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The Study on the Development of Ozone Water Diffusion Device by Ozonated Olive Oil Mix Ratio that will Increase

올리브 오일의 오존화 혼합비율을 높여주는 오존수 확산장치개발에 관한 연구

  • Kim, Duck-Sool (Dept. of Biomedical Engineering, TongMyong University)
  • 김덕술 (동명대학교 의용공학과)
  • Received : 2014.11.19
  • Accepted : 2014.12.18
  • Published : 2014.12.30

Abstract

This study is to increase the utilization of the ozonated water generator to make it easier to take advantage of the ozone water in the world today, there will be to develop a system that operates in one motion. Furthermore, olive oil and ozone is reacted with the wish to apply to the manufacturing technology. In the case of many existing products ozone generator driven mostly non-ozone system. In the case of ozone, but handwriting is implied general way pressure ozone gas leakage risks of suction force to the pump, it is the case of the challenge by using the injector, and limit the generation of ozone and ozone inhalation according to whether the water inlet leakage of existing products risk due to minimized. Despite the disadvantages of the injector system was found the effectiveness of the ozonated water production unit injector system used in this study to maintain the microbiological disinfection performance.

본 연구는 생활주변에서 오존수를 쉽게 활용할 수 있도록 오존수 발생장치의 활용성을 증가시키고 한 동작으로 작동하는 시스템을 개발하고자 한다. 더 나아가 올리브 오일과 오존과 반응시켜 제조하는 기술에 적용하고자 한다. 기존의 경우 대부분이 오존수 시스템이 아닌 오존발생기 위주의 제품이 많다. 오존수기의 경우 펌프로 강제 흡입시키는 일반압력 방식으로 오존가스 누출 위험요소가 내포 되어 있으나, 본 과제의 경우 인젝터를 이용하여 물의 유입여부에 따른 오존의 발생과 흡입을 제한하고 있어 기존 제품의 오존 누출에 의한 위험을 최소화하였다. 인젝터 방식의 단점에도 불구하고 미생물 살균능을 유지하는 것으로 본 연구에서 사용된 인젝터 방식 오존수 제조 장치의 효용성을 알 수 있었다.

Keywords

References

  1. C. G. Hewes, and R. P. Davision, Kinetics of Ozone Decomposition and Reaction with Organics in Water, AICHE Journal, 17, 141(1971). https://doi.org/10.1002/aic.690170129
  2. J. Staehelin, and Hoigne, Decomposition of Ozone in Water: Rate of Initiation by Hydroxide Ions and Hydrogen Peroxide, Environ. Sci. Technol., 16, 676(1982). https://doi.org/10.1021/es00104a009
  3. Staehelin, J. and Hoigne, Decomposition of Ozone in Water in the Presence of Organic Solutes Acting as Promoters and Inhibitors of Radical Reactions, Environ. Sci. Technol., 19, 1206(1985). https://doi.org/10.1021/es00142a012
  4. T. Bruce Stanley, Electrolytic Ozone Generation and Its Application In Pure Water Systems, 12th Ozone World Congress, San Francisco (1993).
  5. C. Hubele, and H. Sontheimer, Adsorption and biodegradation in activated carbon filters treating preozonated humic acid, Proc. of the 1984 Speciality Conf. in Environ. Eng., New York, ASCE (1984).
  6. W. Kuhn, , H. Sontheimer, L. Steiglite, D. Maier, and R. Kurz, Use of ozone and chlorine in water utilities in the Federal Republic of Germany, J. AWWA, 70(6), 326(1978).
  7. H. S. Park, H. J. Oh, W. J. Kim, J. W. Kang, Characterization of Raw Water for the Ozone Application by Measuring Ozone Consumption Rate, IOA, 14th Ozone World Congress (1999).
  8. H. J. Oh, W. J. Kim, C. S. Gee, S. H. Kim, Optimization of Ozone Dosage in Preozonation Process, 12th IWA - ASPAC Conference (2000).
  9. APHA, AWWA and WEF, Standard Methods for the examination of water & wastewater, M.A.N. Franson(ed.), Port City Press, Baltimore (MA) (2005).
  10. C.W.K. Chow, F. Fitzgerald, L. Sutherland-Stacey, R. Dexter, R. Fabris, and M. Drikas, Applications of UV/Vis spectrometry in Drinking Water Quality Management, In proceedings 'Australian Water Association 2nd Annual Water Industry Engineers and Operators (SA) Conference', Adelaide, Apr. 4, (2006).
  11. P.M. Gy, Sampling for analytical purposes, Wiley VCH Verlag GmbH, Weinheim, Germany (1998).
  12. F. Hammes, etc., Mechanistic and kinetic evaluation of organic disinfection by-product and assimilable organic carbon (AOC) formation during ozonation of drinking water, Water Research, 40(12), 2275(2006). https://doi.org/10.1016/j.watres.2006.04.029
  13. J. Hoigne and H. Bader, Characterisation of water quality criteria for ozonation processes. Part 2: Lifetime of added ozone, Ozone: Science & Engineering, 16, 121(1994). https://doi.org/10.1080/01919519408552417
  14. E. Huber, and M. Frost, Light scattering by small particles, Journal of Water Supply: Research and Technology- Aqua, 47, 87(1998).
  15. G.V. Korshin, C.-W. Li and Benjamin, M.M., The decrease of UV-absorbance as an indicator of TOX formation, Water Research, 31(4), 946(1997). https://doi.org/10.1016/S0043-1354(96)00393-4
  16. G. Langergraber, N. Fleischmann, and F. Hofstaedter, A multivariate calibration procedure for UV/Vis spectrometric quantification of organic matter and nitrate in wastewater, Water Science and Technology, 47(2), 63(2003).
  17. C.W. Li, G.V. Korshin and M.M. Benjamin, Monitoring DBP formatation with differential UV spectroscopy, J. AWWA, 90(8), 88(1998).

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