[1]
Mustafayev M. S.: Chelovek i okruzhayushchaya sreda, ili chto takoye «sindrom bolnogo zdaniya» i baubiologiya / Vestnik biofizicheskoy meditsiny. 1994. № 2. S. 31-36.
Google Scholar
[2]
Revelle P., Revelle C.: The environment. Issues and choices for society – Boston; Jones and Barlett Publish, 1988 – 650 p.
Google Scholar
[3]
Breck D.W.: Zeolite molecular sieves. Structure, chemistry and use - New York, Wiley Intersciense publication, John Wiley & Sons, 1974 – 781 p.
DOI: 10.1093/chromsci/13.4.18a-c
Google Scholar
[4]
Tarasevich Yu. I.: Prirodnyye tseolity v protsessakh ochistki vody. Khimiya i tekhnologiya vody, 1988, t. 10 № 3 s. 210-218.
Google Scholar
[5]
Chelishchev N. F., Berenshteyn B. G., Volodin V. F.: Tseolity – novyy tip mineralnogo syrya. – M.; Nedra, 1987 – 176 s, il.
Google Scholar
[6]
Ovcharenko G. I., Sviridov V. L., Kazantseva L. Yu. Tseolity v stroitelnykh materialakh – Barnaul, Izdatelstvo Alt. GTU, 2000 – 320 s.
Google Scholar
[7]
Shilova Ye. S., Chechevichkin A. V., Vatin N. I.: Sovremennoye sostoyaniye issledovaniy v oblasti primeneniya prirodnykh tseolitov dlya sorbtsionno-filtratsionnoy ochistki zhidkikh i gazovykh sred / ХХХVIII Nedelya nauki SPbGPU. Materialy mezhdunarodnoy nauchno-prakticheskoy konferentsii 30 noyabrya – 5 dekabrya 2009 g. SPb. Izd-vo Politekhn. Un-ta, S. 250.
Google Scholar
[8]
Chechevichkin A. V., Vatin N. I.: Ispolzovaniye prirodnykh tseolitov dlya ochistki vod ot ionov tyazhelykh metallov. Materialy Vserossiyskoy mezhvuzovskoy nauchnoy konferentsii studentov i aspirantov «XXXVII nedelya nauki SPBGPU» 24-29 noyabrya 2008 g. SPb.: izd-vo Politekhn. un-ta, 2008. S. 196-197.
Google Scholar
[9]
Vatin N. I., Chechevichkin V. N., Chechevichkin A. V., Shilova Ye. S.: Primeneniye tseolitov klinoptilolitovogo tipa dlya ochistki prirodnykh vod / Inzhenerno-stroitelnyy zhurnal, 2013, № 2, S. 81-88.
DOI: 10.5862/mce.37.12
Google Scholar
[10]
Chechevichkin V. N., Chechevichkin A. V.: Ochistka vodnykh rastvorov ot organicheskikh veshchestv kationnoy prirody klinoptilolitom. XL nedelya nauki SPBGPU, Materialy mezhdunarodnoy konferentsii 5-10 dekabrya 2011 g, Izd-vo Politekhnicheskogo universiteta, SPb, 2011, ch. 1, S. 267.
Google Scholar
[11]
Shilova Ye. S., Сhechevichkin A.V., Сhechevichkin V.N., Vatin N.I.: Possible applications of clinoptilolites for natural water purification. Mater of IX International Youth Science Environmental Forum of Baltic Region Countries «Ecobaltica 2012» St. -Petersburg 29 : 30 nov, 2013. Publishing of Polytechnical University, 2012, 101-102.
Google Scholar
[12]
Kovalenko A. V., Chechevichkin V. N.: Otsenka gidrodinamicheskogo rezhima pri sorbtsionnoy ochistki livnevykh stochnykh vod na otkrytykh tseolitovykh filtrakh. XXXVIII – nedele nauki SPbGPU. Materialy mezhdunarodnoy konferentsii, 2009 g., Izdatelstvo Politekhnicheskogo universiteta, 2009, S. 255-256.
Google Scholar
[13]
Widiastuti N., Wu N., Any M., Zhang D.: The potential application of natural zeolite for greywater treatment / desalination and Water Treatment, 2008, 18, № 1-3, р. 271-280.
DOI: 10.1016/j.desal.2007.02.022
Google Scholar
[14]
Erdem E., Karapinar N., Donat R.: The removal of heavy metal cations by natural zeolites. J. Colloid and Interface Sci, 2004, 280, № 2, р. 309-314.
DOI: 10.1016/j.jcis.2004.08.028
Google Scholar
[15]
Hus H. S., Chaoc J. H., Hot S. C. J.: Removal of mixed heavy metal cons in wastes water by zeolite. J. of Hazardous Water, 2005, 127, № 1-3, р 89-101.
Google Scholar
[16]
Wingenfelder U., Hansen C., Furrer G., Sehulin R.: Removal of heavy metals from mine waters by natural zeolites.J. EnvironSci and Technol, 2005, 39 № 12, р 4606-4613.
DOI: 10.1021/es048482s
Google Scholar
[17]
Kosobucki P., Kruk M., Buszewski B.: Immobilization of selected heavy metals in sewage sludge by natural zeolites / Bioresour. Technol. 2008. Vol. 99. No. 13. Pp 5972-5976.
DOI: 10.1016/j.biortech.2007.10.023
Google Scholar
[18]
Lihareva N., Dimova L., Petrov O., Tzvetanova Y.: Investigation of Zn sorption by natural clinoptilolite and mordenite / Bulgarian Chemical Communications. 2009. No. 4(3). Pp 266-271.
Google Scholar
[19]
Nyembe D. W., Mamba B. B., Mulaba-Bafubiandi A. F.: Adsorption mechanisms of Co2+ and Cu2+ from aqueous solutions using natural clinoptilolite: Equilibrium and kinetic studies / Journal of Applied Sciences. 2010. No. 10(8). Pp. 599-610.
DOI: 10.3923/jas.2010.599.610
Google Scholar
[20]
Nyembe D. W., Mamba B. B., Mulaba-Bafubiandi A. F.: The effect of Si and Fe impurities on the removal of Cu2+ and Co2+ from Co/Cu aqueous solutions using natural clinoptilolite as an ion-exchanger / Desalination and Water Treatment. 2010. No. 21(1-3). Pp. 335-345.
DOI: 10.5004/dwt.2010.1412
Google Scholar
[21]
Onthong U., Pungpo P., Thongnueakhaeng W.: The applications of natural zeolites for cadmium removal from sample water: Models on laboratory scale / Advanced Materials Research. 2012. Vol. 347-353. Pp. 1930-(1933).
DOI: 10.4028/www.scientific.net/amr.347-353.1930
Google Scholar
[22]
Vatin N., Golovkova N., Сhechevichkin V.: The hydroengineering constructions for continuous sorbention sewage treatment. Mater of International Youth Science Environmental Forum, of Baltic Region Countries «Ecobaltica` 2008»St. -Petersburg, 26-28 june, 2008, Publishing of Polytechnical University, 2012, 177-180.
Google Scholar
[23]
Chechevichkin V. N.: Obezzhelezivayushchaya sposobnost mineralnykh prirodnykh adsorbentov / Nauchno-tekhnicheskiye vedomosti SPbGTU. 2000. № 1 (19). S. 93-96.
Google Scholar
[24]
Rysyev O. A., Chechevichin V. N.: Sposob sorbtsionnoy ochistki pityevoy vody ot zheleza. Patent Rossii S 02 F 1/28 № 2100282, opubl. 27. 12. 97, byul. № 36.
Google Scholar
[25]
Samonin V. V., Chechevichkin A. V.: Polucheniye sorbtsionno-kataliticheskikh materialov na osnove prirodnykh tseolitov, modifitsirovannykh dioksidom margantsa. Tezisy dokladov XI Mezhdunarodnoy konferentsii «Sovremennyye problemy adsorbtsii», 24-28 oktyabrya 2011 g. Moskva, Rossiya, s. 196-197.
Google Scholar
[26]
Chechevichkin A. V., Samonin V. V.: Dinamicheskaya sorbtsiya prirodnymi tseolitami iona Mn2+ malykh kontsentratsiy iz vodnykh rastvorov. XLI nedelya nauki SPbGPU. Materialy mezhdunarodnoy konferentsii 7-11 dekabrya 2012 g. Izd-vo Politekhnicheskogo universiteta, SPb, 2012, t. 1, s. 297.
Google Scholar
[27]
Wen D., Ho Y. -S., Tang X.: Comparative sorption kinetic studies of ammonium onto zeolite / Journal of Hazardous Materials. 2006. Vol. 133. № 1-3. Рр. 252-256.
DOI: 10.1016/j.jhazmat.2005.10.020
Google Scholar
[28]
Langwaldt J.: Ammonium removal from water by eight natural zeolites: A comparative study / Separation Science and Technology. No. 43(8). Pp. 2166-2182.
DOI: 10.1080/01496390802063937
Google Scholar
[29]
Lei L., Li X., Zhang X. g.: Ammonium removal from aqueous solutions using microwave-treated natural Chinese zeolite / Separation and Purification Technology. 2008. Vol. 58. No. 3. Pp. 359-366.
DOI: 10.1016/j.seppur.2007.05.008
Google Scholar
[30]
Vassileva P., Voikova D.: Investigation on natural and pretreated Bulgarian clinoptilolite for ammonium ions from aqueous solutions / Journal of Hazardous Materials. 2009. Vol. 170. No. 2-3. Pp. 948-953.
DOI: 10.1016/j.jhazmat.2009.05.062
Google Scholar
[31]
Siljeg M., Foglar L., Kukucka M.: The ground water ammonium sorption onto Croatian and Serbian clinoptilolite solutions / Journal of Hazardous Materials. 2010. Vol. 178. No. 1-3. Pp. 572-577.
DOI: 10.1016/j.jhazmat.2010.01.123
Google Scholar
[32]
Jha V.K., Hayashi S.: Modification on natural clinoptilolite zeolite for its NH4+ retention capacity / Journal of Hazardous Materials. 2009. Vol. 169. No. 1-3. Pp. 29-35.
DOI: 10.1016/j.jhazmat.2009.03.052
Google Scholar
[33]
Vatin N. I., Chechevichkin A. V., Chechevichkin V. N.: Sorbtsionnaya ochistka promyshlennykh vysokokontsentrirovannykh vod prirodnymi tseolitami ot iona ammoniya. SPb.; Izdatelstvo SPB ODZPP, 2007, 34 s.
Google Scholar
[34]
Vdovenko V. M., Dubasov Yu. V.: Analiticheskaya khimiya radiya. Izd-vo «Nauka», L.; 1973 – 190 s.
Google Scholar
[35]
Olwez A. S., Akyil S., Eral M.: Adsorption and thermodynamıc behavıor of uranium on natural zeolites. J. of Radioanalyt. and Nuc. Chem. 2004. 260 № 1. Pp. 119-125.
Google Scholar
[36]
Vatin N. I., Chechevichkin A. V., Chechevichkin V. N.: Osobennosti ochistki vody iz r. Vuoksa v letniy period / Inzhenerno-stroitelnyy zhurnal, 2010, № 2 (12), s. 23-26.
Google Scholar
[37]
Vatin N. I., Chechevichkin A. V., Chechevichkin V. N.: Osobennosti sorbtsionno-kataliticheskoy ochistki vozdukha v pomeshcheniyakh obitaniya cheloveka v usloviyakh krupnykh gorodov / Inzhenerno-stroitelnyy zhurnal, 2011, № 1, s. 24-27.
Google Scholar
[38]
Chechevichkin A.V., Chechevichkin V. N., Vatin N. I.: Purification of off-gases of the fluoropolymer heat treatment furnaces of fluorine hydride by natural zeolites. Mater of International. Youth Science Environmental Forum, of Baltic Region Countries«Ecobaltica` 2008»St. -Petersburg, 26-28 june, 2008, Publishing of Polytechnical University, 2012, 164-168.
Google Scholar
[39]
Lucač P., Földesova M.: Imobilizacia niektorych radionuklidov zeolitmi a ich solidifikacia specialnov cementovoy zmesou. Ropa, unlie, plun a petrochem, 2003, 45, № 1-2, pp.64-67.
Google Scholar
[40]
Perruri T., Kahuli G., Kontoleon F.: The effect of natural zeolites on the early hudration of Portland cement. Microporous and Mesoporous Mater, 2003, 61, № 1-3, pp.205-251.
DOI: 10.1016/s1387-1811(03)00369-x
Google Scholar