Technology for Isolation Essential Oil from the Buds of Populus balsamifera L.

IF 0.5 Q4 CHEMISTRY, MULTIDISCIPLINARY Eurasian Chemico-Technological Journal Pub Date : 2024-02-15 DOI:10.18321/ectj1545
S.M. Adekenov, G. M. Baysarov, A.N. Zhabaeva, A. Sabitova, A. S. Adekenova, V. Polyakov
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Abstract

The article presents the results of the development of technology for isolating essential oil from the buds of Populus balsamifera L. and a medicinal substance based on it. For the first time, a technology has been developed for the quantitative isolation of essential oil from the buds of Populus balsamifera L. by the barothermal method at a temperature of 140 ºC, under a vacuum of 1333‒2000 Pa. The main components of the essential oil of Populus balsamifera L. buds, isolated by the barothermal method, were determined to be α-bisabolol, β-eudesmol, and 2-phenylethyl-2-methylbutanoate. A technological scheme for the production of essential oil substance from Populus balsamifera L. buds has been developed, including 2 stages of the main technological process and 2 stages of auxiliary work, and its pilot industrial regulations. The control points during the isolation and preparative production of the essential oil substance from the Populus balsamifera L. buds are the major components α-bisabolol and β-eudesmol. The main critical points in the production of a substance based on the essential oil of Populus balsamifera L. buds are pressure, temperature, and duration of isolation. The stages of production of the substance are controlled using a standard sample of α-bisabolol (1). A quantitative determination of 108 components of essential oil from Populus balsamifera L. buds was carried out, as well as standardization for organoleptic properties and major components. A comparative analysis of essential oil from Populus balsamifera L. buds collected in the vicinity of Karaganda and the North Kazakhstan region was carried out. A substance based on essential oil from Populus balsamifera L. buds has antimicrobial, wound-healing, and antitumor activities with relatively low toxicity.
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从杨树芽中分离精油的技术
文章介绍了从杨树花蕾中分离精油的技术开发成果以及以其为基础的药用物质。在 1333-2000 Pa 的真空条件下,在 140 ºC 的温度下,首次开发了用巴氏法从杨树芽中定量分离精油的技术。经测定,用巴氏热法分离出的杨梅花蕾精油的主要成分是 α-双酚、β-桉叶油醇和 2-苯基乙基-2-甲基丁酸酯。从杨树花蕾中提取精油物质的技术方案已经制定,包括 2 个阶段的主要技术过程和 2 个阶段的辅助工作,以及其试验性工业规程。从杨梅花蕾中分离和制备精油物质过程中的控制点是主要成分 α-bisabolol 和 β-桉叶油醇。以杨树花蕾精油为基础生产物质的主要关键点是压力、温度和分离时间。该物质的各生产阶段均采用标准样品 α-二羟基苯乙醇 (1) 进行控制。对杨梅花蕾精油的 108 种成分进行了定量测定,并对感官特性和主要成分进行了标准化。对在卡拉干达附近和北哈萨克斯坦地区采集的杨树花蕾精油进行了比较分析。一种基于杨树花蕾精油的物质具有抗菌、伤口愈合和抗肿瘤活性,毒性相对较低。
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来源期刊
Eurasian Chemico-Technological Journal
Eurasian Chemico-Technological Journal CHEMISTRY, MULTIDISCIPLINARY-
CiteScore
1.10
自引率
20.00%
发文量
6
审稿时长
20 weeks
期刊介绍: The journal is designed for publication of experimental and theoretical investigation results in the field of chemistry and chemical technology. Among priority fields that emphasized by chemical science are as follows: advanced materials and chemical technologies, current issues of organic synthesis and chemistry of natural compounds, physical chemistry, chemical physics, electro-photo-radiative-plasma chemistry, colloids, nanotechnologies, catalysis and surface-active materials, polymers, biochemistry.
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