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Technology for Triple Fortification of Salt with Folic Acid, Iron, and Iodine

机译:叶酸,铁和碘对盐进行三重强化的技术

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摘要

As many of the maternal and child health complications result from folic acid, iron, and iodine deficiencies; it makes sense to combat these simultaneously. We have developed cost-effective technology to deliver these three micronutrients simultaneously through salt. Our goal was to retain at least 70% of the micronutrients during 6 months of storage. The fortified salt was formulated by spraying a solution that contained 2% iodine and 0.5% or 1% folic acid onto salt and adding encapsulated ferrous fumarate. The formulated triple fortified salt contained 1,000 ppm iron, 50 ppm iodine, and 12.5 or 25 ppm folic acid. The spray solution and the salt were stored for 2 and 6 months respectively at 25, 35, and 45 degrees C 60 to 70% relative humidity. Even at 45 degrees C, over 70% of both iodine and folic acid were retained in the salt. The best formulation based on the color of the salt and stability of iodine and folic acid contained 12.5 ppm folic acid, 50 ppm iodine, and 1,000 ppm iron. These results indicate that iron, iodine, and folic acid can be simultaneously delivered to a vulnerable population through salt using the technology described. Also, the quality control of the process can be developed around pteroic acid that was detected as a primary degradation product of folic acid. Practical Application The technology developed is already transferred to India for industrial scale up. When fully operational, the technology will simultaneously solve iron, iodine, and folic acid deficiencies in vulnerable populations at a very low cost.
机译:由于许多母婴健康并发症是叶酸,铁和碘缺乏症引起的;同时打击它们很有意义。我们已经开发出了具有成本效益的技术,可以通过盐同时提供这三种微量营养素。我们的目标是在储存6个月期间保留至少70%的微量营养素。通过将包含2%碘和0.5%或1%叶酸的溶液喷雾到盐上并加入胶囊化的富马酸亚铁来配制强化盐。配制的三重强化盐包含1,000 ppm的铁,50 ppm的碘和12.5或25 ppm的叶酸。喷雾溶液和盐分别在25、35和45摄氏度60至70%相对湿度下存储2个月和6个月。即使在45摄氏度,盐中也保留了超过70%的碘和叶酸。基于盐的颜色以及碘和叶酸的稳定性的最佳配方包含12.5 ppm叶酸,50 ppm碘和1,000 ppm铁。这些结果表明,使用所述技术可以通过盐将铁,碘和叶酸同时传递给脆弱人群。同样,可以围绕检测到的叶酸作为叶酸的主要降解产物来开发工艺的质量控制。实际应用开发的技术已经转移到印度进行工业规模扩大。全面投入运营后,该技术将以非常低的成本同时解决脆弱人群中的铁,碘和叶酸缺乏症。

著录项

  • 来源
    《Journal of Food Science》 |2019年第9期|2499-2506|共8页
  • 作者

  • 作者单位

    Univ Toronto Dept Chem Engn & Appl Chem 200 Coll St Toronto ON M5S 3E5 Canada;

    Univ Missouri Dept Biomed Biol & Chem Engn 44 Agr Engn Bldg Columbia MO 65211 USA|Univ Missouri Dept Food Sci 44 Agr Engn Bldg Columbia MO 65211 USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    fortification; micronutrients; folic acid; anemia; spina bifida;

    机译:筑城;微量营养素;叶酸;贫血;脊柱裂;
  • 入库时间 2022-08-18 05:21:03

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