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Measurement of oxygen transfer from air into organic solvents.
Ramesh, Hemalata; Mayr, Torsten; Hobisch, Mathias; Borisov, Sergey; Klimant, Ingo; Krühne, Ulrich; Woodley, John M.
Affiliation
  • Ramesh H; Department of Chemical and Biochemical Engineering Technical University of Denmark DK-2800 Kgs Lyngby Denmark.
  • Mayr T; Institute of Analytical Chemistry and Food Chemistry Graz University of Technology 8010 Graz Austria.
  • Hobisch M; Institute of Analytical Chemistry and Food Chemistry Graz University of Technology 8010 Graz Austria.
  • Borisov S; Institute of Analytical Chemistry and Food Chemistry Graz University of Technology 8010 Graz Austria.
  • Klimant I; Institute of Analytical Chemistry and Food Chemistry Graz University of Technology 8010 Graz Austria.
  • Krühne U; Department of Chemical and Biochemical Engineering Technical University of Denmark DK-2800 Kgs Lyngby Denmark.
  • Woodley JM; Department of Chemical and Biochemical Engineering Technical University of Denmark DK-2800 Kgs Lyngby Denmark.
J Chem Technol Biotechnol ; 91(3): 832-836, 2016 03.
Article in En | MEDLINE | ID: mdl-27773958
ABSTRACT

BACKGROUND:

The use of non-aqueous organic media is becoming increasingly important in many biotechnological applications in order to achieve process intensification. Such media can be used, for example, to directly extract poorly water-soluble toxic products from fermentations. Likewise many biological reactions require the supply of oxygen, most normally from air. However, reliable online measurements of oxygen concentration in organic solvents (and hence oxygen transfer rates from air to the solvent) has to date proven impossible due to limitations in the current analytical methods.

RESULTS:

For the first time, online oxygen measurements in non-aqueous media using a novel optical sensor are demonstrated. The sensor was used to measure oxygen concentration in various organic solvents including toluene, THF, isooctane, DMF, heptane and hexane (which have all been shown suitable for several biological applications). Subsequently, the oxygen transfer rates from air into these organic solvents were measured.

CONCLUSION:

The measurement of oxygen transfer rates from air into organic solvents using the dynamic method was established using the solvent resistant optical sensor. The feasibility of online oxygen measurements in organic solvents has also been demonstrated, paving the way for new opportunities in process control. © 2015 The Authors. Journal of Chemical Technology & Biotechnology published by JohnWiley & Sons Ltd on behalf of Society of Chemical Industry.
Key words

Full text: 1 Collection: 01-internacional Database: MEDLINE Language: En Journal: J Chem Technol Biotechnol Journal subject: BIOTECNOLOGIA Year: 2016 Document type: Article

Full text: 1 Collection: 01-internacional Database: MEDLINE Language: En Journal: J Chem Technol Biotechnol Journal subject: BIOTECNOLOGIA Year: 2016 Document type: Article