• Title/Summary/Keyword: Codex

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The Scope of Population Groups and Nutrients for Codex Nutrient Reference Values (코덱스 영양소기준치 설정을 위한 인구집단 및 영양소의 종류 선정)

  • Cho, Youn-Ok;Kim, Hye-Young;Choi, Young-Sun;Lim, Hyeon-Sook;Kwon, O-Ran;Chang, Nam-Soo
    • Journal of Nutrition and Health
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    • v.42 no.2
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    • pp.189-196
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    • 2009
  • The purposes of this study were to establish the scope of population groups to be set and nutrients to be included for Codex Nutrient Reference Values (NRVs). Examination of a variety of documents and reports on the principles of scientific evidence was gone through to choose representative groups from a variety of population groups and kinds of nutrients for setting Codex NRVs. Also, hearings from the groups of NRVs expertise has been formed and was gone through by e-working process. The differences of food and foods being consumed in general and by specific population groups and limited actual space on packages for food labeling were considered. This paper suggest the options on the scope of population groups to be set and nutrients to be included for Codex NRVs on the basis of the above procedures. Also, the advantages and disadvantages of these options are commented when the options are applied for establishment and revision of the Codex NRVs.

Microbiological Quality and Safety Assessment of Salad in Lunchbox's according to the Holding Time and Temperature - Convenience and Franchise Stores - (보관시간과 온도에 따른 판매 도시락의 샐러드 미생물 품질 평가 - 편의점과 프랜차이즈 도시락 전문점 제품 -)

  • Choi, Jung-Hwa;Wang, Tae-Hwan;Kwak, Tong-Kyung
    • Korean journal of food and cookery science
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    • v.32 no.6
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    • pp.724-733
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    • 2016
  • Purpose: This study was to evaluate the microbiological quality of salads in lunchbox's based on the holding time and temperature at convenience and franchise stores. Methods: Cabbage salad and crab meat salad were targeted for microbiological quality assessment. They were tested for aerobic plate counts, coliforms, Escherichia coli, Staphylococcus aureus and Enterobacteriaceae and assessment were performed by Korean Food Standards Codex. Results: In cabbage salad at convenience franchise store's at $5^{\circ}C$, the aerobic plate counts did not exceed the Korean Food Standards Codex. For cabbage salad stored at $25^{\circ}C$, the aerobic plate counts was 5.08 log CFU/g we hours after purchase, which exceeded the Korean Food Standards Codex. In case of cabbage salad in franchise store, the E. coli and S. aureus count exceeded Korean Food Standards Codex 3 hours after purchase. Microbiological analysis did not exceed the Korean Food Standards Codex at $5^{\circ}C$ in crab meat salad in convenience store. At $25^{\circ}C$, the aerobic plate count was detected at 4.45 log CFU/g after 32 hours, coliforms, E. coli, and S. aureus did not detect, but Enterobacteriaceae was found to be 2.34 log CFU/g after 9 hours in franchise store's crab salad. Coliforms was detected at 1.18 log CFU/g after 3 hours, and S. aureus was detected at 2.04 log CFU/g after 6 hours at $25^{\circ}C$ in the franchise store. The lunchbox' salad under cold storage ($5^{\circ}C$) generally meet the Korean Food Standards Codex. Conclusion: The results indicate an urgent need to implement proper management guidelines for the production of lunchbox foods to ensure microbiological safety, and to improve the shelf life from production to consumption.

Classification and Nomenclature of Fruit Commodities in South Korea and Codex Alimentarius Commission (과일류의 명칭 및 분류: 국내와 코덱스 비교)

  • Lee, Mi-Gyung
    • Journal of Food Hygiene and Safety
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    • v.33 no.3
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    • pp.162-167
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    • 2018
  • The objective of this study was to find out a nomenclature and a code number for fruit commodities from the Codex Alimentarius Commission (Codex) corresponding with a commodity name used in South Korea. In addition, nomenclature or classification for commodity that needs an alteration or detailed examination domestically was determined. In this study, 'Food Code (Korean and English version)' and 'Pesticide MRLs in Food' from the Ministry of Food and Drug Safety and 'Codex Classification of Foods and Animal Feeds' were used. As results, regarding a nomenclature or classification used in South Korea, it appeared that alteration or further examination was needed for the following (English name of commodity, coming from an English version of Food Code). First, reconsiderations for classification of Chinese matrimony vine, fig, five-flavor magnolia vine, and pomegranate are needed as they are classified differently between Korea and Codex. Second, in any case of Korean or English language, nomenclature of commodity is different even within Korea or when it is compared with Codex. Such commodities are: Asian citron, Chinese bush cherry, Chinese matrimony vine, coconut, crimson glory vine, date palm, five-flavor magnolia vine, five-leaf chocolate vine, Japanese apricot, Japanese cornelian cherry, jujube, kiwifruit (golden kiwi), Korean black berry, Korean raspberry, kumquat, lychee, mandarin, persimmon, plum, quince, raspberry, and trifoliate orange. Third, reconsiderations for peach and raspberry nomenclatures are needed as it is currently unclear whether 'peach' includes nectarine and an English nomenclature, 'raspberry', is used in Korea for both various varieties (red, black) and one specific variety.

Application of Dietary Reference Intakes for Codex Nutrient Reference Values (코덱스 영양소 기준치 설정시 영양섭취기준의 적용 방안)

  • Joung, Hyo-jee;Yoon, Jin-Sook;Choi, Seul-Ki;Shin, Sang-Ah;Choi, Young-Sun;Kwon, O-Ran;Chang, Nam-Soo
    • Journal of Nutrition and Health
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    • v.42 no.4
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    • pp.366-373
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    • 2009
  • Codex Nutrient Reference Values (NRVs) were based on the 1988 Helsinki report and a single set of NRVs was established for the general population over 3 years for the purpose of food labeling in 1993. Dietary Reference Intakes (DRIs) with new concepts were developed in many countries recently. Hence there has been broad discussion regarding establishment of new NRVs using DRIs, which include estimated average requirement (EAR), recommended intake (RI or RDA), adequate intake (AI), and tolerable upper intake level (UL) in the world. This study was carried out to review various possible values for Codex NRVs such as population-weighted EAR, population-weighted RDA, and populationbased RDA. The values were simulated using DRIs and population distribution of Korea, USA, Japan, Philippines, Germany and England, and compared to the current Codex values and the highest RDA and the lowest UL among populations with different life-stage. Since population weighted/based values are necessary to be updated according to the population changes and are different across countries, inconsistency can be a serious barrier in international transactions. For some of nutrients such as vitamin A and zinc, values based on population-based RDA or the highest RDA were higher than the lowest UL. Therefore, careful considerations should be given before establishing Codex NRVs.

Scientific Principles on the Revision and Addition of the Codex Nutrient Reference Values for Food Labelling Purposes (식품표시를 위한 코덱스 영양소기준치 개정에 필요한 과학적 근거)

  • Chang, Nam-Soo;Cho, Youn-Ok;Joung, Hyo-Jee;Chung, Hae-Rang;Kim, Hye-Young;Choi, Young-Sun;Lim, Hyeon-Sook;Yun, Jin-Sook;Kwon, O-Ran
    • Journal of Nutrition and Health
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    • v.42 no.2
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    • pp.183-188
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    • 2009
  • There has been a need to update the current Codex nutrient reference values (NRVs) which had been established following the Helsinki Consultation in 1988. The main purposes of NRVs are to help consumers compare the nutrient content of different food products and estimate the usefulness of a food product in terms of its percentage contribution to the overall healthful diets. The establishment of Codex NRVs for labelling purposes is intended to facilitate the goals of protecting consumers' health and ensuring fair practices in food trade. When revising the Codex NRVs several issues are needed to discussed, which are: 1) Consideration of population groups whether to have one set of NRVs for general population or to have several sets of NRVs for each population groups, 2) Determination of scope of nutrients such as what nutrients to include and what reference values to choose and 3) Development of principles for establishing NRVs such as the selection of suitable reference values among many including recommended intake/recommended dietary allowances, estimated average requirement and upper levels to extract NRVs. This paper will discuss the above issues and the inputs and efforts that the Korean Nutrition Society had put into to carry out the project, "International Collaboration on the Revision and Addition of the Codex Nutrient Reference Values for Food Labelling Purposes," and to ascertain relevant scientific principles and evidences that are utilized for establishment and revision of the Codex NRVs.

Classification of Vegetable Commodities by the Codex Alimentarius Commission (코덱스의 식품 분류: 채소류)

  • Lee, Mi-Gyung
    • Journal of Food Hygiene and Safety
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    • v.34 no.1
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    • pp.87-93
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    • 2019
  • Revision work on the Codex Classification of Foods and Animal Feeds was undertaken in 2007 and presently, revisions for most food groups have been completed. For vegetables, the work was conducted during 2014-2017, and the final draft revision was adopted by the $40^{th}$ Codex Alimentarius Commission (2017). Here, the revised classification of vegetable commodities is introduced in order to be utilized in various food-related fields, in particular, food safety regulation. The revised classification is briefly summarized as follows: Codex classified vegetables into 10 groups (Group 009-018): bulb vegetables (Group 009), Brassica vegetables (except Brassica leafy vegetables) (Group 010), fruiting vegetables, Cucurbits (Group 011), fruiting vegetables, other than Cucurbits (Group 012), leafy vegetables (including Brassica leafy vegetables) (Group 013), legume vegetables (Group 014), pulses (Group 015), root and tuber vegetables (Group 016), stalk and stem vegetables (Group 017) and edible fungi (Group 018). The groups are further divided into a total of 33 subgroups. In the Classification, 430 different commodity codes are assigned to vegetable commodities. Meanwhile, Korea's Ministry of Food and Drug Safety (MFDS) does not include potatoes, beans and mushrooms within a vegetable group. In addition, the MFDS divides one vegetable group into six subgroups including flowerhead Brassicas, leafy vegetables, stalk and stem vegetables, root and tuber vegetables, fruiting vegetables, Cucurbits, and fruiting vegetables other than Cucurbits. Therefore, care is needed in using the Codex Classification.

Development of alternative titration method without mercuric acetate for the assay of difemerine hydrochloride in Korean Pharmaceutical Codex (디페메린염산염 시험에 사용되는 유해시약인 수은 대체 시험법의 개발)

  • Jeon, Sang-Seol;Kim, Kyeong Ho
    • Analytical Science and Technology
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    • v.27 no.4
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    • pp.196-200
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    • 2014
  • Currently nonaqueous titration method for the assay method using the hazardous reagent, mercury acetate for difemerine hydrochloride has been used in Korean Pharmaceutical Codex. We developed an alternative titration assay method by substituting the use of the hazardous reagent, mercury acetate to the use of less toxic ones like ethyl alcohol. The linearity of the calibration curves in the desired concentration range was good (r>0.999). Precision was less than 0.64%. Accuracy was obtained with recoveries in range of 99.10% and 99.71%. The developed assay could be expected to become valuable tools for revising the Korean Pharmaceutical Codex.

Present Status and Remedial Actions with Regard to Legal Limits of Pesticide Residues in Korea (국내 농약잔류 허용기준의 현황분석과 대처방안)

  • Lee, Su-Rae;Lee, Mi-Gyung
    • Korean Journal of Environmental Agriculture
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    • v.20 no.1
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    • pp.34-43
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    • 2001
  • For 202 pesticides with maximum residue limit(MRL) in Korea, anticipated problems were identified and remedial actions were suggested. The risk index expressed as the ratio of theoretical maximum daily intake against ADI which exceeds 80% appeared in 35 pesticides. Items showing 10-fold difference between Korea and Codex MRLs appeared in 35 pesticides and 47 food commodities. In any of the 202 pesticides, nominated crops without MRL were 33 items whereas non-nominated crops with MRL were 50 items. Under the Codex system, cases of separate MRLs among raw materials and processed products were exampled. Remedial actions to minimize the above-mentioned discrepancies were suggested respectively.

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