• Title/Summary/Keyword: leafy radish

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Monitoring of Pesticide Residues and Risk Assessment of Agricultural Products Consumed in South Korea (국내유통농산물 중 잔류농약 모니터링 및 안전성 평가)

  • Kim, Sung-Hun;Choe, Won-Jo;Baik, Yong-Kyoo;Kim, Woo-Seong
    • Journal of the Korean Society of Food Science and Nutrition
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    • v.37 no.11
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    • pp.1515-1522
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    • 2008
  • Monitoring the pesticide residues in agricultural products is essential to protect consumers, obtain data for risk assessment, and ensure fair trade practices. We developed a multi-residue method for the analysis of 37 pesticides with different physico-chemical properties in agricultural products and analyzed the amount of pesticide residues on about 1,000 samples circulated in South Korea. The samples consisted of 26 different types of agricultural products selected at markets in 14 major cities; cereals (2 species), nuts (1 species) potatoes (1 species), beans (2 species), fruits (3 species), vegetables (16 species), and mushrooms (1 species). In this study, residual pesticides were detected in 23 samples (2.2%) and one sample was detected to be over maximum residue limits (MRLs, 0.1%) for pesticides in foods by the Korea food code. In leafy vegetables such as pepper leaves, radish leaves, cham-na-mul, shin-sun-cho, crown daisy, chwi-na-mul and citrus fruits such as kumquat, 8 kinds of pesticides were detected. Specially, diazinon were detected over MRLs and also, endosulfan, ethoprophos and phenthoate were detected frequently. Based on these results, we investigated the risk assesment from amount of residual pesticide, total %ADI was 1.262%, but the value has not effected on human health.

Studies on the Pollution of Heavy Metal in Vegetable Crops Grown in Suburban Areas;Part I. Influence of Planting Time and Age of Reclaimed Fields on the Contents of Heavy Metals in Leafy and Root Vegetable Crops (도시근교지역(都市近郊地域)의 채소(菜蔬)에 대(對)한 중금속(重金屬) 오염(汚染)에 관(關)한 연구(硏究) 제(第) 1 보(報) 엽근채류(葉根菜類)의 중금속함량(重金屬含量)에 미치는 재배시기(栽培時機), 매립후(埋立後) 경작연도(耕作年度)의 영향)

  • Park, Kuen-Woo;Hwang, Sun-Koo;Kim, Young-Shik
    • Korean Journal of Environmental Agriculture
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    • v.2 no.1
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    • pp.13-17
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    • 1983
  • The influence of planting time and age of reclaimed fields on the contents of heavy metals in vegetable crops in suburban areas was investigated. Investigated crops were 4 radish cultivars, Chinese cabbage, spinach, Garland chrisanthemum, and Welsh onion. Cd, Pb, Cu, and Zn were analyzed. The results obtained were as follows. 1) For radishes except Altari-mu and Welsh onion, the highest concentrations of heavy metals were recorded in roots whereas, for Chinese cabbage and Garland chrisanthemum, the highest concentration was appeared in leaves. 2) For lettuce, radishes, and spinach, the lowest concentrations of heavy metals were recorded in winter and the concentrations were the same between spring and autumn. 3) In lettuce difference of concentrations of heavy metals were not appeared between field age after reclamation with sewege sludge. 4) The concentrations of heavy metals observed was not harmful to human health.

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Effect of the Water Quality on the Variation of Ascorbic Acid Content during Yulmoo Mul-kimchi Fermentation (담금수의 수질이 열무 물김치의 비타민 C 함량에 미치는 영향)

  • Kim, Yoo-Jin;Oh, Ji-Young;Lee, Tae-Young;Hahn, Young-Sook
    • Korean Journal of Food Science and Technology
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    • v.30 no.1
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    • pp.175-183
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    • 1998
  • Yulmoo Mul-kimchi was prepared by fermentation of the mixture of 1 part of leafy radish and 2.75 parts of water. It is thought that during the kimchi fermentation both the biosynthesis and destruction of ascorbic acid occurred at the same time. So the ascorbic acid content in Kimchi broth was strongly influenced by the environment of the processing period. In the present studies, an attempt had been made to elucidate the effect of water quality on the content of ascorbic acid and the population change of microorganism during Mul-kimchi fermentation. Five kinds of water such as tap water, an underground water, one commercially available processed water, distilled water and triply distilled water were examined. Nevertheless there were no differences in the population of microorganism and the pattern of acid formation among the five different kind of waters, a large variation of ascorbic acid content was observed. The ascorbic acid content of Kimchi prepared with triply distilled water showed the highest of 7.2 mg% in contrast to 3.37 mg% in tap water kimchi, and 5.72 mg% in the kimchi using underground water which has relatively high concentration of Ca. These results suggested that pure water free of metal ions might prevent the destruction of ascorbic acid during the fermentation. The considerable amount of ascorbic acid in the Kimchi with underground water might be due to Ca ion in the water.

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A Study on the Contents of Trace Metals in the Crops cultivated in Han-riverside (한강둔치에서 재배된 농작물 중의 미중금속 함량에 관한 연구)

  • Kim, Youn-Choen;Chun, Ock-Kyoung;Yang, Hae-Ran;Choi, Young-Hee;Han, Sun-Hee;Lee, Kang-Moon
    • Journal of Food Hygiene and Safety
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    • v.15 no.3
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    • pp.209-218
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    • 2000
  • This study was conducted to determine the content of trace metals in crops cultivated in Han-riverside, Anyang stream, Tan stream, and Jungryang stream. Trace metals (Pb, Cr, Cd, Fe, Zn, Cu, Hg) were detected in 36 crops, 285 samples by Atomic Absorption Spectrophotometer and Mercury Analyzer. The average concentration of trace metals in crop samples was in the order of Fe (34.592 ppm)>Mn (11.071 ppm)$\geq$Zn(8.853 ppm)>Cu(1.795 ppm)>Cr(0.237 ppm)>Pb(0.100 ppm)>Cd(0.011 ppm)>Hg(0.003 ppm). In crop samples, the contents of Fe, Cu, Mn, and Zn, which ranges were 0.004-203.083 ppm, 0.017~22.727 ppm, 0.000~74.373 ppm, 0.080~37.166 ppm, respectively, were relatively higher than those of Pb, Cd, Cr, and Hg, which ranges were 0.000~0.654 ppm, 0.000~0.270 ppm, 0.000~l.229 ppm, 0.000~0.037 ppm, respectively. The concentration of trace metals in crop samples was in the order of leafy vegetables > stem vegetables > root vegetables > fruity vegetables. In the root vegetables, such as radish, the content of Pb was leaf(0.055 ppm)>root(0.035 ppm), that of Cr, leaf (0.118 ppm)>root(0.031 ppm), that of Cd, leaf(0.004 ppm)>root(0.001 ppm), that of Hg, leaf(0.004 ppm)>root(0.001 ppm). As the results, it could be thought that root is the organ which doesn't accumulate the heavy metal ions, but absorb them.

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