Search results for "Pulp and paper industry"

showing 10 items of 406 documents

Initial indicator analysis of bioethylen production pathways

2018

Abstract Circular economy and bioeconomy factors has driven the economy sectors towards sustainable choices. Chemical industry, as stated by the Joint Research Centre of the European Commission, has a potential to reduce 36 % of the greenhouse gas (GHG) emissions by 2050 [1] mainly linked with introduction of emerging energy technologies. Ethylene, chlorine, ammonia and hydrogen are important chemicals for such reduction as they are the most worldwide produced chemicals (16 % of the total production in 2050 for ethylene, 11 % for chlorine and 6 % for ammonia). Meanwhile planned GHG reduction potential for these chemicals, through introduction of compression and separation technologies, is e…

biologybusiness.industry020209 energyCircular economychemistry.chemical_element02 engineering and technologyChemical industryRaw materialPulp and paper industrybiology.organism_classificationAmmoniachemistry.chemical_compoundchemistryGreenhouse gas0202 electrical engineering electronic engineering information engineeringChlorineEnvironmental scienceSugar beetbusinessTonneEnergy Procedia
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Liquid co-substrates repower sewage microbiomes

2018

AbstractA range of parameters are known to shape the methanogenic communities of biogas-producing digesters and to strongly influence the amount of biogas produced. In this work, liquid and solid fractions of grass biomass were used separately for semicontinuous batch methanation using sewage sludge as seed sludge. During 6 months of incubation, the amount of input COD was increased gradually, and the underlying methanogenic microbiome was assessed by means of microscopy-based automated cell counting and full-length 16S rRNA high-throughput sequencing. In this sense, we prove for the first time the suitability of the ONT™MinION platform as a monitoring tool for anaerobic digestion systems. …

biologybusiness.industryChemistryBiomassSewageMethanosarcinabiology.organism_classificationPulp and paper industryMethanosaetaAnaerobic digestionBiogasbusinessSludgeArchaea
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Occupational hygiene in a Finnish drum composting plant

2005

Bioaerosols (microbes, dust and endotoxins) and volatile organic compounds (VOCs) were determined in the working air of a drum composting plant treating source-separated catering waste. Different composting activities at the Oulu drum composting plant take place in their own units separated by modular design and constructions. Important implication of this is that the control room is a relatively clean working environment and the risk of exposure to harmful factors is low. However, the number of viable airborne microbes was high both in the biowaste receiving hall and in the drum composting hall. The concentration (geometric average) of total microbes was 21.8 million pcs/m3 in the biowaste…

business.product_categoryThreshold limit valueeducationIndoor bioaerosolAir pollutionDrummedicine.disease_causecomplex mixturesOccupational hygieneOccupational ExposuremedicineHumansOrganic ChemicalsRespiratorWaste Management and DisposalFinlandOccupational HealthAerosolsVolatilisationWaste managementfungiDustPulp and paper industryRefuse DisposalEndotoxinsWaste treatmentAir Pollution IndoorOdorantsEnvironmental scienceVolatilizationbusinesspsychological phenomena and processesWaste Management
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Microbial Fuel Cell with Ni–Co Cathode Powered with Yeast Wastewater

2018

Wastewater originating from the yeast industry is characterized by high concentration of pollutants that need to be reduced before the sludge can be applied, for instance, for fertilization of croplands. As a result of the special requirements associated with the characteristics of this production, huge amounts of wastewater are generated. A microbial fuel cell (MFC) forms a device that can apply wastewater as a fuel. MFC is capable of performing two functions at the same time: wastewater treatment and electricity production. The function of MFC is the production of electricity during bacterial digestion (wastewater treatment). This paper analyzes the possibility of applying yeast wastewate…

cathodeControl and OptimizationMicrobial fuel cellyeast wastewaterEnergy Engineering and Power TechnologySewage02 engineering and technology010501 environmental scienceslcsh:Technology01 natural sciencesmicrobial fuel cell; yeast wastewater; environmental engineering; renewable energy source; cathode; Ni–Co alloyIndustrial wastewater treatmentmicrobial fuel cellElectrical and Electronic EngineeringEngineering (miscellaneous)0105 earth and related environmental sciencesenvironmental engineeringlcsh:TRenewable Energy Sustainability and the Environmentbusiness.industryChemical oxygen demand021001 nanoscience & nanotechnologyPulp and paper industryWaste treatmentWastewaterEnvironmental scienceSewage treatmentNi–Co alloyrenewable energy source0210 nano-technologyEnergy sourcebusinessEnergy (miscellaneous)Energies
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Correlation of wood-based components and dewatering properties of waste activated sludge from pulp and paper industry.

2010

Large amounts of wet sludge are produced annually in municipal and industrial wastewater treatment. Already in pulp and paper industry, more than ten million tons of primary sludge, waste activated sludge, and de-inking sludge is generated. Waste activated sludge contains large quantities of bound water, which is difficult to dewater. Low water content would be a matter of high calorific value in incineration but it also has effects on the volume and the quality of the matter to be handled in sludge disposal. In this research waste activated sludges from different pulp and paper mills were chemically characterised and dewatered. Correlations of chemical composition and dewatering properties…

characterisationPaperEnvironmental EngineeringIndustrial WasteIndustrial wastewater treatment/dk/atira/pure/sustainabledevelopmentgoals/sustainable_cities_and_communitiespulp and paper industrywood-based componentsWater Science and TechnologyWaste managementSewageWaterPulp and paper industryDewateringWoodSDG 11 - Sustainable Cities and CommunitiesMixed liquor suspended solidsIncinerationWaste treatmentsludgeActivated sludgeEnvironmental scienceSewage treatmentSludgedewateringWater science and technology : a journal of the International Association on Water Pollution Research
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RAVITA Technology : new innovation for combined phosphorus and nitrogen recovery

2018

Abstract Present phosphorus (P) recovery technologies mainly contain P recovery from sludge liquor or ash. These types of technologies are suitable for large wastewater treatment plants (WWTPs) with enhanced biological phosphorus removal (EBPR), digestion and/or incineration. In Finland and other Nordic countries, strict P discharge limits require chemical precipitation, thus EBPR alone is not sufficient. Ammonium recovery from wastewater, on the other hand, is not so often discussed. However, recovery from WWTP reject waters would decrease the energy demand of ammonium synthesis by Haber-Bosh technology and the energy demand of the WWTP's biological process. Helsinki Region Environmental S…

chemical precipitationEnvironmental Engineeringwastewater effluentNitrogenAmmonium phosphate0208 environmental biotechnologychemistry.chemical_element02 engineering and technologyjätevesiScandinavian and Nordic Countries010501 environmental sciencesWaste Disposal Fluid01 natural sciencesjätevesilietechemistry.chemical_compoundtyppinutrient recoveryhaitalliset aineetWater Pollutantshazardous substancesAmmoniumta215Phosphoric acidfosforiFinlandta2180105 earth and related environmental sciencesWater Science and Technologyjäteveden käsittelysaostusSewagephosphorus removalPhosphorusPhosphorusPulp and paper industry020801 environmental engineeringIncinerationEnhanced biological phosphorus removalchemistryWastewatertalteenottovaaralliset aineetEnvironmental scienceSewage treatment
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Electro-conversion as sustainable method for the fine chemical production from the biopolymer lignin

2018

Lignin, one of the most abundant polymers in nature, qualifies itself by the polyphenolic structure as potential renewable feedstock for the production of bio-based aromatic fine chemicals. However, the natural complexity and degradation stability of lignin make the depolymerization a highly challenging task. Several efforts have been pursued for the selective degradation of the biopolymer into suitable compounds. However, there are only a few technical approaches for the degradation of lignin to aromatic fine chemicals. Organic electrosynthesis is the synthetic method that enables the direct use of electricity for the production of valuable compounds. Moreover, electro-organic synthesis re…

chemistry.chemical_classification010405 organic chemistryDepolymerizationProcess Chemistry and TechnologyPolymerManagement Monitoring Policy and Lawengineering.materialRaw material010402 general chemistryElectrosynthesisPulp and paper industry01 natural sciencesCatalysis0104 chemical scienceschemistry.chemical_compoundchemistryChemistry (miscellaneous)engineeringLigninDegradation (geology)Fine chemicalBiopolymerWaste Management and DisposalCurrent Opinion in Green and Sustainable Chemistry
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Electrochemical technology for the treatment of real washing machine effluent at pre-pilot plant scale by using active and non-active anodes

2018

Abstract Real effluent of washing machine is one of the major sources of microplastics and fabrics in municipal and surface water. The effluents constitute large volume of wastewater with different surfactants since every household and industries nowadays use washing machine rather than traditional hand washing. In this work, a real effluent of washing machine was treated by electrooxidation (EO) in a pre-pilot plant scale electrochemical flow reactor using active (Ti/Pt) or non-active (boron doped diamond (BDD)) anodes and Ti cathode. The effect of anode material (Ti/Pt or BDD) and the applied current density (16.6, 33.3 and 66.6 mA cm−2) on the decay of the organic matter, in terms of che…

chemistry.chemical_classificationChemistrySupporting electrolyteGeneral Chemical EngineeringChemical oxygen demand02 engineering and technology010501 environmental sciences021001 nanoscience & nanotechnologyPulp and paper industry01 natural sciencesCathodeAnalytical ChemistryAnodelaw.inventionPilot plantWastewaterlawElectrochemistryOrganic matter0210 nano-technologyEffluent0105 earth and related environmental sciencesJournal of Electroanalytical Chemistry
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Hydrothermal liquefaction of waste biomass in stirred reactors: One step forward to the integral valorization of municipal sludge

2020

Abstract Hydrothermal liquefaction (HTL) of municipal sludge (MS) was performed at 350 °C for 30 min (subcritical water) and at 400 °C for 0 min (supercritical water) at fixed kinetic severity (LogR0 = 8.9) in static and stirred batch reactors to study the effect of the flow regime on the energy recovery (ER) of the process and on the quality of the products. With adopted experimental procedures it was possible to reduce to less than 10% the yield of lost organic compounds, termed volatiles (VT), and to collect and quantify a liquid hydrocarbon fraction (HC) separated from the biocrude (BC). The highest value of the HC yield, 25% w/w, was obtained in supercritical conditions. The C content …

chemistry.chemical_classificationEnergy recovery020209 energyMechanical EngineeringBiomassFraction (chemistry)02 engineering and technologyBuilding and ConstructionPulp and paper industryPollutionIndustrial and Manufacturing EngineeringSupercritical fluidHydrothermal liquefactionGeneral EnergyHydrocarbon020401 chemical engineeringchemistryBiofuelYield (chemistry)0202 electrical engineering electronic engineering information engineering0204 chemical engineeringElectrical and Electronic EngineeringBiofuelEnergy recovery Energy storage Hydrothermal liquefaction Municipal sludge Waste biomassCivil and Structural Engineering
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Exploring the limits of anaerobic biodegradability of urban wastewater by AnMBR technology

2018

[EN] Anaerobic membrane bioreactors (AnMBRs) can achieve maximum energy recovery from urban wastewater (UWW) by converting influent COD into methane. The aim of this study was to assess the anaerobic biodegradability limits of urban wastewater with AnMBR technology by studying the possible degradation of the organic matter considered as non-biodegradable as observed in aerobic membrane bioreactors operated at very high sludge retention times. For this, the results obtained in an AnMBR pilot plant operated at very high SRT (140 days) treating sulfate-rich urban wastewater were compared with those previously obtained with the system operating at lower SRT (29 to 70 days). At 140 days SRT the …

chemistry.chemical_classificationEnvironmental EngineeringChemical oxygen demandPulp and paper industryAnaerobic digestionPilot plantchemistryWastewaterBioreactorEnvironmental scienceSewage treatmentOrganic matterSulfate-reducing bacteriahuman activitiesTECNOLOGIA DEL MEDIO AMBIENTEWater Science and Technology
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