И.И. Юрасова, Н.И. Юрасов, Д.А. Сулегин
134
ISSN 1812-3368. Вестник МГТУ им. Н.Э. Баумана. Сер. Естественные науки. 2016. № 5
[2] Berenblit V.M., Burdin V.V., et al. Khimiya i tekhnologiya perekisi vodoroda [Chemistry
and technology of hydrogen peroxide]. Leningrad, Khimiya Publ., 1984. 200 p.
[3] Garrido-Ramirez E.G., Theng B.K.G., Mora M.L. Clays and oxide minerals as catalysts and
nanocatalysts in Fenton-like reactions.
A review 2010 Applied Clay Science
, vol. 47 (3–4),
pp. 182–192.
[4] Yang X.J., Tian P.F., Wang H.L., Xu J.H. Catalytic decomposition of Н
2
О
2
over Au/Сarbon
catalyst: A dual intermediate model for the generation of hydroxyl radicals.
J. of Catalesis
,
2016, vol. 336, no. 1, pp. 126–132.
[5] Kremer M.L. The Fenton reaction. Dependence of the rate on pH.
J. Phys. Chem. A
., 2003,
vol. 107, pp. 1734–1741.
[6] Dolgoplosk B.A., Tinyakova E.I. Metallorganicheskiy kataliz v protsessakh polimerizatsii
[Organometallic catalysis in polymerization processes]. Moscow, Nauka Publ., 1985. 534 p.
[7] Tkachenko K.T., Goncharenko E.E., Yurasova I.I. Decomposition of hydrogen peroxide
with potassium dichromate.
Tr. XX konf. “Khimiya v nekhimicheskikh vuzakh
” [Proc. XX conf.
Chemistry in non-chemical universities]. Moscow, MGTU im. N.E. Baumana Publ., 2016,
pp. 58–60 (in Russ.).
[8] Joaquin F. Perez-Benito
.
Iron(III)–hydrogen peroxide reaction: Kinetic evidence
of a hydroxyl-mediated chain mechanism.
J. Phys. Chem. A
, 2004, vol. 108, pp. 4853–4858.
[9] Korovin N.V., Kamyshova V.K., Udris
E.Ya.Obshchaya khimiya. Laboratornyy praktikum
[General chemistry. Laboratory workshop]. Moscow, Knorus Publ., 2015. 336 p.
[10] Lidin R.A., Andreeva L.L., Molochko V.A. Konstanty neorganicheskikh veshchestv.
Spravochnik [The constants of inorganic substances. Reference-book]. Moscow, Drofa Publ.,
2008. 686 p.
[11] Mart'yanov I.N., Savinov E.N., Parmon V.N. Photocatalytic oxidation of methyl viologen
in an aqueous suspension of TiO
2
in the presence of oxygen and hydrogen peroxide. The effect
of the solution pH and H
2
O
2
concentration on the reaction rate.
Kinetics and Catalysis
, 1997,
vol. 38, no. 1, pp. 70–76.
[12] Kozlov Yu.N., Durova E.L., Purmal' A.P. Method for determinating the rate of sulfate
anion-radical formation
in peroxydisulfate thermal homolysis and study of SO
4
reactivity.
Kinetika i kataliz
[Kinetics and Catalysis], 1996, vol. 37, no. 2, pp. 169–173 (in Russ.).
[13] Pliss E.M., Tikhonov I.V., Rusakov A.I. Primenenie spektral'nykh metodov dlya issledo-
vaniya mekhanizma khimicheskikh reaktsiy [Application of spectral methods for chemical
reaction mechanism study]. Yaroslavl', YarGU Publ., 2013. 76 p.
[14] Margulis M.A., Pil'gunov V.N. Luminescence and electrification in a flow of dielectric
liquids through narrow channels.
Russian Journal of Physical Chemistry A
, 2009, vol. 83,
no. 8, pp. 1414–1418.
[15] Gurov A.A., Badaev F.Z., Ovcharenko L.P., Shapoval V.N. Khimiya [Chemistry]. Mos-
cow, MGTU im. N.E. Baumana Publ., 2007. 780 p.
[16] Temkin O.N. Gomogennyy metallokompleksnyy kataliz. Kineticheskie aspekty. [Homo-
geneous metal-complex catalysis. Kinetic aspects]. Moscow, Akademkniga Publ., 2008. 918 p.




