Thabet Omar A, Alenzi Fahad K, Alshubramy Maha A, Alamry Khalid A, Hussein Mahmoud A, Hoogenboom Richard
Department of Chemistry, Faculty of Science, King Abdulaziz University Jeddah 21589 Saudi Arabia
Saudi Food and Drug Authority Jeddah 22311 Saudi Arabia.
RSC Adv. 2024 Jan 12;14(4):2491-2503. doi: 10.1039/d3ra07442k. eCollection 2024 Jan 10.
Hydrophobic alginic acid derivatives were synthesized with various aliphatic hydrocarbon chains for fat removal in an analysis of multi-pesticide residues in a fatty food sample. First, alginic acid was chemically modified using eco-friendly ultrasound-assisted esterification with different alcohols, namely, hydrophobic alginic acid-methanol (HAA-C1), hydrophobic alginic acid-butanol (HAA-C4), and hydrophobic alginic acid-octadecanol (HAA-C18). The degree of esterification (DE) was determined by titration, and the results ranged from 57.3% to 63.7%. The physicochemical properties of the synthesized hydrophobic alginic acids (HAAs) were studied using FT-IR, XRD, TGA, and FE-SEM. Subsequently, the performance of the HAAs was checked and evaluated for the removal of fat from a fatty food sample by calculating the fat removal percentage and the determination of 214 pesticide residues in the fatty food sample. For the fat removal percentage application, the HAAs were able to efficiently remove between 77% and 83% of the fat; HAA-C18 had the highest percentage. Regarding the pesticide residue application, HAAs were also able to remove the fat content from the fatty food sample without a significant effect on the pesticide substances. The recoveries of the detected pesticide compounds were between 80% and 120% for all HAAs. However, there were various missing pesticide compounds for HAAs. The number of missing pesticide compounds was 19, 6, and 33 for HAA-C1, HAA-C4, and HAA-C18, respectively. HAA-C4 had medium hydrophobicity and it lost fewer pesticides than the other HAAs. This was because the multi-pesticide mixture had various classes of chemical structure; hence, it had different polarity powers. We concluded that HAAs are developable and applicable to be safely used as a green material in diverse fatty food sample analysis applications.
合成了带有不同脂肪烃链的疏水性海藻酸衍生物,用于在分析高脂肪食品样品中的多种农药残留时去除脂肪。首先,使用环保的超声辅助酯化法,用不同的醇对海藻酸进行化学改性,即疏水性海藻酸 - 甲醇(HAA - C1)、疏水性海藻酸 - 丁醇(HAA - C4)和疏水性海藻酸 - 十八醇(HAA - C18)。通过滴定法测定酯化度(DE),结果在57.3%至63.7%之间。使用傅里叶变换红外光谱(FT - IR)、X射线衍射(XRD)、热重分析(TGA)和场发射扫描电子显微镜(FE - SEM)研究了合成的疏水性海藻酸(HAA)的物理化学性质。随后,通过计算脂肪去除率并测定高脂肪食品样品中的214种农药残留量,对HAA去除高脂肪食品样品中脂肪的性能进行了检查和评估。在脂肪去除率应用方面,HAA能够有效去除77%至83%的脂肪;HAA - C18的去除率最高。在农药残留应用方面,HAA还能够去除高脂肪食品样品中的脂肪含量而对农药物质没有显著影响。所有HAA对检测到的农药化合物的回收率在80%至120%之间。然而,HAA存在各种未检出的农药化合物情况。HAA - C1、HAA - C4和HAA - C18未检出的农药化合物数量分别为19种、6种和33种。HAA - C4具有中等疏水性,其损失的农药比其他HAA少。这是因为多农药混合物具有多种化学结构类别;因此,其具有不同的极性。我们得出结论,HAA是可开发的,适用于安全地用作各种高脂肪食品样品分析应用中的绿色材料。