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首页> 外文期刊>Food Science & Nutrition >Migration of nonylphenol and plasticizers from polyvinyl chloride stretch film into food simulants, rapeseed oil, and foods
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Migration of nonylphenol and plasticizers from polyvinyl chloride stretch film into food simulants, rapeseed oil, and foods

机译:壬基酚和增塑剂从聚氯乙烯拉伸膜迁移到食品模拟物,菜籽油和食品中

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Abstract Nonylphenol (NP) has been suspected as an endocrine-disrupting chemical. Japanese polyvinyl chloride (PVC) stretch films contained 0.5?¢????3.3 mg/g of NP and 100?¢????400 mg/g of plasticizers such as diisononyl adipate (DINA), di- n -alkyl adipate (DAA), and diacetyllauroyl glycerol (DALG). Migration of NP and plasticizers from PVC stretch films into food simulants (water; 4% acetic acid; 20%, 50%, and 95% ethanol; and heptane), rapeseed oil, and foods was investigated. Plasticizers migrated only in small amounts into aqueous simulants and foods, although they migrated at much higher levels into 50% and 95% ethanol, heptane, rapeseed oil, and fatty foods, whereas NP more easily migrated into aqueous simulants and foods. At 5???°C for 24 hr, migration of NP into vegetable and fruit was 2.9%?¢????6.4% of their contents, and that of DINA and DAA was 0.1%?¢????0.3%. The migration ratios of NP into aqueous foods were much higher than those of DINA and DAA. The migration ratio of NP into fatty foods, such as minced tuna and pork, was 33% and 24%, which was almost similar to that of DINA and DAA. The estimated daily intakes of NP and DINA for Japanese individuals of those days were 35 and 1,050 ????g, respectively, and should not be associated with any safety concerns.
机译:摘要壬基酚(NP)被怀疑是破坏内分泌的化学物质。日本的聚氯乙烯(PVC)拉伸膜含有0.5%的3.3mg / g的NP和100%的400mg / g的增塑剂,例如己二酸二异壬酯,己二酸二正烷基酯。 (DAA)和二乙酰基月桂酰甘油(DALG)。研究了NP和增塑剂从PVC拉伸膜到食品模拟物中的迁移(水; 4%乙酸; 20%,50%和95%乙醇;庚烷),菜籽油和食品。增塑剂仅少量迁移至水性模拟物和食品中,尽管它们以更高的水平迁移至50%和95%的乙醇,庚烷,菜籽油和脂肪类食品中,而NP更容易迁移至水性模拟物和食品中。在5℃下24小时,NP向蔬菜和水果中的迁移占其含量的2.9%¢ 6.4%,而DINA和DAA的迁移率为0.1%¢ 0.3%。 。 NP在水性食品中的迁移率远高于DINA和DAA。 NP在碎金枪鱼和猪肉等高脂肪食品中的迁移率分别为33%和24%,几乎与DINA和DAA相似。当时日本人每天的NP和DINA估计摄入量分别为35和1,050μg,并且不应与任何安全性相关。

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