Referências bibliográficas
ACLEY, K. L., DAY, J. A. and CARUSO, J. A. Separation of metallopoprphyrins
by electrophoresis with UV detection and inductively coupled plasma mass
spectrometric detection. 2002. Journal of Chromatography A, vol. 888, pp 293-
BARROS NETO. B., SCARMINIO, I. S. e BRUNS, R. E. Como fazer experimentos – pesquisa e desenvolvimento na ciência e na indústria.
BARWISE, A. J. G. Mechanisms involved in altering deoxophylloerythro-
etioporphyrin – etioporphyrin ratios in sediments and oils. 1987. In: American Chemical Society Spec. Pub., pp. 100-109.
B´HYMER, C.; CARUSO, J. A. Selenium speciation analysis using inductively
coupled plasma spectrometry. 2006. Journal of Chromatography A, v.1114,
BOTTO, R. I. Aplication of ultrasonic nebulization in the analysis of petroleum
and petrochemicals by inductively coupled plasma atomic emission spectrometry.
PUC-Rio - Certificação Digital Nº 0710735/CA
1993. Journal of Anaytical Atomic Spectrometry, vol. 8, pp. 51-57.
BOTTO, R. I. and ZHU, J. Use of an ultrasonic nebulizer with membrane
desolvation for analysis of volatile solvents by inductively coupled plasma atomic
emission spectrometry. 1994. Journal of Anaytical Atomic Spectrometry, vol.
BOTTO, R. I. and ZHU, J. Universal calibration for analysis of organic solutions
by inductively coupled plasma atomic emission spectrometry. 1996. Journal of Anaytical Atomic Spectrometry, vol. 11, pp. 675-681.
BOTTO, R. I. Trace elements analysis of petroleum naphthas and tars using
direct injection ICP-MS. 2002. Canadian Journal of Analytical Sciences and Spectroscopy, vol. 57, nº1, pp. 1-13.
BRENNER, I. B., ZHU, J. and ZANDER, A. Evaluation of an ultrasonic nebulizer-
menbrane separation interface (USN-MEMSEP) with ICP-AES for the
determination of trace elements by solvent extraction. 1996. Fresenius Journal of Anaytical Chemistry , vol. 355, pp. 774-777.
BRENNER, I. B., ZANDER, A., PLANTZ, M. and ZHU, J. Characterization of an
ultrasonic nebulizer-membrane separation interface with inductively coupled
plasma mass spectrometry for the trace elements by solvent extraction. 1997.
Journal of Analytical Atomic Spectrometry, vol. 12, pp. 273-279.
CAUMETTE, G., LIENEMANN, C. F., MERDRIGNAC, I., BOUYSSIERE, I and
LOBINSK, R. Element speciation analysis of petroleum and related materials. 2009. Journal of Analytical Atomic Spectrometry, vol. 24, pp. 263 – 276.
DE WAAL, W. A. J., HEEMSTRA, KRAAC, J. C., JONKER. R. J. Applicability of
reversed-phase liquid cromatrography for the speciation of vanadyl and nickel
metaloporphyrins in oil extracts. 1990. Chromatographia, vol. 30, nº ½, pp. 38 -
DREYFUS, S., PÉCHEIRAN, C., LIENEMANN, C. P., MAGNIER, C.,
PRINZHOFER, A. and DONARD, O. F. X. Determination of lead isotope ratios in
crude oils with Q-ICP-MS. 2007. Journal of Analytical Atomic Spectrometry,
PUC-Rio - Certificação Digital Nº 0710735/CA
DUYCK, C. B. Determinação de elementos traço em petróleo bruto e suas frações por USN-ICPMS de soluções orgânicas visando aplicações geoquímicas. 2001. 208p. Tese de doutorado. Pontifícia Universidade Católica,
DUYCK, C. B., MIEKELEY. N, FONSECA, T. C. O., SZATMARI, P. and NETO,
E. V. S. Trace elements distributions in biodegraded crude oil and fractions from
the Potiguar Basin, Brazil. 2008. Journal of the Brazilian Chemical Society,
DUYCK, C. B., MIEKELEY. N, SILVEIRA, C. L. P., AUCÉLIO, R. Q., CAMPOS,
R. C., GRINBERG, P. and BRANDÃO, G. P. The determination of trace elements
in crude oil and its heavy fractions by atomic spectrometry. 2007.
Spectrochimica Acta Part B, vol. 62, pp. 939-951.
DUYCK, C. B., MIEKELEY. N, SILVEIRA, C. L. P. and SZATMARI, PETER.
Trace element determination in crude oil and its fractions by inductively coupled
mass spectrometry using ultrasonic nebulization of toluene solutions. 2002.
Spectrochimica Acta Part B, vol. 57, pp. 1979-1990.
FILBY, R. Origin and nature of trace elements species in crude oil, bituments and kerogen: implications for correlation and other geochemical studies. 1994. In: Parnell, J. (ed.) Geofluids: Origin, migration and evolution of
fluids in sedimentary basins. Geological Society, sp. pub. nº 78, pp. 203-219.
FONSECA, T. C. O. da. Caracterização inorgânica de petróleos pela técnica de ICPMS para fins de exploração geoquímica. 2000. 135p. Tese de
doutorado. Pontifícia Universidade Católica, Rio de Janeiro.
FURIMSKY, E. Selection of catalysts and reactors for hydroprocessing. 1998.
Applied Catalysis A: General, vol. 171, pp. 177-206.
HAUSLER, D. Trace element analysis of organic solutions using inductively
coupled plasma-mass spectrometry. 1987. Spectrochimica Acta Part B, vol.
PUC-Rio - Certificação Digital Nº 0710735/CA
HUSEBY, B., BARTH, T. and OCAMPO, R. Porphyrins in upper jurassic source
rocks and correlations with other source rocks descriptors. 1996. Organic Geochemistry, vol. 25, nº 5-7, pp. 273-294.
HUTTON, R. C. Application of inductively coupled plasma source mass
spectrometry (ICP-MS) to the determination of trace metals in organics. 1986.
Journal of Analytical Atomic Spectrometry, vol. 1, pp. 259-263.
JACOBS, F. S. U. The nature and significance of trace elements in oil sands and heavy oils. 1982. PhD thesis, Washington Univ., p.212.
KAHEN, K., STRUBINGER, A., CHIRINOS, J. R. and MONTASER, A. Direct
injection high efficiency nebulizer-inductively coupled plasma mass spectrometry
for analysis of petroleum samples. 2003. Spectrochimica Acta Part B, vol. 58,
KUMAR, U., DORSEY, F. G. and CARUSO, J. A. Metalloporphyrin speciation by
liquid chromatography and inductively coupled plasma – mass spectrometry.
1994. Journal of Chromatography Science, vol. 32. pp. 282-285.
PRETORIUS, W. G., LES EBDON, E., EVANS, H., and ROWLAND, S. J.
Analysis of geoporphyrins by high-temperature gas chromatography inductively
couples plasma mass spectrometry and high-performance liquid
chromatrography inductively coupled plasma mass spectrometry.1994. Journal of Analytical Atomic Spectrometry, vol. 9, pp. 939-943.
LEWAN, M. D. Factors controlling the proportionality of vanadium to nickel in
crude oils. 1984. Geochimica et Cosmochimica Acta, vol. 48, pp. 2231-2238.
LIDE, D.R. Handbook of chemistry and physics: A ready reference book of chemical and physical data. 2002, Florida, USA, CRC press, 83ª ed.
LO MONACO, S., LOPEZ, L., GARBAN, G., LIRA, A. and ROJAS, A.
Determinación de elementos traza en kerógeno, bitumen y fracciones del
petróleo utilizando espectrometria de plasma (ICP). 1997. Revista Latino Americana de Geoquímica Organica, vol. 3, pp. 43-54.
PUC-Rio - Certificação Digital Nº 0710735/CA
LOPEZ, L. and LO MONACO, S. Geochemical implications of trace elements and
sulfur in the saturate, aromatic and resin fractions of crude oil from the Mara and
Mara Oeste fields, Venezuela. 2004. Fuel, vol. 83, pp.365-374.
MACKENZIE, A. S. and QUIGLEY, T. M. Principles of geochemical prospect
appraisal. 1988. AAPG Bulletin, vol. 72, pp. 399-415.
MAESSEN, F.J.M.J., SEEVERENS, P.J.H. and KREUNING, G. Analytical
aspects of organic solvent load reduction in normal-power ICPs by aerosol
thermostating at low temperatures. 1984. Spectrochimica Acta Part B, vol 39,
MAGYAR, B., LIENEMANN, P. and VONMONT, H. Some effects of aerosol
drying and oxygen feeding on the analytical performance of an inductively
coupled nitrogen-argon plasma. 1986. Spectrochimica Acta Part B, vol. 41, nº
MONTASER, A. Inductively coupled plasma mass spectrometry. 1998. New
OCAMPO, R., CALLOT, H. J. and ALBRECHT, P. Identification of polar
porphyrins in oil shales, 1985. Journal of Chemical Society, pp. 198-200
OCAMPO, R., CALLOT, H. J. and ALBRECHT, P. Evidence of porphyrins of
bacterial and algal origin in oil shale, 1987. American Chemical Society, pp 68-
OCAMPO, R., RIVA, A., TRENDEL, J. M., RIOLO, J., CALLOT, H. J. and
ALBRECHT, P. Petroporphyrins in oil-oil and oil-source rock correlations, 1993.
Energy & Fuels, vol 7, pp 191-193.
OLSEN, S. D., WESTERLUND, S. and VISSER, R. G. Analysis of metals in
condensates and naphta by inductively coupled plasma mass spectrometry,
1997. Analysis, vol. 122, pp. 1229-1234.
PETERS, K. E., WALTERS, C. C. and MOLDOLWAN, J. M. The biomaker guide: biomarkers and isotopes in petroleum systems and earth history, 2ª
ed., Cambridge University Press: New York, 2004, vol. 2.
PRETORIUS, W. FOULKES, M. LES EBDON, E. and ROWLAND, S. HPLC
PUC-Rio - Certificação Digital Nº 0710735/CA
coupled with ICPMS for the determination of metalloporphyrins in coal extracts.
1993. Journal of High Resolution Chromatography, vol. 16, pp. 157-160.
ROSSEL-MELÉ, A., CARTER, J. F. and MAXWELL J. R. High performance liquid
chromatography-mass spectrometry of porphyrins by using an atmospheric
pressure interface. 1996. Journal of the American Society for Mass Spectrometry, vol. 7, pp. 965 - 971.
SCHAEFFER, P., OCAMPO, R., CALLOT, H. J, and ALBRECHT, P. Extraction of
bound porphyrins from sulphur-rich sediments and their use for reconstruction of
palaeoenvironments. 1993. Nature, vol. 364, pp. 133 – 136.
SHRIVER, D. F. e ATKINS, P. W. Química Orgânica. 2008. Porto Alegre.
SILVERSTEIN, M. S. e WEBSTER, F. X. Identificação espectrométrica de compostos orgânicos. 2006. Rio de Janeiro: LTC, 7ª ed 508p.
Software Guide – Elan 6000 Inductively Coupled Plasma Mass Spectrometer.
SPEIGHT, J. G. Handbook of Petroleum Product Analysis (Chemical Analysis: A Series of Monographs on Analytical Chemistry and Its Applications). 2001. Wiley-Interscience, 512p
SPEIGHT, J. G. New approaches to hydroprocessing. 2004. Catalysis Today,
SUNDARARAMAN, S. High-performance liquid chromatography of vanadyl
porphyrins. 1985. Analytical Chemistry, vol. 57, nº 12, pp.2204-2206.
TEIXEIRA, H, M, F. Desenvolvimento e aplicação de metodologias para a caracterização multielementar de água conata em amostras de petróleo.
2007. 234 p. Tese de doutorado. Pontifícia Universidade Católica, Rio de
TISSOT, B. P. and WELTE, D. H. Petroleum formation and occurence. 1984.
TORRES, R.O. Porphyrines dans le schist de Messel: etude structural et
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signification géochimique. 1985. 124p. Thèse de doctorat, université Louis
VERNE-MISMER, J., OCAMPO, R., BAUDER, C., CALLOT, H. J. and
ALBRECHT, P. Structural comparison of nickel, vanadyl, copper and free base
porphyrins from oulad abdoun oil shale (Maastrichtian, Marocco). 1990. Energy and Fuels, vol 4, pp. 639-643.
Anexo I: Programa de eluição do sistema LC 200 de cromatografia líquida.
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Anexo II: Curvas de absorvância x concentração dos padrões NiOEP,
NiOEP 550 nm Concentração (Mol L-1)
Figura 6.1: Curva de absorvância x concentração do padrão NiOEP em 550 nm.
NiEtioP 550 nm Concentração (Mol L-1)
Figura 6.2: Curva de absorvância x concentração do padrão NietioP em 550 nm.
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VOEP 550 nm a ( ci 0,02 rvân so 0,01 Concentração (Mol L-1)
Figura 6.3 : Curva de absorvância x concentração do padrão VOEP em 550 nm
NiOEP 570 nm Concentração (Mol L-1)
Figura 6.4: Curva de absorvância x concentração do padrão NiOEP em 570 nm.
NiEtioP 570 nm cia ( 0,02 rvân so 0,01 Concentração (Mol L-1)
Figura 6.5: Curva de absorvância x concentração do padrão NiEtioP em 570 nm.
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VOEP 570 nm Concentração (Mol L-1)
Figura 6.6: Curva de absorvância x concentração do padrão VOEP em 570 nm
Anexo III: Tabelas com os dados obtidos nos planejamentos
Tabela 6.1 Planejamento experimental 2(7-4) com metanol no nebulizador concêntrico.
Lente Potência Tº(Isomist) aspiração(rpm) %agua
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Tabela 6.2 Otimização de análise com metanol no micronebulizador PFA-100
Tabela 6.3 Planejamento experimental 22 com Tolueno no micronebulizador PFA-100
1350 73675,9 5635.7 35214.1 64380,6 66014,6 1087,4 94,00
52369 3896.8 26050.9 29376,1 43784,4 650
1350 74731,3 4537.5 26666.4 52136,1 44991,1 742,4 47,00
1350 80503,4 5666.4 34175.8 63439,7 72469,6 1113,7 85,70
1350 39357,8 3187.9 21786.4 20925,7 31204 473,3 49,00
1350 54745,9 4077.9 24632.0 32993,8 40410,5 680,4 46,70
1350 40888,6 3532.7 22450.4 21566,6 35114,3 529,7 45,00
50533,8 4747.6 27820.5 31760,4 42330,5 638,7 63,00 1,51 0,15
1350 61399,6 4616.8 30345.2 43722,2 52644,5 839,7 85,30
1350 39472,3 3369.0 22306.3 19911,5 32062,1 453 33,30
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* Ponto central
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