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SALT-HYDROGEL MARBLES AND HOLLOW-SHELL MICROCAPSULES FOR REDUCED SALT INTAKE

机译:减少盐摄入的盐-水微丸和空心壳微胶囊

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We designed a new method for preparation of liquid marbles by using hydrophilic particles [1] (Fig. 1). Salt-hydrogel marbles were prepared by atomising droplets of hydrogel solution in a cold air column followed by rolling of the collected hydrogel microbeads in a bed of micrometre size salt particles. Evaporation of the water from the resulting salt marbles with a hydrogel core yielded hollow-shell salt microcapsules. The method is not limited to hydrophilic particles and could potentially be also applied to other materials, such as graphite, carbon, silica and others. The structure and morphology of the salt-hydrogel marbles were analysed with SEM and their particle size distributions were measured. We also tested the dissolution times of the dried salt marbles compared them to these for table salt samples at the same conditions. The high accessible surface area of the shell of salt microcrystals allows a faster initial release of salt from the hollow-shell salt capsules upon their dissolution in water than from the same amount of table salt. The results suggest that such hollow-shell particles could find applications as a table salt substitute in dry food products and salt seasoning formulations with reduced salt content without the loss of saltiness.
机译:我们设计了一种使用亲水性颗粒[1]制备液态大理石的新方法(图1)。通过在冷空气柱中雾化水凝胶溶液的液滴,然后在微米级盐颗粒床中滚动收集的水凝胶微珠,来制备盐水凝胶大理石。从具有水凝胶核的所得盐大理石中蒸发出水,得到中空壳盐微胶囊。该方法不限于亲水性颗粒,并且还可以潜在地应用于其他材料,例如石墨,碳,二氧化硅等。用SEM分析了盐-水凝胶大理石的结构和形态,并测量了其粒径分布。我们还测试了在相同条件下将干盐大理石与食用盐样品的溶解时间进行比较。盐微晶壳的高可及表面积使中空盐胶囊在溶解于水中时比同等量的食盐更快地释放出盐。结果表明,这种中空壳颗粒可以作为干食产品和食盐调味品配方中的食盐替代品,且食盐含量降低,而又不损失咸味。

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