Search results for "Insulation"

showing 10 items of 61 documents

Porous architecture and thermal properties of thermal barrier coatings deposited by suspension plasma spray

2020

Abstract Besides the intrinsic low heat transfer capability of material, the thermal insulation property of thermal barrier coatings (TBCs) also relies on their microstructures. For better understanding the relationship between process parameters, porous architecture, and thermal properties of coatings, YSZ coatings were firstly manufactured by suspension plasma spray (SPS). Afterwards their total porosities were characterized by using the technique of X-ray transmission, the nano/submicro pores in those coatings were detected with Ultra-Small Angle X-ray Scattering (USAXS), and the thermal properties of coatings were measured using the laser flash method. The results indicated that: i) the…

[PHYS]Physics [physics]Materials sciencebusiness.industry02 engineering and technologySurfaces and InterfacesGeneral Chemistry021001 nanoscience & nanotechnologyCondensed Matter PhysicsMicrostructureLaser flash analysisSurfaces Coatings and FilmsThermal barrier coating[SPI]Engineering Sciences [physics]020303 mechanical engineering & transports0203 mechanical engineeringThermal insulationNano-Heat transferMaterials ChemistrySuspension plasma sprayComposite material0210 nano-technologyPorositybusinessComputingMilieux_MISCELLANEOUSSurface and Coatings Technology
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Water-stable cellulose fiber foam with antimicrobial properties for bio based low-density materials

2018

New bio-based packaging materials are highly interesting for replacing conventional fossil based products for a more sustainable society. Waterstable cellulose fiber foams have been produced in a simple one-batch foam-forming process with drying under ambient conditions. The cellulose fiber foams have a low density (33–66 kg/m3) and can inhibit microbial growth; two highly valuable features for insulating packaging materials, especially in combination with stability in water. Cationic chitosan and/or polyvinylamine have been added during the foamforming process to give the foams water-stability and antimicrobial properties. The structural and mechanical properties of the cellulose fiber foa…

antibacterialinsulationpolyvinylaminepackagingwet-stablechitosancitric acidantifungalcellulosic
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Life Cycle Energy and Environmental Assessment of the Thermal Insulation Improvement in Residential Buildings

2021

The refurbishment of the building stock is a key strategy towards the achievement of the climate and energy goals of the European Union. This study aims at evaluating the energy and environmental impacts associated with retrofitting a residential apartment to improve its vertical envelope thermal insulation. Two insulation materials, stone wool and cellulose fibers, are compared. The life cycle assessment methodology is applied assuming 1 m2 of retrofitted vertical envelope as functional unit. Moreover, to estimate the net energy and environmental benefits achievable in the retrofitted scenario compared with the non-retrofitted one, a second analysis is performed in which the system boundar…

bio-based materialsTechnologyControl and OptimizationPrimary energy020209 energyEnergy Engineering and Power Technology02 engineering and technology010501 environmental sciences01 natural sciencesCivil engineeringEnergy policylife cycle assessmentThermal insulationbuilding retrofitbuilding0202 electrical engineering electronic engineering information engineeringmedia_common.cataloged_instanceRetrofittingEnvironmental impact assessmentGebäudeElectrical and Electronic EngineeringEuropean unionEngineering (miscellaneous)Life-cycle assessment0105 earth and related environmental sciencesmedia_commonWohnungKlimawandelSettore ING-IND/11 - Fisica Tecnica AmbientaleNachhaltigkeitRenewable Energy Sustainability and the Environmentbusiness.industryTEnergiepolitiksustainabilityclimate changeSustainabilityEU-SILC 2010; building retrofit; thermal insulation; bio-based materials; energy; life cycle assessment; sustainabilityapartmentthermal insulationEnvironmental sciencebusinessBio‐based materials Building retrofit Energy Life cycle assessment Sustainability Thermal insulationEnergieenergy policyEnergy (miscellaneous)energy
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In-situ measurements of hemp-lime insulation materials for energy efficiency improvement

2018

Abstract Reduction of the CO2 emissions in the atmosphere is one of the goals set forth by the European Union, hence various directives have been adopted, such as the European directive 2012/27/EU on energy efficiency, i.e. ensuring from 2019 the construction of the near-zero energy buildings (nZEB). The construction segment plays a very important part in solving the current global problem of the greenhouse gas emissions and related processes of global warming, because in certain countries (i.e. in Latvia) it represents more than a half of the total energy consumption. Hence the necessity to elaborate means on how to boost the energy efficiency of the buildings meanwhile not rising pressure…

business.industry020209 energyGlobal warmingEnvironmental engineeringHumidity02 engineering and technology010501 environmental sciencesRaw material01 natural sciencesHeat fluxThermal insulationGreenhouse gas0202 electrical engineering electronic engineering information engineeringEnvironmental sciencemedia_common.cataloged_instanceEuropean unionbusiness0105 earth and related environmental sciencesEfficient energy usemedia_commonEnergy Procedia
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Polyurethane and Polyisocyanurate Foams in External Tank Cryogenic Insulation

2013

External tanks of the spacecrafts need not only efficient, but also safe cryogenic insulation materials and the issues of their development are still urgent. At present, polyurethane (PUR) or polyisocyanurate (PIR) foams’ cryogenic insulation is widely applied in the partially reusable launch systems. Factors influencing the cryogenic resistance of external thermal insulation performed of spray-on PUR or PIR foams are characterised based on a wide literature search. They include chemical structure and macromolecules’ architecture of polymeric matrix, physical and mechanical properties of foams, thermal stability and combustibility, cellular structure of foams etc. Experimental data on physi…

business.product_categoryMaterials scienceSpacecraftbusiness.industryPolymeric matrixPolyisocyanuratechemistry.chemical_compoundCombustibilitychemistryThermal insulationDrop tankThermal stabilityComposite materialbusinessPolyurethane
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Reinforcement Efficiency of Cellulose Microfibers for the Tensile Stiffness and Strength of Rigid Low-Density Polyurethane Foams

2020

Rigid low-density closed-cell polyurethane (PU) foams are widely used in both thermal insulation and structural applications. The sustainability of PU foam production can be increased by using bio-based components and fillers that ensure both enhanced mechanical properties and higher renewable material content. Such bio-based foams were produced using polyols derived from rapeseed oil and microcrystalline cellulose (MCC) fibers as filler. The effect of MCC fiber loading of up to 10 wt % on the morphology, tensile stiffness, and strength of foams has been evaluated. For estimation of the mechanical reinforcement efficiency of foams, a model allowing for the partial alignment of filler fibers…

business.product_categoryMaterials scienceYoung's modulus02 engineering and technology010402 general chemistry01 natural scienceslcsh:TechnologyArticlesymbols.namesakechemistry.chemical_compoundmicrocrystalline cellulose fibersThermal insulationMicrofiberUltimate tensile strengthpolymer matrix compositesGeneral Materials ScienceFiberYoung’s modulusCelluloseComposite materiallcsh:MicroscopyPolyurethanelcsh:QC120-168.85lcsh:QH201-278.5business.industrylcsh:T021001 nanoscience & nanotechnologyrigid polyurethane foams0104 chemical sciencesMicrocrystalline cellulosechemistrytensile strengthlcsh:TA1-2040symbolslcsh:Descriptive and experimental mechanicslcsh:Electrical engineering. Electronics. Nuclear engineering0210 nano-technologybusinesslcsh:Engineering (General). Civil engineering (General)lcsh:TK1-9971Materials
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The Impact of Green Roofs on the Parameters of the Environment in Urban Areas—Review

2019

This study presents the results of a review of publications conducted by researchers in a variety of climates on the implementation of ‘green roofs’ and their impact on the urban environment. Features of green roofs in urban areas have been characterized by a particular emphasis on: Filtration of air pollutants and oxygen production, reduction of rainwater volume discharged from roof surfaces, reduction of so-called ‘urban heat islands’, as well as improvements to roof surface insulation (including noise reduction properties). The review of the publications confirmed the necessity to conduct research to determine the coefficients of the impact of green roofs on the environment in the city c…

green roofAtmospheric ScienceUrban agglomerationurban areasair pollutionGreen roofrainwater0211 other engineering and technologiesAir pollution02 engineering and technology010501 environmental sciencesEnvironmental Science (miscellaneous)medicine.disease_cause01 natural sciencesCivil engineeringroof insulationRainwater harvestingmedicine021108 energyUrban heat islandRoof0105 earth and related environmental sciencesnoise reductionplantsmodelingurban heat islandWork (electrical)Environmental scienceenvironmentUrban environmentAtmosphere
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Multilayer blue-green roofs as nature-based solutions for water and thermal insulation management

2022

Abstract Green roofs have been widely recognized as sustainable nature-based solutions to mitigate floods in urban areas, which, in the last decades, are increasing due to the combination of intense worldwide urbanization and climate change. Besides flood mitigation, green roofs provide additional benefits for the urban environment (e.g., reducing the urban heat island and ensuring energy saving for the underneath building). Moreover, green roofs facilitate the increase of urban biodiversity, attracting different species of small animals, and upgrade the city aesthetic value. Among the different types of green roofs, multilayer blue-green roofs present an additional layer to store water dur…

green roofswater managementGreen roofnature-based solutionSettore ICAR/02 - Costruzioni Idrauliche E Marittime E Idrologiathermal insulationresiliencenature-based solutionsWater Science and TechnologyHydrology Research
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Termomodernizacje budynków, a miejsca lęgowe chronionych gatunków ptaków - zagrożenie czy szansa?

2017

Teoretycznie prace związane z termoizolacją budynków, szczególnie bloków mieszkalnych, powinny zostać poprzedzone ekspertyzą ornitologiczną. Nawet jeśli takowa będzie miała miejsce, montowane budki lęgowe kompensujące utratę miejsc lęgowych dla takich gatunków jak wróbel (Passer domesticus) lub jerzyk (Apus apus) często wieszane są nieprawidłowo lub zasiedlone są w następnym sezonie przez inne dziuplaki - głównie szpaki (Sturnus vulgaris). Wobec tego, z punktu widzenia ochrony lęgowych i zagrożonych gatunków, termoizolacja jest uważana za szkodliwą i przynoszącą straty. Jednak w miarę upływu czasu,paradoksalnie, warstwa izolacyjna stwarza ponownie warunki do gniazdowania głównie dzięki nied…

insulationmiejsca lęgowemodernizacjaptaki chronionebreeding sitesizolacjaprotected bird speciesmodernization
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Model research on the influence of green roofs on environmental parameters in urban agglomerations

2018

The intensive development of urban agglomerations in Poland and other European countries has rendered the growth of biologically active areas more important with respect the quality of the urban environment. Taking the rapidly rising prices of plots in city centers into consideration, it is worth noting the vast surfaces of building roofs that can be used as biologically active areas. The term green roof is to be understood as an open, overgrown surface on a multilayer roof of a building. Green roofs can only be made on a planar surface with an inclination of 2% to 30%. In accordance with the type of usage, construction factors and maintenance requirements, green roofs are typically defined…

lcsh:GE1-350Pollutantgreen roofUrban agglomerationbusiness.industryurban areasair pollutionGreen roofrainwater0211 other engineering and technologiesEnvironmental engineering02 engineering and technology010501 environmental sciencesParticulates01 natural sciencesRainwater harvestingThermal insulationEnvironmental science021108 energyheavy metalsbusinessSurface runoffRooflcsh:Environmental sciences0105 earth and related environmental sciencesE3S Web of Conferences
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