High performance liquid chromatographic determination of EDTA, calcium (II)-EDTA and iron (III)-EDTA in canned and bottled foods

A practical method was developed for the fractional determination of ethylenediaminetetraacetate (EDTA), Ca (II)-EDTA and Fe (III)-EDTA in canned and bottled foods. Bismuth (III) subnitrate suspended in sodium chloride-ammonium buffer solution was suitable for conversion of EDTA to the equivalent am...

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Published inFood Hygiene and Safety Science (Shokuhin Eiseigaku Zasshi) Vol. 26; no. 3; pp. 253 - 259_1
Main Authors Yamaguchi, A. (Sapporo-shi. Inst. of Public Health (Japan)), Yamaguchi, T, Shiroishi, Y, Shimizu, Y, Takasugi, N
Format Journal Article
LanguageEnglish
Japanese
Published Japanese Society for Food Hygiene and Safety 01.01.1985
Subjects
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ISSN0015-6426
1882-1006
DOI10.3358/shokueishi.26.253

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Abstract A practical method was developed for the fractional determination of ethylenediaminetetraacetate (EDTA), Ca (II)-EDTA and Fe (III)-EDTA in canned and bottled foods. Bismuth (III) subnitrate suspended in sodium chloride-ammonium buffer solution was suitable for conversion of EDTA to the equivalent amount of Bi (III)-EDTA at pH 10, leaving Ca (II)- and Fe (III)-EDTA intact. Further, Ca (II)-EDTA was converted to Cu (II)-EDTA in the presence of Cu (II) ion at pH 2-3, leaving Bi (III)- and Fe (III)-EDTA unaltered. The resulting EDTA-chelates of Bi (III), Cu (II) and Fe (III) were separated by high performance liquid chromatography on a Nucleosil 5C18 column using 2M ammonium sulfate solution as the eluent. The recoveries of EDTA, Ca (II)-EDTA and Fe (III)-EDTA were satisfactory. It was found that the addition of EDTA to foods caused the formation of Ca (II)-EDTA in all samples and that of Fe (III)-EDTA in several samples. Four imported food samples were analyzed by the proposed method. One sample, sandwich spread, contained 29.2μg/g of Ca (II)-EDTA and 11.0μg/g of Fe (III)-EDTA.
AbstractList A practical method was developed for the fractional determination of ethylenediaminetetraacetate (EDTA), Ca (II)-EDTA and Fe (III)-EDTA in canned and bottled foods. Bismuth (III) subnitrate suspended in sodium chloride-ammonium buffer solution was suitable for conversion of EDTA to the equivalent amount of Bi (III)-EDTA at pH 10, leaving Ca (II)- and Fe (III)-EDTA intact. Further, Ca (II)-EDTA was converted to Cu (II)-EDTA in the presence of Cu (II) ion at pH 2-3, leaving Bi (III)- and Fe (III)-EDTA unaltered. The resulting EDTA-chelates of Bi (III), Cu (II) and Fe (III) were separated by high performance liquid chromatography on a Nucleosil 5C18 column using 2M ammonium sulfate solution as the eluent. The recoveries of EDTA, Ca (II)-EDTA and Fe (III)-EDTA were satisfactory. It was found that the addition of EDTA to foods caused the formation of Ca (II)-EDTA in all samples and that of Fe (III)-EDTA in several samples. Four imported food samples were analyzed by the proposed method. One sample, sandwich spread, contained 29.2μg/g of Ca (II)-EDTA and 11.0μg/g of Fe (III)-EDTA.
Author Takasugi, N
Yamaguchi, A. (Sapporo-shi. Inst. of Public Health (Japan))
Shimizu, Y
Shiroishi, Y
Yamaguchi, T
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CitedBy_id crossref_primary_10_1016_S0731_7085_02_00049_3
crossref_primary_10_1016_j_foodchem_2012_11_103
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References 1) Ito, Y., Toyoda, M., Suzuki, H., Iwaida, M.: J. Assoc. Offic. Anal. Chem. 63, 1219-1223 (1980).
5) Ringbom, A. 著, 田中信行, 杉晴子訳:“錯形成反応”p. 337 (1965) 産業図書.
6) 科学技術庁資源調査会編:“四訂日本食品成分表”(1982) 大蔵省印刷局.
4) 広渡和生, 甲村善博, 熊本和夫, 服部荘寛, 青島昭三: 分析化学. 30, 534-537 (1981).
2) 大石充男, 大西和夫, 坂井千三: 東京都衛研年報. 34, 211-215 (1983).
3) 矢部芳枝, 丹茂, 二宮隆博, 岡田太郎: 食衛誌. 24, 220-224 (1983).
References_xml – reference: 6) 科学技術庁資源調査会編:“四訂日本食品成分表”(1982) 大蔵省印刷局.
– reference: 5) Ringbom, A. 著, 田中信行, 杉晴子訳:“錯形成反応”p. 337 (1965) 産業図書.
– reference: 1) Ito, Y., Toyoda, M., Suzuki, H., Iwaida, M.: J. Assoc. Offic. Anal. Chem. 63, 1219-1223 (1980).
– reference: 2) 大石充男, 大西和夫, 坂井千三: 東京都衛研年報. 34, 211-215 (1983).
– reference: 3) 矢部芳枝, 丹茂, 二宮隆博, 岡田太郎: 食衛誌. 24, 220-224 (1983).
– reference: 4) 広渡和生, 甲村善博, 熊本和夫, 服部荘寛, 青島昭三: 分析化学. 30, 534-537 (1981).
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Snippet A practical method was developed for the fractional determination of ethylenediaminetetraacetate (EDTA), Ca (II)-EDTA and Fe (III)-EDTA in canned and bottled...
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StartPage 253
SubjectTerms ANALISIS QUIMICO
ANALYSE CHIMIQUE
ANTIOXIDANTES
ANTIOXIDANTS
ANTIOXYDANT
bottled food
BOTTLED PRODUCTS
CALCIO
CALCIUM
calcium (II) ethylenediaminetetraacetate
canned food
CANNED FOODS
CHELATEUR
CHELATING AGENTS
CHEMICAL ANALYSIS
CHROMATOGRAPHIE LIQUIDE HAUTE PRESS
CONSERVAS ALIMENTICIAS
CONSERVE ALIMENTAIRE
CROMATOGRAFIA LIQUIDA ALTA PRESION
ethylenediaminetetraacetate (EDTA)
FER
HIERRO
high performance liquid chromatography
HIGH PRESSURE LIQUID CHROMATOGRAPHY
IRON
iron (III) ethylenediaminetetraacetate
PRODUCTOS EMBOTELLADOS
PRODUIT EMBOUTEILLE
QUELATOS
Title High performance liquid chromatographic determination of EDTA, calcium (II)-EDTA and iron (III)-EDTA in canned and bottled foods
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