![]() |
METHODS AND OBJECTS OF CHEMICAL ANALYSIS ISSN title: "Metody i obʺekty himičeskogo analiza" An international journal devoted to all aspects of Analytical chemistry ISSN 2413-6166 (Online), ISSN 1991-0290 (Print) |
![]() |
| Ukr | En | ||
|
|
||
Литеpатуpа (References)
1. Lahanier Ch., Amsel G., Heitz Ch., Menu M., Andersen H.H. Proceedings of the International Workshop on Ion-Beam Analysis in the Arts and Archaeology, Pont-A-Mousson, Abbaye des Premontres, France, February 18-20, 1985-editorial // Nucl. Instr. Methods Phys. Res., Sect. B – 1986. – 14. – P. 1.
2. Janssens K., Vittiglio G., Deraedt I., Aerts A., Vekemans B., Vincze L., Wei F., Deryck I., Schalm O., Adams F., Rindby A., Knöchel A., Simionovici A., Snigirev A. Use of microscopic XRF for non-destructive analysis in art and archaeometry // X-Ray Spectrom. – 2000. – 29, № 1. – P. 73–91.
3. Zucchiatti A. X-ray spectrometry in archaeometry // In book: X-Ray Spectrometry: Recent Technological Advances. Eds. K. Tsuji, J. Injuk, R. Van Grieken. – Chichester: Wiley& Sons, 2004. – P. 533–551.
4. Potts Ph.J., Ellis A.T., Kregsamer P., Marshall J., Streli Ch., West M., Wobrauschek P. Atomic spectrometry update. Xray fluorescence spectrometry // J. Anal. At. Spectrom. – 2001. – 16. – P. 1217–1237.
5. Potts Ph.J., Ellis A.T., Kregsamer P., Marshall J., Streli Ch., West M., Wobrauschek P. Atomic spectrometry update. Xray fluorescence spectrometry // J. Anal. At. Spectrom. – 2002. – 17. – P. 1439–1455.
6. Potts Ph.J., Ellis A.T., Kregsamer P., Marshall J., Streli Ch., West M., Wobrauschek P. Atomic spectrometry update. Xray fluorescence spectrometry // J. Anal. At. Spectrom. – 2003. – 18. – P. 1297–1316.
7. Potts Ph.J., Ellis A.T., Kregsamer P., Marshall J., Streli Ch., West M., Wobrauschek P. Atomic spectrometry update. Xray fluorescence spectrometry // J. Anal. At. Spectrom. – 2004. – 19. – P. 1397–1419.
8. Potts Ph.J., Ellis A.T., Kregsamer P., Streli Ch., Vanhoof Ch., West M., Wobrauschek P. Atomic spectrometry update. Xray fluorescence spectrometry // J. Anal. At. Spectrom. – 2005. – 20. – P. 1124–1154.
9. Ineshin E.M., Sekerin A.P., Tihonov P.S., Revenko A.G. Exotic types of raw material Pleistocene-early Holocene artifacts of the valley Vitim river area (Baikal Siberia) and their means of transportation // Current Research in the Pleistocene. – 1997. – 15. – P. 70–71.
10. Инешин Е.М., Секерин А.П., Ревенко А.Г. Экзотические виды сырья артефактов позднего плейстоцена бассейна реки Витим (Байкальская Сибирь) и пути его транспорти- ровки // Матер. VI годовой итоговой сессии Института археологии и этнографии СО РАН. – Новосибирск: Изд- во Ин-та археологии и этнографии СО РАН, 1998.
11. Афонин В.П., Гуничева Т.Н., Пискунова Л.Ф. Рентгено- флуоресцентный силикатный анализ. – Новосибирск: Наука, Сиб. отд., 1984. – 227 с.
12. Афонин В.П., Комяк Н.И., Николаев В.П., Плотников Р.И. Рентгенофлуоресцентный анализ. – Новосибирск: Наука, Сиб. отд., 1991. – 173 с.
13. Ревенко А.Г. Рентгеноспектральный флуоресцентный анализ природных материалов. – Новосибирск: ВО “Наука”, 1994. – 264 с.
14. Jenkins R., Gould R.W., Gedcke D. Quantitative X-Ray Spectrometry, 2nd edn. Marcel Dekker, Inc.: New York, Basel, Hong Kong, 1995. – 485 p.
15. Lachance G.R. Quantitative X-Ray Fluorescence Analysis: Theory and Application. Wiley: New York, 1995. – 400 p.
16. Johansson S.A.E. Particle-Induced X-Ray Emission Spectrometry (PIXE). Wiley-Interscience: New York, 1995. – 434 p.
17. Klockenkamper R. Total-reflection X-ray fluorescence analysis. John Wiley & Sons: New York, 1997. – 245 р.
18. Борходоев В.Я. Рентгенофлуоресцентный анализ горных пород способом фундаментальных параметров. – Магадан: СВКНИИ ДВО РАН, 1999. – 279 с.
19. Павлова Л.А., Белозёрова О.Ю., Парадина Л.Ф., Суворова Л.Ф. Рентгеноспектральный электронно-зондовый микро- анализ природных объектов. – Новосибирск: ВО “Наука”, 2000. – 224 с.
20. Handbook of X-Ray Spectrometry. 2nd edn. / Eds. R.E. Van Grieken and A.A. Markowicz. – New York: Marcel Dekker, 2002. – 1016 p.
21. X-Ray Spectrometry: Recent Technological Advances / Eds. K. Tsuji, J. Injuk and R. Van Grieken. – Chichester: John & Wiley, 2004. – 603 p.
22. Janssens K., Vekemans B., Vincze L., Adams F., Rindby A. A micro-XRF spectrometer based on a rotating anode generator and capillary optics // Spectrochim. Acta, Part B. – 1996. – 51, № 13. – P. 1661–1678.
23. Vekemans B., Janssens K., Vincze L., Aerts A., Adams F., Hertogen J. Automated segmentation of m-XRF image sets // X-Ray Spectrom. – 1997. – 26, № 6. – P. 333–346.
24. Shcherbakov A.S., Cheremisin S.M., Danichev V.V., Ozerov V.S. Focus-1 x-ray fluorescent spectrometer // Proc. SPIE. – 2000. – 4155. – P. 131–137.
25. Shcherbakov A.S., Cheremisin S.M., Ozerov V.S. X-ray fluorescent spectrometer Focus M // Proc. SPIE. – 2002. – 4765. – P. 211–212.
26. Shcherbakov A., Sineychuk A., Lubavskaya E. Application of local X-Ray fluorescent analysis for paint element composition definition in painting // European Conf. on X-Ray Spectrometry EXRS 2006. – Paris, France. – 2006. – P. 127.
27. Esposito A., Cappuccio G., Gonnella F., Gorghinian A., Jaia A. XRF applied to archealogical samples // European Conf. on XRay Spectrometry EXRS 2006. – Paris, France. – 2006. – P. 142.
28. Benedetti D., Alessandri I., Bergese P., Bontempi E., Colombi P., Garipoli D., Pedrazzani R., Zanola P., Depero L.E. Laboratory Microbeam Analysis applied to Cultural Heritage Studies // Microchim. Acta. – 2006. – 155. – P. 101–104.
29. Bichlmeier S., Janssens K., Heckel J., Gibson D., Hoffmann P., Ortner H.M. Component selection for a compact micro-XRF spectrometer // X-Ray Spectrom. – 2001. – 30, № 1. – P. 8–14.
30. Haberkorn R., Beck H.P. Basics, Possibilities and Limitations of the Microscopic X-Ray Fluorescence Analysis // Mikrochim. Acta. – 2000. – 133. – P. 51–58.
31. Roedel T.C., Bronk H., Haschke M. Investigation of the influence of particle size on the quantitative analysis of glasses by energy-dispersive micro x-ray fluorescence spectrometry // X-Ray Spectrom. – 2002. – 31. – P. 16–26.
32. Vittiglio G., Bichlmeier S., Klinger P., Heckel J., Fuzhong W., Vincze L., Janssens K., Engström P., Rindby A., Dietrich K., Jembrih-Simbürger D., Schreiner M., Denis D., Lakdar A., Lamotte A. A compact μ-XRF spectrometer for (in situ) analyses of cultural heritage and forensic materials // Nucl. Instrum. Methods Phys. Res., Sect. B. – 2004. – 213. – P. 693–698.
33. Bronk H., Röhrs S., Bjeoumikhov A., Langhoff N., Schmalz J., Wedell R., Gorny H.-E., Herold A., Waldschläger U. ArtTAX – a new mobile spectrometer for energy-dispersive micro X-ray fluorescence spectrometry on art and archaeological objects // Fresenius J. Anal. Chem. – 2001. – 371. – P. 307–316.
34. Röhrs S., Stege H. Analysis of Limoges painted enamels from the 16th to 19th centuries by using a portable micro x-ray fluorescence spectrometer // X-Ray Spectrom. – 2004. – 33, № 6. – P. 396–401.
35. Hahn O., Oltrogge D., Bevers H. Coloured prints of the 16th century: non-destructive analyses on coloured engravings from Albrecht Dürer and contemporary artists // Archaeometry. – 2004. – 46, № 2. – P. 273–282.
36. Hahn O., Malzer W., Kanngiesser B., Beckhoff B. Characterization of iron-gall inks in historical manuscripts and music compositions using x-ray fluorescence spectrometry // X-ray Spectrom. – 2004. – 33, № 4. – P. 234–239.
37. Malzer W., Hahn O., Kanngiesser B. A fingerprint model for inhomogeneous ink-paper layer systems measured with micro-x-ray fluorescence analysis // X-Ray Spectrom. – 2004. – 33, № 4. – P. 229–233.
38. Janssens K., Vincze L., Vekemans B., Williams C.T., Radtke M., Haller M., Knöchel A. The non-destructive determination of REE in fossilized bone using synchrotron radiation induced K-line X-ray microfluorescence analysis // Fresenius J. Anal. Chem. – 1999. – 363. – P. 413–420.
39. Kanngieser B., Malzer W., Reiche I. A new 3D micro X-ray fluorescence analysis set-up – First archaeometric applications // Nucl. Instrum. Methods Phys. Res., Sect. B. – 2003. – 211. – P. 259–264.
40. Vincze L., Riekel C. Status and perspectives of capillary optics at a third-generation synchrotron radiation source // X-ray Spectrom. – 2003. – 32, № 3. – P. 208–214.
41. Revenko A.G. Применение вариантов рентгенофлуорес- центного анализа с возбуждением синхротронным излу- чением и микрофлуоресценции с использованием капиллярной оптики: современное состояние и тенденции развития // Proc. Intern. Conf. “Intern. School on Contemporary Physics - ISCP-III “. – Ulaanbaatar: МУИС-ийн Хэвдэх уйлдвэрт хэвлэв, 2005. – P. 224–237.
42. Kumakhov M.A. Capillary optics and their use in x-ray analysis // X-Ray Spectrom. – 2000. – 29, № 5. – P. 343–348.
43. Adams F., Janssens K., Snigirev A. Microscopic X-ray fluorescence analysis and related methods with laboratory and synchrotron radiation sources // J. Anal. At. Spectrom. – 1998. – 13. – P. 319–331.
44. Китов Б.И., Смагунов А.В., Портнов М.А. Влияние качества поверхности образца на интенсивность аналитической линии при рентгенофлуоресцентном анализе // Журн. аналит. химии. – 1990. – 45, № 10. – С. 1927–1933.
45. Milazzo M., Cicardi C. Simple methods for quantitative X-ray fluorescence analysis of ancient metal objects of archaeological interest // X-ray Spectrom. – 1997. – 26, № 4. – P. 211–216.
46. Gao N., Janssens K. Polycapillary X-ray optics // In book: XRay Spectrometry: Recent Technological Advances. Eds. K. Tsuji, J. Injuk and R. Van Grieken. – Chichester: Wiley & Sons, 2004. – P. 89–110.
47. Cesareo R., Brunetto A., Castellano A., Medina M.A.R. Portable equipment for X-ray fluorescence analysis // In book: X-Ray Spectrometry: Recent Technological Advances. Eds. K. Tsuji, J. Injuk and R. Van Grieken. - Chichester: Wiley & Sons, 2004. – P. 307–341.
48. Adams F., Adriaens A., Aerts A., De Raedt I., Janssens K., Schalm O. Micro and Surface Analysis in Art and Archaeology // J. Anal. At. Spectrom. – 1997. – 12. – P. 257–265.
49. Большой энциклопедический словарь. 2-е изд. / Под ред. А.М. Прохорова. – С.-Пб., Норинг: Научное изд-во “Большая Российская энциклопедия”, 2002. – 1434 с.
50. Swann C.P. Review of the recent application of the Nuclear Microprobe to art and archaeology // Nucl. Instrum. Methods Phys. Res., Sect. B. – 1995. – 104. – P. 576–583.
51. Brissaud I., Lagarde G., Midy P. Study of multilayers by PIXE technique. Application to paintings // Nucl. Instrum. Methods Phys. Res., Sect. B. – 1996. – 117. – P. 179–185.51.
52. Cesareo R., Gigante G.E., Canegallo P., Castellano A., Iwanczyk J.S., Dabrowski A. Applications of non-cryogenic portable EDXRF systems in archaeometry // Nucl. Instrum. Methods Phys. Res., Sect. A. – 1996. – 380. – P. 440–445.
53. Gigante G.E., Cesareo R. Non-destructive analysis of ancient metal alloys by in situ EDXRF transportable equipment // Radiat. Phys. Chem. – 1998. – 51, № 4–6. – P. 689–700.
54. Castellano A., Cesareo R. A portable instrument for energydispersive X-ray fluorescence analysis of sulfur // Nucl. Instrum. Methods Phys. Res., Sect. B. – 1997. – 129. – P. 281–283.
55. Von Bohlen A., Meyer F. Microanalysis of old violin varnishes by total-reflection X-Ray fluorescence // Spectrochim. Acta, Part B. – 1997. – 52. – P. 1053–1056.
56. Swann C.P., Betancourt P.P., Fleming S., Floyd C.R. PIXE analysis of Trojan gold jewelry // Nucl. Instrum. Methods Phys. Res., Sect. B. – 1997. – 130. – P. 320–323.
57. Cesareo R., Castellano A., Gigante G.E., Marabelli M., Rosales M.A., Santopadre P., Silva da Costa M. Portable instruments for EDXRF-analysis in Archaeometry // 5th Int. Conf. Non Destruct. Test. Study Conserv. Works Art. – Hungarian Chem. Soc., Budapest. – 1996. – P. 183–192.
58. Diana M., Moioli P., Seccaroni C. Proc. SPIE-Int. Soc. Opt. Eng., 1998, 3315 (Scientific Detection of Fakery in Art), 42.
59. Longoni A., Fiorini C., Leutenegger P., Sciuti S., Fronterotta G., Strüder L., Lechner P. A portable XRF spectrometer for nondestructive analysis in Archaeometry // Nucl. Instr. Methods Phys. Res., Sect. A. – 1998. – 409. – P. 395–400.
60. Ferrero J.L., Roldan C., Ardid M., Navarro E. X-ray fluorescence analysis of yellow pigment in altarpieces by Valencian Методы и объекты химического анализа, 2007, т. 2, №
76. Ferrero J.L., Roldán C., Juanes D., Rollano E., Morera C. Analysis of pigments from Spanish works of art using a portable EDXRF spectrometer // X-ray Spectrom. – 2002. – 31. – P. 441–447.
77. Absil J., Garnir H.-P., Strivay D., Oger C., Weber G. Study of color centers induced by PIXE irradiation // Nucl. Instrum. Methods Phys. Res., Sect. B. – 2002. – 198. – P. 90–97.
78. Cesareo R. Non-destructive EDXRF-analysis of the golden haloes of Giotto’s frescoes in the Chapel of the Scrovegni in Padua // Nucl. Instrum. Methods Phys. Res., Sect. B. – 2003. – 211. – P. 133–137.
79. Hochleitner A., Desnica V., Mantler M., Schreiner M. Historical pigments: a collection analyzed with X-ray diffraction analysis and X-ray fluorescence analysis in order to create a database // Spectrochim. Acta, Part B. – 2003. – 58. – P. 641–649.
80. Desnica V., Furic K., Hochleitner A., Mantler M. A comparative analysis of five chrome green pigments based on different spectroscopic techniques // Spectrochim. Acta, Part B. – 2003. – 58. – P. 681–687.
81. Edreira M.C., Feliu M.J., Fernandez-Lorenzo C., Martin J. Spectroscopic analysis of Roman wall paintings from Casa del Mitreo in Emerita Augusta, Merida, Spain // Talanta. – 2003. – 59. – P. 1117–1139.
82. Heck M., Rehren Th., Hoffmann P. The production of lead-tin yellow at Merovingian Schleitheim (Switzerland) // Archaeometry. – 2003. – 45, № 1. – P. 33–44.
83. Colombini M.P., Giachi G., Modugno F., Pallecchi P., Ribechini E. The Characterization of Paints and Waterproofing Materials from the Shipwrecks Found at the Archaeological Site of the Etruscan and Roman Harbour of Pisa (Italy) // Archaeometry. – 2003. – 45, № 4. – 659–674.
84. Maravelaki-Kalaitzaki P., Kallithrakas-Kontos N. Pigment and terracotta analyses of Hellenistic figurines in Crete // Anal. Chim. Acta. – 2003. – 497. – P. 209–225.
85. Schreiner M., Fruhmann B., Jembrih-Simburger D., Linke R. X-rays in art and archaeology: An overview // Powder Diffract. – 2004. – 19, No. 1. – P. 3-11.
86. Mantler M., Klikovits J. Analysis of art objects and other delicate samples: Is XRF really nondestructive? // Powder Diffract. – 2004. – 19, № 1. – P. 16–19.
87. Kallithrakas-Kontos N., Maravelaki-Kalaitzaki P. EDXRF as an analytical tool in art: Case studies from pigment identification and treatment assessment // J. Radioanal. Nucl. Chem. – 2004. – 262, № 3. – P. 713–719.
88. Creagh D.C., Otieno-Alego V. The use of radiation for the study of material of cultural heritage significance // Nucl. Instrum. Methods Phys. Res., Sect. B. – 2004. – 213. – P. 670–676.
89. Denker A., Opitz-Coutureau J. Paintings – high-energy protons detect pigments and paint-layers // Nucl. Instrum. Methods Phys. Res., Sect. B. – 2004. – 213. – P. 677–682.
90. Serebryakov A.S., Demchenko E.L., Koudryashov V.I., Sokolov A.D. Energy dispersive X-ray fluorescent (ED XRF) analyzer X-Art for investigation of artworks // Nucl. Instrum. Methods Phys. Res., Sect. B. – 2004. – 213. – P. 699–702.
91. Reiche I., Radtke M., Berger A., Görner W., Ketelsen Th., Merchel S., Riederer J., Riesemeier H., Roth M. Spatially resolved synchrotron-induced X-ray fluorescence analyses of metal point drawings and their mysterious inscriptions // Spectrochim. Acta, Part B. – 2004. – 59, № 10–11. – P. 1657–1662.
92. Del Rio M.S., Martinetto P., Somogyi A., Reyes-Valerio C., 23 kiln at Kommon, Crete: the effect on the formation of a reference group // Archaeometry. – 2001. – 43, № 3. – P. 349–371.
Publisher:Taras Shevchenko National University, Kiev Ukraine
(Analytical chemistry department at Taras Shevchenko
National University, 64 Vladimirskaya STR., Kiev, 01601 UKRAINE)
analysis@univ.kiev.ua,
www.univ.kiev.ua,
+380-44-2393266
The journal is indexed in SCOPUS and Web of Science
The journal website: www.moca.net.ua
The articles in this journal are licensed under
CC BY 4.0