Changes of Chemical Compositions in Chicory Roots by Different Roasting Processes

볶음방법에 따른 치커리의 화학성분 변화

  • Published : 2003.09.30

Abstract

Chicory roots were roasted under various conditions. For roasted chicory roots, chemical compositions were investigated to develop new food materials from Korean chicory roots. Raw chicory root consists of 76.34% of moisture, 20.50% of nitrogen free extract, 1.03% of crude protein, 0.13% of crude fat, 1.02% of crude fiber and 0.98% of crude ash. Dried chicory root contains 3.44% of moisture, 79.52% of nitrogen free extract, 5.63% crude protein, 5.51% of crude fiber, 4.85% of crude ash and 1.05% of crude fat. Moisture content of chicory root decreased gradually with the increase of roasting time at $130^{\circ}C\;and\;140^{\circ}C$, while decreased significantly by roasting at $150^{\circ}C\;and\;160^{\circ}C$ and dropped below 1.0% in the 40 min. of roasting at all roasting temperatures tested. Crude protein content decreased with an increase of roasting temperature and time. Crude protein content decreased by 1.60% after 40 min of roasting at $160^{\circ}C$. The amount of reducing sugar decreased gradually as roasting time at $130^{\circ}C\;and\;140^{\circ}C$ increased. It reduced remarkably roasting at $160^{\circ}C$. Crude protein and reducing sugars seemed to be consumed as substrate for maillard reaction. $2,705.1{\sim}2,735.5mg%\;of\;K,\;175.8{\sim}179.3mg%\;of\;P,\;152.7{\sim}157.3mg%\;of\;Ca\;and\;76.2{\sim}79.6mg%$ of Mg were contained in chicory root and theirs contents were not changed in different roasting conditions. Thirteen fatty acids were isolated and identified from chicory root and it among them linoleic, linolenic, palmitic and oleic acids were the major components. Saturated fatty acid content was 22.81% and unsaturated fatty acid content was 77.19% and fatty acid composition was not changed by roasting under different conditions.

국내산 치커리 뿌리를 가공식품으로 개발하기 위한 기초자료 조사의 일환으로 여러 조건에서 볶음처리 하였을 때 화학성분을 조사하였다. 생치커리는 수분이 76.34%, 탄수화물 20.50%, 조단백질이 1.03%, 조지방 0.13%, 조섬유 1.02%, 회분 0.98% 이었으며, 건조치커리는 수분이 3.44%, 탄수화물 79.52%, 조단백질이 5.63%, 조섬유 5.51%, 회분 4.85%, 조지방 1.05%로 나타났다. 볶음조건에 따라 치커리의 수분함량은 $130^{\circ}C$$140^{\circ}C$에서는 볶음시간에 따라 서서히 감소하였으나, $150^{\circ}C$$160^{\circ}C$에서는 급격히 감소하였다. 모든 볶음온도 40분에서는 1.00%이하로 나타났다. 조단백질함량은 볶음온도와 볶음시간이 증가함에 따라 감소하였으며, $160^{\circ}C$, 40분에서는 1.60%의 함량을 나타내었다. 환원당 함량은 $130^{\circ}C$$140^{\circ}C$에서 볶음시간에 따라 서서히 감소하였으며, $160^{\circ}C$에서는 급격히 감소하였다. 무기물은 K는 $2,705.1{\sim}2,735.5mg%$, P는 $175.8{\sim}159.3mg%$, Ca는 $152.7{\sim}157.3mg%$, Mg는 $76.2{\sim}79.6mg%$ 순으로 높게 나타났으며, 볶음조건에 따른 함량 변화는 없었다. 볶음 조건에 따른 지방산의 함량변화는 지방산은 총 13종을 동정 확인되었으며, 주요 지방산은 linoleic acid, linolenic acid, palmitic acid, oleic acid이며, 볶음조건에 따른 지방산의 조성비는 큰 차이가 없었다.

Keywords

References

  1. A.O.A.C. 1990. Official Methods of Analysis. 15th edition. Association of Official Analytical Chemists. Virginia. USA
  2. Bhatia IS, Mann SK, Singh R (1974) Biochemical changes in the water soluble carbohydrates during the development of chicory(Cichorium intybus L.) roots. J. Sci. Food Agric. 25 : 535-539 https://doi.org/10.1002/jsfa.2740250513
  3. Bouhnik Y, Flourie B, Andrieux C, Bisetti N, Briet F, Rambaud JC (1996) European H. of Clinical Nutrition. 50 : 269-273
  4. Choi MK (1989) A study on the ingredients of chicory harvested in Korea and coffee. Ph.D. Thesis. Hanyang Univ. Seoul. Korea
  5. Chopra RN, Chopara IC, Hand KL (1958) Indigenous Drugs of India : 318-319
  6. Colowick SP, Kaplcm NO (1955) Method in enzymology. Academic Press Inc. New York, 1:149
  7. Chung CH (1996) Studies on pharmaceutical substance and tissue cultures of Platycodon gromdiflorus A. DC. Ph. D. Thesis. Gyeongsang National Univ., ChinJu, Korea
  8. Danethy JD (1986) Maillard reaction. Nonenzymatic browning in food system with special reference to the development of flavor. Advances in Food Research. 30 : 77-138 https://doi.org/10.1016/S0065-2628(08)60348-1
  9. Hodge JE (1953) Chemistry of Browning Reaction in model system. J. Agr. Food Chem. 1(15) : 928-953 https://doi.org/10.1021/jf60015a004
  10. Hong MJ, Lee GD, Kim HK, Kwon JH (1998) Changes in browning characteristics of chicory roots by roasting processes. J. Korean. Soc. Food Sci. Nutr. 27(4) : 591-595
  11. Kim HK, Lee BY, Shin DB, Kwon JH (1998) Effects of roasting conditions on physiochemical characteristics and volatile flavor components of chicory roots. Korea J. Food. Sci. Technol, 30(6) : 1279-1284
  12. Kloss J (1986) Back to eden (A human interest story of health and restoration to be found in herb, root and bark), Back to eden books, Dublishing Co. Loma Linda, California 92354. U.S.A. p.137
  13. Kwon JH, Rhyu KC, Chung HW, Lee GD (1997) Effect of steaming prior to roasting of Polygonatum odoratum roots on its water solubles and browning. Korean Journal of Food Preservation. 4(2) :155-162
  14. Lee JW (1997) Physico-chemical characteristics and biological activities of the water soluble browning reaction products from Korean red ginsing. Ph. D Thesis. Gyeongsang National Uni. Chinju. Korea
  15. Lee YT, Seog HM (1994) Changes in physiochemical characteristics of immature barley kernels during roasting. Korean J. Food Sci. Technol, 26(3) : 336-342
  16. Levrat MA, R$\'e$m$\'e$sy C, Demign$\'e$ C (1991) High propinic acid fermentations and mineral accmculation in the cecum of rats adapted to different levels of inulin. H. Nutr, 121 : 1730-1737
  17. Metcalf LD, Schmits AA, Pelka JR (1966) Rapid preparation of fatty acid esters from for gas chromatographic analysis. Anal. Chern. 38(3) : 514 https://doi.org/10.1021/ac60235a044
  18. Namiki JP (1988) Chemistry of maillard reactions. Recent studies on the Browning Reaction mechanism and the develoment of antioxidants and mutants. Advances in food Research. 30 : 115-185
  19. Park CK, JG Lee, BS Jeon, NM Kim, KH Shim (2002) Changes of volatile flavor components with different roasting processes in chicory root. Food Engineering Progress. 6(3) : 232-240
  20. Park MH (1994) Studies on the changes in chemical components and safety of ginseng extract residue by roasting process. Ph. D. Thesis. Chungbuk National Uni. Chungju. Korea
  21. Roberfoid MB, Loo VJ, Gibson AE (1998) The bifidogenic nature of chicory inulin and its hydrolysis products. J. Nutr. 128 : 11-19 https://doi.org/10.1093/jn/128.1.11
  22. Shin HK (1995) Development of new functional maerials for human body from inulin of chicory and jerusalem artichoke. Ministry of science and Technolog, 94-G-08-08-A-05. Seoul. pp. 1-120
  23. Yoon SK, Kim WJ (1987) Effects of roasting conditions on quality and yields of barley tea. Korean J. Food Sci. Technol. 21(4) : 575-582
  24. 김동훈. 1995. 식품화학. 탐구당. p. 401
  25. 김선봉. 1986. Mallard 반응생성물의 화학적 해석과 생물작용. Food Science(식품과학). 19(3) : 25-35
  26. 독고준선. 1988. 부존자원활용과 신소재. 고향문화사. 서울. p.16
  27. 박권우. 1986. 서양채소론(西洋菜蔬論), 고려대학교출판부, 서울. p. 271