• 제목/요약/키워드: Oyster sauce

검색결과 32건 처리시간 0.02초

나트륨 실측치와 식품교환표 및 식품성분표를 이용한 추정치의 비교 (Differences Between Analyzed and Estimated Sodium Contents of Food Composition Table or Food Exchange List)

  • 권용주;이무용;김지영;권광일;김소진;신희준;박성수;이은주;박혜경;박용순
    • 한국식품영양과학회지
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    • 제39권4호
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    • pp.535-541
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    • 2010
  • 나트륨의 과잉섭취가 고혈압의 주요한 위험요인으로 알려져 있는데, 한국인의 성인 하루 평균 소금 섭취량은 영양 섭취기준보다 3배 이상 높다. 본 연구에서는 식품교환표를 이용하여 14일간의 식단을 작성하고 조리된 음식의 나트륨 함량을 실제로 측정한 후 식품교환표와 식품성분표에서 계산된 나트륨 추정치와 비교하여, 각각 방법의 정확성 및 문제점을 파악하고자 하였다. 그 결과를 요약하면 아래와 같다. 하루 식단의 나트륨 함량에서 식품교환표로 계산한 추정치는 실측치와 유의한 차이가 났으나, 식품성분표는 실측치와 유사하였다. 음식별 절대값의 비교에서는 식품교환표로 계산한 나트륨 추정치와 식품성분표로 계산한 나트륨 추정치가 모두 실측치와 유의한 차이가 났다. 음식군별 절대값 비교에서는 양념류의 나트륨 함량이 많은 주요리, 부식, 국물요리에서 상당히 유의한 차이가 났으며, 식품교환표로 계산한 추정치, 식품성분표로 계산한 추정치, 실측치간의 차이가 큰 음식들이 모두 주요리, 부식, 국물요리였다. 이상의 결과에 따르면, 단순히 하루 식단의 나트륨 함량 비교에서 식품교환표에 비해 식품성분표의 나트륨 함량이 더 정확하다고 생각할 수 있지만, 음식별 또는 음식군별로 추정치와 실측치간의 차이를 절대값으로 비교한 결과, 식품교환표와 식품성분표의 나트륨 함량 모두 실측치와 차이가 컸다. 특히 나트륨 과잉 섭취의 주요 원인으로 보고되는 양념류의 차이로 장류, 김치 등의 사용이 많은 한국음식에서 식품교환표와 식품성분표를 이용한 추정치와 실측치의 차이가 컸다. 따라서 고혈압 및 신장질환 환자를 위한 저염식단작성시 식품교환표나 식품성분표를 사용할 때 실제 소금량과의 차이를 고려해야한다.

새우젓의 정미성분에 관한 연구 (THE TASTE COMPOUNDS FERMENTED ACETES CHINENSIS)

  • 정승용;이응호
    • 한국수산과학회지
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    • 제9권2호
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    • pp.79-110
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    • 1976
  • In Korea fermented fish and shellfish have traditionally been favored and consumed as seasonings or further processed for fish sauce. Three major items in production quantity among more than thirty kinds which are presently available in the market are fermented anchovy, oyster and small shrimp. They are usually used as a seasoning mixture of Kimchi in order to provide a distinctive flavor. Fermented small shrimp, Acetes chinensis is most widely and largely used ana occupies an important position in food industry of this country. But no study on its taste compounds has been reported. This study was attempted to establish the basic data for evaluating taste compounds of fermented small shrimp. The changes of such compounds during fermentation as free amino acids, nucleotides and their related compounds, TMAO, TMA, and betaine were analysed. In addition, change in microflora during the fermentation under the halophilic circumstance was also investigated. The samples were prepared with three different salt contents of 20, 30 and $40\%$ to obtain the proper degree of fermentation at a controlled tempeature of $20{\pm}2^{\circ}C$. The results are summarized as follows: Volatile basic nitrogen increased rapidly until 108 days of fermentation and afterwards it tended to increase slowly. Amino nitrogen also increased rapidly until 43 days of fermentation and then increased slowly. Extract nitrogen increased and marked the maximum value at 72 day fermentation and then decreased slowly. ADP, AMP and IMP tended to degrade rapidly while hypoxanthine increased remarkably at 27 day fermentation but slightly decreased at 72 day fermentation. It is presumed that the characteristic flavor of fermented small shrimp might be attributed to the relatively higher content of hypoxanthine. In the free amino acid composition of fresh small shrimp abundant amino acids were proline, arginine, alanine, glycine, lysine, glutamic acid, leucine, valine and threonine in order. Such amino acids like serine, methionine, isoleucine, phenylalanine, aspartic acid, tyrosine and histidine were poor. In small shrimp extract, proline, arginine, alanine, glycine, lysine and glutamic acid were dominant holding $18.5\%,\;14.6\%,\;10.8\%,\;8.7\%,\;8.1\%\;and\;7.7\%$ of total free amino acids respectively. The total free amino acid nitrogen in fresh small shrimp was $63.9\%$ of its extract nitrogen. The change of free amino acid composition in the extract of small shrimp during fermentation was not observed. Lysine, alanine glutamic acid, proline, glycine and leucine were abundant in both fresh sample and fermented products. The increase of total free amino acids during 72 day fermentation reached approximately more than 2 times as compared with that of fresh sample and then decreased slowly. Fermented small shrimp with $40\%$ of salt was too salty to be commercial quality as the results of organoleptic test showed. It is found that 72 day fermentation with $20\%\;and\;30\%$ of salt gave the most favorable flavor. It is convinced that the characteristic flavor of fermented small shrimp was also attributed to such amino acids as lysine, proline, alanine, glycine and serine known as sweet compounds, as glutamic acid with meaty taste, and as leucine known as bitter taste. The amount of betaine increased during fermentation and reached the maximum at 72 day fermentation and then decreased slowly TMA increased while TMAO decreased during fermentation. The amount of TMAO nitrogen in fermented small shrimp was $200mg\%$ on moisture and salt free base. Betaine and TMAO known as sweet compounds were abundant in fermented small shrimp. It is supposed that these compounds could also play a role as important taste compounds of fermented small shrimp. At the initial stage of fermentation, Achromobacter, Pseudomonas, Micrococcus denitrificans which belong to marine bacteria were isolated. After 40 day fermentation, they disappeared rapidly while Halabacterium, Pediococcus, Sarcian, Micrococcus morrhuae and the yeasts such as Saccharomyces sp. and Torulopsis sp. dominated. It is concluded that the most important taste compounds of fermented small shrimp were amino acids such as lysine, proline, alanine, glycine, serine, glutamic acid, and leucine, betaine, TMAO and hypoxanthine.

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