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Mendeleev Communications, 1997, том 7, выпуск 2, страницы 52–53
DOI: https://doi.org/10.1070/MC1997v007n02ABEH000716
(Mi mendc4778)
 

Эта публикация цитируется в 21 научных статьях (всего в 21 статьях)

Removal of heavy metals from water by electron-beam treatment in the presence of an hydroxyl radical scavenger

A. K. Pikaeva, L. I. Kartashevaa, T. P. Zhestkovaa, T. K. Yurika, V. N. Chulkova, O. A. Didenkoa, D. K. Kimb, Yu.-R. Kimc, B. Hanb

a Institute of Physical Chemistry, Russian Academy of Sciences, Moscow, Russian Federation
b Samsung Heavy Industries Co., Ltd., Daeduk R and D Center, Republic of Korea
c Central Research Institute, Samsung Heavy Industries Co., Ltd., Taejeon, Republic of Korea
Аннотация: Electron-beam treatment in combination with the use of formate as an hydroxyl radical scavenger and subsequent filtration has been developed for the removal of heavy metals (cadmium, lead, chromium) from water.
Тип публикации: Статья
Язык публикации: английский


Образец цитирования: A. K. Pikaev, L. I. Kartasheva, T. P. Zhestkova, T. K. Yurik, V. N. Chulkov, O. A. Didenko, D. K. Kim, Yu.-R. Kim, B. Han, “Removal of heavy metals from water by electron-beam treatment in the presence of an hydroxyl radical scavenger”, Mendeleev Commun., 7:2 (1997), 52–53
Образцы ссылок на эту страницу:
  • https://www.mathnet.ru/rus/mendc4778
  • https://www.mathnet.ru/rus/mendc/v7/i2/p52
  • Эта публикация цитируется в следующих 21 статьяx:
    1. Tingting Zhao, Jiali Pan, Chengkai Mao, Lei Chen, Jiayuan Li, Haiyang Shao, Gang Xu, “Enhanced decomplexation of Cu-EDTA and simultaneous removal of Cu(II) by electron beam irradiation accompanied with autocatalytic fenton-like reaction: Synergistic performance and mechanism”, Chemosphere, 313 (2023), 137445  crossref
    2. Ha Manh Bui, Duy Ngoc Nguyen, Xuan‐Thanh Bui, Hien Quoc Nguyen, Sustainable Resource Management, Volume I, 2021, 525  crossref
    3. Malgorzata Siwek, Thomas Edgecock, “Application of electron beam water radiolysis for sewage sludge treatment—a review”, Environ Sci Pollut Res, 27:34 (2020), 42424  crossref
    4. Alexander V. Ponomarev, Boris G. Ershov, “The Green Method in Water Management: Electron Beam Treatment”, Environ. Sci. Technol., 54:9 (2020), 5331  crossref
    5. Marek Trojanowicz, Krzysztof Bobrowski, Tomasz Szreder, Anna Bojanowska-Czajka, Advanced Oxidation Processes for Waste Water Treatment, 2018, 257  crossref
    6. K. V. Ashok Kumar, Srinivasa Rao Amanchi, B. Sreedhar, P. Ghosal, Ch. Subrahmanyam, “Phenol and Cr(vi) degradation with Mn ion doped ZnO under visible light photocatalysis”, RSC Adv., 7:68 (2017), 43030  crossref
    7. Youn-Suk Son, “Decomposition of VOCs and odorous compounds by radiolysis: A critical review”, Chemical Engineering Journal, 316 (2017), 609  crossref
    8. Xionghui Fei, Yongsheng Ling, Qing Shan, Daqian Hei, Wenbao Jia, “Catalytic Effect of a Semiconductor on the Removal of Hexavalent Chromium from Aqueous Solution by γ-Ray Irradiation”, Water Air Soil Pollut, 228:9 (2017)  crossref
    9. A.Daya Mani, P.Manoj Kumar Reddy, M. Srinivaas, P. Ghosal, N. Xanthopoulos, Ch. Subrahmanyam, “Facile synthesis of efficient visible active C-doped TiO2 nanomaterials with high surface area for the simultaneous removal of phenol and Cr(VI)”, Materials Research Bulletin, 61 (2015), 391  crossref
    10. Yongjun Liu, “Simultaneous oxidation of phenol and reduction of Cr(VI) induced by contact glow discharge electrolysis”, Journal of Hazardous Materials, 168:2-3 (2009), 992  crossref
    11. Zhaobing Guo, Dengyong Tang, Xiaguo Liu, Zheng Zheng, “Gamma irradiation-induced Cd2+ and Pb2+ removal from different kinds of water”, Radiation Physics and Chemistry, 77:9 (2008), 1021  crossref
    12. Leonardo Murruni, Flavio Conde, Gabriela Leyva, Marta I. Litter, “Photocatalytic reduction of Pb(II) over TiO2: New insights on the effect of different electron donors”, Applied Catalysis B: Environmental, 84:3-4 (2008), 563  crossref
    13. Márcia Almeida Ribeiro, Ivone Mulako Sato, Celina Lopes Duarte, Maria Helena Oliveira Sampa, Vera Lúcia Ribeiro Salvador, Marcos Antonio Scapin, “Application of the electron-beam treatment for Ca, Si, P, Al, Fe, Cr, Zn, Co, As, Se, Cd and Hg removal in the simulated and actual industrial effluents”, Radiation Physics and Chemistry, 71:1-2 (2004), 425  crossref
    14. F Unob, A Hagège, D Lakkis, M Leroy, “Degradation of organolead species in aqueous solutions by electron beam irradiation”, Water Research, 37:9 (2003), 2113  crossref
    15. Hang-Sik Shin, Yu-Ri Kim, BumSoo Han, Igor E Makarov, Alexandr V Ponomarev, Alexei K Pikaev, “Application of electron beam to treatment of wastewater from papermill”, Radiation Physics and Chemistry, 65:4-5 (2002), 539  crossref
    16. A.K. Pikaev, “New data on electron-beam purification of wastewater”, Radiation Physics and Chemistry, 65:4-5 (2002), 515  crossref
    17. A. K. Pikaev, “Application of pulse radiolysis and computer simulation for the study of the mechanism of radiation purification of polluted water”, Res. Chem. Intermed., 27:7-8 (2001), 775  crossref
    18. A. K. Pikaev, “Current status of the application of ionizing radiation to environmental protection: II. Wastewater and other liquid wastes (A review)”, High Energy Chem, 34:2 (2000), 55  crossref
    19. Xingwang Fang, Jilan Wu, “Some remarks on applying radiation technology combined with other methods to the treatment of industrial wastes”, Radiation Physics and Chemistry, 55:4 (1999), 465  crossref
    20. R. Curry, G. Mesyats, A. Filatov, K. Unklesbay, N. Unklesbay, T. Clevenger, J. Spratt, B. Dilley, K. Rathbun, Conference Record of the Twenty-Third International Power Modulator Symposium (Cat. No. 98CH36133), 1998, 30  crossref
    Citing articles in Google Scholar: Russian citations, English citations
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