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制备和表征具有高疏水性和流动性的改性淀粉颗粒。

Preparation and characterization of modified starch granules with high hydrophobicity and flowability.

机构信息

College of Food Sciences, South China University of Technology, 381 Wushan Road, Guangzhou 510640, PR China.

College of Food Sciences, South China University of Technology, 381 Wushan Road, Guangzhou 510640, PR China.

出版信息

Food Chem. 2014;152:177-83. doi: 10.1016/j.foodchem.2013.11.140. Epub 2013 Nov 28.

Abstract

Normal cornstarch (NC) was chemically modified by octenylsuccinic anhydride (OSA) and Al2(SO4)3. The effects of the concentration of NaOH, OSA, and Al2(SO4)3 on the properties of modified starch(OS-starch-Al) were investigated. The OS-starch-Al was characterized by repose angle, activation index, inductively coupled plasma-atomic emission spectrometry (ICP-OES), light microscopy, SEM, FT-IR, and (27)Al NMR. The results showed that pH 4 was the optimum condition for Al(3+) cross-linking with OS-starch and for obtaining high flowability and hydrophobicity. When the concentration of OSA and Al2(SO4)3 was 2%, the OS-starch-Al was characterized by high flowability. A concentration of 4% OSA and Al2(SO4)3 yielded the highest activation index. The moisture content affected the flowability of native NC, but had a minor effect on OS-starch-Al. SEM and polarized microscopy revealed that the modification had slight effects on the crystalline structure and morphology of NC. During the preparation, some dust particles functioning as flow additives were produced on the surface of starch granules. The results of FT-IR, ICP-OES, and (27)Al NMR confirmed the formation of ester group and the cross-link with Al(3+).

摘要

普通玉米淀粉(NC)经辛烯基琥珀酸酐(OSA)和 Al2(SO4)3 化学改性。考察了 NaOH、OSA 和 Al2(SO4)3 浓度对改性淀粉(OS-淀粉-Al)性能的影响。采用休止角、活化指数、电感耦合等离子体原子发射光谱(ICP-OES)、光显微镜、SEM、FT-IR 和(27)Al NMR 对 OS-淀粉-Al 进行了表征。结果表明,pH 4 是 Al(3+)与 OS-淀粉交联并获得高流动性和疏水性的最佳条件。当 OSA 和 Al2(SO4)3 的浓度为 2%时,OS-淀粉-Al 具有高流动性。OSA 和 Al2(SO4)3 的浓度为 4%时,活化指数最高。水分含量影响 NC 的流动性,但对 OS-淀粉-Al 的影响较小。SEM 和偏光显微镜显示,改性对 NC 的结晶结构和形态仅有轻微影响。在制备过程中,淀粉颗粒表面产生了一些作为流动添加剂的粉尘颗粒。FT-IR、ICP-OES 和(27)Al NMR 的结果证实了酯基的形成和 Al(3+)的交联。

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