ASSESSMENT of POLYATOMIC INTERFERENCES ELIMINATION USING A COLLISION REACTION INTERFACE (CRI) FOR INORGANIC ANALYSIS of FUEL ETHANOL BY ICP-QMS

dc.contributor.authorNeves, Denise R. [UNESP]
dc.contributor.authorAmais, Renata S.
dc.contributor.authorNobrega, Joaquim A.
dc.contributor.authorGomes Neto, Jose A. [UNESP]
dc.contributor.institutionUniversidade Estadual Paulista (Unesp)
dc.contributor.institutionUniversidade Federal de São Carlos (UFSCar)
dc.date.accessioned2014-05-20T15:31:28Z
dc.date.available2014-05-20T15:31:28Z
dc.date.issued2012-01-01
dc.description.abstractThe effectiveness of a collision-reaction interface (CRI) as instrumental device and the addition of oxygen in the composition of auxiliary gas were evaluated to minimize polyatomic species generated in plasma gas caused by direct introduction of fuel ethanol samples through spray chambers in inductively coupled plasma quadrupole mass spectrometry (ICP-QMS). The oxygen flow-rate was optimized as a compromise among signal counts, signal to background ratio (SBR), and background equivalent concentration (BEC). For 12.5mL min(-1) O-2, ethanol samples diluted 20 times were introduced into the plasma and deposits of carbon compounds on the sampler and/or skimmer cones were not observed. The performance of CRI using H-2 and He inserted through the sampler or skimmer cones was evaluated. Hydrogen gas added through the skimmer cone was more efficient to reduce blank and BEC values. This strategy was necessary to eliminate spectral interferences caused by (Ar12C+)-Ar-40, Ar-40(16) O+, (CO+)-C-12-O-16, C-12(2)+ at isotopes Cr-52(+), Fe-56(+), Si-28(+) and Mg-24(+), respectively. Using matrix-matching calibration and Y internal standard, the optimized method was applied to the determination of Al, Ba, Co, Cr, Cu, Fe, Mg, Mn, Mo, Na, Ni, Pb, Sb, Si, V, and Zn in fuel ethanol. Accuracy of developed method was checked after addition/recovery tests. Recoveries and RSD (n = 12) for all elements varied within the 78-114% and 0.4-2% ranges, respectively. Limits of detection for all elements obtained by combining CRI and ICP-QMS were always better than 0.80 mu g L-1 except for Si at 14 mu g L-1.en
dc.description.affiliationUNESP Univ Estadual Paulista, BR-14801970 Araraquara, SP, Brazil
dc.description.affiliationUniversidade Federal de São Carlos (UFSCar), Dept Chem, BR-13560 São Carlos, SP, Brazil
dc.description.affiliationUnespUNESP Univ Estadual Paulista, BR-14801970 Araraquara, SP, Brazil
dc.description.sponsorshipFundação de Amparo à Pesquisa do Estado de São Paulo (FAPESP)
dc.description.sponsorshipConselho Nacional de Desenvolvimento Científico e Tecnológico (CNPq)
dc.description.sponsorshipIdFAPESP: 06/59083-9
dc.description.sponsorshipIdFAPESP: 10/17387-7
dc.format.extent1111-1121
dc.identifierhttp://dx.doi.org/10.1080/00032719.2012.670793
dc.identifier.citationAnalytical Letters. Philadelphia: Taylor & Francis Inc, v. 45, n. 9, p. 1111-1121, 2012.
dc.identifier.doi10.1080/00032719.2012.670793
dc.identifier.issn0003-2719
dc.identifier.urihttp://hdl.handle.net/11449/40595
dc.identifier.wosWOS:000305209100016
dc.language.isoeng
dc.publisherTaylor & Francis Inc
dc.relation.ispartofAnalytical Letters
dc.relation.ispartofjcr1.206
dc.relation.ispartofsjr0,344
dc.rights.accessRightsAcesso restrito
dc.sourceWeb of Science
dc.subjectCollision-reaction interfaceen
dc.subjectEthanol fuelen
dc.subjectICP-QMSen
dc.subjectPolyatomic interferenceen
dc.titleASSESSMENT of POLYATOMIC INTERFERENCES ELIMINATION USING A COLLISION REACTION INTERFACE (CRI) FOR INORGANIC ANALYSIS of FUEL ETHANOL BY ICP-QMSen
dc.typeArtigo
dcterms.licensehttp://journalauthors.tandf.co.uk/permissions/reusingOwnWork.asp
dcterms.rightsHolderTaylor & Francis Inc
unesp.author.orcid0000-0001-9134-9547[3]

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