[1]
S. N. Stepnin, O. P. Kuznetsova, A. V. Vahin, B. I. Khabibrakhmanov, The use of complexons and complexonates as metal corrosion inhibitors, Vestnik Kazanskogo tekhnologicheskogo universiteta, 13 (2012) 88-96.
Google Scholar
[2]
E.A. Kalman, In working party report on corrosion inhibitors, The Institute of мaterials, Kalman, London, (1994).
Google Scholar
[3]
Yu.I Kuznetsov, In progress in the understanding and prevention of corrosion, Cambrige University Press, Cambridge, 2 (1993) 845-851.
Google Scholar
[4]
Y. Gonzalez, M.C. Lafont, N. Pebere, J. Appl. Electrochem, 26(12) (1996) 1253-1258.
Google Scholar
[5]
D. S. Robinson, Corrosion inhibitors, Moscow, Metallurgiya Publ., (1993).
Google Scholar
[6]
S. A. Potapov, B. N. Driker, N. V. Tsirulnikova, The use of zinc complex OEDP in heat supply and hot-water supply systems, Energy saving and water treating, 3 (2004) 57-60.
Google Scholar
[7]
F.F. Chausov, Inhibition of crystal growth of alkaline-earth metals in the water solution. PhD. Diss. Nizhniy Novgorod, NNTU Publ., (2005).
Google Scholar
[8]
Z.I. Kostina, S.A. Krylova, V.F. Kostin and I.V. Ponurko, RF, Patent 2535891. (2014).
Google Scholar
[9]
I.V. Ponurko, S.A. Krylova, Z.I. Kostina, RF, Patent 2634109. (2017).
Google Scholar
[10]
I.V. Ponurko, S.A. Krylova. Synthesis of the glassy phosphate compositions, Magnitogorsk: Nosov Magnitogorsk State Technical University. Publ., (2017).
DOI: 10.21440/0536-1028-2020-8-62-70
Google Scholar
[11]
I.V. Ponurko, S.A. Krylova. Production and Properties of Glassy Phosphate Composition Magnitogorsk: Nosov Magnitogorsk State Technical University. Publ., (2018).
DOI: 10.17580/chm.2020.12.06
Google Scholar
[12]
B.A. Nikiforov, Z.I. Kostina, G.S. Slobozhankin, S.A. Krylova, V.F. Kostin, I.V. Ponurko, RF, Patent 2303084. (2007).
Google Scholar
[13]
Z.I. Kostina, S.A. Krylova, I.V. Ponurko, Protecting the metal surfaces of water-cooling systems from corrosion and scale. Teoriya i tekhnologiya metallurgicheskogo proizvodstva, Theory and technology of metallurgical production, 1 (2014) 90-92.
Google Scholar
[14]
Z.I. Kostina, S.A. Krylova, I.V. Ponurko, Anti-scalant properties of the composition Astra,, Teoriya i tekhnologiya metallurgicheskogo proizvodstva, Theory and technology of metallurgical production, 1 (2014) 112-115.
Google Scholar
[15]
Z.I. Kostina, S.A. Krylova, I.V. Ponurko, Protecting the water-heating elements of household equipment from corrosion and scale, Energosberezheniye i vodopodgotovka, Energy saving and water treating, 4 (2014) 28-32.
Google Scholar
[16]
I.V. Ponurko, Z.I. Kostina, S.A. Krylova, E.I. Shabalin, Improving the quality of phosphate composition for the treatment of fire-drinking water, Quality in materials processing. 2 (2015) 59-63.
Google Scholar
[17]
Z.I. Kostina, S.A. Krylova, I.V. Ponurko, Production and Properties of Glassy Metaphosphate Composition for Protecting the Elements of Water-Heating Systems from Corrosion. Steklo i keramika, Glass and Ceramics. 2. (2016) 39-42.
DOI: 10.1007/s10717-016-9828-5
Google Scholar
[18]
Z.I. Kostina, S.A. Krylova, I.V. Ponurko, Production and Properties of Glassy Metaphosphate Composition for Protecting the Elements of Water-Heating Systems from Corrosion: Glass and Ceramics, 73(1) (2016) 71-74.
DOI: 10.1007/s10717-016-9828-5
Google Scholar
[19]
S.A. Krylova, I.V. Ponurko, Modernized glassy phosphate composition for water treatment, Steklo i keramika, Glass and Ceramics, 8 (2018) 46-51.
DOI: 10.1007/s10717-018-0080-z
Google Scholar
[20]
S.A. Krylova, I.V. Ponurko, Modernized Glassy Phosphate Composition for Water Treatment, Glass and Ceramics, 75(7–8) (2018) 327–332.
DOI: 10.1007/s10717-018-0080-z
Google Scholar