基于烟叶烟碱值实现再干燥均质加工的研究与应用

IF 0.9 Q3 ENGINEERING, MULTIDISCIPLINARY
Hao Liu, Xubin Xiao, Hongguang Liu, Zhihua Li, XiaoJian He
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引用次数: 0

摘要

其主要组成部分是实际烟草粉碎和再干燥过程的制造过程。因此,它需要高水平的整体稳定性。人们应该确保维护和修理系统被适当地视为再干燥的一项重要任务。各种口味,包括黑色和绿色,都被测试用于烟草消费。根据对烟草消费进行测试的研究人员的说法,在某些情况下,茶叶中的尼古丁含量被证明是高度变化的,远远高于茄科水果中的尼古丁含量。本文描述了廉价的再干燥纯化均质化过程(IRPHP),该技术可以以更高的检出率回收粘菌素,并降低尼古丁水平,可用于食品。经过[公式:见文]均值聚类验证后,可以将一片尼古丁叶精确地分成几个区域,重新干燥全球不同地点的烟叶废气香气成分(TACs)的分布。总的来说,这些发现提供了重要的信息,有助于有效地收获和再干燥烟草植株。此外,这些数据表明,这种方法可用于确定与烟草叶片排列不同的叶片中的化学物质分布。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Research and Application of Tobacco Based on Leaf Nicotine Value to Realize Redrying Homogenization Processing
The main component is the manufacturing process of actual tobacco crushing and the redrying procedure. As a result, it requires a high level of overall stability. People should make sure the maintenance and repair system is appropriately considered as a significant task in redrying. Various flavors, including black and green, were tested for tobacco consumption. According to the researchers who tested for tobacco consumption, the amount of nicotine in tea leaves is proved to be highly varying in some cases, much higher than that found in Solanaceae fruits. Here, describing inexpensive redrying purification for homogenization process (IRPHP), with this technique, colicins can be recovered with a higher detection rate and nicotine levels can be reduced that can be used on food. After [Formula: see text]-means cluster verification, one nicotine leaf may be precisely split into several zones for redrying the distribution of exhaust tobacco aroma components (TACs) in various global locations. In general, these findings give essential information to aid in the efficient harvesting and redrying of tobacco plants. Additionally, these data imply that this approach may be used to determine the chemical distributions in leaves that do not have the same arrangement as tobacco leaves.
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来源期刊
CiteScore
1.70
自引率
25.00%
发文量
26
期刊介绍: IJRQSE is a refereed journal focusing on both the theoretical and practical aspects of reliability, quality, and safety in engineering. The journal is intended to cover a broad spectrum of issues in manufacturing, computing, software, aerospace, control, nuclear systems, power systems, communication systems, and electronics. Papers are sought in the theoretical domain as well as in such practical fields as industry and laboratory research. The journal is published quarterly, March, June, September and December. It is intended to bridge the gap between the theoretical experts and practitioners in the academic, scientific, government, and business communities.
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