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首页> 外文期刊>Food science and technology research >Differential Recovery of Terpene Hydrocarbons and Oxygenated Compounds from Condensates Containing Essential Oil Discharged during Concentration of Citrus Juices Using a Ceramic Membrane
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Differential Recovery of Terpene Hydrocarbons and Oxygenated Compounds from Condensates Containing Essential Oil Discharged during Concentration of Citrus Juices Using a Ceramic Membrane

机译:利用陶瓷膜从浓缩柑橘汁的过程中排出的精油冷凝物中差异回收萜烯碳氢化合物和含氧化合物

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摘要

Essential oils of citrus fruits have many uses in consumer products so that efficient methods for their isolation are needed. Membranes are often used in the separation process but a common problem is that the flux through the membranes decreases with time. In the present study we examined whether ceramic membranes might be better at maintaining the flux at acceptable levels. To test the membranes, we attempted differential recovery of nonpolar terpene hydrocarbons and aqueous oxygenated compounds from condensates produced as a by-product during the concentration of citrus juices. When zirconia membranes (ZrO_2-UF, cut-off molecular weight 50,000 and ZrO_2-MF, pore size 0.08 μm) were used, little decrease in the flux was observed during filtration. The nonpolar terpene hydrocarbons were retained while more polar oxygenated flavor compounds passed through the membrane. The percentages of alcohols, esters, and aldehydes in the permeate increased markedly compared with their percentages before filtration. When the condensate from the concentration process of citrus juice sampled from a juice factory was filtered using ZrO_2-UF, the hydrocarbons was concentrated, and a water-soluble essence consisting primarily of oxygenated compounds was obtained in the permeate.
机译:柑桔类香精油在消费产品中有许多用途,因此需要有效的分离方法。膜通常用于分离过程中,但是一个普遍的问题是通过膜的通量会随着时间的流逝而减少。在本研究中,我们研究了陶瓷膜是否可以更好地将通量保持在可接受的水平。为了测试膜,我们尝试从浓缩柑橘汁过程中作为副产物产生的冷凝物中差异回收非极性萜烯碳氢化合物和含水氧化化合物。当使用氧化锆膜(ZrO_2-UF,截留分子量为50,000和ZrO_2-MF,孔径为0.08μm)时,在过滤过程中通量几乎没有减少。保留了非极性萜烯碳氢化合物,同时更多极性的氧化风味化合物通过膜。与过滤前相比,渗透液中的醇,酯和醛的百分比显着增加。当使用ZrO_2-UF过滤从果汁厂采样的柑橘汁浓缩过程中产生的冷凝液时,将烃浓缩,并在渗透液中获得主要由含氧化合物组成的水溶性香精。

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