Plasma Source Mass Spectrometry: the New Millennium
The understanding of the principles of ICP-MS and its application as an analytical technique is continually evolving and this book provides a unique snapshot of the current state-of-the-art. Plasma Source Mass Spectrometry: The New Millennium covers a diverse range of topics including the fate of the sample as it passes through the sample introduction system, chemical resolution using reaction and collision cells, various methods of mass analysis, approaches to account for spectral interferences, hyphenation methods to enable speciation, and the results of analyses ranging from natural waters and archaeological isotope ratios to organometallic speciation in biological materials. Describing explicitly the analytical methods that deal with current analytical challenges, and offering a current perspective on elemental analysis by plasma source mass spectrometry that is not to be found elsewhere, this book will be welcomed by both academics and industrialists as containing the most up-to-date information available on this burgeoning topic.
Plasma Source Mass Spectrometry: the New Millennium, The Royal Society of Chemistry, 2001.
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Table of contents
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Front coverByScott D. TannerScott D. TannerSenior ReporterSearch for other works by this author on:
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Front matterByScott D. TannerScott D. TannerSenior ReporterSearch for other works by this author on:
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PrefaceByScott D. TannerScott D. TannerSenior ReporterSearch for other works by this author on:
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ContentsByScott D. TannerScott D. TannerSenior ReporterSearch for other works by this author on:
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Sample preparation and introductionp1-2ByScott D. TannerScott D. TannerSenior ReporterSearch for other works by this author on:
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Sample introduction, plasma-sample interactions, ion transport and ion-molecule reactions: Fundamental understanding and practical improvements in ICP-MSp3-16By
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Microwave digestion of oils for analysis of platinum group and rare earth elements by ICP-MSp17-24By
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USN-ICPMS: A poor man's high resolutionp25-36By
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The characteristics of an off-line matrix removal/pre-concentration system which uses controlled pore glass iminodiacetate as a reagent for inductively coupled plasma mass spectrometryp37-44By
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Moving to the next level: Sample introduction and plasma interface design for improved performance in ICP-MSp45-60By
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Mass analyser instrumentationp61-62ByScott D. TannerScott D. TannerSenior ReporterSearch for other works by this author on:
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QMF operation with quadrupole excitationp63-72By
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All the ions all the time: Dream or reality?p73-89By
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Evaluation of inductively coupled plasma-ion trap mass spectrometryp90-96By
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Reaction cells for ICP-MSp97-98ByScott D. TannerScott D. TannerSenior ReporterSearch for other works by this author on:
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Reaction chemistry and collisional processes in multipole devicesp99-116By
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Ion-molecule reactions in plasma source mas spectrometryp117-129By
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Ion-molecule chemistry solutions to the ICP-MS analytical challengesp130-147By
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A reaction mechanism for solving the oxide problem in ICP-MS analysis for the noble metalsp148-162By
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Applicationsp163-164ByScott D. TannerScott D. TannerSenior ReporterSearch for other works by this author on:
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Application and quality of ICP-MS analysisp165-176By
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Trace elements in honey samples by means of ETV-ICP-MSp177-184By
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Determination of trace elements in ice core samples by laser ablation inductively coupled plasma mas spectrometryp185-194By
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Rare earth element concentrations for the Mobile-Alabama River systemsp195-207By
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Application of ICP-MS to a trace elements mass balance study in a power plantp208-215By
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Determination of mercury, arsenic, selenium and antimony in potable water by ICP-MSp216-229By
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Determination of metals in sewage and industrial waste waters by ICP-MS in a single runsp230-242By
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Isotope Ratio Measurementp243-244ByScott D. TannerScott D. TannerSenior ReporterSearch for other works by this author on:
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The performance of commercial mono-elemental solutions for high accuracy mass spectrometryp245-256By
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ICP-MS applied to isotope abundance ratio measurements: Performance study and development of a method for combining uncertainty contributions from measurement correction factorsp257-269By
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Comparison of MC-ICP-MS with quadrupole ICP-MS for the certification of the amount, content and isotopic composition of enriched 206Pb and 203Ti materials using isotope dilutionp270-278By
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Which way for Os? A comparison of plasma-source versus negative thermal ionisation mas spectrometry for Os isotope measurementp279-287By
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Matrix-induced isotopic mass fractionation in the ICP-MSp288-297By
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Simultaneous acquisition of isotope compositions and parent/daughter ratios by non-isotope dilution-mode plasma ionisation muti-colector mass spectrometry (PIMMS)p298-310By
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Combined Pb, Sr- and O-isotope analysis of human dental tissue for the reconstruction of archaeological residential mobilityp311-324By
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Speciationp325-326ByScott D. TannerScott D. TannerSenior ReporterSearch for other works by this author on:
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Isotope dilution analysis for trace metal speciationp327-346By
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Prediction of inorganic aqueous speciation: A useful tool for ICP-MS and IC-ICP-MS analystsp347-360By
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Investigations into biovolatilisation of metal(loids) in the environment by using GC-ICP-MS analysisp361-368By
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Time-of-flight inductively coupled plasma mass spectrometry for ultratrace speciation analysis of organometallic compoundsp369-379By
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An appetite for arsenic: The seaweed eating sheep from Orkneyp380-386By
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Hyphenated IC-ICP-MS for the determination of arsenic speciation in acid mine drainagep387-400By
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Selenium speciation in human urinep401-411By
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Sensitive detection of platinum-bound DNA using ICP-MS and comparison to graphite furnace atomie absorption spectroscopy (GFAAS)p412-418By
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Author indexp419-421ByScott D. TannerScott D. TannerSenior ReporterSearch for other works by this author on:
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Subject indexp422-428ByScott D. TannerScott D. TannerSenior ReporterSearch for other works by this author on:
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Back coverpX003-X004ByScott D. TannerScott D. TannerSenior ReporterSearch for other works by this author on:
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