Academic literature on the topic 'Electrothermal atomic absorption spectrometry (ETAAS)'

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Journal articles on the topic "Electrothermal atomic absorption spectrometry (ETAAS)"

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Guo, Wei, Ping Zhang, Lanlan Jin, and Shenghong Hu. "Rice cadmium monitoring using heat-extraction electrothermal atomic absorption spectrometry." J. Anal. At. Spectrom. 29, no. 10 (2014): 1949–54. http://dx.doi.org/10.1039/c4ja00234b.

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Turhan, Neslihan, Nil Ozbek, and Suleyman Akman. "Method development for the determination of bromine via molecular absorption of barium monobromide by high-resolution continuum source molecular absorption spectrometry." Journal of Analytical Atomic Spectrometry 34, no. 3 (2019): 577–82. http://dx.doi.org/10.1039/c8ja00422f.

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A challenging novel method was developed for the determination of bromine via molecular absorption of barium monobromide (BaBr) using a high-resolution continuum source electrothermal atomic absorption spectrometer (HR-CS ETAAS).
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Li, Kai, Xi Wu, Zhiming Chen, Jin Luo, Xiandeng Hou, and Xiaoming Jiang. "A simple dilution method for the direct determination of trace nickel in crude oil with a miniaturized electrothermal atomic absorption spectrometer." Journal of Analytical Atomic Spectrometry 35, no. 11 (2020): 2656–62. http://dx.doi.org/10.1039/d0ja00081g.

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Baralkiewicz, Danuta, Usama El-Sayed, Marian Filipiak, Hanka Gramowska, and Miroslaw Mleczek. "Determination of selenium in infant foods using electrothermal atomic absorption spectrometry with direct slurry sample introduction." Open Chemistry 2, no. 2 (2004): 334–46. http://dx.doi.org/10.2478/bf02475577.

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AbstractSlurry sampling electrothermal atomic absorption (SS ETAAS) was applied to the development of a sensitive and precise method for selenium determination in infant foods without sample pretreatment. Suspensions prepared in a medium containing 0.1% Triton X-100, 0.5 or 5% v/v concentrated HNO3 were directly introduced into the furnace. The accuracy of the procedure was confirmed by analysis of a standard reference material and comparison with hydride generation atomic absorption spectrometric (HGAAS) procedure. The characteristic mass is 44 pg and detection limit 0.43 μg·l−1.
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Cui, Hao, Wei Guo, Mengting Cheng, et al. "Direct determination of cadmium in geological samples by slurry sampling electrothermal atomic absorption spectrometry." Analytical Methods 7, no. 20 (2015): 8970–76. http://dx.doi.org/10.1039/c5ay01719j.

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Cundeva, Katarina, Gorica Pavlovska, and Trajce Stafilov. "ETAAS determination of thallium and silver from water matrix after colloidal precipitate flotation using lead(II) hexamethylenedithiocarbamate." Journal of the Serbian Chemical Society 66, no. 10 (2001): 709–21. http://dx.doi.org/10.2298/jsc0110709c.

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A fast method for the preconcentration of thallium and silver in nanogram quantities in fresh drinking waters (source, well, tap) and waters for irrigation using colloidal precipitate flotation is described. Lead(II) hexamethylenedithiocarbamate, Pb(HMDTC)2 played the role of flotation collector. The experimental conditions for the successful separation of thallium and silver (mass of Pb, amount of HMDTC-, pH of the system, induction time, type of surfactant etc.) were optimized. After flotation separation from the mother liquor, the solid sublate containing traces of thallium and silver was d
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Carballo, S., J. Terán, R. M. Soto, A. Carlosena, J. M. Andrade, and D. Prada. "Green approaches to determine metals in lubricating oils by electrothermal atomic absorption spectrometry (ETAAS)." Microchemical Journal 108 (May 2013): 74–80. http://dx.doi.org/10.1016/j.microc.2013.01.002.

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Yan, Xiu-Ping, Zhe-Ming Ni, Xiao-Tao Yang, and Guo-Qiang Hong. "Kinetics of indium atomization from different atomizer surfaces in electrothermal atomic absorption spectrometry (ETAAS)." Talanta 40, no. 12 (1993): 1839–46. http://dx.doi.org/10.1016/0039-9140(93)80105-z.

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Bermejo-Barrera, Pilar, Maria Jos� Lorenzo-Alonso, Manuel Aboal-Somoza, and Adela Bermejo-Barrera. "Determination of arsenic in mussels by slurry sampling and electrothermal atomic absorption spectrometry (ETAAS)." Mikrochimica Acta 117, no. 1-2 (1994): 49–64. http://dx.doi.org/10.1007/bf01243016.

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Ivanova-Petropulos, Violeta, Silvia Jakabová, Dusko Nedelkovski, Vladimír Pavlík, Želmira Balážová, and Ondrej Hegedűs. "Determination of Pb and Cd in Macedonian Wines by Electrothermal Atomic Absorption Spectrometry (ETAAS)." Food Analytical Methods 8, no. 8 (2015): 1947–52. http://dx.doi.org/10.1007/s12161-014-0062-x.

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Dissertations / Theses on the topic "Electrothermal atomic absorption spectrometry (ETAAS)"

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Simsek, Nail Engin. "Determination Of Boron In Water Samples By Electrothermal Atomic Absorption Spectrometry." Master's thesis, METU, 2012. http://etd.lib.metu.edu.tr/upload/12614868/index.pdf.

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Boron (B) is a rare element on Earth crust with a natural abundance of 0.001%. However, boron content of water and soils may be significantly high in the regions with rich boron reserves. In addition, extensive use of agrochemicals in soils as well as various natural processes increases the boron concentration in water. Despite B is an essential element for all living creatures, it may pose risks at high level exposures. World Health Organization (WHO) has recommended a daily intake of 1 to 13 mg B for adults. Turkey has almost 70% of world boron reserves principally in four regions: K&uuml<
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Ajayi, Olubode Olumuyiwa. "Probe atomisation in electrothermal atomic absorption spectrometry." Thesis, University of Strathclyde, 1988. http://ethos.bl.uk/OrderDetails.do?uin=uk.bl.ethos.314558.

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Fisher, Andrew Simon. "Reactive gases in electrothermal atomisation atomic absorption spectrometry." Thesis, University of Plymouth, 1991. http://hdl.handle.net/10026.1/1663.

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De, Jager Lionel Louis. "Permanent modifiers for electrothermal atomization atomic absorption spectometry." Diss., Access to E-Thesis, 2000. http://upetd.up.ac.za/thesis/available/etd-11162006-161158/.

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Katskov, DA. "Graphite filter atomizer in atomic absorption spectrometry." Elsevier, 2006. http://encore.tut.ac.za/iii/cpro/DigitalItemViewPage.external?sp=1000798.

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Graphite filter atomizers (GFA) for electrothermal atomic absorption spectrometry (ETAAS) show substantial advantages over commonly employed electrothermal vaporizers and atomizers, tube and platform furnaces, for direct determination of high and medium volatility elements in matrices associated with strong spectral and chemical interferences. Two factors provide lower limits of detection and shorter determination cycles with the GFA: the vaporization area in the GFA is separated from the absorption volume by a porous graphite partition; the sample is distributed over a large surface of a coll
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Money, Stephen D. "Electrodeposition and electrodeposited modifiers in electrothermal atomic absorption spectrometry." Thesis, University of Canterbury. Chemistry, 1999. http://hdl.handle.net/10092/6090.

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The work within this thesis is directed towards optimising and expanding the application of electrodeposition-coupled-electrothermal atomic absorption spectrometry (ED-ETAAS). The technique involves modifying the surface of the graphite furnace by in-situ electrodeposition of a noble metal. The analyte is electrodeposited onto the modifier and the spent sample matrix is aspirated from the furnace, thus separating the analyte from sample matrix components which can interfere with ETAAS analysis. The electrodeposited analyte is then determined by ETAAS. Parameters for electrodeposition of modi
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Al-Maawali, Sabah (Sabah Mohamed Amer) Carleton University Dissertation Chemistry. "Studies on electrothermal atomization in graphite furnace atomic absorption spectrometry and electrothermal vaporization inductively coupled plasma mass spectrometry." Ottawa, 1991.

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Delgado, Ana H. (Ana Herminia) Carleton University Dissertation Chemistry. "Studies on electrothermal atomization from graphite and metal surfaces in atomic absorption spectrometry." Ottawa, 1985.

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Carroll, J. H. "Development and application of probe atomisation in line-source and continuum-source electrothermal atomic absorption spectrometry." Thesis, University of Strathclyde, 1987. http://ethos.bl.uk/OrderDetails.do?uin=uk.bl.ethos.382344.

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Lamoureux, Marc Maurice Carleton University Dissertation Chemistry. "A multi-technique strategy for study of some mechanisms of atom formation and dissipation in electrothermal atomic absorption spectrometry." Ottawa, 1993.

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Books on the topic "Electrothermal atomic absorption spectrometry (ETAAS)"

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Aller, A. J. Fundamentals of Electrothermal Atomic Absorption Spectrometry: A Look Inside the Fundamental Processes in ETAAS. World Scientific Publishing Co Pte Ltd, 2018.

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Aller, A.-Javier. Fundamentals of Electrothermal Atomic Absorption Spectrometry. WORLD SCIENTIFIC, 2018. http://dx.doi.org/10.1142/10703.

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1947-, Jackson Kenneth W., ed. Electrothermal atomization for analytical atomic spectrometry. Wiley, 1999.

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Occupational Medicine and Hygiene Laboratory., ed. Cadmium and inorganic compounds of cadmium in air: Laboratory method using flame atomic absorption spectrometry or electrothermal atomic absorption spectrometry. Health and Safety Executive, 1994.

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Great Britain. Health and Safety Executive. Health and Safety Laboratory., ed. Lead and inorganic compounds of lead in air: Laboratory method using flame atomic absorption spectrometry or electrothermal atomic absorption spectrometry. Health and Safety Executive, 1994.

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Great Britain. Health and Safety Executive., ed. Beryllium and Beryllium Compounds in Air, Laboratory Method Using Flame Atomic Absorption Spectrometry or Electrothermal Absorption Spectrometry. HSE Books, 1996.

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Great Britain. Health and Safety Executive. Health and Safety Laboratory., ed. Nickel and inorganic compounds of nickel in air (except nickel carbonyl): Laboratory method using flame atomic absorption spectrometry or electrothermal atomic absorption spectrometry. Health and Safety Executive, 1996.

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Book chapters on the topic "Electrothermal atomic absorption spectrometry (ETAAS)"

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Schlemmer, Gerhard, and Bernard Radziuk. "Even theory can be fun: the exciting growth of knowledge in electrothermal AAS." In Analytical Graphite Furnace Atomic Absorption Spectrometry. Birkhäuser Basel, 1999. http://dx.doi.org/10.1007/978-3-0348-7576-9_3.

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Tsalev, Dimiter L. "Atomic Absorption Spectrometry (flame, electrothermal, vapour generation) in Environmental, Biological and Food Analysis." In Environmental Heavy Metal Pollution and Effects on Child Mental Development. Springer Netherlands, 2010. http://dx.doi.org/10.1007/978-94-007-0253-0_11.

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Poupon, J., V. Gleizes, G. Saillant, and M. Galliot-Guilley. "Determination of Serum Cobalt at the Nanomolar Level by Direct Electrothermal Atomic Absorption Spectrometry." In Trace Elements in Man and Animals 10. Springer US, 2002. http://dx.doi.org/10.1007/0-306-47466-2_348.

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Stringari, Gino, Ivo Pancheri, Frank Möller, and Osvaldo Failla. "Influence of two grinding methods on the uncertainty of determinations of heavy metals in atomic absorption spectrometry/electrothermal atomisation of plant samples." In Measurement Uncertainty in Chemical Analysis. Springer Berlin Heidelberg, 1998. http://dx.doi.org/10.1007/978-3-662-05173-3_38.

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Leśniewska, Barbara, Sylwia Sawicka, and Beata Godlewska-Żyłkiewicz. "On the Underestimated Factors Influencing the Accuracy of Determination of Pt and Pd by Electrothermal Atomic Absorption Spectrometry in Road Dust Samples." In Environmental Science and Engineering. Springer Berlin Heidelberg, 2014. http://dx.doi.org/10.1007/978-3-662-44559-4_4.

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Fodor, P., and I. Ipolyi. "ATOMIC ABSORPTION SPECTROMETRY | Electrothermal." In Encyclopedia of Analytical Science. Elsevier, 2005. http://dx.doi.org/10.1016/b0-12-369397-7/00027-3.

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"Electrothermal atomic absorption spectrometry (ET-AAS)." In Springer Reference Medizin. Springer Berlin Heidelberg, 2019. http://dx.doi.org/10.1007/978-3-662-48986-4_311179.

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Tsalev, Dimiter L., and Vera I. Slaveykova. "Chemical modification in electrothermal atomic absorption spectrometry." In Advances in Atomic Spectroscopy. Elsevier, 1998. http://dx.doi.org/10.1016/s1068-5561(98)80004-0.

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"Electrothermal Atomization Mechanisms: Theoretical and Practical Considerations." In Fundamentals of Electrothermal Atomic Absorption Spectrometry. WORLD SCIENTIFIC, 2018. http://dx.doi.org/10.1142/9789813229778_0007.

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"Fundamental Spectroscopic and Analytical Processes in Atomic Absorption Spectrometry." In Fundamentals of Electrothermal Atomic Absorption Spectrometry. WORLD SCIENTIFIC, 2018. http://dx.doi.org/10.1142/9789813229778_0001.

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Conference papers on the topic "Electrothermal atomic absorption spectrometry (ETAAS)"

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Dediu, Violeta, Lidia Kim, Cristiana Cosma, and Doina Guta. "THE DETERMINATION OF LEAD, CHROMIUM, ARSENIC AND SELENIUM IN SEDIMENTS AND SOIL SAMPLES BY ELECTROTHERMAL ATOMIC ABSORPTION SPECTROMETRY USING CHEMICAL MODIFIERS." In International Symposium "The Environment and the Industry". National Research and Development Institute for Industrial Ecology, 2016. http://dx.doi.org/10.21698/simi.2016.0058.

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