Simulation of the process of cryogenic freezing of coriander seeds

N. V. Sterekhova, Z. A. Meretukov, S. Y. Gonezhuk, R. G. Shishova
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Abstract

In the technology for extracting the required components from plant raw materials, in most cases, the grinding process is used as a preparatory operation before the main process, followed by the separation of the extracted material into target components.In most cases, as a result of such a process, we can talk about the effective extraction of only a single target component, while others inevitably lose their qualitative and quantitative indicators, which is due to the morphology of the plant raw material.One of the promising directions in the processes of destruction of plant material for further operations is selective disintegration. For this purpose optimal process conditions have been selected, such as heating, freezing and others. Raw materials obtained as a result of selective destruction can be effectively fractionated according to morphological and physicochemical characteristics, and only after that can be sent to subsequent operations with the greatest efficiency.Under modern conditions, the loss of essential oil in coriander associated with splitting the fruit reaches 23.4% of the oil weight in whole fruits. At the same time, the essential oil from split fruits is enriched with valuable components – linalool, geraniol, geranyl acetate and, in addition, contains less hydrocarbons and camphor. As shown in [1], oil from split fruits can be used to adjust the composition of batches of coriander essential oil in order to increase the content of linalool while simultaneously reducing the content of undesirable components – hydrocarbons and camphor, and can also be used primarily to isolate valuable components – linalool, geraniol. To reduce losses associated with splitting coriander fruits, it has been proposed to carry out mathematical modeling of the process of cryogenic freezing with subsequent grinding of the frozen mass, which will significantly reduce losses of essential oil. Considering that essential oils extracted from coriander show high antibacterial, antioxidant and antifungal activity [2], increasing the yield of high-quality coriander essential oil will allow its wider use in flavoring and food preservation, as well as for medicinal purposes, which is important and actual task.
模拟低温冷冻香菜籽的过程
在从植物原料中提取所需成分的技术中,在大多数情况下,研磨过程是作为主要过程之前的准备操作,然后将提取的材料分离成目标成分。在大多数情况下,作为这种过程的结果,我们可以说只有效提取了单一的目标成分,而其他成分不可避免地失去了其质量和数量指标,这是由于植物原料的形态造成的。为此,我们选择了最佳的工艺条件,如加热、冷冻等。通过选择性破坏获得的原材料可以根据形态和物理化学特征进行有效的分馏,然后才能以最高的效率用于后续操作。同时,从裂开的果实中提取的精油富含有价值的成分 - 芳樟醇、香叶醇、乙酸香叶酯,此外还含有较少的碳氢化合物和樟脑。如文献[1]所示,裂果油可用来调整香菜精油批次的成分,以增加芳樟醇的含量,同时减少不良成分--碳氢化合物和樟脑的含量,也可主要用于分离有价值的成分--芳樟醇、香叶醇。为了减少芫荽果实分割带来的损失,有人建议对低温冷冻过程进行数学建模,然后对冷冻块进行研磨,这将大大减少精油的损失。考虑到从芫荽中提取的精油具有很高的抗菌、抗氧化和抗真菌活性[2],提高优质芫荽精油的产量将使其在调味和食品保鲜以及药用方面得到更广泛的应用,这是一项重要而实际的任务。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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