Keywords: drilling wastes, radiation control, sludge deactivation, gamma spectrometry, effective specific activity, radiation safety, oil and gas industry.
@article{VKAM_2022_38_1_a9,
author = {A. V. Shumilo and G. M. Yessilkanov and G. A. Yakovlev},
title = {Assessment of efficiency of decontamination of oil and gas industry drilling wastes by chemical treatment of sludge samples with solutions of acids and alkalis},
journal = {Vestnik KRAUNC. Fiziko-matemati\v{c}eskie nauki},
pages = {166--185},
year = {2022},
volume = {38},
number = {1},
language = {ru},
url = {http://geodesic.mathdoc.fr/item/VKAM_2022_38_1_a9/}
}
TY - JOUR AU - A. V. Shumilo AU - G. M. Yessilkanov AU - G. A. Yakovlev TI - Assessment of efficiency of decontamination of oil and gas industry drilling wastes by chemical treatment of sludge samples with solutions of acids and alkalis JO - Vestnik KRAUNC. Fiziko-matematičeskie nauki PY - 2022 SP - 166 EP - 185 VL - 38 IS - 1 UR - http://geodesic.mathdoc.fr/item/VKAM_2022_38_1_a9/ LA - ru ID - VKAM_2022_38_1_a9 ER -
%0 Journal Article %A A. V. Shumilo %A G. M. Yessilkanov %A G. A. Yakovlev %T Assessment of efficiency of decontamination of oil and gas industry drilling wastes by chemical treatment of sludge samples with solutions of acids and alkalis %J Vestnik KRAUNC. Fiziko-matematičeskie nauki %D 2022 %P 166-185 %V 38 %N 1 %U http://geodesic.mathdoc.fr/item/VKAM_2022_38_1_a9/ %G ru %F VKAM_2022_38_1_a9
A. V. Shumilo; G. M. Yessilkanov; G. A. Yakovlev. Assessment of efficiency of decontamination of oil and gas industry drilling wastes by chemical treatment of sludge samples with solutions of acids and alkalis. Vestnik KRAUNC. Fiziko-matematičeskie nauki, Tome 38 (2022) no. 1, pp. 166-185. http://geodesic.mathdoc.fr/item/VKAM_2022_38_1_a9/
[1] Programma yadernykh ispytaniy v narodno-khozyaystvennykh tselyakh v SSSR. [Program of Nuclear Tests for National Economic Purposes in the USSR], Electronic resource (in Russian) (Date of access: 19.02.2022) URL: https://ru.wikipedia.org/wiki/spisok_mirnykh_yadernykh_vzryvov_v_SSSR
[2] Nozik M. L., Nauchno-metodicheskie osnovy obespecheniya radioekologicheskoy bezopasnosti na predpriyatiyakh neftegazovogo kompleksa [Scientific and methodological basis for ensuring radioecological safety at oil and gas enterprises], Avtoreferat dissertatsii na soiskanie uchenoy stepeni kandidata geologo-mineralogicheskikh nauk [Author's thesis for the degree of Candidate of Geological and Mineralogical Sciences], Moscow, 2010, 24 pp. (in Russian)
[3] Stamat I. P., Lisachenko E. P., “Effektivnaya udel'naya aktivnost' prirodnykh radionuklidov v sredakh s narushennym radioaktivnym ravnovesiem v ryadakh urana i toriya [Effective specific activity of natural radionuclides in environments with disturbed radioactive equilibrium in the series of uranium and thorium]”, Radiatsionnaya gigiena - Radiation hygiene, 1:1 (2017), 27–31 (in Russian)
[4] Primenenie trebovaniy po proektirovaniyu poligonov razmeshcheniya promyshlennykh otkhodov k shlamovym ambaram. [Application of landfill design requirements for industrial waste to sludge pits], Elektronnyy resurs (in Russian) (Date of access: 03.03.2022) URL: https://www.normacs.info/answers/4453
[5] Ostakh O. S., Ekologo-ekonomicheskiy potentsial tekhnologiy utilizatsii burovykh shlamov [Environmental and economic potential of drilling cuttings utilization technologies], Dissertatsiya na soiskanie uchenoy stepeni kandidata tekhnicheskikh nauk, Federal'noe gosudarstvennoe avtonomnoe obrazovatel'noe uchrezhdenie vysshego obrazovaniya «rossiyskiy gosudarstvennyy universitet nefti i gaza (natsional'nyy issledovatel'skiy universitet) imeni I.M. GUBKINA» [Dissertation for the degree of Candidate of Technical Sciences Gubkin Russian State Oil and Gas University (National Research University) Federal State Autonomous Educational Institution of Higher Education], Moscow, 2021 (in Russian)
[6] Kislota azotnaya. GOST 4461. Reaktivy Tekhnicheskie usloviya [Nitric acid. GOST 4461. Reagents Technical specifications] (in Russian)
[7] Kislota solyanaya. GOST 3118-77 (ST SEV 4276-83). Reaktivy. Tekhnicheskie usloviya [Hydrochloric acid. GOST 3118-77 (ST SEV 4276-83). Reagents. Technical conditions] (in Russian)
[8] Kislota sernaya. GOST 4204-77 (ST SEV 3856-82). Reaktivy. Tekhnicheskie usloviya [Sulfuric acid. GOST 4204-77 (ST.SEV 3856-82). Reagents. Technical conditions] (in Russian)
[9] Natriya gidrookis'. GOST 4328-77. Reaktivy. Tekhnicheskie usloviya [Sodium hydroxide. GOST 4328-77. Reagents. Technical specifications] (in Russian)
[10] Kaliy khloristyy. GOST 4234-77. Reaktivy. Tekhnicheskie usloviya [Potassium chloride. GOST 4234-77. Reagents. Technical specifications] (in Russian)
[11] Kal'tsiy uglekislyy. GOST 4530-76. Reaktivy. Tekhnicheskie usloviya [Calcium carbonate. GOST 4530-76. Reagents. Technical specifications] (in Russian)
[12] Voda distillirovannaya. GOST R 58144-2018. Tekhnicheskie usloviya [Distilled water. GOST P 58144-2018. Technical specifications] (in Russian)
[13] Shkafy vytyazhnye radiokhimicheskie. GOST 23308-78. (CT SEV 3552-82). Obshchie tekhnicheskie trebovaniya [Radiochemical fume hoods. GOST 23308-78. (CT SEV 3552-82). General technical requirements] (in Russian)
[14] GOST R 51568-99 (ISO 3310-1-90). Tekhnicheskie usloviya [GOST R 51568-99 (ISO 3310-1-90). Technical specifications] (in Russian)
[15] GOST 12.4.269-2014. «Sistema standartov bezopasnosti truda. Sredstva individual'noy zashchity, prednaznachennye dlya rabot s radioaktivnymi veshchestvami, i materialy dlya ikh izgotovleniya. Metody opredeleniya dezaktiviruyushchey sposobnosti rastvorov» [GOST 12.4.269-2014. "System of labor safety standards. Personal protective equipment intended for work with radioactive substances and materials for their manufacture. Methods for determining the decontaminating ability of solutions"] (in Russian)
[16] GOST R 51966-2002. «Radioaktivnoe zagryaznenie. Tekhnicheskie sredstva dezaktivatsii. Obshchie tekhnicheskie trebovaniya» [GOST R 51966-2002. "Radioactive contamination. Technical means of decontamination. General technical requirements"] (in Russian)
[17] PND F 12.13.1-03. Metodicheskie rekomendatsii tekhnika bezopasnosti pri rabote v analiticheskikh laboratoriyakh, (v t.ch. radiologicheskikh) [PND F 12.13.1-03 Methodical recommendations for safety at work in analytical laboratories (including radiological)] (in Russian)
[18] «Metodika izmereniya aktivnosti radionuklidov v schetnykh obraztsakh na stsintillyatsionnom gamma-spektrometre s ispol'zovaniem programmnogo obespecheniya «PROGRESS» ["Methods of measuring the activity of radionuclides in counting samples on the scintillation gamma spectrometer using the software "PROGRESS"], State Enterprise VNIIFTRI, Moscow, 2016 (in Russian)
[19] «Metodicheskie rekomendatsii po prigotovleniyu schetnykh obraztsov dlya spektrometricheskikh kompleksov s programmnym obespecheniem «PROGRESS» ["Methodological recommendations on the preparation of counting samples for spectrometric complexes with the software "PROGRESS"], 2008 (in Russian)
[20] GOST 4517-87. Mezhgosudarstvennyy standart. Reaktivy. «Metody prigotovleniya vspomogatel'nykh reaktivov i rastvorov, primenyaemykh pri analize» [GOST 4517-87. Interstate standard. Reagents. “Methods for the preparation of auxiliary reagents and solutions used in the analysis”.] (in Russian)
[21] Gornaya entsiklopediya. Radiy. [Mining Encyclopedia. Radium.], Electronic resource (in Russian) (Date of access: 28.02.2022) URL: http://www.mining-enc.ru/r/radij/