Search results for "Kraft process"

showing 4 items of 44 documents

Recovery of aliphatic low-molecular-mass carboxylic acids from hardwood kraft black liquor

2015

Abstract During alkaline pulping of wood, substantial amounts of carbohydrates-derived aliphatic carboxylic acids (formic and acetic acids together with various hydroxy acids) are formed and dissolved into the cooking liquor (“black liquor”). These acids with low heating values are considered to be potential feedstocks for the chemical industry but, due to many factors, their straightforward recovery as free acids from black liquor (pH 13–14) is difficult. In this paper, we outlined the partial recovery of volatile formic and acetic acids from the acidified birch ( Betula pendula ) kraft black liquor (pH approximately 2.5) by distillation, and the partial recovery of significant low-molecul…

distillationesterificationalkalinitymolecular massFiltration and SeparationhardwoodsAnalytical Chemistrylaw.inventionCatalysisrecoveryResidue (chemistry)esterslawHardwoodOrganic chemistrychemical industryta215DistillationIon exchangeMolecular massChemistryfood and beveragespulp cookingacetic acidkraft procession exchangersmedical problemsBlack liquorKraft paperSeparation and Purification Technology
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Chemical Pretreatments of Wood Chips Prior to Alkaline Pulping - A Review of Pretreatment Alternatives, Chemical Aspects of the Resulting Liquors, an…

2015

The chemical industry is being forced to evaluate new strategies for more effective utilization of renewable feedstocks to diminish the use of fossil resources. In this literature review, the integration of both acidic and alkaline pretreatment phases of hardwood and softwood chips with chemical pulping is discussed. Depending on the pretreatment conditions, high-volume sulfur-free fractions with varying chemical compositions can be produced. In case of acidic pretreatments, the major products include carbohydrates (mono-, oligo-, and polysaccharides), whereas under alkaline (i.e., aqueous NaOH) pretreatment conditions, the sulfur-free fractions of aliphatic carboxylic acids, lignin, and ex…

hydrolyysiEnvironmental EngineeringSoftwoodBiochemicalsExtractiveslcsh:BiotechnologyBy-productsCarbohydratesbiokemikaalitBioengineeringRaw materialLigninHydrolysischemistry.chemical_compoundmassanvalmistusextractivesOrganic acidslcsh:TP248.13-248.65organic acidsOrganic chemistryLigninBiorefiningautohydrolysisWaste Management and DisposaldelignificationAqueous solutionPulpingChemistryHydrolysisligniinipretreatmentKraft processAutohydrolysisDelignificationBiorefiningSoda pulpingsivutuotteetbiorefininghiilihydraatitPretreatmentBioResources
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Detailed modeling of the kraft pulping chemistry : carbohydrate reactions

2020

The article introduces a detailed model for carbohydrate chemistry in kraft pulping. This article is continuation to the modeling work carried out for hot water extraction and chemical pulp bleaching. The model includes galactoglucomannan, xylan, and cellulose acid–base equilibria, in addition to peeling, stopping, and alkaline hydrolysis reactions of the same carbohydrates, as well as hexenuronic acid formation and degradation reactions. The Arrhenius parameters were applied from the literature or regressed against experimental data in the present study. The model is very successful in predicting the experimental data of carbohydrate reactions during kraft pulping. Many features of the pul…

mallintaminenReaction mechanismEnvironmental Engineeringkemialliset reaktiotChemistryGeneral Chemical EngineeringcarbohydratesmodelingCarbohydratereaktiomekanismitkraft pulpingChemical kineticsstomatognathic diseasesKraft processstomatognathic systemmassanvalmistusOrganic chemistryreaction kineticsreaction mechanismhiilihydraatitBiotechnology
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Effects of integrating a bioethanol production process to a kraft pulp mill

2010

Abstract The integration of an ethanol production process based on prehydrolysis of softwood chips to a kraft pulp mill is discussed. A simulation model of this biorefinery has been created with WinGEMS simulation software to calculate the mass and energy balances of the biorefinery and to examine the effects of the integration on the operation of the pulp mill. Integrating the prehydrolysis process to the modeled pulp mill producing 1000 Adt/day of pine pulp would increase the wood consumption by 16%. With the increased wood consumption, 40 t/day of ethanol could be produced, and the excess power production could be increased by 460 MWh/day. The integration of the ethanol production proces…

stomatognathic systemKraft processBiofuelSoda pulpingtechnology industry and agriculturefood and beveragesEnvironmental scienceMillGeneral Materials ScienceForestryPulp and paper industrycomplex mixturesKraft paperNordic Pulp & Paper Research Journal
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