohydrolysis pretreatment of Arundo donax: a comparison between microwave-assisted batch and fast heating rate flow-through reaction systems

2015

Background: Autohydrolysis of lignocellulosic biomass in liquid hot water has been widely studied owing to its high efficiency and relatively low cost. In the perspective of industrial applications, continuous or semi-continuous processes are more interesting than batch systems. Moreover, microwave heating of pretreatment systems has been proposed to intensify the kinetics of the process. In this study, the autohydrolysis of Arundo donax was performed in pure liquid hot water using a microwave-heated batch reactor and a semi-continuous flow-through reaction system with fast heating rate at the same operating conditions with the aim of performing a systematic comparison between the two diffe…

Materials scienceMonitoringWater flowBatch reactorLignocellulosic biomassBiomassManagement Monitoring Policy and LawApplied Microbiology and BiotechnologyMass transferAutohydrolysis; Flow-through system; Lignocellulosic biomass; Liquid hot water; Microwaves; Pretreatment; Energy (all); Management Monitoring Policy and Law; Biotechnology; Applied Microbiology and Biotechnology; Renewable Energy Sustainability and the EnvironmentRenewable EnergyMicrowavesFlow-through systembiologyPolicy and LawSustainability and the EnvironmentRenewable Energy Sustainability and the Environmentbusiness.industryResearchArundo donaxLiquid hot waterSettore ING-IND/27 - Chimica Industriale E Tecnologicabiology.organism_classificationPulp and paper industryLignocellulosic biomassBiotechnologyManagementGeneral EnergyEnergy (all)AutohydrolysisScientific methodbusinessMicrowavePretreatmentBiotechnologyBiotechnology for Biofuels
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Characterization of lignin dissolved during alkaline pretreatment of softwood and hardwood

2015

Various alkaline pretreatments were applied to Scots pine (Pinus sylvestris) and silver/white birch (Betula pendula/pubescens) wood chips and the characterization of sulfur-free lignin dissolved was performed. The behavior of lignin during these pretreatments (alkali charge 1–8% NaOH, time 30–120 minutes, and temperature 130–150°C) was studied mainly in terms of lignin removal efficiency and molar mass distribution of dissolved lignin. The amount of lignin in pretreatment liquors increased along with an increase in the alkali charge of 0.8–4.4% and 0.6–3.4% of o.d. pine and birch wood, respectively. The most significant parameter affecting the molar mass of the dissolved lignin was shown to…

Molar massSoftwoodbiologyBetula pendula/pubescensGeneral Chemical EngineeringScots pineligninPinus sylvestrisGeneral Chemistrymolar mass distributionbiology.organism_classificationAlkali metalchemistry.chemical_compoundchemistryBetula pendulaBotanyHardwoodMolar mass distributionLigninGeneral Materials Scienceta116Alkaline pretreatmentNuclear chemistryJournal of Wood Chemistry and Technology
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Combustion properties of spruce black liquor droplets : Sulfur-free pulping and influence of hot-water pretreatment

2016

Hot-water pretreatment of lignocellulosics prior to sulfur-free alkaline pulping is an interesting approach for recovering value-added carbohydrate- and lignin-derived materials. This paper investigated the chemical composition variations and combustion properties of the black liquors (BLs) from three different cooking processes: two sulfur-free soda-anthraquinone (soda-AQ) and oxygen-alkali (O2-NaOH) cooks and kraft cook, before and after hot-water pretreatment of the spruce sawdust. Relatively less aliphatic acids but more lignin were present in the BLs after hot-water pretreatment as cooking time prolonged. In general, the burning time decreased as follows: soda-AQ BL > O2-NaOH BL ≅ kraf…

Waste management020209 energycombustion propertieshot-water pretreatmenteducationtechnology industry and agriculturesulfur-free pulpingchemistry.chemical_elementfood and beveragesForestrymustalipeä02 engineering and technologyCombustionPulp and paper industrySulfurchemistryhemic and lymphatic diseaseskuuset0202 electrical engineering electronic engineering information engineeringEnvironmental scienceGeneral Materials ScienceBlack liquor
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Pretreatment of trace element-enriched biomasses grown on phytomanaged soils for bioethanol production

2017

Abstract Phytotechnologies are a set of sustainable, ecological options notably for alleviating pollutant linkages induced by contaminated soils. However, concerns exist regarding the processing of trace elements (TE)-enriched biomass and the fate of TEs in the end-products. The fractionation of phytoremediation TE-enriched non-woody lignocellulosic (tobacco) and woody (birch, willow) phytoremediation-borne biomasses was studied using ethanol organosolv, soda and dilute acid pretreatments. TE distribution in the process fractions (pulp, liquid effluents and lignin) was further examined. In dilute acid conditions, a wood pretreatment performed at 170 °C in the presence of 2% w/w of sulfuric …

[SDV.EE]Life Sciences [q-bio]/Ecology environment020209 energyPulp (paper)OrganosolvExtraction (chemistry)Sulfuric acid02 engineering and technologyFractionation010501 environmental sciencesengineering.materialBiorefineryPulp and paper industry01 natural sciences[ SDV.EE ] Life Sciences [q-bio]/Ecology environmentPhytoremediation-borne biomass Pretreatment Metal Bioethanolchemistry.chemical_compoundchemistry13. Climate actionCellulosic ethanolBotany0202 electrical engineering electronic engineering information engineeringengineeringLigninAgronomy and Crop Science0105 earth and related environmental sciences
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Selective Disintegration–Milling to Obtain Metal-Rich Particle Fractions from E-Waste

2022

This research was supported by ERDF project no. 1.1.1.1/20/A/139 “Development of sustainable recycling technology of electronic scrap for precious and non-ferrous metals extraction”. The project was co-financed by REACT-EU funding to mitigate the effects of the pandemic crisis. The article was published with the financial support from the Riga Technical University Research Support Fund. This research was also supported by the Institute of Solid State Physics, University of Latvia as the Center of Excellence has received funding from the European Union’s Horizon 2020 Framework Program H2020-WIDESPREAD-01-2016-2017-TeamingPhase2 under grant agreement No. 739508, project CAMART2. The authors w…

disintegratione-wasteMetals and Alloysprecious metalsprinted circuit boards:NATURAL SCIENCES::Physics [Research Subject Categories]e-waste millingGeneral Materials Sciencedisintegration; e-waste; e-waste mechanical pretreatment; e-waste milling; precious metals; printed circuit boardse-waste mechanical pretreatmentMetals
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Activated carbon from hydrolysis lignin: Effect of activation method on carbon properties

2022

This study presents the effects of different activation methods to produce activated carbon from the hydrolysis lignin. Pretreatment of the feedstock with common mineral acids (HCL, HNO3, and H3PO4), different steam rates for physical activation, and different chemical activating agents (ZnCl2, Na2CO3, and KOH) for chemical activation were investigated. The pretreated biomass was carbonized and activated in one-stage process and the surface characteristics, such as total pore volume, pore size distribution and specific surface area, were investigated. The results showed that the activated carbon surface properties were not greatly affected by acid pretreatment. Brunauer-Emmett-Teller (BET) …

hydrolyysiRenewable Energy Sustainability and the EnvironmentligniiniForestrysurface areaphysical activationesikäsittelyhuokoisuusacid pretreatmentaktiivihiilihydrolysis ligninactivated carbonbiomassa (teollisuus)Waste Management and DisposalAgronomy and Crop ScienceBiomass and Bioenergy
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