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Modern Sample Preparation Approaches for Separation Science

Modern Sample Preparation Approaches for Separation Science

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This book will provide the most recent knowledge and advances in Sample Preparation Techniques for Separation Science. Everyone working in a laboratory must be familiar with the basis of these technologies, and they often involve elaborate and time-consuming procedures that can take up to 80% of the total analysis time. Sample preparation is an essential step in most of the analytical methods for environmental and biomedical analysis, since the target analytes are often not detected in their in-situ forms, or the results are distorted by interfering species. In the past decade, modern sample preparation techniques have aimed to comply with green analytical chemistry principles, leading to simplification, miniaturization, easy manipulation of the analytical devices, low costs, strong reduction or absence of toxic organic solvents, as well as low sample volume requirements.Modern Sample Preparation Approaches for Separation Science also provides an invaluable reference tool for analytical chemists in the chemical, biological, pharmaceutical, environmental, and forensic sciences.

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Keywords

  • aflatoxins
  • amlodipine
  • anthraquinones
  • antipsychotics
  • Automation
  • barbiturates
  • biological samples
  • blueberry
  • caffeine
  • caffeine and acetaminophen tracers
  • Cassiae Semen
  • China herbal tea
  • chlorophenoxy acid herbicides
  • crab shells
  • curie temperature
  • desirability function approach
  • determination
  • enrichment
  • environmental analysis
  • environmental water matrices
  • extraction
  • floating sampling technology
  • flow rate
  • gas chromatography
  • geological samples
  • Gold
  • high-frequency heating
  • Hormones
  • HPLC
  • hydrogel
  • hydrophobic in-tube solid-phase microextraction
  • hydrophobic-solvent assisted liquid–liquid extraction
  • in-line filter
  • in-tube SPME
  • ionic liquids
  • large volume
  • LC–MS/MS
  • Liquid chromatography
  • liquid chromatography–tandem mass spectrometry
  • liquid–liquid extraction
  • Liver
  • matrix solid phase dispersion
  • membrane-based microextraction
  • miniaturization
  • multi-spheres adsorptive micro-extraction (MSA?E)
  • nail
  • nanocomposite
  • non-anthocyanin polyphenol
  • nucleic acid isolation
  • oligopeptides
  • on-line
  • organic-based monoliths
  • oxylipins
  • pathogenic
  • pectin
  • Pesticides
  • pesticides residue
  • pharmaceuticals
  • phenolic compounds
  • plasma samples
  • poly (OMA-co-TRIM) monolithic column
  • Polyvinyl Alcohol
  • preconcentration
  • protein precipitation
  • response surface methodology
  • review
  • rice grains
  • salting-out assisted liquid–liquid extraction
  • sample preparation
  • sample preparation with TLC/HPTLC
  • sand
  • schizophrenic’ patients
  • simultaneous determination
  • solid-phase extraction
  • solvent delivery with a moving pipette
  • solvent front position extraction
  • sorbent
  • sorbent-based techniques
  • space instrumentation
  • SPE
  • subzero-temperature assisted liquid–liquid extraction
  • sugaring-out assisted liquid–liquid extraction
  • thema EDItEUR::P Mathematics and Science::PN Chemistry
  • trace analysis
  • trapping system
  • UHPLC-MS/MS
  • UPLC-MS/MS
  • urine
  • Vitamins
  • vortex-assisted dispersive liquid-liquid microextraction
  • vortex-synchronized matrix solid-phase dispersion
  • whole blood
  • whole water

Links

DOI: 10.3390/books978-3-03921-412-9

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