Search results for "Metakaolin"

showing 10 items of 12 documents

Surrogate models for the compressive strength mapping of cement mortar materials

2021

Despite the extensive use of mortar materials in constructions over the last decades, there is not yet a robust quantitative method available in the literature, which can reliably predict their strength based on the mix components. This limitation is attributed to the highly nonlinear relation between the mortar’s compressive strength and the mixed components. In this paper, the application of artificial intelligence techniques for predicting the compressive strength of mortars is investigated. Specifically, Levenberg–Marquardt, biogeography-based optimization, and invasive weed optimization algorithms are used for this purpose (based on experimental data available in the literature). The c…

0209 industrial biotechnologyArtificial neural networksbusiness.industryComputer scienceCementCompressive strengthComputational intelligence02 engineering and technologyStructural engineeringSoft computing techniquesTheoretical Computer ScienceMortarSettore ICAR/09 - Tecnica Delle CostruzioniNonlinear system020901 industrial engineering & automationCompressive strength0202 electrical engineering electronic engineering information engineering020201 artificial intelligence & image processingGeometry and TopologyMortarbusinessMetakaolinSoftwareCement mortarSoft Computing
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Unexplored alternative use of calcareous sludge from the paper-pulp industry in green geopolymer construction materials

2020

Abstract Calcareous sludge is an alkaline waste produced by the paper pulp industry that is commonly disposed of in land-fill. However, recent studies and the European regulations discourage such practice. This work investigates an alternative and innovative way to recycle and reuse this waste, as filler, in the production of green geopolymeric mortars intended for applications in construction. This is the first time that this calcareous sludge is used to produce novel waste-based materials, in both construction and geopolymer technology. The novel alkali-activated mortar also uses biomass fly ash – another slightly investigated waste stream – to substitute the metakaolin (70 wt% substituti…

0211 other engineering and technologiesBiomassSettore ICAR/10 - Architettura Tecnica020101 civil engineering02 engineering and technologyReuseengineering.material0201 civil engineeringLife environmentFiller (materials)021105 building & constructionGeneral Materials ScienceMetakaolinCivil and Structural EngineeringCalcareous sludgeWaste managementBiomass fly ashBuilding and ConstructionConstruction materialGeopolymer mortarGeopolymerFly ashengineeringEnvironmental scienceMortarCalcareousPaper-pulp industry
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Metakaolin geopolymer characterization and application for ammonium removal from model solutions and landfill leachate

2016

Abstract Geopolymers are aluminosilicate compounds that are amorphous analogues of zeolites, and thus possess similar cation-exchange properties. Geopolymers have been successfully applied to remove toxic metals and organic dyes from aqueous solutions. In this study, geopolymer was synthesized from metakaolin and applied to remove ammonium (NH 4 + ) from model solutions and landfill leachate. Geopolymerization increased the ammonium removal capacity, surface area and average pore width and changed the chemical structure of metakaolin. The maximum NH 4 + removal capacity of the geopolymer was 21.07 mg g − 1 which was 46% higher than the capacity of the reference clinoptilolite–heulandite zeo…

021110 strategic defence & security studiesAqueous solutionChemistry0211 other engineering and technologiesGeology02 engineering and technology010501 environmental sciences01 natural sciencesGeopolymerchemistry.chemical_compoundAdsorptionChemical engineeringGeochemistry and PetrologyAluminosilicateAmmoniumLeachateZeoliteMetakaolin0105 earth and related environmental sciencesApplied Clay Science
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Chromium liquid waste inertization in an inorganic alkali activated matrix: Leaching and NMR multinuclear approach

2015

A class of inorganic binders, also known as geopolymers, can be obtained by alkali activation of aluminosilicate powders at room temperature. The process is affected by many parameters (curing time, curing temperature, relative humidity etc.) and leads to a resistant matrix usable for inertization of hazardous waste. In this study an industrial liquid waste containing a high amount of chromium (≈ 2.3 wt%) in the form of metalorganic salts is inertized into a metakaolin based geopolymer matrix. One of the innovative aspects is the exploitation of the water contained in the waste for the geopolymerization process. This avoided any drying treatment, a common step in the management of liquid ha…

ChromiumMagnetic Resonance SpectroscopyEnvironmental EngineeringMaterials scienceHealth Toxicology and MutagenesisIndustrial Wastechemistry.chemical_elementSs MAS NMR geopolymerWaste Disposal FluidInertizationIndustrial wasteChromiumAluminosilicateEnvironmental ChemistryWaste Management and DisposalDissolutionCuring (chemistry)MetakaolinSettore CHIM/02 - Chimica FisicaWaste managementChromium liquid wastePollutionLeaching testHealth Toxicology and MutagenesiGeopolymerchemistryAluminum SilicatesChromium liquid waste Inertization Leaching test ss MAS NMR geopolymersLeaching (metallurgy)Nuclear chemistryJournal of Hazardous Materials
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Alkali activated materials using pumice from the Aeolian Islands (Sicily, Italy) and their potentiality for cultural heritage applications: Prelimina…

2020

Abstract In this paper, the potentialities of pumice-based geopolymers have been explored with the aim to evaluate their use as restoration materials. In particular, the behaviour of Aeolian pumice during alkali activation process, either alone or in binary mixtures with metakaolin, has been assessed using sodium hydroxide and sodium silicate activators. Hardened products were characterized by: X-ray diffraction; infrared spectroscopy; thermo gravimetry and electron microscopy. Furthermore, Hg-intrusion porosimetry, water absorption, compressive strength and colorimetric measurements were carried out in order to define the technical features of the produced geopolymers. The results reveal t…

Materials scienceAbsorption of waterMetallurgySodium silicateAlkali activation; Cultural Heritage; Geopolymer binders; PumiceBuilding and ConstructionPorosimetryCultural HeritageGeopolymer binderschemistry.chemical_compoundSettore ING-IND/22 - Scienza E Tecnologia Dei MaterialiCompressive strengthAlkali activationPumicechemistrySodium hydroxidePumiceGeneral Materials SciencePorosityMetakaolinCivil and Structural Engineering
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Mix design and mechanical performance of geopolymeric binders and mortars using biomass fly ash and alkaline effluent from paper-pulp industry

2019

Abstract This work investigates the use of biomass fly ash (BFA) and an alkaline effluent (AEF), both generated from the Kraft pulp industry, in the preparation of geopolymeric binders and mortars for construction applications. BFA replaced the metakaolin (MK) while the AEF substituted the distilled water used to dissolve NaOH pellets. The mix design aims to maximize the amount of both the wastes and to optimize the materials properties, such as workability and mechanical performance. At the same time, also the environmental impact decreases enhancing the materials' sustainability and facilitating the circular economy. For the previously optimized BFA/MK ratio (70/30 wt.%) several NaOH/Na2S…

Materials scienceBiomass alkaline effluent020209 energyStrategy and ManagementPelletsSettore ICAR/10 - Architettura Tecnica02 engineering and technologyGeopolymerIndustrial and Manufacturing Engineering0202 electrical engineering electronic engineering information engineeringEffluentMetakaolin0505 lawGeneral Environmental ScienceBinderRenewable Energy Sustainability and the Environment05 social sciencesBiomass fly ashBuilding and ConstructionConstruction materialPulp and paper industryMortarCompressive strengthKraft processDistilled waterFly ash050501 criminologyMortar
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Removal of ammonium from municipal wastewater with powdered and granulated metakaolin geopolymer

2017

Abstract Ammonium (NH₄⁺) removal from municipal wastewater poses challenges with the commonly used biological processes. Especially at low wastewater temperatures, the process is frequently ineffective and difficult to control. One alternative is to use ion-exchange. In the present study, a novel NH4+ ion-exchanger, metakaolin geopolymer (MK-GP), was prepared, characterised, and tested. Batch experiments with powdered MK-GP indicated that the maximum exchange capacities were 31.79, 28.77, and 17.75 mg/g in synthetic, screened, and pre-sedimented municipal wastewater, respectively, according to the Sips isotherm (R² ≥ 0.91). Kinetics followed the pseudo-second-order rate equation in all case…

Polymers02 engineering and technologyion exchange010501 environmental sciencesWastewater01 natural sciencesWaste Disposal Fluidmunicipal wastewaterchemistry.chemical_compoundAlkali activationAmmonium CompoundsEnvironmental ChemistryAmmoniumKaolinWaste Management and DisposalMetakaolingeopolymer0105 earth and related environmental sciencesWater Science and TechnologyIon exchangeWaste managementChemistryGeneral Medicine021001 nanoscience & nanotechnologyGeopolymerammoniumWaste treatmentWastewaterWater treatmentSewage treatment0210 nano-technologyWater Pollutants Chemical
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Revealing the nature of metakaolin-based concrete materials using artificial intelligence techniques

2022

In this study, a model for the estimation of the compressive strength of concretes incorporating metakaolin is developed and parametrically evaluated, using soft computing techniques. Metakaolin is a component extensively employed in recent decades as a means to reduce the requirement for cement in concrete. For the proposed models, six parameters are accounted for as input data. These are the age at testing, the metakaolin percentage in relation to the total binder, the water-to-binder ratio, the percentage of superplasticizer, the binder to sand ratio and the coarse to fine aggregate ratio. For training and verification of the developed models a database of 867 experimental specimens has …

Settore ICAR/09 - Tecnica Delle CostruzioniGeneral Materials ScienceBuilding and ConstructionArtificial neural networks Compressive strength Concrete Machine learning Metakaolin Mix designCivil and Structural Engineering
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Novel biomass fly ash-based geopolymeric mortars using lime slaker grits as aggregate for applications in construction: Influence of granulometry and…

2019

Abstract This work discusses the influence of the aggregate granulometry and the binder/aggregate ratio on the engineering properties of novel green geopolymeric mortars. Two wastes generated by a Portuguese Kraft pulp industry are employed to manufacture the material: lime slaker grits (used as aggregate) and biomass fly ash (to partially replace the metakaolin − 70 wt% substitution). The novel geopolymeric mortars could find innovative applications as sustainable construction materials. The studied mix design foresees the use of several grits granulometric ranges and ratios binder/aggregate to discuss workability, water sorptivity, and mechanical performance of the novel mortars. To date,…

Sorptivity0211 other engineering and technologiesSettore ICAR/10 - Architettura Tecnica020101 civil engineering02 engineering and technologyRaw materialengineering.materialGritGeopolymer0201 civil engineering021105 building & constructionGeneral Materials ScienceMetakaolinCivil and Structural EngineeringLimebusiness.industryBiomass fly ashBuilding and ConstructionConstruction materialMasonryPulp and paper industryMortarKraft processFly ashengineeringEnvironmental scienceMortarbusinessPaper-pulp industry
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Innovative Recycling of Lime Slaker Grits from Paper-Pulp Industry Reused as Aggregate in Ambient Cured Biomass Fly Ash-Based Geopolymers for Sustain…

2019

Lime slaker grits and biomass fly ash are solid wastes produced by the Kraft paper-pulp industry that are commonly disposed of in landfill. However, recent studies and European regulations discourage such disposal practices. This work investigates an alternative and innovative way to recycle and reuse these wastes in the production of green geopolymeric mortars intended for application in the construction industry. Here, biomass fly ash was used as the main source of alumino-silicate in the binder precursor (70 wt.% substitution to metakaolin), and grits (ranging from 1&ndash

constructionSorptivitygeopolymer concrete020209 energyGeography Planning and Developmentlcsh:TJ807-830lcsh:Renewable energy sourcesSettore ICAR/10 - Architettura Tecnica02 engineering and technology010501 environmental sciencesManagement Monitoring Policy and LawReuseengineering.materialrecyclinglime slaker grit01 natural sciences0202 electrical engineering electronic engineering information engineeringMetakaolinbiomass fly ashlcsh:Environmental sciences0105 earth and related environmental sciencesLimelcsh:GE1-350Waste managementRenewable Energy Sustainability and the Environmentlime slaker gritslcsh:Environmental effects of industries and plantspaper-pulp industryCompressive strengthlcsh:TD194-195Fly ashengineeringEnvironmental scienceMortarKraft paperSustainability
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