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使用超临界二氧化碳从天然腰果壳液(CNSL)中分离出漆树酸。

Isolation of anacardic acid from natural cashew nut shell liquid (CNSL) using supercritical carbon dioxide.

作者信息

Philip Joseph Y N, Da Cruz Francisco José, Dey Estera S, Buchweishaija Joseph, Mkayula Lupituko L, Ye Lei

机构信息

Department of Pure and Applied Biochemistry, Lund University, Box 124, 22100 Lund, Sweden.

出版信息

J Agric Food Chem. 2008 Oct 22;56(20):9350-4. doi: 10.1021/jf801532a. Epub 2008 Sep 24.

Abstract

Solvent extracted cashew nut shell liquid (CNSL), conventionally known as natural CNSL, is a mixture of several alkenyl phenols. One of these alkenyl phenols is anacardic acid, which is present at the highest concentration. In view of anticipated industrial applications of anacardic acid, the objective of this work was to isolate anacardic acid from natural CNSL by supercritical carbon dioxide (scCO 2). In this study, the solubility data for natural CNSL in scCO 2 under a range of operating conditions of pressure (100, 200, and 300 bar), temperature (40 and 50 degrees C), and CO 2 flow rate (5, 10, and 15 g min (-1)) were established. The best scCO 2 working conditions were found to be 50 degrees C and 300 bar at a flow rate of 5 g min (-1) CO 2. Using 3 g of sample (CNSL/solid adsorbent = 1/2) under these scCO 2 conditions, it was possible to quantitatively isolate high purity anacardic acid from crude natural CNSL (82% of total anacardic acid) within 150 min. The anacardic acid isolated by scCO 2 was analyzed by different spectroscopic techniques (UV-vis, FT-IR, and (1)H NMR) and HPLC analysis, indicating that the anacardic acid isolated by scCO 2 has better quality than that obtained through a conventional method involving several chemical conversion steps.

摘要

溶剂萃取的腰果壳液(CNSL),通常称为天然CNSL,是几种烯基酚的混合物。这些烯基酚之一是漆树酸,其含量最高。鉴于漆树酸预期的工业应用,本研究的目的是通过超临界二氧化碳(scCO₂)从天然CNSL中分离出漆树酸。在本研究中,建立了天然CNSL在一系列操作条件下(压力100、200和300巴,温度40和50摄氏度,以及CO₂流速5、10和15克每分钟⁻¹)在scCO₂中的溶解度数据。发现最佳的scCO₂工作条件是在50摄氏度、300巴以及5克每分钟⁻¹的CO₂流速下。在这些scCO₂条件下使用3克样品(CNSL/固体吸附剂 = 1/2),有可能在150分钟内从粗天然CNSL中定量分离出高纯度的漆树酸(占总漆树酸的82%)。通过scCO₂分离得到的漆树酸采用不同的光谱技术(紫外可见光谱、傅里叶变换红外光谱和¹H核磁共振)以及高效液相色谱分析进行分析,结果表明通过scCO₂分离得到的漆树酸质量优于通过涉及多个化学转化步骤的传统方法获得的漆树酸。

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