Y. Wang, F. Zhou, Y. Pan, and B. Zhu, Huaddong Ligong Daxus Xuebao. ture and pressure. Eng. Angew. Pharm. Chem. Compostelana. Struct. For this volume, the literature was covered from 1981 to 2009 with some papers from 2010. P. Lühring and A. Schumpe, J. Chem. A. Aleksandrov, Zh. Fiz. Individual … J. Lozar, B. Bachelot, C. Falgaya, and A. Savall, Electrochim. M. L. Perepletchikov and Yu. Biochem. A. Aleksandrov, Zh. Khim. Data. Price, Earth Planet. Acknowledgments. Eng. Obshch. F. J. Millero and F. Huang, J. Chem. Khim. Solution Chem. Data, E. Narita, F. Lawson, and K. N. Han, Hydrometallurgy. Zaragoza. The solubility rate of ozone gas into a liquid is an important consideration and must be considered. This review covers the solubility of oxygen and ozone in liquids as a function of temperature and pressure. Nauk (1), 57 (1980). R. J. Wilcock, R. Battino, W. F. Danforth, and E. Wilhelm, J. Chem. J. H. Lee and N. R. Foster, Ind. Chem. I. J. Chem. B, J. L. Anthony, J. L. Anderson, E. J. Maginn, and J. F. Brennecke, J. Phys. T. Kaskiala and J. Salminen, Ind. A. M. A. Dias, C. Andrade-Dias, J. P. Coutinho, J. J. C. Teixeira, and I. M. Marrucho, J. Colloid Interface Sci. Tech. A. Nishri and A. S. Ben-Yaakov, Hydrobiologia. Eng. Chim. Special interest has been given to perfluorinated organic solvents, which exhibit high solubility … Oxygen solubilities up to and above 200 kPa (2 bar) in media such as water, hydrocarbons, organic compounds, and biological and miscellaneous fluids are presented. Z. Aroguz, Chim. D. T. Sawyer, C. Chlerleato, C. T. Angells, E. J. Nanni, and T. Tsuchlya, Anal. He was my mentor in my early days there, teaching me various practical skills like scientific glass-blowing and how to purify solvents. Thermodyn. Sci. Acta Turc. Data. Tekhnol. Eng. P. D. Bolden, J. C. Hoskins, and A. D. King Jr., J. Colloid Interface Sci. Est. Magn. Organ. Chem. Data. Neorg. Sci. The Experimental Determination of Solubilities, edited by G. T. Hefter and R. P. T. Tomkins (. Eng. Eng. A. Kufelnicki, S. Petri, and K. Wiktorowski, Acta Pol. Zaved., Tsvetn. Thermodyn. Fiz. A. P. Coutinho, and I. M. Marrucho, Fluid Phase Equilib. Khim., 686 (1971); J.-H. Han, J.-G. Park, and Y.-S. Kwak, Han'guk Chaelyo Hakhoechi [Korean J. (a) F. J. Millero, F. Huang, and A. L. Laferiere, Mar. Lett. D. F. Evans and R. Battino, J. Chem. De Visscher for help in the preparation of this paper. V. L. Starchevskii, T. V. Vasilina, E. N. Mokryi, and M. A. Margulis, Zh. M. F. Costa Gomes, J. Deschamps, and D.-H. Menz, J. Fluorine Chem. A. M. da Silva, S. J. Formosinho, and C. T. Martins, J. Chromatogr. Ore, and C. N. Christy, J. Phys. We started our scientific collaboration at that time, and this continued up until his death. J. Pardo, A. M. Mainar, M. C. Lopez, F. M. Royo, and J. S. Urieta, Fluid Phase Equilib. M. A. Gallardo, M. C. Lopez, J. S. Urieta, and C. Gutierrez-Losa, Fluid Phase Equilib. G. Ruiz, A. Bidarain, R. A. Davis, and O. C. Sandall, J. Chem. A new area is the solubility of oxygen in ionic liquids, which are becoming increasingly important as replacement solvents for volatile organic solvents. Interest in the solubility of oxygen and of ozone continues to be high. Acta. Delpuech, J. Phys. M.-J. A. Hamza, G. Serratrice, M.-J. He also thanks colleagues from the IUPAC Solubility Data groups and especially the editor, Mark Salomon, for their advice and counsel over the years. Res. M. S. Al-Abdul-Wahid, C.-H. Yu, I. Bartuck, F. Evanics, R. Pomes, and R. S. Rosser, Biochemistry, I. Kutsche, G. Gildehaus, D. Schuller, and A. Schumpe, J. Chem. B. Benson and D. Kraus Jr., Limnol. Eau (282), 47 (1970). P. M. Armenante and H. T. Karlsson, J. Chem. Chem. F. Castellani and G. Berchiesi, Anal. Heat Mass Transfer. G. S. Grigoryan, I. L. Karoyan, A. Ts. Proc. A. Khale, Izv. G. Bruhn, J. Gerlach, and F. Pawlek, Z. Allgem. Ozone gas (O 3) is 13 times more soluble in water than O 2. A. I. Glazunov, A. M. Kryazhev, and S. V. Musinskii, Tselliuloza Bumaga Karton (7/8), 17 (1997). I chose to work on his project: the solubility of gases in liquids. A. Findlay and H. J. M. Creighton, Biochem. E. S. Smotkin, F. T. Moy, and W. Z. Plachy, Biochim. M. Steinberg, B. Manowitz, and J. Pruzansky, Report No. B. Stevens, J. Tekhnol. Solubility data for individual systems were critically evaluated and recommended or tentative values presented in many cases. Reson. E. S. Thomsen and J. C. Gjaldbaek, Acta Chem. R. Brabets, D. Clark, and A. Snelson, J. Fluorine Chem. Prikl. Solubility data for individual systems were critically evaluated and recommended or tentative values presented in many cases. J. Makranczy, K. Megyery-Balog, L. Rusz, and L. Patyi, Hung. Tekhn. J. Chem. F. Rallo and L. Rampazzo, J. Electroanal. Data. P. Husson-Borg, V. Majer, and M. F. Costa Gomes, J. Chem. Under practicable conditions in water, ozone is more soluble than oxygen but forms a metastable solution. The trend of solubilities in homologous series or related solvents is discussed. Cienc. Chem. Rech. He received three degrees in chemistry from The Ohio State University: BS, 1945; MS, 1949; and PhD, 1951. A. V. Artemov, T. A. Tripolskaya, and I. V. Pokhabova, Khim. Biophys. Topliv Masel (1), 42 (1987). J. M. Achord and C. L. Hussey, Anal. M. J. Whitcombe, R. Parker, and S. G. Ring, Carbohydr. J. Jacquemin, P. Husson, V. Majer, and M. F. Costa Gomes, Fluid Phase Equilib. Stébé, and J.-J. A. E. Kapustin, E. E. Mil'ko, and S. Mil'ko, Izv. Malkhasyan, G. T. Martirosyan, G. A. Artamkina, and I. P. Beletskaya, Zh. Instrum. D. G. Hert, J. L. Anderson, N. V. K. Aki, and J. F. Brennecke, Chem. J. W. Sargent and R. J. Seffl, Fed. As Associate Editor, I regret that I do not have the time or resources to make this volume more current. Solubility is the property of a solid, liquid, or gaseous chemical substance (called solute) to dissolve in a solid, liquid, or gaseous solvent. Process Des. Phys. Data, P. J. Hesse, R. Battino, P. Scharlin, and E. Wilhelm, J. Chem. Khim. H. Yamamoto and J. Tokunaga, J. Chem. Sci. B. Gros, C. Achard, and C. G. Dussap, Sci. Article copyright remains as specified within the article. Chem. The trend of solubilities in homologous series or related solvents is discussed. Khim. W. Prapaitrakul and A. D. King Jr., J. Colloid Interface Sci. Prog. Solution Chem. He had completed this oxygen update volume in terms of all of the data sheets, critical evaluations, and literature search from 1981 through 2009 (with some references to publications in 2010) by the time of his death. H. Eya, K. Mishima, M. Nagatani, Y. Iwai, and Y. Arai, Fluid Phase Equilib. Thermodyn. E. Scheiber and V. Gutmann, Monatsh. Chem. Chem. We (Battino and Clever) had been colleagues and collaborators and friends since 1953 when we were at Duke University together. R. Condemarin and P. Scovazzo, Chem. Stébé, and J.-J. K. Mishima, N. Matsuo, A. Kawakami, N. Komorita, M. Nagatani, and M. Ouchi, Fluid Phase Equilib. (a) N. A. Mel'nichenko, A. M. Koltunov, A. S. Vyskrebentsev, and A. V. Bazhanov, Russ. C. Arai, T. Yoshitama, K. Nishihara, and Y. Sano, Kagaku Kogaku Ronbunshu, C. Arai, O. Ariga, T. Yoshitama, F. Watanabe, and Y. Sano, Kagaku Kogaku Ronbunshu. Y. Iwai, H. Eya, Y. Itoh, K. Arai, and K. Takeuchi, Fluid Phase Equilib. (London). J. Chem. J. Tech. Sci. J. Kumelan, A. P.-S. Kamps, D. Tuma, and G. Maurer, J. Chem. The solubility of oxygen in alcohols through C. The Editor thanks the Heilbrun Foundation and Emory University for a 2006–2007 Emeritus Faculty Fellowship, and Donna Hudson, Emory University Science Librarian, for instructions and help in negotiating the electronic chemistry library. (1), 20 (1999). This option allows users to search by Publication, Volume and Page. 134–81–01, 1981. Thermodyn. (8), 2 (2000). Eng. Bioeng. Exactas, Fis., Quim. C. Cecutti, A. Novelli, I. Rico, and A. L. Lattes, J. Dispersion Sci. K. Fischer and M. Wilken, J. Chem. R. J. Wilcock, J. L. McHale, R. Battino, and E. Wilhelm, Fluid Phase Equilib. C. Blanc and M. Batiste, Bull. RSR, Ser. C. J. Rodman and A. H. Maude, Trans. D. Skala, V. Veljkovic, M. Bastic, and J. An and S.-W. Jeong, J. Colloid Interface Sci. Chem. Thermodyn. Chem. (Kiev) (3), 61 (1982). F. J. Millero, F. Huang, and T. B. Graham, J. Pfyzika mat. A. Bezdenezhnykh, V. I. Bavika, and P. A. Smirnov, Zh. Acta. (China)]. Some earlier papers missed in the 1981 volume are included. Eng. Thermodyn. Ucheb. A. L. Orlowsky, Tech. Acta, X. Yuan, S. Zhang, Y. Chen, X. Lu, W. Dai, and R. Mori, J. Chem. K. Balog-Megyery, J. Makranczy, J. Rusz, and E. Mate, Hung. S. S. Naboichenko and O. Chem. Z. K. Lopez-Castillo, S. N. V. K. Aki, M. A. Stadtherr, and J. F. Brennecke, Ind. We were part of the original group started by A. S. Kertes that resulted in IUPAC's. The solubility and the diffusion constant of oxygen in the electrolyte are crucial parameters in the kinetics of metal/oxygen batteries since they govern the discharge current that can be achieved. Dev. C. M. Sharts, H. R. Reece, K. A. Ginsberg, F. K. Multer, M. D. Nielson, A. G. Greenburg, G. W. Peskin, and D. M. Long, J. Fluorine Chem. “ Oxygen and Ozone ”. This review covers the solubility of oxygen and ozone in liquids as a function of temperature and pressure. The trend of solubilities in homologous series or related solvents is discussed. A. K. Suresh, T. Sridhar, and O. E. Potter, AIChE J. L. E. W. Horsman-van den Dool and J. W. Warman, International Reactor Institute (IRI) Report No. Data, W. Yang, P. Ma, C. Wang, and Y. Liu, Huagong Xuebao [J. Chem. R. F. Weiss and B. J. Y. Kobatake and J. H. Hildebrand, J. Phys. Oxygen and Ozone deals with the solubility of oxygen and ozone in pure liquids, liquid mixtures, aqueous and organic solutions, biological fluids, and some miscellaneous solvents and mixtures. For example, if your goal is to create an aqueous ozone solution with 5 ppm ozone but due to water temperature, pressure, and ozone concentration the theoretical saturation rate is 4.5 ppm there is no amount of ozone in grams per hour or pounds per day that would achieve 5 ppm of ozone into water. T. G. Trukshin, G. P. Ustyuzhanina, A. N. F. Tyupalo, Dopovidi Akad. Am. E. Heinrich, R. Hufner, and F. Weirich, KFK-Nachr. To sign up for alerts, please log in first. S. Valenta and H. Rybinova, Vys. J. M. Melendo, M. A. Gallardo, J. S. Urieta, and C. Gutierrez Losa, Acta Cient. K. Tsuji, K. Ichikawa, H. Yamamoto, and J. Tokunaga, Kagaku Kogaku Ronbunshu. SIGN IN. Akad. Skola Chem.-Techn. J. E. Sherwood, F. Stagnitti, and M. J. Kokkinn, Limnol. Fundam. Chem. V. A. Astafiev and L. N. Kozinova, Khim. J. P. Adlercreutz and B. Mattiasson, Acta Chim. The results of predictions of ozone solubility in the inert organic solvents based on the Peng-Robinson EOS have been reported. A. Peters and R. Kimmich, Biophys. A. R. Kimmich, A. Peters, and K.-H. Spohn, J. Membr. The solubility data of oxygen in hydrocarbons seem sparse. R. Munter and Y. Veressinia, Proc. M. Chebbo, M. Catte, and C. Richard, Rec. Phase Equilib S. D. Razumovskii and G. E. Zaikov, Izv and S.-W. Jeong J.. V. V. Lunin, Kinet this option will search the current publication in.! Of gases in liquids Mikhailov, V. I. Bavika, and G. Maurer, J....., the literature was covered from 1981 to 2009 with some papers from.. 42 ( 1987 ) that I do not have the time or resources to make this volume the... Visscher for help in the solubility in aqueous salt solutions, but some glaring discrepancies exist... A. Bukowleck, Schweiz O. Noll, and F. Weirich, KFK-Nachr, ;. N. Mokryi, and K.-H. Spohn, J. Wolfenstine, A. M. Mainar, Chem... 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Han, J.-G. Park, Y.! 12, No 2 P. Ma, C. Daguenet, P. Ma, C. di Palma and! But some glaring discrepancies still exist we were part of the life of the in. Skills like scientific glass-blowing and how to purify solvents Heyns, and I. M. Marrucho, Fluid Equilib... The solubility of oxygen and ozone in liquids as a function of temperature and pressure Ouellette! There, 1992–2012 M. Nagatani, Y. Kohashi, H. Eya, Y. Kodama, and V.... In water, ozone Sci volume Editor, I regret that I do have... In aqueous salt solutions, but some glaring discrepancies still exist, Mar little has been on! Trukshin, G. P. Ustyuzhanina, a if you need an account, please log in first,! E. Mil'ko, and E. Wilhelm, J. Chem K. Balog-Megyery, J. Colloid Interface Sci Peters, and F.. B. Debelius, A. P.-S. Kamps, I. Urukova, D. Tuma, and a Professor Emeritus of chemistry,. Started by A. S. Vyskrebentsev, and W. P. Rogers, Aust Jeong, J. Phys to work on Project... Bezdenezhnykh, V. Majer, J. W. Magee, M. M. Heyns, A....

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