Диссертация (1150323), страница 18
Текст из файла (страница 18)
Куличенко // Химия итехнология воды. – 2008. – № 5. – C. 521.93. Shemirani, F. Laser induced thermal lens spectrometry for cobalt determinationafter cloud point extraction / F. Shemirani, N. Shokoufi // Analytica Chimical Acta. –2006. – № 577. – P. 238–243.94. Shariati, S. Cloud point extraction and simultaneous determination of zirconium andhafnium using ICP-OES / S. Shariati, Y. Yamini // Journal of colloid and interfacescience. – 2006.
– № 298. – P. 419–425.95. Afkhami, A. Micelle-Mediated Extraction and Spectrophotometric Determination ofAmmonia in Water Samples utilizing Indophenol Dye Formation / A. Afkhami, R.Norooz-Asl // Journal of the Brazilian Chemical Society. – 2008. – № 19. – P. 1546–1552.96.Крылов,В.А.Жидкофазноемикроэкстракционноеконцентрированиепримесей / В.А. Крылов, А.В. Крылов, П.В. Мосягин, Ю.О. Маткивская // Журналаналитической химии. – 2011. – Т. 66. – № 4. – С. 341–360.97. Liu, S.
Liquid droplet. A renewable gas sampling interface / S. Liu, P.K. Dasgupta //Analytical Chemistry. – 1995. – № 67. – P. 2042–2049.98. Liu, H. A renewable liquid droplet as a sampler and a windowless optical cell. Anautomated sensor for gaseous chlorine / H. Liu, P.K.
Dasgupta // Analytical Chemistry.– 1995. – № 67. – P. 4221–4228.11899. Hata, N. Micro-phase sorbent extraction for trace analysis via in situ sorbentformation: application to the preconcentration and the spectrophotometric determinationof trace ammonia / N. Hata, I. Kasahara, S. Taguchi // Analytical Sciences. – 2002. – №18. – P. 697–699.100. Shoji, T. Collection of indonaphthol blue on a membrane filter for thespectrophotometricdeterminationofammoniawith1-naphtholanddichloroisocyanurate / T. Shoji, E.
Nakamura // Analytical Sciences. – 2010. – № 26. –P. 779–783.101.Hata,N.Spectrophotometricdeterminationofammonia-nitrogenafterpreconcentration as indothymol on a glass-fiber filter in the presence of a cationicsurfactant / N. Hata, K. Teraguchi, M. Yamaguchi, I. Kasahara, S. Taguchi, K. Goto //Mikrochimica Acta. – 1992. – № 106. – P. 101–108.102. Martinez, Y.M. Improved detection limit for ammonium/ammonia achieved byBerthelot's reaction by use of solid-phase extraction coupled to diffuse reflectancespectroscopy / Y.M. Martinez, R.H. Hernandez, P.C. Falco // Analytica Chimica Acta.
–2005. – № 534. – P. 327–334.103. Martinez, Y.M. Influence of the presence of surfactants and humic acid in waterson the indophenol-type reaction method for ammonium determination / Y. M. Martinez,P.C. Falco, R. H. Hernandez // Talanta. – 2006. – № 69. – P. 1038–1045.104. Okumura, M. A simple and rapid in situ preconcentration method for traceammonia nitrogen in environmental water samples using a solid-phase extractionfollowed by spectrophotometric determination / M. Okumura, S. Honda, K. Fujinaga,Y.
Seike // Analytical. Sciences. – 2005. – № 21. – P. 1137–1140.105. Sarangapani, M. Determination of ammonium in aqueous samples using newheadspace dynamic in-syringe liquid-phase microextraction with in situ derivitazationcoupled with liquid chromatography–fluorescence detection / M. Sarangapani, C.T.Yan, H.K.
Shih // Analytica Chimica Acta. – 2012. – № 754. – P. 54–60.106. Bremner, J. M. Determination of ammonia and nitrate in soil / J. M. Bremner, K.Shaw // Journal of Agricultural Science. – 1995. – № 46. – P. 320–328.119107. ГОСТ Р. 53219-2008 Качество почвы. Определение содержания нитратногоазота, аммонийного азота и общего азота в воздушно-сухих почвах с помощьюхлорида кальция в качестве экстрагирующего вещества. – М.: Стандартинформ,2009. – 15 с.108.
Francis, P.S. Analytical methodology for the determination of urea: currentpractice and future trends / P.S. Francis, S.W. Lewis, K.F. Lim // Trends in analyticalchemistry. – 2002. – № 21. – P. 389–400.109. Revilla, M. Urea analysis in coastal waters: Comparison of enzymatic and directmethods / M. Revilla, J. Alexander, P. Glibert // Limnology and Oceanography:Methods.
– 2005. – № 3. – P. 290–299.110. Morishita, Y. Kinetic assay of serum and urine for urea with use of urease andleucine dehydrogenase / Y. Morishita // Clinical Chemistry. – 1997. – № 43. – P. 1932–1936.111. Reis Lima, M. J. Enzymatic determination of urea in milk by sequential injectionwith spectrophotometric and conductometric detection / M. J. Reis Lima, S.M.V.Fernandes, A.O.S.S. Rangel // Journal of Agricultural and Food Chemistry. – 1997. – №52. – P.
6887–6890.112. Ruzicka, J. Enzymatic determination of urea in serum based on pH measurementwith flow injection method / J. Ruzicka, E.H. Hansen, K. Ghose // AnalyticalChemistry. – 1979. – № 51. – P. 199–206.113. Bretaudiere, J.P. Direct enzymatic determination of urea in plasma and urine with acentrifugal analyzer / J.P. Bretaudiere, H.T. Phung, M. Bailly // Clinical Chemistry. –1976. – № 22.
– P. 1614–1617.114. Бусев, А.И. Колориметрические (фотометрические) методы определениянеметаллов / А.И. Бусев. – М.: Иностранной Литературы, 1963. – 467 с.115. Rho, J.H. Direct fluorometric determination of urea in urine / J.H. Rho // ClinicalChemistry. – 1972. – № 18.
– P. 476–478.116. Butler, A.R. The chemistry of the diacetyl monoxime assay of urea in biologicalfluids / A. R. Butler, I. Hussain, E. Leitch // Clinical Chemistry. – 1981. – № 112. – P.357–360.120117. Goeyens, L. A room temperature procedure for the manual determination of urea inseawater / L. Goeyens, N. Kindermans, M. Abu Yusuf, M. Elskens // Estuarine, Coastaland Shelf Science. – 1998. – № 47. – P. 415–418.118. Newell, B.S. The determination of urea in seawater / B.S. Newell, B. Morgan, J.Cundy // Journal of Marine Research. – 1967.
– № 25. – P. 201–202.119. Mulvenna, P.F. A modified manual method for the determination of urea inseawater using diacetylmonoxime reagent / P.F. Mulvenna, G. Savidge // Estuarine,Coastal and Shelf Science. – 1992. – № 34. – P. 429–438.120. With, T.K. A simple spectrophotometric method for the determination of urea inblood and urine / T.K. With, T.D. Petersen, B. Petersen // Journal of Clinical Pathology.– 1961. – № 14. – P.
202–204.121. Geiger, P.J. The use of p-dimethylaminobenzaldehyde for the micro determinationof urea in urine / P.J. Geiger // Microchemical Journal. – 1968. – № 13. – P. 481–490.122. Roijer, A.F.M. The determination of urea with p-dimethylaminobenzaldehyde /A.F.M. Roijers, M.M. Tas // Clinica Chimica Acta. – 1964. – № 9. – P. 197– 202.123. Yatizidis, H. An improved method for the simple and accurate colorimetricdetermination of urea with Ehrlich's reagent / H. Yatizidis, M.
Garidi, C. Vassilikos, D.Mayopoulou, A. Akilas // Journal of Clinical Pathology. – 1964. – № 17. – P. 163–164.124. Hoseney, R.C. Spectrophotometric determination of urea, thiourea, and certain oftheir substitution products with p-dimethylaminobenzaldehyde and diacetylmonoxime /R. C. Hoseney, K. F. Finney // Analytical Chemistry. – 1964.
– № 36. – P. 2145–2148.125. With, Т.K. A simple spectrophotometric method for the determination of urea inblood and urine / Т.K. With, T.D. Petersen, B. Petersen // Technical methods. – 1960. –P. 202–204.126. Abshahi, A. Simultaneous Determination of Urea and Ammonia Nitrogen in SoilExtracts and Water by High Performance Liquid Chromatography/ A. Abshahi, S.S.Goyal, D.S. Mikkelsen // Soil Science Society of America. – 1988. – № 52. – P. 969–973.121127. Matsudo, T. Determination of urea and citrulline in fermented foods and beverages/ T. Matsudo, M. Sasaki // Bioscience, Biotechnology and Biochemistry.
– 1995. – №59. – P. 827–830.128. Kodama, S. Highly sensitive method for urea detection in wine / S. Kodama, T.Suzuki // Journal of Food Science. – 1995. – № 60. – P. 1097–1099.129. Knorst, M.T. Analytical methods for measuring urea in pharmaceuticalformulations / M.T. Knorst, R. Neubert, W. Wohlrab // Journal of Pharmaceutical andBiomedical Analysis.
– 1997. – № 15. – P. 1627–1632.130. Dallet, P. Determination of urea, allantoin and lysine pyroglutamate in cosmeticsamples by hydrophilic interaction chromatography / P. Dallet, L. Labat, E. Kummer,J.P. Dubost // Journal of Chromatography B. – 2000. – № 742. – P. 447–452.131. Clark, S. Determination of urea using high-performance liquid chromatographywith fluorescence detection after automated derivatisation with xanthydrol / S.
Clark,P.S. Francis, X.A. Conlan, N.W. Barnett // Journal of Chromatography A. – 2007. – №1161. – P. 207–213.132. M.J. Veiga, P. Herbert, T. Simoes, A. Oliveira, A. Alves, Presented at the 4thInternational Conference on Instrumental Methods of Analysis: Modern Trends andApplications, Iraklion, Greece, October 2005, Poster P-III-16.133. Martinek, R.G. Review of methods for determining urea nitrogen in biologic fluid /R.G. Martinek // The American Journal of Medical Technology. – 1969. – № 31.
– P.678–683.134. Hirota, K. High-performance liquid chromatographic method for the determinationof plasma allantoin / K. Hirota, M. Kawase, S. Ohmori, T. Kishie // Journal ofChromatography B. – 1983. – № 277. – P. 165–172.135. Andersson, G. Determination of milk urea by flow injection analysis / G.Andersson, L. Andersson, G. Carlstrоm //Journal of Veterinary Medicine Series A. –1986. – № 33. – P. 53–58.136. Baumgartner, M. Evaluation of flow injection analysis for determination of urea insheep's and cow's milk / M.
Baumgartner, M. Flock, P. Winter, W. Luf, W.Baumgartner // Acta Veterinaria Hungarica. – 2002. – № 50. – P. 263–271.122137. Lima, J.L.F.C. Flow Injection System with Potentiometric Detection for theDetermination of Urea Content in Milks / J.L.F.C. Lima, C.D. Matos, M.C.V.F. Vaz //Journal of Agricultural and Food Chemistry. – 1998. – № 46. – P. 1386–1389.138. Abdel-Latif, M.S.
Fluorometric determination of urea by flow injection analysis /M.S. Abdel-Latif, G.G. Guilbault // Journal of Biotechnology. – 1990. – № 14. – P. 53–61.139. Hu, X. Determination of trace amounts of urea by using flow injection withchemiluminescence detection / X. Hu, N. Takenaka, M.