Search results for "Environmentally friendly"

showing 10 items of 82 documents

A New Environmentally-Friendly Colorimetric Probe for Formaldehyde Gas Detection under Real Conditions

2018

[EN] A new environmentally-friendly, simple, selective and sensitive probe for detecting formaldehyde, based on naturally-occurring compounds, through either colorimetric or fluorescence changes, is described. The probe is able to detect formaldehyde in both solution and the gas phase with limits of detection of 0.24 mM and 0.7 ppm, respectively. The probe has been tested to study formaldehyde emission in contaminated real atmospheres. The supported probe is easy to use and to dispose, and is safe and suitable as an individual chemodosimeter.

Materials scienceInorganic chemistryFormaldehydePharmaceutical ScienceGas phase010402 general chemistry01 natural sciencesAnalytical ChemistryGas phaselcsh:QD241-441chemistry.chemical_compoundchromogenic sensorlcsh:Organic chemistryLimit of DetectionFormaldehydeDrug DiscoveryPhysical and Theoretical ChemistryDetection limitPictet-Spengler010405 organic chemistryCommunicationOrganic ChemistryEnvironmentally friendlyenvironmentally-friendlyChromogenic sensor0104 chemical sciencesEnvironmentally-friendlySolutionsSpectrometry FluorescencechemistryChemistry (miscellaneous)Molecular MedicineformaldehydeColorimetrygas phaseMolecules
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Hydrothermal synthesis of nanostructured zirconia materials: Present state and future prospects

2005

Abstract Hydrothermal procedures for the synthesis of zirconia-doped nanocrystalline powders show important advantages from the thermodynamic and kinetic point of view (larger domain stability of solid species, faster kinetics crystallisation) as well as from technological point of view (one-step synthesis process at low temperatures, better control of the crystallisation and grain sizes with possibilities to obtain nanocrystalline materials, versatility, environmental friendly technology). Establishment of the conditions for obtaining ZrO2-doped with different oxides is based on thermodynamic predictions. Kinetic modelling of the hydrothermal synthesis of zirconia nanopowders is presented.…

Materials scienceMetals and AlloysIonic bondingNanotechnologyCondensed Matter PhysicsEnvironmentally friendlyHydrothermal circulationNanocrystalline materialSurfaces Coatings and FilmsElectronic Optical and Magnetic MaterialsNanomaterialsMaterials ChemistryIonic conductivityHydrothermal synthesisCubic zirconiaElectrical and Electronic EngineeringInstrumentationSensors and Actuators B: Chemical
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Quality Control of Agrochemical Formulations by Diffuse Reflectance near Infrared Spectrometry

2008

A near infrared (NIR)-based methodology has been developed for the determination of 11 pesticides in commercially available formulations. This solvent free, fast and environmentally friendly method was based on the direct measurement of the diffuse reflectance spectra of solid samples, a hierarchical cluster classification and the use of multivariate calibration models to determine each considered active principle in agrochemicals. The proposed partial least squares (PLS) models used for quantification of each compound were built from specific calibration sets composed of nine spectra corresponding to triplicate measurements of a single well characterised commercial sample and two addition…

Materials scienceQuality (physics)Solvent freeAgrochemicalbusiness.industryNear-infrared spectroscopyAnalytical chemistryNear-Infrared SpectrometryDiffuse reflectionbusinessEnvironmentally friendlySpectroscopyJournal of Near Infrared Spectroscopy
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Pickering Emulsions Based on Wax and Halloysite Nanotubes: An Ecofriendly Protocol for the Treatment of Archeological Woods

2020

A novel green protocol for the consolidation and protection of waterlogged archeological woods with wax microparticles has been designed. First, we focused on the development of halloysite nanotubes (HNTs) based Pickering emulsions using wax as the inner phase of the oil-in-water droplets. The optimization of the preparation strategy was supported by both optical microscopy and scanning electron microscopy, which allowed us to show the morphological features of the prepared hybrid systems and their structural properties, i.e., the distribution of the clay at the interface. Also, the dependence of the overall dimensions of the prepared systems on the halloysite content was demonstrated. Micr…

Materials scienceScanning electron microscope02 engineering and technologyengineering.material010402 general chemistry01 natural sciencesHalloysitelaw.inventionnanotubesOptical microscopeFlexural strengthlawGeneral Materials SciencehalloysitewaxWaxNanocompositenanocomposite021001 nanoscience & nanotechnologyArchaeologyEnvironmentally friendlyPickering emulsion0104 chemical sciencesPickering emulsionvisual_artengineeringvisual_art.visual_art_medium0210 nano-technologyResearch ArticlewoodACS Applied Materials & Interfaces
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Phytoremediation and Plant-Assisted Bioremediation in Soil and Treatment Wetlands: A Review

2015

Phytoremediation is a technology that is based on the combined action of plants and their associated microbial communities to degrade, remove, transform, or immobilize toxic compounds located in soils, sediments, and more recently in polluted ground water and wastewater in treatment wetlands. Phytoremediation could be used to treat different types of contaminants including petroleum hydrocarbons, chlorinated solvents, pesticides, explosives, heavy metals and radionuclides in soil and water. The advantages of phytoremediation compared to conventional techniques are lower cost, low disruptiveness to the environment, public acceptance, and potentiality to remediate various pollutants. The use …

Pollutantgeographygeography.geographical_feature_categoryBiomedical EngineeringBiophysicsEnvironmental engineeringfood and beveragesBioengineeringWetlandBiochemistryEnvironmentally friendlyPhytoremediationBioremediationAgronomyWastewaterSoil waterEnvironmental scienceGroundwaterBiotechnologyThe Open Biotechnology Journal
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Antimicrobial additives for poly(lactic acid) materials and their applications: current state and perspectives

2018

Poly(lactic acid)-based antimicrobial materials received considerable attention as promising systems to control microbial growth. The remarkable physicochemical properties of PLA such as renewability, biodegradability, and US Food and Drug Administration (FDA) approval for clinical use open up interesting perspectives for application in food packaging and biomedical materials. Nowadays, there is an increasing consumer demands for fresh, high-quality, and natural foods packaged with environmentally friendly materials that prolong the shelf life. The incorporation of antimicrobial agents into PLA-based polymers is likely to lead to the next generation of packaging materials. The development o…

PolyestersAntimicrobial agentNanotechnology02 engineering and technologyProcessingengineering.material010402 general chemistryShelf life01 natural sciencesApplied Microbiology and BiotechnologyFood packagingchemistry.chemical_compoundCoatingPoly(lactic acid)Oils VolatileAntimicrobial agents Delivery systems Food packaging Poly(lactic acid) Processing Biotechnology Applied Microbiology and BiotechnologyDelivery systemChemistryGeneral MedicineBiodegradation021001 nanoscience & nanotechnologyAntimicrobialEnvironmentally friendlyAnti-Bacterial Agents0104 chemical sciencesLactic acidFood packagingSettore ING-IND/22 - Scienza E Tecnologia Dei MaterialiengineeringDelivery system0210 nano-technologyBiotechnologyApplied Microbiology and Biotechnology
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A facile and eco-friendly route to fabricate poly(Lactic acid) scaffolds with graded pore size

2016

Over the recent years, functionally graded scaffolds (FGS) gaineda crucial role for manufacturing of devices for tissue engineering. The importance of this new field of biomaterials research is due to the necessity to develop implants capable of mimicking the complex functionality of the various tissues, including a continuous change from one structure or composition to another. In this latter context, one topic of main interest concerns the design of appropriate scaffolds for bone-cartilage interface tissue. In this study, three-layered scaffolds with graded pore size were achieved by melt mixing poly(lactic acid) (PLA), sodium chloride (NaCl) and polyethylene glycol (PEG). Pore size distr…

Pore sizeMaterials sciencePolymersGeneral Chemical EngineeringParticulate leachingBiocompatible MaterialsBioengineeringContext (language use)02 engineering and technologyPolyethylene glycol010402 general chemistry01 natural sciencesGeneral Biochemistry Genetics and Molecular BiologyPolyethylene Glycolschemistry.chemical_compoundTissue engineeringMelt mixingPEG ratioHumansLactic AcidPorosityTissue EngineeringTissue ScaffoldsGeneral Immunology and MicrobiologyGeneral NeuroscienceInterface tissue engineeringPore size gradientFunctionally graded scaffold021001 nanoscience & nanotechnologyEnvironmentally friendlyPEG0104 chemical sciencesLactic acidchemistryChemical engineeringPLA0210 nano-technologyPorosity
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Smart Cooling System for Milk Transportation in Rural Areas

2021

In the dairy industry, road milk tankers transport milk from one location to another. The milk inside the tanker needs to be kept between 3–5 °C to ensure that the quality of milk is always preserved. The tanker needs to be kept running at all time with the case of sufficient energy being continuously supplied to the cooling unit. The source of energy normally used for this application is a typical generator which needs fuel to operate. This is expensive and is not environmentally friendly. To address this problem, generator as a source of energy needs to be replaced by solar energy to lower the costs associated with cooling of the tanker. In this research a small scale solar powered intell…

Programmable logic deviceGenerator (circuit theory)Thermoelectric coolingbusiness.industryScale (chemistry)Programmable logic controllerWater coolingEnvironmental scienceComputerApplications_COMPUTERSINOTHERSYSTEMSSolar energybusinessEnvironmentally friendlyAutomotive engineering2021 IEEE International IOT, Electronics and Mechatronics Conference (IEMTRONICS)
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Rapid Catalytic Water Disinfection from Earth Abundant Ca 2 Fe 2 O 5 Brownmillerite

2021

Water disinfection is a crucial challenge for humanity. Approaches that are effective, cheap, environmentally friendly, and do not promote gene exchange between bacteria are urgently required. Strongly oxidizing radicals are highly promising to achieve this as they lead to bacterial activation at high efficiencies. However, sources to consistently generate these radicals are limited to high energy UV/H2O2 treatments requiring a large energy input. Here the use of abundant, cheap, brownmillerite (Ca2Fe2O5) is demonstrated as an efficient radical generation material under dark conditions, showing a seven order of magnitude decrease in bacterial concentration over 10 min. This decrease is attr…

Renewable Energy Sustainability and the EnvironmentChemistryRadicalengineering.materialPulp and paper industryEnvironmentally friendlyCatalysischemistry.chemical_compoundOxidizing agentengineeringBrownmilleriteHydroxyl radicalWater disinfectionSludgeGeneral Environmental ScienceAdvanced Sustainable Systems
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Glucose as an Eco‐Friendly Reductant in a One‐Pot Synthesis of 2,3‐Dihydroquinazolin‐4(1 H )‐ones

2020

SUSTENTABILIDADEChemistryOrganic ChemistryOne-pot synthesisBiomassOrganic chemistryPhysical and Theoretical ChemistryEnvironmentally friendlyEuropean Journal of Organic Chemistry
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