Academic literature on the topic 'FeIIIEDDA'

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Journal articles on the topic "FeIIIEDDA"

1

Nowack, B., and U. Baumann. "Biologischer Abbau der Photolyseprodukte von FeIIIEDTA." Acta hydrochimica et hydrobiologica 26, no. 2 (March 1998): 104–8. http://dx.doi.org/10.1002/(sici)1521-401x(199803)26:2<104::aid-aheh104>3.0.co;2-w.

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2

Szilágyi, P. Á., J. Madarász, E. Kuzmann, A. Vértes, G. Molnár, A. Bousseksou, V. K. Sharma, and Z. Homonnay. "Thermal stability of the FeIIIEDTA complex in its monomeric form." Thermochimica Acta 479, no. 1-2 (December 2008): 53–58. http://dx.doi.org/10.1016/j.tca.2008.09.009.

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3

Suchecki, Tomasz T., Barbara Mathews, and Hidehiro Kumazawa. "Kinetic Study of Ambient-Temperature Reduction of FeIIIedta by Na2S2O4." Industrial & Engineering Chemistry Research 44, no. 12 (June 2005): 4249–53. http://dx.doi.org/10.1021/ie0493006.

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4

He, Feiqiang, Xianhe Deng, and Min Chen. "Kinetics of FeIIIEDTA complex reduction with iron powder under aerobic conditions." RSC Advances 6, no. 44 (2016): 38416–23. http://dx.doi.org/10.1039/c6ra05222c.

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5

Cheon, Seonjeong, Kwiyong Kim, Hyung Chul Yoon, and Jong-In Han. "Performance of sulfite/FeIIIEDTA fuel cell: Power from waste in flue gas desulfurization process." Chemical Engineering Journal 375 (November 2019): 122008. http://dx.doi.org/10.1016/j.cej.2019.122008.

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Summers, Jack S., Joseph B. Baker, Dan Meyerstein, Amir Mizrahi, Israel Zilbermann, Haim Cohen, Christopher M. Wilson, and Jamie R. Jones. "Measured Rates of Fluoride/Metal Association Correlate with Rates of Superoxide/Metal Reactions for FeIIIEDTA(H2O)-and Related Complexes." Journal of the American Chemical Society 130, no. 5 (February 2008): 1727–34. http://dx.doi.org/10.1021/ja077193b.

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Dissertations / Theses on the topic "FeIIIEDDA"

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Szilagyi, Petra Agota. "Study of iron-chelates in solid state and aqueous solutions using Mössbauer spectroscopy." Toulouse 3, 2007. http://thesesups.ups-tlse.fr/142/.

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Ce travail a été consacré à l'étude du complexe éthylènediamine tétra-acétate de fer(III) (FeIIIEDTA) et de ses analogues : cyclohexanediamine tétra-acétate de fer(III) (FeIIICDTA) et (N,N')éthylènediamine di-acétate de fer(III) (FeIIIEDDA). Les structures de ces complexes en solutions aqueuses aux pH différents ont été proposées. La photodégradation du FeIIIEDTA ainsi que l'auto-oxydation du système Fe2+/EDTA dans les états solide et en solution ont été étudiées. Les mécanismes des réactions entre les complexes de FeIIIEDTA/CDTA/EDDA et l'H2O2 ainsi que la structure des intermédiaires issus de ces réactions ont été proposés. La relaxation magnétique du complexe NaFeEDTA. 3H2O à l'état solide ainsi que sa stabilité thermique et l'oxydation à l'air des produits issus de sa dégradation thermique (deux espèces de fer(II)) ont été étudiées par spectrométrie Mössbauer
This work has been devoted to the investigation of the ferric ethylenediaminetetraacetate, FeIIIEDTA and its analogues: the ferric cyclohexanediaminetetraacetate, FeIIICDTA and the ferric (N,N')ethylenediaminediacetate, FeIIIEDDA complexes. Structure of these complexes in aqueous solutions at different pH values have been proposed. The photodegradation of the FeIIIEDTA complex as well as the autoxidation of the Fe2+/EDTA system in solid state and in aqueous solution phase have been studied. Reaction pathways and structures for intermediate species forming in the course of the reaction between FeIIIEDTA/CDTA/EDDA and H2O2 have been proposed. The magnetic relaxation of the solid NaFeEDTA. 3H2O as well as the thermal stability and further aerial degradation of the decomposition products have been studied using Mössbauer spectroscopy
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