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利用生物加工副产品改进红花油初级提纯技术。

Improving the Technology of Primary Purification of the Safflower Oil Using Secondary Products of Processing on a Biological Basis.

作者信息

Iskakov Bauyrzhan, Kakimov Mukhtarbek, Kudelski Rafał, Mursalykova Maigul, Kassenov Amirzhan, Satayeva Zhuldyz, Kardenov Serik, Kalibekkyzy Zhanar, Mustafayeva Ayaulym, Igenbayev Aidyn, Bembenek Michał

机构信息

The Department of Food Technology and Processing Products, S. Seifullin Kazakh Agrotechnical Research University, Zhenis Avenue 62, Astana 010011, Kazakhstan.

Faculty of Mechanical Engineering and Robotics, AGH University of Science and Technology, A. Mickiewicza 30, 30-059 Krakow, Poland.

出版信息

Foods. 2023 Aug 31;12(17):3275. doi: 10.3390/foods12173275.

Abstract

Safflower oil is a very valuable product for the body and human health. It is rich in macro- and microelements, vitamins and minerals, and also has antioxidant properties. The primary purification of safflower oil is an important stage of its production and directly affects the quality of the final product and its storage ability. Purifying safflower oil using a combination of filtration and sedimentation processes in an experimental cone-shaped centrifuge is a new direction in its processing. The purpose of this study was to determine the effects of flax fiber as a filter material for safflower oil. The Akmai variety of the safflower was tested. The results showed that the quality indicators of safflower oil before and after filtration through flax fiber are different. The amount of unsaturated fatty acids such as oleic (18.31 ± 0.874%) and cis-linoleic acid (82.52 ± 1.854%) increased, as well as the content of arginine (2.1), tyrosine (0.57), methionine (0.4), cystine (2.5), tryptophan (2.6), and other amino acids (in oil g per 100 g of protein). The increase in the total amount of phenols (322.12 ± 6 mgEAG/kg of oil) was observed, which directly caused the higher antioxidant activity (42.65 ± 8%) of the safflower oil. These results demonstrate that flax fiber can enrich safflower oil. To find the optimal conditions for safflower oil centrifugation in a cone-shaped sedimentary-filtering centrifuge, the thickness of the flax fiber and the distance between the inner and outer perforated filter rotor were tested. It was found that the optimal and effective thickness of the flax fiber is 1.5 × 10 nm, while the thickness of the sediment is 0.5 × 10 nm.

摘要

红花油对人体健康而言是一种非常有价值的产品。它富含大量和微量元素、维生素及矿物质,还具有抗氧化特性。红花油的初步提纯是其生产过程中的一个重要阶段,直接影响最终产品的质量及其储存能力。在实验用锥形离心机中结合过滤和沉降过程来提纯红花油是其加工的一个新方向。本研究的目的是确定亚麻纤维作为红花油过滤材料的效果。对红花的阿克迈品种进行了测试。结果表明,通过亚麻纤维过滤前后红花油的质量指标有所不同。油酸(18.31±0.874%)和顺式亚油酸(82.52±1.854%)等不饱和脂肪酸的含量增加,精氨酸(2.1)、酪氨酸(0.57)、蛋氨酸(0.4)、胱氨酸(2.5)、色氨酸(2.6)以及其他氨基酸(每100克蛋白质中的油含量)的含量也有所增加。观察到酚类总量增加(322.12±6毫克EAG/千克油),这直接导致红花油具有更高的抗氧化活性(42.65±8%)。这些结果表明亚麻纤维可以使红花油更丰富。为了找到在锥形沉降过滤离心机中进行红花油离心的最佳条件,对亚麻纤维的厚度以及内外穿孔过滤转子之间的距离进行了测试。发现亚麻纤维的最佳有效厚度为1.5×10纳米,而沉淀物的厚度为0.5×10纳米。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0a32/10486502/49225d04b261/foods-12-03275-g001.jpg

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