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- W2016989623 abstract "Laser ablation inductively coupled plasma mass spectrometry (LA-ICP-MS) is a high spatial resolution analytical method which has been applied to the analysis of silicic tephras. With current instrumentation, around 30 trace elements can be determined from single glass shards as small as ∼ 40 µm, separated from tephra deposits. As a result of element fractionation during the ablation process using a 266 nm laser, a relatively complex calibration strategy is required. Nonetheless, such a strategy gives analyses which are accurate (typically within ±5%) and have an analytical precision which varies from ∼ ±2% at 100 ppm, to ∼ ±15% at 1 ppm. Detection limits for elements used in correlation and discrimination studies are well below 1 ppm. Examples of the application of trace element analysis by LA-ICP-MS in tephra studies are presented from the USA, New Zealand and the Mediterranean. Improvements in instrumental sensitivity in recent years have the potential to lower detection limits and improve analytical precision, thus allowing the analysis of smaller glass shards from more distal tephras. Laser systems operating at shorter wavelengths (e.g. 193 nm) are now more widely available, and produce a much more controllable ablation in glasses than 266 nm lasers. Crater sizes of <10 µm are easily achieved, and at 193 nm many of the elemental fractionation issues which mar longer wavelengths are overcome. By coupling a short wavelength laser to a modern ICP-MS it should be possible to determine the trace element composition of glass shards as small as 20 µm and, providing sample preparation issues can be overcome, the determination of the more abundant trace elements in glass shards as small as 10 µm is within instrumental capabilities. This will make it possible to chemically fingerprint tephra deposits which are far from their sources, and will greatly extend the range over which geochemical correlation of tephras can be undertaken. Copyright © 2007 John Wiley & Sons, Ltd." @default.
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- W2016989623 date "2007-01-01" @default.
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- W2016989623 title "Correlation and characterisation of individual glass shards from tephra deposits using trace element laser ablation ICP-MS analyses: current status and future potential" @default.
- W2016989623 cites W11633635 @default.
- W2016989623 cites W147952970 @default.
- W2016989623 cites W1520169237 @default.
- W2016989623 cites W1522898664 @default.
- W2016989623 cites W1673600329 @default.
- W2016989623 cites W1888179648 @default.
- W2016989623 cites W1925361172 @default.
- W2016989623 cites W1964294434 @default.
- W2016989623 cites W1967156352 @default.
- W2016989623 cites W1973662369 @default.
- W2016989623 cites W1974766431 @default.
- W2016989623 cites W1976252681 @default.
- W2016989623 cites W1977755276 @default.
- W2016989623 cites W1985892993 @default.
- W2016989623 cites W1987865974 @default.
- W2016989623 cites W1996925747 @default.
- W2016989623 cites W1998837704 @default.
- W2016989623 cites W1998919103 @default.
- W2016989623 cites W2003879601 @default.
- W2016989623 cites W2004040715 @default.
- W2016989623 cites W2006207921 @default.
- W2016989623 cites W2007661953 @default.
- W2016989623 cites W2009326378 @default.
- W2016989623 cites W2011023652 @default.
- W2016989623 cites W2013331514 @default.
- W2016989623 cites W2017157242 @default.
- W2016989623 cites W2018206452 @default.
- W2016989623 cites W2020341748 @default.
- W2016989623 cites W2024436619 @default.
- W2016989623 cites W2026036781 @default.
- W2016989623 cites W2027602628 @default.
- W2016989623 cites W2030105000 @default.
- W2016989623 cites W2030281199 @default.
- W2016989623 cites W2033884397 @default.
- W2016989623 cites W2037376841 @default.
- W2016989623 cites W2038483349 @default.
- W2016989623 cites W2042827864 @default.
- W2016989623 cites W2042983786 @default.
- W2016989623 cites W2046328317 @default.
- W2016989623 cites W2051895615 @default.
- W2016989623 cites W2052573832 @default.
- W2016989623 cites W2057750914 @default.
- W2016989623 cites W2059613936 @default.
- W2016989623 cites W2060560302 @default.
- W2016989623 cites W2063168513 @default.
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- W2016989623 cites W2068226577 @default.
- W2016989623 cites W2075013266 @default.
- W2016989623 cites W2075382886 @default.
- W2016989623 cites W2083868208 @default.
- W2016989623 cites W2086079701 @default.
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- W2016989623 cites W2138027018 @default.
- W2016989623 cites W2139615588 @default.
- W2016989623 cites W2156727182 @default.
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- W2016989623 cites W4234178355 @default.
- W2016989623 cites W4251917713 @default.
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- W2016989623 doi "https://doi.org/10.1002/jqs.1092" @default.
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