METHOD OF DETERMINING OPTIMAL PARAMETERS OF DISSOLUTION OF OXIDES OF TRANSITION METALS IN SOLUTIONS, CONTAINING COMPLEXING AGENT Russian patent published in 2014 - IPC G21F9/00 

Abstract RU 2516274 C2

FIELD: chemistry.

SUBSTANCE: invention relates to method of determining optimal parameters of dissolution of oxides of transition metals in solutions, which contain complexing agent, and can be applied in atomic energy. As parameters, applied are volume coefficients of distribution of radioactive isotopes of transition metals, which determine composition of oxides, between solutions, which contain complexing agent, and strong-base anionites in form of said complexing agent (complexits) and balanced values of solution pH. Radioactive isotopes of transition metals are introduced into fixed volumes of analysed solutions, after which, fixed volumes of complexits are introduced into solutions. Initial and final activity of solutions is measured. Also measured are balanced values of pH of solutions. Ranges, satisfying optimal parameters, which must be supported in contours of NEP directly in the process of dissolution of oxides in the process of washing and deactivation of NEP contours, are determined by the results of measurements.

EFFECT: increased reliability of determination of optimal parameters of dissolution of oxides of transition metals in complexing agent solutions and absence of necessity of carrying out complex analyses of metals to determine concentration of metal cations in solutions of complexons.

2 cl, 2 dwg, 1 tbl

Similar patents RU2516274C2

Title Year Author Number
METHOD FOR REMOVING TRANSITION METALS AND RADIONUCLIDES FROM SOLUTIONS CONTAINING COMPLEXING AGENT 2012
  • Moskvin Leonid Nikolaevich
  • Krivobokov Viktor Vasil'Evich
RU2458418C1
METHOD OF DETERMINING DYNAMIC SORPTION CAPACITY OF COMPLEX FORMING IONITES BY IONS OF TRANSITION METALS 2013
  • Krivobokov Viktor Vasil'Evich
RU2542615C1
METHOD FOR CHEMICAL TREATMENT AND DEACTIVATION OF PRESSURED WATER-COOLED RESEARCH AND POWER REACTOR CIRCUITS 2013
  • Gelbutovskij Aleksandr Bronislavovich
  • Stepanov Igor' Konstantinovich
  • Cheremisin Petr Ivanovich
  • Stepanov Andrej Igorevich
RU2558732C2
SCALE REMOVAL METHOD 2008
  • Gorichev Igor' Georgievich
  • Izotov Aleksandr Dmitrievich
  • Artamonova Inna Viktorovna
RU2386729C2
METHOD OF HEAT-TRANSFER SURFACE CLEANSING 1990
  • Lavrov A.V.
  • Moskvin L.N.
  • Krivobokov V.V.
  • Andrianov A.K.
SU1774669A1
AGENT FOR REMOVING IMPURITIES OF RADIOACTIVE AND TOXIC METALS 1993
  • Matkovskaja Tat'Jana Aleksandrovna
  • Gnezdilov Anatolij Aleksandrovich
  • Marchenko Viktor Ivanovich
  • Allakhverdov Grant Rantovich
  • Salakhov Ikar Khasanovich
RU2035074C1
SOLUTION FOR DELETING DEPOSITS OF DIFFERENT NATURE 2016
  • Sheptunov Aleksandr Aleksandrovich
  • Bazanov Daniil Romanovich
RU2639433C2
CATALYST (VERSIONS), METHOD OF THEREOF PREPARATION (VERSIONS) AND METHOD OF PURIFICATION OF LIQUID RADIOACTIVE WASTES 2014
  • Parkhomchuk Ekaterina Vasil'Evna
  • Sashkina Ksenija Aleksandrovna
  • Ovchinnikov Dmitrij Aleksandrovich
  • Semejkina Viktorija Sergeevna
RU2570510C2
METHOD FOR PREPARING CONCENTRATED IRON CHELATE SOLUTION AND IRON CHELATE 2005
  • Permitina Galina Vasil'Evna
  • Verevkin Evgenij Lejzerovich
RU2278868C1
AGENT FOR CHEMICAL REMOVAL OF CORROSION DEPOSITS FROM METAL SURFACES 2012
  • Zaben'Kina Ekaterina Olegovna
  • Pankratov Dmitrij Vasil'Evich
  • Gorichev Igor' Georgievich
  • Artamonova Inna Viktorovna
RU2500795C1

RU 2 516 274 C2

Authors

Moskvin Leonid Nikolaevich

Krivobokov Viktor Vasil'Evich

Gorev Igor' Aleksandrovich

Stepanova Svetlana Viktorovna

Grigor'Eva Irina Nikolaevna

Dates

2014-05-20Published

2012-07-23Filed