2010
DOI: 10.1039/c004790b
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Real-time monitoring and determination of Pb in a single airborne nanoparticle

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Cited by 32 publications
(39 citation statements)
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“…6,7 We have reported the use of a GED to determine Pb in a single particle of APM. 8 However, during real-time monitoring, we found that accurate results could not be obtained for elements that have oxides with high melting points. 9 Elements in particles introduced into the ICP are measured after melting, vaporization, atomization, and ionization, and the inaccuracies during real-time monitoring have been attributed to incomplete vaporization, atomization, and ionization in the initial radiation zone of the ICP.…”
Section: Introductionmentioning
confidence: 79%
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“…6,7 We have reported the use of a GED to determine Pb in a single particle of APM. 8 However, during real-time monitoring, we found that accurate results could not be obtained for elements that have oxides with high melting points. 9 Elements in particles introduced into the ICP are measured after melting, vaporization, atomization, and ionization, and the inaccuracies during real-time monitoring have been attributed to incomplete vaporization, atomization, and ionization in the initial radiation zone of the ICP.…”
Section: Introductionmentioning
confidence: 79%
“…The sample-introduction efficiency of the nebulizer was constant regardless of the elements, as confirmed in our previous study. 8 To calculate the sample-introduction efficiency of the ultrasonic nebulizer, we introduced a Cr carbonyl complex standard gas into the ICPMS by means of a metal standard gas generator (J-Science Lab Co.) at a Ar flow rate of 0.05 L min -1 . The sample-introduction efficiency of the ultrasonic nebulizer was calculated before each experiment, and was determined to be 2 -3%.…”
Section: Calibrationmentioning
confidence: 99%
“…Because of the absence of ambient air, O 3 , and NH 3 , the ICP can be operated at parameters commonly used in ICPMS. The mixed metal carbonyl gases of Cr(CO) 6 , Mo(CO) 6 , and W(CO) 6 used for the demonstration of the GPD-GED-ICPMS were produced by a metal standard gas generator (MSG 2 ) which was also developed by J-Science Labo. Co. Ltd. (Kyoto, Japan).…”
Section: ■ Experimental Sectionmentioning
confidence: 99%
“…The present study demonstrates a novel gas to particle conversion-gas exchange technique for the direct analysis of metallic gases such as Cr(CO) 6 , Mo(CO) 6 , and W(CO) 6 by ICPMS, and the working principle, the reaction mechanism, and figures of merits are discussed.…”
mentioning
confidence: 99%
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