Search results for "Sample preparation"

showing 10 items of 343 documents

The pore structure of compacted and partly saturated MX-80 bentonite at different dry densities

2014

Compacted MX-80 bentonite is a potential backfill material in radioactive-waste repositories. Pore space in MX-80 has been the subject of considerable debate. 3D reconstructions of the pore space based on tomographic methods could provide new insights into the nature of the pore space of compacted bentonites. To date, few such reconstructions have been done because of problems with the preparation of bentonite samples for electron microscopy. The nanoscale intergranular pore space was investigated here by cryo-Focused Ion Beam nanotomography (FIB-nt) applied to previously high-pressure frozen MX-80 bentonite samples. This approach allowed a tomographic investigation of the in situ microstru…

Materials scienceClay GelMineralogyMX-80 BentoniteSoil ScienceIntergranular corrosionMicrostructureClay GelsNanotomographyHoneycomb structureColloidCryo-sample PreparationGeochemistry and PetrologyBentoniteHoneycombMapEarth and Planetary Sciences (miscellaneous)Composite material620.11: WerkstoffePorosityClay mineralsWater Science and Technology
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Recent applications of carbonaceous nanosorbents for the analysis of mycotoxins in food by liquid chromatography: a short review

2019

Carbonaceous nanomaterials (multi-walled carbon nanotubes (MWCNTs), graphene, and graphene oxide (GO)) have attracted attention over the last decade as adsorbents suitable for the analysis of organic and inorganic pollutants. In the present paper we review methods of mycotoxin analysis that involve sample extraction with carbonaceous nanosorbents, reported from 2011 onwards. Recent studies have highlighted the advantages of magnetically modified MWCNTs and GO in mycotoxin analysis, which may enable sample isolation through magnetic separation, reduce the interaction of nanoparticles, and enhance the recovery of analytes. The papers covered in this review point to promising applications of …

Materials scienceGraphene010401 analytical chemistryPublic Health Environmental and Occupational HealthOxideNanotechnology02 engineering and technologyCarbon nanotube021001 nanoscience & nanotechnologyToxicology01 natural sciences0104 chemical scienceslaw.inventionNanomaterialschemistry.chemical_compoundAdsorptionchemistrylawSample preparationSolid phase extraction0210 nano-technologyMycotoxinFood ScienceWorld Mycotoxin Journal
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Nanosensors and other techniques for detecting nanoparticles in the environment

2014

Abstract: Detecting nanomaterials in the environment is a demanding task, not only because of the extremely small size of the particles and their potential sequestration and agglomeration, but also because of their unique physical and chemical characteristics. The aim of this review is to recommend a way forward on tackling the challenge of engineered nanomaterial detection in the environment. An overview will be presented of the available analytical techniques used for the detection and characterization of nanoparticles in environmental matrices including particle-size analysis, particle-fraction concentration counts, surface-area analysis, morphology, and particle chemical composition ana…

Materials scienceNanosensorMicroscopyNanoparticleParticleNanotechnologySample preparationMass spectrometryNanomaterialsCharacterization (materials science)
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Determination of90Sr in environmental samples with resonance ionization spectroscopy in collinear geometry

1994

A new, fast technique for trace analysis of the radioactive isotopes89Sr and90Sr in environmental samples has been developed. Conventional mass separation is combined with resonance ionization spectroscopy in collinear geometry, which provides high selectivity and sensitivity. In addition, a chemical separation procedure for sample preparation has been developed. The described technique was used to determine the90Sr content in ≈ 870 m3 air samples collected near Munich during and shortly after the Chernobyl reactor accident in April 1986. The content of90Sr was measured to be 1.4 mBq per m3, corresponding to 1.6 × 109 atoms of90Sr per sample. This value is in good agreement with the results…

Materials sciencePhysics and Astronomy (miscellaneous)General EngineeringGeneral Physics and AstronomyResonanceGeometryMass spectrometrySpectral lineIsotope separationlaw.inventionlawIonizationMass spectrumSample preparationSpectroscopyApplied Physics B Lasers and Optics
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Formation of Optical Gradient in Chemical Solution-Derived PbZr[sub 0.52]Ti[sub 0.48]O[sub 3] Thin Films: Spectroscopic Ellipsometry Investigation

2009

Investigation using a variable angle spectroscopic ellipsometer revealed the influence of sample preparation conditions on sol-gel PbZr 0.52 Ti 0.48 O 3 (PZT 52/48) thin-film homogeneity that allows identification and further optimization of thin-film performance. Separate crystallization of the layers determined the optical gradient appearance, irrespective of the chemical solvents used in this work. A more refined analysis showed that a refractive index gradient was apparent in the samples in which lattice parameters strongly changed with thickness. For these films, energy-dispersive X-ray spectroscopy analysis showed significant variation in Pb and Zr. Additionally, complex dielectric fu…

Materials scienceRenewable Energy Sustainability and the EnvironmentAnalytical chemistryDielectricCondensed Matter PhysicsSurfaces Coatings and FilmsElectronic Optical and Magnetic Materialslaw.inventionlawEllipsometryHomogeneity (physics)Materials ChemistryElectrochemistrySample preparationThin filmCrystallizationSpectroscopyRefractive indexJournal of The Electrochemical Society
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Smart Sorption Materials in Green Analytical Chemistry

2019

The use of smart materials as alternative sorption materials for their use in greening sample preparation has been reviewed. It has been taking into consideration recent advances on the use of natural products, without any modification or purification, for making analyte extraction and pre-concentration and the use of specific materials in solid-phase extraction (SPE) and solid-phase microextraction (SPME) approaches. Inorganic materials, such as metal oxides, alumina-based, silica-based, and carbon-based materials together with biomimetic sorbents such as classical immunosorbents, aptamers, and molecularly imprinted polymers, have been reviewed as examples of these materials, stressing the…

Matrix (chemical analysis)AnalyteMaterials scienceAptamerMolecularly imprinted polymerNanotechnologySample preparationSorptionImmunosorbentsSmart material
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Evaluation of a Multidimensional Solid-Phase Extraction Platform for Highly Selective On-Line Cleanup and High-Throughput LC−MS Analysis of Triazines…

2001

A novel highly selective sample cleanup procedure based on the use of molecularly imprinted polymers (MIPs) as solid-phase extraction materials has been evaluated with respect to its applicability and routine use in environmental analysis. The method comprises the combination of a restricted access material (RAM) and a MIP allowing a selective sample preparation to be achieved in the online mode. This combination is called the size-selective sample separation and solvent switch (six-SPE). The RAM column combines size exclusion and adsorption chromatography, reducing the concentration of matrix molecules by a cutoff of 15 kDa. The MIP column selectively retains the triazine analytes whereas …

Matrix (chemical analysis)ChromatographyChemistryElutionSize-exclusion chromatographyExtraction (chemistry)Molecularly imprinted polymerAnalytical chemistrySample preparationSolid phase extractionHigh-performance liquid chromatographyAnalytical ChemistryAnalytical Chemistry
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Application of isotope-dilution laser ablation ICP-MS for direct determination of Pu concentrations in soils at pg g(-1) levels.

2003

The methods available for determination of environmental contamination by plutonium at ultra-trace levels require labor-consuming sample preparation including matrix removal and plutonium extraction in both nuclear spectroscopy and mass spectrometry. In this work, laser-ablation inductively coupled plasma mass spectrometry (LA-ICP-MS) was applied for direct analysis of Pu in soil and sediment samples. Application of a LINA-Spark-Atomizer system (a modified laser ablation system providing high ablation rates) coupled with a sector-field ICP-MS resulted in detection limits as low as 3x10(-13) g g(-1) for Pu isotopes in soil samples containing uranium at a concentration of a few microg g(-1). …

Matrix (chemical analysis)Detection limitchemistryAnalytical chemistrychemistry.chemical_elementSample preparationIsotope dilutionUraniumMass spectrometryBiochemistryInductively coupled plasma mass spectrometryAnalytical ChemistryPlutoniumAnalytical and bioanalytical chemistry
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Systematic procedure for the preparation of sets of calibration standards for x-ray fluorescence analysis of ceramic materials

1998

A systematic procedure for the preparation of optimized sets of calibration solid standards for the x-ray fluorescence analysis of ceramic materials is described. The matrix of the contents of the N analytes in the n standards (n ≥ N) is calculated from an n x N experimental design matrix, and from the upper and lower limits of the calibration range for each of the N analytes. Two procedures, which are useful for taking into account analyte interactions, are proposed for constructing the experimental design matrix, i.e. the scroll procedure and the procedure of the centers. A program developed to help the analyst in designing and preparing the set of standards following the proposed procedu…

Matrix (chemical analysis)Set (abstract data type)AnalyteCertified reference materialsChemistryCalibrationAnalytical chemistryDesign matrixX-ray fluorescenceSample preparationCeramic materialsSpectroscopyX-Ray Spectrometry
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FIA—FT—IR determination of ibuprofen in pharmaceuticals

1992

A method has been developed for the determination of Ibuprofen (2-[4-isobutylphenyl]-propionic acid) in pharmaceuticals by FT-IR, using the carbonyl band which this compound presents at 1710 cm(-1) in carbon tetrachloride solutions. Samples are dissolved in carbon tetrachloride. In this solvent the excipients are not soluble and so the drug can be directly determined without any additional treatment. The use of a simple FIA manifold permits one to carry out this analysis with a low consumption of reagent and the FT-IR provides a continuous monitoring of the spectral base-line which permits an accurate determination of the maximum in the absorbance band. Also, the FIA system permits easy and…

Matrix (chemical analysis)SolventAbsorbancechemistry.chemical_compoundChromatographychemistryReagentAnalytical chemistryCarbon tetrachlorideInfrared spectroscopySample preparationFourier transform infrared spectroscopyAnalytical ChemistryTalanta
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