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Low-Concentration Nitrogen Oxide Recovery Unit

  • Selected Articles from the Journal Khimicheskaya Tekhnologiya
  • Processes and Apparatuses of Chemical Engineering
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Abstract

A low-concentration nitrogen oxide recovery unit with a capacity of 50 m3/h equipped with γ-Al2O3 granules saturated with a water solution of carbamide and ammonium bicarbonate has been developed, produced, and tested. During the tests, the unit operated for approximately 176 h; it maintained capture efficiency at a level of 90 to 95% for 156 h. The unit captured 3.6 kg of nitrogen dioxide during its operation period.

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References

  1. Gladkii, A.V., Fedorova, S.K., and Artemova, E.N., Ochistka gazovykh vybrosov ot oksidov azota. Obzornaya informatsiya. Promyshlennaya i sanitarnaya ochistka gazov. Seriya KhM-14 (Purification of Gas Emissions from Nitrogen Oxides: Survey Information, Industrial and Sanitary Gas Cleaning, Series KhM-14), Moscow: Tsentr. Inst. Nauchno-Tekh. Inf. i Tekh.-Ekon. Issled. po Khim. i Neft. Mashinostr., 1989.

    Google Scholar 

  2. Ganz, S.N., Absorption of nitrogen oxides by solid sorbents, Zh. Prikl. Khim., 1958, vol. 31, no. 1, p. 138.

    CAS  Google Scholar 

  3. Rikhter, L.A. and Chernov, S.L., Zashchita okruzhayushchei sredy pri szhiganii topliva: ekologicheski chistaya TES (Environmental Protection in Fuel Combustion: An Environmentally Clean Thermal Power Plant), Itogi Nauki Tekh., Ser.: Tepl. Elektrostn., Teplosnabzh., vol. 6, Moscow: VINITI, 1991.

    Google Scholar 

  4. Ustinov, O.A., Pogorelko, O.N., Polenov, A.I., et al., Purification of pickling-bath waste gases from nitrogen oxides using a bulk filter consisting of silica gel granules impregnated with carbamide, Khim. Prom-st., 1991, vol. 68, no. 11, pp. 33–35.

    Google Scholar 

  5. Ustinov, O.A., Yakunin, S.A., Polenov, A.I., et al., A SMOG-4000 installation for the capture of nitrogen oxides with low concentrations, Khim. Prom-st., 1995, vol. 72, no. 7, pp. 29–31.

    Google Scholar 

  6. Ustinov, O.A., Polenov, A.I., Shatilin, S.I., Burov, V.N., Kifa, V.L., Prishvitsyn, A.F., Krasnoshchekov, V.I., and Yakunin, S.A., RF Patent 1824748, Byull. Izobret., 1996, no. 6, p. 255.

  7. Polyanskii, A.I., Kozhev, A.I., Krasnoshchekov, V.I., Baluev, V.A., Chekanov, Yu.A., Prishvitsyn, A.F., Ustinov, O.A., and Yakunin, S.A., RF Patent 2077934, Byull. Izobret., 1997, no. 12, p. 61.

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Correspondence to O. A. Ustinov.

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Original Russian Text © M.V. Batashov, L.V. Litvinyuk, I.V. Zarubin, S.I. Nelyubin, A.A. Cherepanov, O.A. Ustinov, S.A. Yakunin, 2017, published in Khimicheskaya Tekhnologiya, 2017, Vol. 18, No. 4, pp. 188–192.

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Batashov, M.V., Litvinyuk, L.V., Zarubin, I.V. et al. Low-Concentration Nitrogen Oxide Recovery Unit. Theor Found Chem Eng 52, 760–764 (2018). https://doi.org/10.1134/S0040579518040036

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  • DOI: https://doi.org/10.1134/S0040579518040036

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