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首页> 外文期刊>Journal of Polymer Research >Esterification of pea starch with octenyl succinic anhydride using conventional and microwave irradiation method: synthesis and characterization
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Esterification of pea starch with octenyl succinic anhydride using conventional and microwave irradiation method: synthesis and characterization

机译:使用常规和微波辐射法用辛烯基琥珀酸酐与辛烯基琥珀酸酐的酯化:合成和表征

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The purpose behind this investigation was to modify native pea starch by means of the microwave-assisted and conventional method of esterification by utilizing octenyl succinic anhydride (OSA) as esterifying agent and investigation of structural as well as its functional properties. The present investigation shows the direct esterification of pea starch using OSA (esterified-starch) under alkaline conditions to activate the native pea starch and followed by terminating the esterification process of starch by maintaining acidic conditions. Starch esters, containing amphiphilic groups are well known to enhance emulsification properties, and after hydrolysis employed for encapsulation. The esterification of pea starch was confirmed by FTIR and nuclear magnetic resonance. Structural changes were confirmed by XRD, differential scanning calorimetry (DSC), scanning electron microscopy (SEM) and by molecular weight determination. Some functional properties were investigated by performing emulsification capacity, oil absorption capacity, emulsion stability, transparency, and viscosity determination. Both OSA-modified starches were compared with native pea starch. Esterification of pea starch with OSA enhanced the emulsification with an attractive scope of consistency that makes it appropriate as a divider material for encapsulation.
机译:本研究背后的目的是通过利用辛酰琥珀酸酐(OSA)作为酯化剂和结构性能的酯化剂和功能性,通过微波辅助和常规方法来改变天然豌豆淀粉。本研究表明,使用OSA(酯化淀粉)在碱性条件下使用OSA(酯化淀粉)直接酯化,以激活天然豌豆淀粉,然后通过维持酸性条件来终止淀粉的酯化过程。含有两亲基团的淀粉酯是众所周知的,可增强乳化性能,并在用于包封的水解后。通过FTIR和核磁共振确认了豌豆淀粉的酯化。通过XRD,差示扫描量热法(DSC),扫描电子显微镜(SEM)和分子量测定来确认结构变化。通过进行乳化容量,吸油能力,乳液稳定性,透明度和粘度测定来研究一些功能性。将OSA改性的淀粉两者与天然豌豆淀粉进行了比较。豌豆淀粉与OSA的酯化增强了乳化,其具有吸引力的一致性范围,使其适合作为用于封装的分隔材料。

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