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2016 | OriginalPaper | Buchkapitel

Calculation of Hydroxyl Radical Concentration Using an Indirect Method-Effect of pH and Carbonate Ion

verfasst von : Snigdha Khuntia, Manish Kumar Sinha, Subrata Kumar Majumder, Pallab Ghosh

Erschienen in: Recent Advances in Chemical Engineering

Verlag: Springer Singapore

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Abstract

The Advanced oxidation process using the hydroxyl radicals is an emerging method in water and wastewater treatment. The oxidative potential of ozone is 2.07, whereas for ozone it is 2.80 V which is higher than the conventional oxidants. However, the reaction with molecular ozone is selective to certain organic and inorganic compounds. But, the hydroxyl radicals can readily react with these compounds through radical-radical reactions, hydrogen abstraction, electron transfer and electrophilic addition which can completely mineralize the pollutant and their intermediates. Quantitative measurement of the hydroxyl radical concentration is rather difficult due to its low concentration. A few computer models have been developed for the prediction of concentration of hydroxyl radicals. An indirect method of the measurement of the concentration of hydroxyl radical is developed which works with a probe compound. Concentration of hydroxyl radicals generated from ozone microbubbles was determined by using this indirect method for pH 3–10. p-Chlorobenzoic acid (PCBA) was used as the probe compound to calculate the concentration of hydroxyl radicals. A constant, R ct , was defined as the ratio of ∙OH and O3 exposures, which was employed to estimate the concentration of hydroxyl radicals. It was observed that the O3 exposure and the depletion of PCBA were higher at acidic pH than at the alkaline pH. The feasibility of the method was calculated by detecting the depletion of phenol. The fractional contribution of hydroxyl radical and molecular ozone was calculated by this method.

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Literatur
Zurück zum Zitat Beltrán, F.J.: Ozone Reaction Kinetics for Water and Wastewater System. CRC Press, Boca Raton, Florida (2004) Beltrán, F.J.: Ozone Reaction Kinetics for Water and Wastewater System. CRC Press, Boca Raton, Florida (2004)
Zurück zum Zitat Chelkowska, K., Grasso, D., Fabian, I., Gordon, G.: Numerical simulations of aqueous ozone decomposition. Ozone Sci. Eng. 14, 33–49 (1992)CrossRef Chelkowska, K., Grasso, D., Fabian, I., Gordon, G.: Numerical simulations of aqueous ozone decomposition. Ozone Sci. Eng. 14, 33–49 (1992)CrossRef
Zurück zum Zitat Eaton, A.D., Clesceri, L.S., Rice, E.W., Greenberg, A.E.: Standard Methods for the Examination of Water & Wastewater. American Public Health Association, New York (2005) Eaton, A.D., Clesceri, L.S., Rice, E.W., Greenberg, A.E.: Standard Methods for the Examination of Water & Wastewater. American Public Health Association, New York (2005)
Zurück zum Zitat Elovitz, M.S., von Gunten, U.: Hydroxyl radical/ozone ratios during ozonation processes. I. the Rct concept. Ozone Sci. Eng. 21, 239–260 (1999)CrossRef Elovitz, M.S., von Gunten, U.: Hydroxyl radical/ozone ratios during ozonation processes. I. the Rct concept. Ozone Sci. Eng. 21, 239–260 (1999)CrossRef
Zurück zum Zitat Haag, W.R., Yao, C.C.D.: Ozonation of U.S. drinking water sources: HO concentration and oxidation-competition values, in: Eleventh Ozone World Congress. San Francisco, California, pp. 119–126 (1993) Haag, W.R., Yao, C.C.D.: Ozonation of U.S. drinking water sources: HO concentration and oxidation-competition values, in: Eleventh Ozone World Congress. San Francisco, California, pp. 119–126 (1993)
Zurück zum Zitat Hoigné, J., Bader, H.: Rate constants of reactions of ozone with organic and inorganic compounds in water-I. Water Res. 17, 173–183 (1983)CrossRef Hoigné, J., Bader, H.: Rate constants of reactions of ozone with organic and inorganic compounds in water-I. Water Res. 17, 173–183 (1983)CrossRef
Zurück zum Zitat Khuntia, S., Majumder, S.K., Ghosh, P.: Removal of ammonia from water by ozone microbubbles. Ind. Eng. Chem. Res. 52, 318–326 (2013)CrossRef Khuntia, S., Majumder, S.K., Ghosh, P.: Removal of ammonia from water by ozone microbubbles. Ind. Eng. Chem. Res. 52, 318–326 (2013)CrossRef
Zurück zum Zitat Land, E.J., Ebert, M.: Pulse radiolysis studies of aqueous phenol. water elimination from dihydroxycyclohexadienyl radicals to form phenoxyl. Trans. Faraday Soc. 63, 1181–1190 (1967)CrossRef Land, E.J., Ebert, M.: Pulse radiolysis studies of aqueous phenol. water elimination from dihydroxycyclohexadienyl radicals to form phenoxyl. Trans. Faraday Soc. 63, 1181–1190 (1967)CrossRef
Zurück zum Zitat Langlais, B., Reckhow, D.A., Brink, D.R.: Ozone in Water Treatment: Applications and Engineering. Lewis Publishers, Boca Raton, Florida (1999) Langlais, B., Reckhow, D.A., Brink, D.R.: Ozone in Water Treatment: Applications and Engineering. Lewis Publishers, Boca Raton, Florida (1999)
Zurück zum Zitat Legrini, O., Oliveros, E., Braun, A.M.: Photochemical processes for water treatment. Chem. Rev. 93, 671–698 (1993)CrossRef Legrini, O., Oliveros, E., Braun, A.M.: Photochemical processes for water treatment. Chem. Rev. 93, 671–698 (1993)CrossRef
Zurück zum Zitat Oppenländer, T.: Photochemical Purification of Water and Air. Wiley-VCH, Weinheim, Germany (2003) Oppenländer, T.: Photochemical Purification of Water and Air. Wiley-VCH, Weinheim, Germany (2003)
Metadaten
Titel
Calculation of Hydroxyl Radical Concentration Using an Indirect Method-Effect of pH and Carbonate Ion
verfasst von
Snigdha Khuntia
Manish Kumar Sinha
Subrata Kumar Majumder
Pallab Ghosh
Copyright-Jahr
2016
Verlag
Springer Singapore
DOI
https://doi.org/10.1007/978-981-10-1633-2_20