共查询到17条相似文献,搜索用时 109 毫秒
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报道了水分散体系高温溶胀、常温碱分散体系强碱溶胀作用非晶颗粒态马铃薯淀粉的制备方法 ,采用偏光显微镜对多晶态向非晶态的变化进行了确认 ,提出在一定条件下 ,高交联马铃薯淀粉 ,可以由原淀粉多晶颗粒态制备成只含无定形结构的非晶颗粒态淀粉 相似文献
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辛烯基琥珀酸马铃薯淀粉酯在冰淇淋中的应用研究 总被引:1,自引:0,他引:1
将辛烯基琥珀酸马铃薯淀粉酯作为脂肪替代品代替配方中的奶油,进行了冰淇淋的制备试验。结果表明,冰淇淋配方为奶粉14%、白砂糖13%、蛋黄2%和复合稳定剂0.2%时,添加3.0%(w/w)该淀粉酯的无奶油冰淇淋制品其融化率下降、膨胀率提高,口感更加清凉、细滑;其它不同替代程度的低脂冰淇淋制品品质也较优良,整体品质明显优于添加3.0%(w/w)马铃薯原淀粉作为脂肪替代品制得的冰淇淋制品。结论为高黏度辛烯基琥珀酸马铃薯淀粉酯可以作为脂肪替代品部分或全部代替冰淇淋配方中的奶油,但相应冰淇淋的硬度略有增加。 相似文献
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使用正交试验法优化马铃薯氧化淀粉制备工艺,以马铃薯淀粉为原料,FeSO4为催化剂,H2O2为氧化剂干法制备氧化淀粉,并以羧基含量为评价指标,分别考察反应时间、反应温度、氧化剂用量、催化剂用量、体系含水量等因素对马铃薯淀粉氧化反应影响。得到最优工艺条件为:反应时间3.5h、反应温度60℃、FeSO4在淀粉中质量分数0.025%、H2O2与淀粉摩尔比0.285、反应体系含水量24.000%,在此条件下制得马铃薯氧化淀粉羧基含量为0.530%。 相似文献
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采用马铃薯淀粉为原料,FeSO4为催化剂,H2O2为氧化剂干法制备氧化淀粉,对氧化淀粉溶解度及其糊的表观粘度、透明度、冻融稳定性、凝沉性等性质进行研究。结果表明,与原淀粉相比,马铃薯氧化淀粉溶解度、透明度增大,表观粘度降低,冻融稳定性增强,凝沉性减弱;并对氧化淀粉结构进行表征。 相似文献
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采用主成分分法(PCA)分析了3种马铃薯变性淀粉对马铃薯-小麦混粉糊化特性的影响,将配粉糊化得分与变性淀粉种类和添加量进行了回归拟合,采用方程模型预测配粉制备的马铃薯面条的蒸煮品质。结果表明:3种马铃薯变性淀粉对混粉糊化的峰值黏度、崩解值、恒温阶段开始黏度和糊化温度的影响较大。且羟丙基淀粉对峰值黏度、恒温阶段开始黏度和崩解值影响的差异显著(p<0.05),醋酸酯淀粉和氧化淀粉对崩解值影响的差异显著(p<0.05)。采用回归方程预测配粉加工后马铃薯面条的蒸煮特性,当配粉糊化规范性综合得分>0.95时,制备的马铃薯面条蒸煮指标均能达到质量要求。 相似文献
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The physicochemical properties of small, medium and large starch granules separated from four potato cultivars were investigated to reveal whether functional properties differed among the various size classes of the starches. Large‐size fractions showed higher amylose content and light transmittance and lower swelling power than small‐size fractions. The granules from the three fractions had diameters of 5–20, 25–40 and 40–85 µm respectively. The large and medium granules were ellipsoidal to irregular or cuboidal while the small granules were spherical or ellipsoidal in shape. The transition temperatures and gelatinisation temperature range of the fractionated starches increased while the enthalpy of gelatinisation decreased with decreasing granule size. Rheological parameters such as peak storage (G′) and loss (G″) moduli increased in the order small‐, medium‐ and large‐granule starches when subjected to temperature sweep testing. The breakdown in peak G′ during the heating cycle and retrogradation during storage were found to be highest for large‐ and lowest for small‐size fractions. The differences in functional properties among the different size fractions suggested that the granule size distribution is an important parameter that can influence the behaviour of potato starch during processing. Copyright © 2004 Society of Chemical Industry 相似文献