Search results for "Note"

showing 10 items of 10709 documents

Wastewater treatment and reclamation : A review of pulp and paper industry practices and opportunities

2016

The pulp and paper (P&P) industry worldwide has achieved substantial progress in treating both process water and wastewater, thus limiting the discharge of pollutants to receiving waters. This review covers a variety of wastewater treatment methods, which provide P&P companies with cost-effective ways to limit the release of biological or chemical oxygen demand, toxicity, solids, color, and other indicators of pollutant load. Conventional wastewater treatment systems, often comprising primary clarification followed by activated sludge processes, have been widely implemented in the P&P industry. Higher levels of pollutant removal can be achieved by supplementary treatments, which…

Environmental EngineeringMaterials sciencelcsh:BiotechnologyACTIVATED-SLUDGE TREATMENTBioengineeringDISSOLVED-AIR FLOTATIONWastewater treatment02 engineering and technology010501 environmental sciencesWHITE-ROT FUNGI01 natural sciencesMILL EFFLUENT TREATMENTCHLORINATED ORGANIC-COMPOUNDS12. Responsible consumptionLand reclamationlcsh:TP248.13-248.65Bioreactoractivated sludgeadvanced oxidationMembrane technologiesWaste Management and DisposalEffluent0105 earth and related environmental sciencesmembrane technologiesPollutantBLEACHED KRAFT MILLpulp and paper manufacturingPulp and paper manufacturingWaste managementChemical oxygen demand021001 nanoscience & nanotechnologyPulp and paper industry6. Clean waterClarificationwastewater treatmentActivated sludgeWastewaterCATALYTIC WET OXIDATIONActivated sludge13. Climate actionANAEROBIC MEMBRANE BIOREACTORSAdvanced oxidationGREENHOUSE-GAS EMISSIONclarificationSewage treatment0210 nano-technologyMOLECULAR-WEIGHT DISTRIBUTION
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The impact of TiO2 modifications on the effectiveness of photocatalytic processes [review]

2018

This paper outlines the recent studies on the application of photocatalysis using semiconductors, with modified titanium dioxide (TiO2) in the process of reducing chemical contamination of surface and ground waters. During the last forty years, an increasing interest in catalysts of this type is noticeable. Hence, a wide range of methods of TiO2 modifications have been proposed so far by using its various polymorphs, composites with metals and non-metals and polymer-coatings or impregnating it with dyes that effectively absorb sunlight.

Environmental EngineeringMaterials sciencemetalsEnvironmental pollutiondoping02 engineering and technology010501 environmental sciencesdyes01 natural sciencesChemical kineticschemistry.chemical_compoundlcsh:Technology (General)lcsh:Technological innovations. AutomationPhotodegradation0105 earth and related environmental sciencesnon-metalslcsh:HD45-45.2titanium dioxideRenewable Energy Sustainability and the Environment021001 nanoscience & nanotechnologychemistryChemical engineeringTitanium dioxidePhotocatalysislcsh:T1-995photodegradation0210 nano-technologyEnergy (miscellaneous)Acta Innovations
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Preparation of fouling resistant and highly perm-selective novel PSf/GO-vanillin nanofiltration membrane for efficient water purification

2022

International audience; To meet the rising global demand for water, it is necessary to develop membranes capable of efficiently purifying contaminated water sources. Herein, we report a series of novel polysulfone (PSf)/GO-vanillin nanofiltration membranes highly permeable, selective, and fouling resistant. The membranes are composed of two-dimensional (2D) graphite oxide (GO) layers embedded with vanillin as porogen and PSf as the base polymer. There is a growing interest in addressing the synergistic effect of GO and vanillin on improving the permeability and antifouling characteristics of membranes. Various spectroscopic and microscopic techniques were used to perform detailed physicoche…

Environmental EngineeringPolymersHealth Toxicology and Mutagenesischemistry.chemical_elementPortable water purification02 engineering and technology010402 general chemistry01 natural sciencesWater PurificationBiofoulingchemistry.chemical_compoundEnvironmental Chemistry[CHIM]Chemical SciencesPolysulfoneSulfonesWaste Management and DisposalSalt rejectionFoulingMagnesiumStrategic Defence & Security StudiesFouling resistantVanillinMembranes ArtificialOxidesPSf/GO-vanillin membrane021001 nanoscience & nanotechnologyPollution6. Clean waterNanofiltration0104 chemical sciencesMembranechemistryChemical engineering03 Chemical Sciences 05 Environmental Sciences 09 EngineeringBenzaldehydesMixed matrix membraneGraphiteNanofiltration0210 nano-technology
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The role of EPS in the foaming and fouling for a MBR operated in intermittent aeration conditions

2016

Abstract This work investigates the causes of foaming and fouling in an Intermittent Aerated – Membrane BioReactor (IA-MBR) used for wastewater treatment. The experiment was divided into three periods with different aerated regimes expressed with different t aeration /t cycle ratio (Period I: 60 min/180 min, Period II: 80 min/180 min, Period III: 30 min/90 min). The advanced foaming tests used allow the study of the role of extracellular polymeric substances (EPSs) on foaming and fouling. In general, in the Periods I and II, good correlations between the EPSs and the Modified Scum Index without purification (MSI 0 ) and the Foam Power were observed. The results shown that the filamentous mi…

Environmental EngineeringSegmented filamentous bacteriaBiomedical EngineeringEPS; Filamentous bacteria; Foaming; Fouling; IA-MBR; Biotechnology; Bioengineering; Environmental Engineering; Biomedical EngineeringBioengineering02 engineering and technology010501 environmental sciencesMembrane bioreactor01 natural scienceslaw.inventionExtracellular polymeric substancelawFiltration0105 earth and related environmental sciencesEPS; Filamentous bacteria; Foaming; Fouling; IA-MBRIA-MBRSettore ICAR/03 - Ingegneria Sanitaria-AmbientaleFoulingChemistryEnvironmental engineeringFouling021001 nanoscience & nanotechnologyPulp and paper industryFilamentous bacteriaMembraneSewage treatmentEPSAerationIA-MBR Filamentous bacteria Foaming Fouling EPS0210 nano-technologyFoamingBiotechnologyBiochemical Engineering Journal
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Sulphate Removal from Water by Carbon Residue from Biomass Gasification: Effect of Chemical Modification Methods on Sulphate Removal Efficiency

2016

Sulphate removal from mine water is a problem because traditional chemical precipitation does not remove all sulphates. In addition, it creates lime sediment as a secondary waste. Therefore, an inexpensive and environmental-friendly sulphate removal method is needed in addition to precipitation. In this study, carbon residues from a wood gasification process were repurposed as precursors to a suitable sorbent for SO42- ion removal. The raw material was modified using ZnCl2, BaCl2, CaCl2, FeCl3, or FeCl2. Carbon residues modified with FeCl3 were selected for further consideration because the removal efficiency toward sulphate was the highest. Batch sorption experiments were performed to eval…

Environmental EngineeringSorbentActivated carbonlcsh:BiotechnologyInorganic chemistryBioengineering02 engineering and technology010501 environmental sciencesengineering.materialRaw material01 natural scienceslcsh:TP248.13-248.65medicineWaste Management and Disposal0105 earth and related environmental sciencesLimeWood gas generatorPrecipitation (chemistry)ChemistryChemical modificationSorption021001 nanoscience & nanotechnologysulphateengineeringCarbon residueSorption0210 nano-technologychemical modificationActivated carbonmedicine.drugBioResources
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Ionic liquids gels: Soft materials for environmental remediation

2017

Abstract Hypothesis Nanostructured sorbents and, in particular, supramolecular gels are emerging as efficient materials for the removal of toxic contaminants from water, like industrial dyes. It is also known that ionic liquids can dissolve significant amounts of dyes. Consequently, supramolecular ionic liquids gels could be highly efficient sorbents for dyes removal. This would also contribute to overcome the drawbacks associated with dye removal by liquid–liquid extraction with neat ionic liquids which would require large volumes of extractant and a more difficult separation of the phases. Experiments Herein we employed novel supramolecular ionic liquid gels based on diimidazolium salts b…

Environmental remediationDiimidazolium saltSupramolecular chemistrySurfaces Coatings and FilmIonic bonding02 engineering and technologyIonic liquid010402 general chemistry01 natural sciencesBiomaterialsRhodaminechemistry.chemical_compoundColloid and Surface ChemistryAdsorptionDye removalWater treatmentElectronic Optical and Magnetic MaterialEnvironmental remediationExtraction (chemistry)Cationic polymerizationSettore CHIM/06 - Chimica Organica021001 nanoscience & nanotechnologyBiomaterial0104 chemical sciencesSurfaces Coatings and FilmsElectronic Optical and Magnetic MaterialschemistryChemical engineeringSupramolecular gelIonic liquid0210 nano-technologyJournal of Colloid and Interface Science
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Remediation of Solutions Containing Oxyanions of Selenium by Ultrafiltration: Study of Rejection Performances with and without Chitosan Addition

2017

Among the various technical options for removing ionic contaminants from wastewaters, membrane processes and especially their coupling with polymer addition have been proven to provide worthwhile prospects for the removal of metal cations. Nevertheless, their use for the removal of anionic pollutants such as oxyanions has been little studied in the literature. In the present work, the rejection of oxyanions forms of Se(IV) and Se(VI) by tight ultrafiltration membranes was deeply investigated under various experimental conditions. This paper aims at understanding the mechanisms governing oxyanion rejection and determining the potential ways to improve performances. It is first shown that sel…

Environmental remediationGeneral Chemical EngineeringInorganic chemistryUltrafiltrationIonic bondingchemistry.chemical_elementOxyanion02 engineering and technology010501 environmental sciences01 natural sciences[ CHIM ] Chemical SciencesIndustrial and Manufacturing EngineeringMetalChitosanchemistry.chemical_compoundComputingMilieux_MISCELLANEOUS0105 earth and related environmental sciencesGeneral Chemistry021001 nanoscience & nanotechnology6. Clean water[ CHIM.POLY ] Chemical Sciences/PolymersMembrane[CHIM.POLY]Chemical Sciences/Polymerschemistry13. Climate actionvisual_artvisual_art.visual_art_medium0210 nano-technologySelenium
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Cyclodextrins as a Key Piece in Nanostructured Materials: Quantitation and Remediation of Pollutants

2021

Separation and pre-concentration of trace pollutants from their matrix by reversible formation of inclusion complexes has turned into a widely studied field, especially for the benefits provided to different areas. Cyclodextrins are non-toxic oligosaccharides that are well known for their host–guest chemistry, low prices, and negligible environmental impact. Therefore, they have been widely used as chiral selectors and delivery systems in the pharmaceutical and food industry over time. However, their use for extraction purposes is hampered by their high solubility in water. This difficulty is being overcome with a variety of investigations in materials science. The setting-up of novel solid…

Environmental remediationGeneral Chemical Engineeringhost–guest adsorptionReview02 engineering and technology01 natural sciencessupramolecular chemistrylcsh:ChemistryMatrix (chemical analysis)Adsorptionnanostructured materialsGeneral Materials ScienceSolubilityPollutantchemistry.chemical_classificationCyclodextrinNanostructured materials010401 analytical chemistryTrace pollutants021001 nanoscience & nanotechnology0104 chemical scienceslcsh:QD1-999cyclodextrinchemistrypollutantBiochemical engineering0210 nano-technologyNanomaterials
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Recent Developments in Understanding Biochar’s Physical–Chemistry

2021

Biochar is a porous material obtained by biomass thermal degradation in oxygen-starved conditions. It is nowadays applied in many fields. For instance, it is used to synthesize new materials for environmental remediation, catalysis, animal feeding, adsorbent for smells, etc. In the last decades, biochar has been applied also to soils due to its beneficial effects on soil structure, pH, soil organic carbon content, and stability, and, therefore, soil fertility. In addition, this carbonaceous material shows high chemical stability. Once applied to soil it maintains its nature for centuries. Consequently, it can be considered a sink to store atmospheric carbon dioxide in soils, thereby mitigat…

Environmental remediationSettore AGR/13 - Chimica AgrariaBiomass02 engineering and technology010501 environmental sciencesCarbon sequestration01 natural scienceslcsh:AgricultureEnvironmental protectionBiocharsoil quality0105 earth and related environmental sciencesSettore CHIM/02 - Chimica Fisicalcsh:SSoil carbonsoil remediationSettore CHIM/06 - Chimica Organica021001 nanoscience & nanotechnologypyrolysisSoil qualitycarbon sequestrationCarbon sequestration; Charcoal; New materials; Pyrolysis; Soil quality; Soil remediationSoil structureEnvironmental scienceSoil fertilitynew materials0210 nano-technologyAgronomy and Crop Sciencecharcoal
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Treatment of heavy petroleum hydrocarbons polluted soil leachates by ultrafiltration and oxidation for surfactant recovery

2018

Abstract Surfactant technology can improve the remediation of soils polluted by semivolatile hydrophobic contaminants, like polycyclic aromatic hydrocarbons (PAHs), by enhancing their solubility in water. However, the recovery of surfactant from soil-leachates is critical for the economic feasibility of this treatment technology. To tackle this issue, ultrafiltration (UF) and its combination with permanganate, is reported for the selective recovery of surfactant from wastewater contaminated by a complex mixture of heavy hydrocarbons mainly composed of PAHs. The overall performance of the process including the successive steps of contaminant mobilization in leachates and surfactant recovery …

Environmental remediationUltrafiltration02 engineering and technology010501 environmental sciences01 natural scienceschemistry.chemical_compoundPulmonary surfactantChemical Engineering (miscellaneous)[CHIM]Chemical SciencesSolubilityWaste Management and DisposalComputingMilieux_MISCELLANEOUS0105 earth and related environmental scienceschemistry.chemical_classificationChemistry[SDE.IE]Environmental Sciences/Environmental EngineeringProcess Chemistry and TechnologyPermanganateExtraction (chemistry)021001 nanoscience & nanotechnologyPollution6. Clean waterHydrocarbonWastewater13. Climate actionEnvironmental chemistry0210 nano-technology
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