Search results for "Water treatment"

showing 10 items of 311 documents

Studies on mechanism and physico-chemical parameters at the origin of the cement setting II. Physico-chemical parameters determining the coagulation …

1996

The physico-chemical parameters determining the coagulation of cements grains previously identified as the first fundamental process of cement setting have been investigated in diluted suspensions using an adapted granulometric method. The analysis of the influence of the ionic concentration in solution on the coagulation reveals that calcium concentration is the parameter which determines the particle interactions. There exists a minimum critical concentration of calcium ions in solution which is required to occur the coagulation of cement particles and a dispersive effect appears for very high concentrations. The results are discussed in relation with DLVO theory and specific interactions.

CementMaterials scienceMetal ions in aqueous solutionIonic bondingMineralogychemistry.chemical_elementBuilding and ConstructionCalciumChemical engineeringchemistryParticle-size distributionParticleCoagulation (water treatment)DLVO theoryGeneral Materials ScienceCement and Concrete Research
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Physico-chemical parameters determining hydration and particle interactions during the setting of silicate cements

1997

Abstract Hydration of tricalcium silicate (Ca 3 SiO 5 ), the pure phase used as a model of the portland cements, is the chemical process leading to the formation of hydrates, while setting is a definite time event corresponding to the change of the paste from the soft to the hard state. Setting results from interactions between anhydrous or very partially hydrated particles. The analysis of these interactions leads to the identification of two fundamental steps: the coagulation of cement grains during the first minutes following the mixing and the rigidification of the coagulated structure which arises simultaneously with the acceleration of the calcium silicate hydrates (CSH) formation. …

CementMaterials scienceMineralogyGeneral Chemistryengineering.materialCondensed Matter PhysicsSilicatechemistry.chemical_compoundchemistryChemical engineeringCalcium silicateengineeringCoagulation (water treatment)ParticleGeneral Materials ScienceCalcium silicate hydrateSolubilityLimeSolid State Ionics
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Interactions between chemical evolution (hydration) and physical evolution (setting) in the case of tricalcium silicate

1994

This paper describes recent experimental results concerning investigation of the parameters which determine, on the one hand, the kinetics of hydration of tricalcium silicate and the thermodynamic, morphological and structural characteristics of C-S-H and, on the other hand, the evolution of the particle interactions at the origin of setting. It is shown that, in both cases, lime concentration in solution is the most important parameter. As a consequence, the chemical evolution of the system, which controls the lime concentration in solution, determines the nature of particle interactions and the physical evolution of the suspension or paste. In return, the contacts, between particles, resu…

ChemistryKineticsGeneral EngineeringThermodynamicsMineralogyBuilding and Constructionengineering.materialChemical reactionSuspension (chemistry)Chemical evolutionMechanics of MaterialsengineeringParticleCoagulation (water treatment)General Materials ScienceCivil and Structural EngineeringLimeTricalcium silicateMaterials and Structures
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Study on a photocatalytic membrane reactor for water purification

2000

Abstract Some results obtained in a photocatalytic membrane reactor, to be used for degradation of toxic organic species dissolved in water, are reported. The catalyst, TiO 2 P25 Degussa, was immobilised by means of a flat sheet polymeric membrane and 4-Nitrophenol (4-NP) was used as a model molecule to evaluate the reactor performance. A preliminary investigation of the stability, under UV irradiation, of some eligible polymeric membranes was carried out by using scanning electron microscopy (SEM), optical microscopy (OM), determinations of water permeation flux (WPF) and total organic carbon (TOC). These tests showed that commercial membranes made of fluoride + PP (FS 50 PP-Dow), polysulp…

ChromatographyMaterials scienceMembrane reactorScanning electron microscopePolyacrylonitrilePortable water purificationGeneral ChemistryPermeationCatalysischemistry.chemical_compoundMembraneChemical engineeringchemistryPhotocatalysisWater treatment
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Challenges and opportunities for citrus wastewater management and valorisation: A review.

2022

Citrus wastewaters (CWWs) are by-products of the citrus fruit transformation process. Currently, more than 700 million of m³ of CWWs per year are produced worldwide. Until nowadays, the management of CWWs is based on a take-make-use-dispose model. Indeed, after being produced within a citrus processing industry, CWWs are subjected to treatment and then discharged into the environment. Now, the European Union is pushing towards a take-make-use-reuse management model, which suggests to provide for the minimization of residual pollutants simultaneously with their exploitation through a biorefinery concept. Indeed, the recovery of energy nutrients and other value-added products held by CWWs may…

CitrusSoilEnvironmental EngineeringSettore ICAR/03 - Ingegneria Sanitaria-AmbientaleAgricultural reuse Circular economy model Costs and benefits analysis Extensive wastewater treatment Intensive wastewater treatment Wastewater reuseSettore AGR/13 - Chimica AgrariaSettore AGR/01 - Economia Ed Estimo RuraleAgricultureGeneral MedicineManagement Monitoring Policy and LawWastewaterWaste Management and DisposalJournal of environmental management
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Start-up with or without inoculum? Analysis of an SMBR pilot plant.

2010

This study analysed a submerged membrane bioreactor (SMBR) start-up with the purpose of determining the best conditions to carry it out. In order to do this, a hollow fibre membrane module was installed in a submerged configuration in a pilot aerobic reactor. The experiment was then divided in two phases, lasting 65 days each. During phase 1, the pilot plant was started-up without inoculum of activated sludge and no sludge, withdrawal was performed. Conversely, in phase 2, the MBR pilot plant was started-up with sludge inoculum and the sludge concentration was kept constant. In both phases, the volumetric loading rate applied to the pilot plant was kept constant. The authors analysed the di…

Complete sludge retention Floc size Fouling resistances Inoculum Sludge production Start-upFoulingMembrane reactorSettore ICAR/03 - Ingegneria Sanitaria-AmbientaleChemistryMechanical EngineeringGeneral Chemical EngineeringMembrane foulingEnvironmental engineeringstart-up.fouling resistanceGeneral ChemistryMembrane bioreactorPulp and paper industryfloc sizeActivated sludgePilot plantBioreactorGeneral Materials ScienceWater treatmentsludge productionComplete sludge retentioninoculumWater Science and Technology
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Some techniques for improving the resolution of finite difference component-wise WENO schemes for polydisperse sedimentation models

2014

Polydisperse sedimentation models can be described by a system of conservation laws for the concentration of each species of solids. Some of these models, as the Masliyah-Locket-Bassoon model, can be proven to be hyperbolic, but its full characteristic structure cannot be computed in closed form. Component-wise finite difference WENO schemes may be used in these cases, but these schemes suffer from an excessive diffusion and may present spurious oscillations near shocks. In this work we propose to use a flux-splitting that prescribes less numerical viscosity for component-wise finite difference WENO schemes. We compare this technique with others to alleviate the diffusion and oscillatory be…

Computational MathematicsNumerical AnalysisConservation lawWork (thermodynamics)ViscositySedimentation (water treatment)Component (thermodynamics)Applied MathematicsMathematical analysisFinite differenceDiffusion (business)Resolution (algebra)MathematicsApplied Numerical Mathematics
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Interacting processes in protein coagulation

1999

A strong interest is currently focused on protein self-association and deposit. This usually involves conformational changes of the entire protein or of a fragment. It can occur even at low concentrations and is responsible for pathologies such as systemic amyloidosis, Alzheimer's and Prion diseases, and other neurodegenerative pathologies. Readily available proteins, exhibiting at low concentration self-association properties related to conformational changes, offer very convenient model systems capable of providing insight into this class of problems. Here we report experiments on bovine serum albumin, showing that the process of conformational change of this protein towards an intermedia…

Conformational changeIntermediate formbiologyChemistryBiochemistrySystemic amyloidosisProtein coagulationBiochemistryStructural Biologybiology.proteinCoagulation (water treatment)Bovine serum albuminMolecular BiologyVolume concentrationProteins: Structure, Function, and Genetics
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Flotation with sedimentation: Steady states and numerical simulation of transient operation

2020

Abstract A spatially one-dimensional model of the hydrodynamics of a flotation column is based on one continuous phase, the fluid, and two disperse phases: the aggregates, that is, bubbles with attached hydrophobic valuable particles, and the solid particles that form the gangue. A common feed inlet for slurry mixture and gas is considered and the bubbles are assumed to be fully aggregated with hydrophobic particles as they enter the column. The conservation law of the three phases yields a model expressed as a system of partial differential equations where the nonlinear constitutive flux functions come from the drift-flux and solids-flux theories. In addition, the total flux functions are …

Conservation lawPartial differential equationMaterials scienceComputer simulationSedimentation (water treatment)Mechanical EngineeringNumerical analysis02 engineering and technologyGeneral ChemistryMechanics010501 environmental sciencesGeotechnical Engineering and Engineering Geology01 natural sciences020501 mining & metallurgyPhysics::Fluid DynamicsNonlinear system0205 materials engineeringControl and Systems EngineeringSlurryFroth flotation0105 earth and related environmental sciencesMinerals Engineering
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Cathodic reduction of hexavalent chromium coupled with electricity generation achieved by reverse-electrodialysis processes using salinity gradients

2014

Abstract A new approach for the simultaneous generation of electric energy and the treatment of waters contaminated by recalcitrant pollutants using salinity gradients was proposed. Reverse electrodialysis allows for the generation of electric energy from salinity gradients. Indeed, the utilization of different salt concentrations gives a potential difference between the electrodes which allows the generation of electric energy by using suitable electrolytes and an external circuit. The simultaneous generation of electric energy and the treatment of waters contaminated by Cr(VI) was successfully achieved for the first time by reverse electrodialysis processes using salinity gradients and pr…

Cr(VI)ChemistrySupporting electrolyteGeneral Chemical EngineeringElectrolytesalinity gradientVolumetric flow rateSalinitychemistry.chemical_compoundElectricity generationChemical engineeringStack (abstract data type)Waste water treatmentenergy generationEnvironmental chemistryReversed electrodialysisElectrochemistryreverse electrodialisyHexavalent chromium
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