Use este identificador para citar ou linkar para este item: https://repositorio.ufba.br/handle/ri/5475
Registro completo de metadados
Campo DCValorIdioma
dc.contributor.authorRebouças, Márcio das Virgens-
dc.contributor.authorBrandão, Denise Sousa-
dc.contributor.authorTrindade, Alex-
dc.contributor.authorPimentel, Maria Fernanda-
dc.contributor.authorTeixeira, Leonardo Sena Gomes-
dc.creatorRebouças, Márcio das Virgens-
dc.creatorBrandão, Denise Sousa-
dc.creatorTrindade, Alex-
dc.creatorPimentel, Maria Fernanda-
dc.creatorTeixeira, Leonardo Sena Gomes-
dc.date.accessioned2012-02-29T18:35:16Z-
dc.date.issued2011-
dc.identifier.issn0924-2031-
dc.identifier.urihttp://www.repositorio.ufba.br/ri/handle/ri/5475-
dc.descriptiontexto completo: acesso restrito. p. 172–182pt_BR
dc.description.abstractNearinfrared spectroscopy (NIRS) combined with chemometric techniques has provided fast and precise methods for quality control in the petrochemical industry. In the present work, NIRS multivariate models were used to predict the chemical composition of an organicaqueous solvent used in an isoprene production plant. The models were developed to predict the mass percent concentration of the components present in the solvent, namely water, acetonitrile, acetone, npropanol, ipropanol, tbutanol, allyl alcohol and 1,3dicyclopentadiene (DCPD) plus codimers. Each component concentration was estimated from FTNIR spectra within the 7300–3900cm−1 region, using the whole range or only selected regions. Principal component analysis (PCA) was used for exploratory data analysis and partial leastsquares models were employed for calibration based on at least 70 samples. The models’ accuracy, in terms of deviation from the primary method (gas chromatography) results, was also confirmed using external validation sets and expressed by the standard error of prediction (SEP) which ranged from 0.18 to 1.27% (w/w). Therefore, the feasibility of performing the chemical composition analysis required for process control of the isoprene unit solvent has been demonstrated. The simple and fast procedure, based on a single NIR spectrum, was able to differentiate between spectroscopic features of water, hydrocarbons, alcohols, ketones and nitrile compounds present in a complex organicaqueous sample.pt_BR
dc.description.sponsorshipPetrochemical industrypt_BR
dc.language.isoenpt_BR
dc.sourcedoi:10.1016/j.vibspec.2010.11.003pt_BR
dc.subjectregressionpt_BR
dc.subjectIsoprenept_BR
dc.subjectNear infraredpt_BR
dc.subjectPrincipal component analysispt_BR
dc.subjectPartial leastsquarespt_BR
dc.subjectOrganic solventpt_BR
dc.titleChemical composition determination of complex organicaqueous mixtures of alcohols, acetone, acetonitrile, hydrocarbons and water by nearinfrared spectroscopypt_BR
dc.title.alternativeVibrational Spectroscopypt_BR
dc.typeArtigo de Periódicopt_BR
dc.identifier.numberv. 55.pt_BR
dc.embargo.liftdate10000-01-01-
Aparece nas coleções:Artigo Publicado em Periódico (Química)

Arquivos associados a este item:
Arquivo Descrição TamanhoFormato 
Chemical composition determination of complex organic-aqueous.pdf
  Restricted Access
228,41 kBAdobe PDFVisualizar/Abrir Solicitar uma cópia


Os itens no repositório estão protegidos por copyright, com todos os direitos reservados, salvo quando é indicado o contrário.