Electrostatic field as an emergent technology in refining crude oils: a review.

IF 7.3 1区 农林科学 Q1 FOOD SCIENCE & TECHNOLOGY Critical reviews in food science and nutrition Pub Date : 2024-11-01 Epub Date: 2023-08-08 DOI:10.1080/10408398.2023.2244080
Li Zhou, Timothy J Tse, Farley Chicilo, Venkatesh Meda, Martin J T Reaney
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Abstract

Vegetable oils and fatty acid esters (FAEs) are commonly used in various industrial and commercial applications. However, the presence of contaminants in these oils can severely affect their functionality and suitability. Conventional refining techniques for vegetable oils typically involve degumming, neutralization, bleaching and deodorization. Meanwhile, refining of FAEs often utilize wet or dry washing processes. These are often resource-intensive, producing substantial waste products, causing neutral oil loss, and can also result in the loss of micronutrients. To address these challenges, researchers have explored the use of nano-adsorbents and electrostatic field (E-field) technologies as alternatives in purifying industrial dielectric oils by removing polar particles and contaminants. Nano-adsorbents demonstrated increased efficiency in removing polar contamination while minimizing neutral oil loss. However, removal of these spent adsorbents can be challenging due to their nano-size, and physicochemical properties. The use of these materials combined with E-field technologies offers a novel and sustainable solution for removing spent nano-adsorbents and contaminants. This review provides an overview of current traditional and novel refining technologies for vegetable oils and FAEs, including their associated limitations. Compared to conventional methods, E-field treatment offers several advantages, making it an attractive alternative to conventional approaches in food processing and oil refining.

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静电场作为炼制原油的新兴技术:综述。
植物油和脂肪酸酯 (FAE) 常用于各种工业和商业应用中。然而,这些油中污染物的存在会严重影响其功能性和适用性。植物油的传统精炼技术通常包括脱胶、中和、漂白和除臭。同时,FAE 的精炼通常采用湿法或干法洗涤工艺。这些工艺通常是资源密集型的,会产生大量废品,造成中性油的损失,还会导致微量营养素的损失。为了应对这些挑战,研究人员探索了使用纳米吸附剂和静电场(E-field)技术作为替代方法,通过去除极性颗粒和污染物来净化工业介电油。纳米吸附剂在去除极性污染物方面表现出更高的效率,同时最大程度地减少了中性油的损失。然而,由于这些吸附剂的纳米尺寸和物理化学特性,清除这些用过的吸附剂可能具有挑战性。这些材料的使用与电场技术相结合,为清除废弃纳米吸附剂和污染物提供了一种新颖且可持续的解决方案。本综述概述了当前植物油和 FAE 的传统和新型精炼技术,包括其相关局限性。与传统方法相比,电场处理具有多项优势,使其成为食品加工和炼油领域传统方法的一种极具吸引力的替代方法。
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来源期刊
CiteScore
22.60
自引率
4.90%
发文量
600
审稿时长
7.5 months
期刊介绍: Critical Reviews in Food Science and Nutrition serves as an authoritative outlet for critical perspectives on contemporary technology, food science, and human nutrition. With a specific focus on issues of national significance, particularly for food scientists, nutritionists, and health professionals, the journal delves into nutrition, functional foods, food safety, and food science and technology. Research areas span diverse topics such as diet and disease, antioxidants, allergenicity, microbiological concerns, flavor chemistry, nutrient roles and bioavailability, pesticides, toxic chemicals and regulation, risk assessment, food safety, and emerging food products, ingredients, and technologies.
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