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Solubility Improvement of Cuttle Bone Powder Using Organic Acids

유기산처리에 의한 갑오징어갑 분말의 가용성 개선

  • KIM Jin-Soo (Division of Marine Bioscience/Institute of Marine Industry, Gyeongsang National University) ;
  • CHO Moon-LAE (Division of Marine Bioscience/Institute of Marine Industry, Gyeongsang National University) ;
  • HEU Min-Soo (Division of Marine Bioscience/Institute of Marine Industry, Gyeongsang National University) ;
  • CHO Tae-Jong (Division of Marine Bioscience/Institute of Marine Industry, Gyeongsang National University) ;
  • AN Hwa-Jin (Division of Marine Bioscience/Institute of Marine Industry, Gyeongsang National University) ;
  • CHA Yong-Jun (Department of Food and Nutrition, Changwon National University)
  • 김진수 (경상대학교 해양생물이용학부/해양산업연구소) ;
  • 조문래 (경상대학교 해양생물이용학부/해양산업연구소) ;
  • 허민수 (경상대학교 해양생물이용학부/해양산업연구소) ;
  • 조태종 (경상대학교 해양생물이용학부/해양산업연구소) ;
  • 안화진 (경상대학교 해양생물이용학부/해양산업연구소) ;
  • 차용준 (창원대학교 식품영양학과)
  • Published : 2003.02.01

Abstract

As a pan of a study on effective use of seafood processing by-products, such as cuttle bone as a calcium source, we examined on the kind of organic acid (acetic acid and lactic acid), reaction concentration (mole ratio of calcium to mole of organic acid), reaction temperature $(20\~60^{\circ}C)$ and reaction time (6$\~$24 hours) as reaction conditions for the solubility improvement of cuttle bone powder. The high soluble cuttle bone powder was also prepared from the optimal reaction conditions and partially characterized. From the results on examination of reaction conditions, the high soluble cuttle bone powder was prepared with 0.4 in mole ratio of a calcium to mole of a acetic acid at room temperature for 12 hours, Judging from the patterns of IR and X-ray diffraction, the main component of the high soluble cuttle bone powder was presented as a form of calcium acetate, and a scanning electron micrograph showed an irregular form. The soluble calcium content in the high soluble cuttle bone powder was $5.3\%$ and it was improved about 1,380 times compared to a raw cuttle bone powder. For the effective use of the high soluble cuttle bone powder as a material for a functional improvement in processing, it should be used after the calcium treatment at room temperature for about 1 hour in tap water or distilled water. from these results, we concluded that it is possible to use the high soluble cut시e bone powder as a material for a functional improvement in processing.

수산가공부산물인 갑오징어갑을 칼슘소재로서 효율적으로 이용하기 위한 일련의 연구로 유기산 처리에 의해 갑오징어갑 분말의 가용성을 개선하기 위하여 처리 유기산의 종류 (아세트산, 젖산), 반응농도 (유기산의 몰에 반응하는 칼슘의 몰 비율), 반응시간 (6$\~$24시간), 반응온도 $(20\~60^{\circ}C)$ 등에 대하여 살펴보았다. 아울러 이들로부터 구명된 최적조건을 이용하여 고 가용성 갑오징어갑 분말을 제조한 다음 구조, 가용화 조건 등과 같은 부분적인 특성에 대하여도 살펴보았다. 갑오징어갑 분말의 가공용 개선을 위한 유기산으로는 아세트산이 적절하였고, 반응 조건은 칼슘의 몰/아세트산의 몰 비율을 0.4로 한 다음 실온에서 12시간 정도로 하는 것이 적절하였다 IR 및 XRD 상분석 결과 이렇게 제조한 아세트산처리 갑오징어갑 분말의 경우 주성분이 아세트산 칼슘이었고, 전자현미경 촬영 결과 불규칙한 형을 이루고 있었다. 최적 조건에서 유기산 처리된 갑오징어갑 분말의 가용성은 약 $5.3\%$로 원료에 비하여 약 1,380배 정도 개선되었다. 유기산 처리 갑오징어갑 분말을 가공 기능성 개선제와 같이 보다 효율적으로 이용하기 위하여는 실온에서 증류수 또는 수도수에 1시간 정도 진탕하여 사용하면 가능하리라 판단되었다. 이상의 결과로 미루어 보아 유기산처리 갑오징어갑 분말은 가공 기능성 개선제로 사용 가능하리라 판단되었다.

Keywords

References

  1. Cho, M.L., M.S. Heu and J.S. Kim. 2001a. Food component characteristics of cuttle bone as a mineral source. J. Korean Fish. Soc., 34, 478-482 (in Korean)
  2. Cho, M.L., M.S. Heu and J.S. Kim. 2001b. Study on pretreatment methods for calcium extraction from cuttle bone. J. Korean Fish. Soc., 34, 483-487 (in Korean)
  3. Cho, M.L., M.S. Heu and J.S. Kim. 2001c. Calcination condition for recovery of calcium from cuttle bone and characteristics of calcined cuttle bone powder. J. Korean Fish. Soc., 34, 600-604 (in Korean)
  4. Kim, H.J., B.Y. Kim and M.H. Kim. 1995. Rheological studies of the tofu upon the processing conditions. Korean J. Food Sci. Technol., 27, 324-328 (in Korean)
  5. Kim, H.S., M.Y. Lee and S.C. Kim. 2000c. Characteristics of sepiae os as a calcium source. J. Korean Soc. Food Sci. Nutr., 29, 743-746 (in Korean)
  6. Kim, J.S., J.D. Choi and J.G. Koo. 1998. Component characteristics of fish bone as a food source. Agric. Chern. Biotech., 41, 67-72 (in Korean)
  7. Kim, J.S., M.L. Cho and M.S. Heu. 2000b. Preparation of calcium powder from cooking skipjack tuna bone and its characteristics. J. Korean Fish. Soc., 33, 158-163 (in Korean)
  8. Kim, J.S., SK Yang and M.S. Heu. 2000a. Component characteristics of cooking tuna bone as a food resource. J. Korean Fish. Soc. 33, 38-42 (in Korean)
  9. Kim, S.Y., J.Y.. Um and K.O. Kim. 1991. Effects of calcium acetate and potassium sorbate on characteristics of Kakdugi. Korean J. Food Sci. Technol., 23, 1-5 (in Korean)
  10. Lee, K.S., D.H. Kim, S.H. Baek and S.H. Choun. 1990. Effects of coagulants and soaking solutions of tofu (soybean curd) on extending its shelf life. Korean J. Foods Sci. Technol., 22, 116-122 (in Korean)
  11. Lee, M.J., H.S. Kim and S.C. Lee. 2000. Effects of sepiae os addition on the quality of Kimchi during fermentation. J. Korean Soc. Food Sci. Nutr. 29, 592-596 (in Korean)
  12. Lee, N.G. and J.W. Park. 1998. Calcium compounds to improve gel functionality of Pacific whiting and Alaska pollack surimi. J. Food Sci., 63, 969-974 https://doi.org/10.1111/j.1365-2621.1998.tb15835.x
  13. Lu, J.Y., E. Carter and R.A. Chung. 1980. Use of calcium salts for soybean curd preparation. J. Food Sci., 45, 32-34 https://doi.org/10.1111/j.1365-2621.1980.tb03864.x
  14. Park, Y.H., S.B. Kim and D.S. Chang. 1995. Seafood Processing and Utilization. Hyeongseol Publish Co., Seoul, pp. 201-207 (in Korean)
  15. Reykdal, O. and K. Lee. 1991. Soluble, dialyzable and ionic calcium in raw and processed skim milk, whole milk and spinach. J. Food Sci., 56, 864-868 https://doi.org/10.1111/j.1365-2621.1991.tb05403.x
  16. The Fisheries Association of Korea. 1997. Korean fisheries yearbook. Dongyang Publishing Co., Seoul, pp. 354-363 (In Korean)
  17. Tsutagawa, Y., Y. Hosogai and H. Kawai. 1994. Comparison of mineraI and phosphorus contents of muscle and bone in the wild and cultured horse mackerel. J. Food Hyg. Soc. Japan., 34, 315-318 (in Japanese)

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