从天然资源中提取植物化学物质的创新新兴技术

B. R. Kuber, D. Sravya, I. Theja
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摘要

由于植物化学物质如酚类、类胡萝卜素、甾醇和生物碱具有公认的健康益处,它们正变得越来越受欢迎。然而,其中一些植物化学物质可能不适合传统的提取技术。创新方法的例子包括超临界流体萃取(SFE)、微波萃取(MWE)、脉冲电场(PEF)、高压处理(HPP)、超声波萃取(UE)和欧姆加热(OH)。超临界流体萃取是研究最多的方法之一,并已在许多产品中找到商业用途。用于农产品的最常用的超临界流体是二氧化碳。另外,微波萃取技术正在发展,并且已经有了商业用途。通过使用电磁辐射快速均匀地加热基质,该技术可以产生含有大量植物化学物质和很少杂质的提取物。尽管目前人们对脉冲电场很感兴趣,它比热处理有很多好处,但它们的使用仍然局限于少数工业单位。当交流电通过基体时发生欧姆加热,热是由样品的电阻放电产生的。低频电能被证明可以促进植物化学物质的提取,因为它迅速而均匀地消散为热量。高压处理有可能改善扩散,增加传质和细胞渗透性,并保持食品质量。HPP减少了热量的负面影响,同时大大增强了质地。与传统的萃取技术相比,HPP采用高压和中等温度。随着尖端技术的结合使用,将使生产高质量的植物化学物质很少降解,植物化学物质提取的未来无疑是光明的
本文章由计算机程序翻译,如有差异,请以英文原文为准。
INNOVATIVE EMERGING TECHNOLOGIES FOR EXTRACTION OF PHYTOCHEMICALS FROM NATURAL SOURCES
Due to their established health benefits, phytochemicals such as phenolics, carotenoids, sterols, and alkaloids are becoming more and more popular. However, some of these phytochemicals may not be amenable to typical extraction techniques. Examples of innovative methods include supercritical fluid extraction (SFE), microwave extraction (MWE), pulsed electric field (PEF), highpressure processing (HPP), and ultrasonic extraction (UE), and ohmic heating (OH). Supercritical fluid extraction is one of the methods that is most often researched and has already found commercial use for number of products. The most used supercritical fluid for agricultural products is carbon dioxide. Additionally growing, and already having commercial uses, is microwave extraction. By using electromagnetic radiation to quickly and uniformly heat the matrix, this technique produces extractions with high quantities of phytochemicals and few impurities. Despite current interest in pulsed electric fields, which have several benefits over thermal treatments, their usage is still limited to a small number of industrial units. Ohmic heating occurs when alternating current is sent through the matrix, heat is produced bysample's electrical resistance discharging. Low-frequency electrical energy is demonstrated to promote the extraction of phytochemicals since it dissipates into heat quickly and uniformly. High-pressure processing has potential to improve diffusion, increase mass transfer and cell permeability, and maintain food quality. HPP reduces negative effects of heat while greatly enhancing texture. HPP employs high pressures and moderate temperatures in comparison to traditional extraction techniques. With the employment of a combination of cutting-edge technologies that will enable the production of high-quality phytochemicals with little degradation, future of phytochemical extraction is undoubtedly brigh
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