首页 | 本学科首页   官方微博 | 高级检索  
相似文献
 共查询到20条相似文献,搜索用时 859 毫秒
1.
为了解食品添加剂时南阳彩色小麦淀粉糊特性的影响,采用Brabender黏度仪,测定南阳彩色小麦淀粉在添加不同碱面、明矾、食盐和葡萄糖后的黏度曲线.研究了这些因素对小麦淀粉糊化特性的影响.结果表明,四种添加剂均使淀粉的糊化温度升高.随着碱面和明矾浓度的增加,淀粉糊的峰值黏度、最终黏度、消减值、回生值显著降低,崩解值显著升高,淀粉糊的热稳定性降低,凝胶性和凝沉性减弱;而葡萄糖和食盐的加入使淀粉的消减值、回生值和最终黏度升高,增强了淀粉糊的凝胶性和凝沉性.总体来看,碱面和明矾对南阳彩色小麦淀粉糊化特性的影响较大,葡萄糖和食盐的影响较小.碱面、明矾、葡萄糖和食盐的适宜添加量分别为0.4%、0.5 %、5.0%和2.0%.  相似文献   

2.
从淀粉的颗粒特性、淀粉糊特性及淀粉糊化后的成膜特性等方面对干热变性莲子淀粉特性进行系统的研究,以期为干热变性莲子淀粉的进一步研究开发利用提供理论基础。结果表明:添加海藻酸钠对莲子淀粉干热处理后,淀粉颗粒多数呈椭圆形,少部分淀粉颗粒表面有细微裂纹,颗粒彼此粘连,淀粉颗粒表面有粘连物;溶解度升高,膨胀度降低,淀粉糊透明度降低。干热变性处理对提高莲子淀粉糊冻融稳定性的作用不明显;布拉班德黏度曲线显示,添加海藻酸钠进行干热变性后莲子淀粉起糊温度明显降低,终值黏度降低,热稳定性降低,冷稳定性增强,凝沉性减弱。添加海藻酸钠进行干热变性可以提高莲子淀粉膜的机械性能和阻水性,降低膜的溶解度。  相似文献   

3.
以辛烯基琥珀酸淀粉钠和麦芽糊精为壁材,香草兰精油为芯材,通过喷雾干燥的方式制备香草兰精油微胶囊。5种单因素实验结果表明:壁芯比、均质压力、固形物质量分数对包埋产率具有显著影响。通过响应面实验设计得到最佳制备香草兰精油微胶囊的工艺条件为壁芯质量比4∶1、均值压力20 MPa、固形物质量分数40%,该条件下包埋产率为(97.21±0.3)%,包埋率为(89.16±1.2)%。100℃加热30 h后,微胶囊的挥发率为22.12%,结果表明微胶囊能够显著降低精油的挥发速率。  相似文献   

4.
为了解淀粉脂类复合物对南阳彩色小麦淀粉糊流变特性的影响,利用黏度分析仪测定了月桂酸、豆蔻酸、棕榈酸和硬脂酸与小麦淀粉结合形成复合物后淀粉糊的流变特性。结果表明,分别将1.0%、2.0%和3.0%的脂肪酸添加到蓝色小麦淀粉中,在95℃下分别蒸煮5、10和15 min,复合指数随蒸煮时间的延长和脂肪酸用量的增加而提高,随脂肪酸碳链的增加而降低;黏度系数随复合物的增加而增加,而流变指数则随复合物的增加而降低;在四种脂肪酸中,月桂酸与淀粉形成复合物的能力最强,对小麦淀粉的流变特性影响最大;添加月桂酸2%、蒸煮10 min形成的复合物最好。  相似文献   

5.
不同裸燕麦品种的淀粉特性   总被引:4,自引:1,他引:3  
为给燕麦淀粉的应用以及适宜加工品种的筛选提供依据,从国内主栽燕麦中选取10个品种的11个样品(其中坝莜1号有河北和山西产两种样品)作为供试材料,通过湿法提取燕麦淀粉,并对其组成、黏度及凝胶特性进行了对比分析.结果显示,不同裸燕麦品种的总淀粉含量和直链淀粉含量变幅分别为91.06%~95.98%和21.06%~31.26%,品种间总淀粉变异较小,而直链淀粉变异较大.淀粉糊化特征中,样品间淀粉糊化温度变异最小,平均为82.0℃,反映淀粉糊热稳定性的破损值差异最大(变异系数23.8%).在淀粉的凝胶特性指标中,黏附性差异最为显著(变幅0.00~139.89 g·s),其次为硬度(9.87~43.76 g),弹性、黏聚性差别不显著.11个材料中,坝莜1号(河北产)淀粉糊黏度大.热稳定性好;晋八属于易回生、强凝胶型.  相似文献   

6.
糯小麦与酿酒谷物黏度特性的比较   总被引:2,自引:0,他引:2  
为明确糯小麦与其他酿酒谷物糊化特性的差异,为糯小麦在白酒酿造中的应用提供参考依据,比较分析了CD糯麦-2、普通小麦、糯米、高粱和玉米籽粒的淀粉RVA黏度特性。结果表明,不同作物的糊化特性有很大的差异,高梁的峰值黏度最高,糯小麦次之,玉米最低,普通小麦比糯米高,但二者差异较小;到达峰值黏度的时间为5.2~11.2 min,其中糯米糊化最快,糯小麦与糯米接近,比普通小麦快近2 min,普通小麦与高粱相近,玉米最慢;到达峰值黏度的温度为67.2~92.2℃,其中糯小麦和糯米低,分别为70.3℃和67.2℃,普通小麦和高粱分别为84.6℃和83.1℃,玉米则高达92.2℃,糯小麦比普通小麦低约14.3℃。糯小麦配粉能改变谷物的黏度特性,对糊化温度和糊化时间的影响小于对峰值黏度的影响,从不同作物考虑,糯小麦配粉对糯米的黏度特性影响相对较小。结果显示,糯小麦像糯米一样直链淀粉含量极低,其淀粉易糊化,糊化温度低,耗能少;向其他谷物中添加糯小麦可改变其淀粉黏度特性;糯小麦具有代替其他谷物酿造新型风味白酒的潜在优势。  相似文献   

7.
淀粉的糊化温度是稻米淀粉品质的重要指标,决定淀粉在食品及工业上的用途,也与食用稻米的蒸煮品质密切相关。淀粉的糊化温度可以用淀粉谱仪(如快速淀粉黏滞性测定仪,Rapid Visco analyser,RVA)间接测定,但用淀粉谱仪测定的是淀粉的成糊温度(pasting temperature,PT),它是指淀粉黏度刚开始升高时的温度。在许多情况下,从RVA配套软件 Thermocline for Windows中测定的PT是过高的。提出了两种能够用RVA较准确测定成糊温度的方法。一种是改变参数设置来“筛选”出能反映真正成糊温度的点;另一种是手工记录下淀粉黏度刚开始升高时的时间,利用公式(45/3.8)×(T1-1)+50 计算出稻米的成糊温度。利用手工计算出的成糊温度与通过差示扫描量热仪测定的最高糊化温度呈极显著正相关(r=0.97)。  相似文献   

8.
为明确小麦淀粉品质与生态条件、氮肥运筹及其互作的关系,在四川生态条件差异较大的仁寿(丘陵麦区)、广汉(平原麦区)、西昌(山地麦区)3个生态点,通过二因素随机区组试验,研究了两个施氮量(120、180kg·hm-2)、3种施肥方式(底肥一道清;底肥∶苗肥=7∶3;底肥∶拔节肥=6∶4)对四川主推小麦品种川麦104淀粉RVA谱特征参数的影响。结果表明,生态条件对小麦淀粉RVA谱特征参数有极显著的主效应;120kg·hm-2施氮量下小麦淀粉崩解值显著高于对照(不施肥)和180kg·hm-2施氮处理;底肥∶拔节肥=6∶4处理显著提高了淀粉最终黏度。生态点×施氮量的互作对淀粉的高峰黏度、低谷黏度和最终黏度影响极显著,生态点×施氮量×施肥方式的互作对淀粉的最终黏度影响极显著。小麦淀粉RVA谱特征参数基本与海拔和生育期总降水量负相关,与生育期积温正相关,但孕穗-开花期较低的日平均温度和适度的降水对形成优质淀粉有利。不同生态点比较,小麦淀粉RVA谱特征参数均以广汉点最大,仁寿次之,西昌最小。广汉点小麦的淀粉品质较好,更适合于面条加工;仁寿点在120kg·hm-2施氮量下淀粉品质较优。  相似文献   

9.
为确定快速粘度计(rapid visco analyzer, RVA)制备菠萝蜜淀粉-椰子油复合物的最佳工艺条件,探讨椰子油添加量、复合时间、复合温度3个因素对菠萝蜜淀粉-椰子油复合物的复合指数的影响。在此基础上,利用Box-Benhnken响应面法优化RVA制备菠萝蜜淀粉-椰子油复合物的工艺条件。此外,对比了菠萝蜜淀粉和复合物的糊化特性、膨胀力和溶解性。结果表明,菠萝蜜淀粉-椰子油复合物的最佳制备条件参数为:椰子油添加量为4%,复合时间为2.40 min,复合温度为90.70℃。在最佳条件下,菠萝蜜淀粉-椰子油复合物的复合指数理论值为24.64%,实际验证值为24.33%,拟合模型预测值与实际验证结果吻合。复合物的糊化温度、峰值黏度和谷值黏度高于原淀粉,而最终黏度和回生值有所下降,说明复合物的热稳定性提高;复合物的形成阻止了淀粉膨胀,导致膨胀力和溶解度相较原淀粉明显降低。  相似文献   

10.
为探明氮肥对小麦籽粒淀粉组分和理化特性的影响,采用田间试验,分析了4个施氮量(0、100、200、300kg·hm~(-2))对糯小麦(农大糯50222)和非糯小麦(轮选987)籽粒淀粉组分与理化特性的影响。结果表明,随施氮量的增加,小麦籽粒淀粉含量降低,轮选987籽粒中B型淀粉粒的数目占比增加,而农大糯50222籽粒的B型淀粉粒数目占比呈减少趋势;增施氮肥能显著提高小麦籽粒淀粉的峰值黏度和谷值黏度。相同施氮量处理下,轮选987淀粉的被测糊化特征参数(除谷值黏度外)均大于农大糯50222。施氮量不同,2个品种籽粒淀粉X-衍射图谱中各峰的位置和相对强度明显不同。随施氮量的增加,轮选987淀粉的相对结晶度增大,而农大糯50222淀粉的相对结晶度减小。相关分析表明,小麦籽粒的直链淀粉含量和直支比与最终黏度、稀澥值、反弹值、糊化温度和峰值时间呈显著正相关,与谷值黏度和相对结晶度呈显著负相关;支链淀粉含量反之。小麦籽粒的B型淀粉粒数目占比与峰值黏度、稀澥值呈显著负相关。综上所述,施氮量可影响小麦籽粒的淀粉含量和粒度分布,进而改变其糊化特性和晶体特征。  相似文献   

11.
Starch was isolated from breadfruit (Artocarpus artilis). It was further modified by oxidation, acetylation, heat–moisture-treatment and annealing. The functional properties of native and modified starches were then studied. Proximate analysis revealed that following modifications, the annealed (BANS), oxidised (BOS) and acetylated (BACS) starches retained higher moisture content compared to native starch (BNS), while heat–moisture treated starch (BHMTS) had lower moisture content. Crude fibre was reduced by following modifications, except that BNS and BANS had the same value (0.42%). Protein and fat contents were also reduced after modifications. Acetylation, oxidation and heat–moisture-treatment improved the swelling power of the native starch. The result indicates that all forms of modification reduced the solubility of native breadfruit starch. For all the starches, replacing the wheat flour by the starch resulted in increased alkaline water retention of the blends. Gelation studies revealed that native breadfruit starch is a better gelating food material than the modified derivatives. All forms of modification reduced pasting temperature, peak viscosity, hot paste viscosity and cold paste viscosity of the native starch, except that heat–moisture-treatment increased the pasting temperature. Setback value reduced after modifications, indicating that modifications would minimize starch retrogradation.  相似文献   

12.
Vital wheat gluten and lecithin (GL) (50:50, w/w) were dry blended in a coffee grinder and a 9.5% (w/v) aqueous slurry was jet-cooked (steam pressures of 65 psi/g inlet and 40 psi/g outlet) to disaggregate wheat gluten and facilitate better dispersion of the two components. The jet-cooked material was freeze-dried and stored at 0 °C for future use. The GL blend was added to pure food grade common maize and rice starch at concentrations of 0 (control), 6, 11, 16, and 21%. Starch gelatinization and retrogradation temperature transitions were determined using Differential Scanning Calorimetry (DSC). From the DSC profiles, the change in the ΔH value was used as an indication of starch retrogradation, where a higher ΔH value indicated higher retrogradation. The ΔH values of the blends at 4 °C had higher values than the −20 °C and the ambient (25 °C) storage temperatures. Overall, the 21% GL/starch blends reduced retrogradation by 50%. The lower amylose content of rice starch relative to maize starch was reflected in Rapid Visco Amylograph (RVA) measurements of peak viscosity, and similarly, Texture Analyzer (TA) measurements indicated that maize starch gel is firmer than rice starch gel. Retrogradation was also evaluated by observing G′, the shear storage modulus, as a function of time after running a standard pasting curve. Using this method, it appears that GL has a significant effect on maize starch retrogradation, since low concentrations (<0.4%, w/w) reduced G′ up to 40%. The opposite behavior was seen in rice starch, where G′ increased directly with added GL. It appears that the amylose level in the rice starch is too low to be affected by the GL, and the increase seen in G′ is most likely due to added solids.  相似文献   

13.
以锥栗淀粉为原料,采用酶法研究不同贮藏温度和pH对锥栗淀粉糊回生的影响。结果表明:锥栗淀粉糊在贮藏温度4℃时易回生,1 d后的淀粉糊回生率已达9.76%;pH为5和7时,锥栗淀粉糊易回生,pH为3和9时锥栗淀粉糊回生延缓。  相似文献   

14.
月桂酸对小麦淀粉凝胶回生特性的影响   总被引:1,自引:0,他引:1  
为了解月桂酸对小麦淀粉凝胶回生特性的影响,利用X射线衍射仪和差示扫描量热仪研究了月桂酸对小麦淀粉凝胶晶体结构和热特性的影响。结果表明,月桂酸与小麦淀粉结合形成了月桂酸-淀粉复合物。在短期回生过程中,淀粉含有V-型结晶结构和B-型结晶结构,淀粉凝胶中直链淀粉分子特征衍射峰减弱,月桂酸-淀粉复合物衍射峰增强;短期回生淀粉含有直链淀粉重结晶的熔融峰和淀粉-脂肪酸复合物的熔融峰,月桂酸-淀粉复合物熔融焓显著小于淀粉凝胶熔融焓;月桂酸对淀粉短期回生的抑制作用主要是对直链淀粉重结晶的抑制。长期回生过程中,随贮藏时间延长,支链淀粉分子发生了重结晶,淀粉凝胶的结晶度从15.37%增大至18.75%,而月桂酸-淀粉复合物结晶度从10.36%增大至13.23%;回生淀粉中支链淀粉重结晶的熔融焓增大,复合物重结晶的熔融焓减少。说明月桂酸与淀粉形成复合物能抑制小麦淀粉的短期回生和长期回生。  相似文献   

15.
The objective of this research was to survey the effects of starch quaternization and sulfosuccinylation on the adhesion of cold starch paste to raw cotton fibers for cotton warp sizing at low temperature. Acid-thinned cornstarch (ATS) was quaternized and then sulfosuccinylated to introduce 3-(trimethylammonium chloride)-2-hydroxypropyl and sulfosuccinate substituents onto its backbones. The electroneutrality of starch samples prepared was achieved by maintaining a constant mole ratio (5.3:1) of the two substituents. A series of electroneutral cornstarch (ECS) samples with different levels of the substituents were derived by altering the feed ratio of the modifying reagents to starch for determining desirable level of starch modification. Adverse influences of cotton wax and starch retrogradation on the adhesion of cold starch paste to raw cotton fibers were evaluated to illustrate the effectiveness of starch quaternization and sulfosuccinylation. It was found that the modification was able to alleviate the adverse influence of starch retrogradation and ameliorate the adhesion to the fibers at low temperature. Higher level of the modification led to less retrogradation and resulted in strong adhesion. Furthermore, the adverse influence of cotton wax on the adhesion could be eliminated after a pre-wetting treatment of raw cotton warps with hot water. The adhesion of ECS paste to raw cotton at 60 °C was statically the same as that of ATS at 95 °C when total DS of ECS was 0.0443 or higher.  相似文献   

16.
Reduced glutathione (GSH) commonly exists in wheat flour and has remarkable influence on gluten properties. In this study, effect of GSH on the gelatinization and retrogradation of wheat flour and wheat starch were investigated to better understand the GSH-gluten-starch interactions in wheat flour. Compared with wheat starch, wheat flour showed significant decreases in peak and final viscosity, and gelatinization onset temperature with increasing GSH concentration. GSH depolymerized gluten and thereby broke down the protein barrier around starch granules to make the starch easily gelatinized. However, the interaction between GSH and wheat starch restrained starch swelling. GSH addition resulted in weakened structure with higher water mobility in freshly gelatinized wheat flour dispersions but decreased water mobility in wheat starch dispersions. After storage at 4 °C for 7 d, GSH increased elasticity and retrogradation degree in wheat flour dispersions but retarded retrogradation in wheat starch dispersions. The results indicated that GSH promoted retrogradation of wheat flour, which mainly attributed to the depolymerized gluten embedding in the leached starch chains, and inhibiting the re-association of amylose, and subsequently promoted the starch intermolecular associations and starch retrogradation. This study could provide valuable information for the control of the quality of wheat flour-based products.  相似文献   

17.
Waxy maize (a standard starch of normal granule size) and five small granule starches from different botanical sources (rice, wheat B type, oat, quinoa and amaranth) were subjected to 2-octenyl-1-succinic anhydride (OSA) modification. Changes of pasting, gel texture, thermal and rheological properties were investigated. Different small granule starches showed quite different property changes after OSA modification. Pasting viscosity was generally increased in OSA starches, among which OSA oat starch had notably high peak and breakdown viscosity but low setback viscosity. Gel hardness of rice, wheat B type, oat and quinoa starches was reduced by OSA treatment, whereas that of waxy maize and amaranth starches was increased. Amylose content was considered to be the major factor influencing pasting, gel and thermal property of OSA starches. Esterification increased pseudoplastic flow behavior of all starches, while OSA oat starch uniquely had reduced flow consistency coefficient. The dynamic rheological properties were also changed differentially among OSA starches. Viscoelastic properties of rice, wheat B type, oat and quinoa starches were increased after OSA treatment, whereas those of waxy maize and amaranth starches were decreased. This study showed that diverse functionalities from OSA small granule starches may fulfil different demands in product development.  相似文献   

18.
Quality characteristics of northern-style Chinese steamed bread (CSB) prepared from two soft red winter (SRW) wheat flours blended with 0–30% waxy wheat flour (WWF) were analyzed to estimate the influence of starch amylose content. The increased proportion of WWF in blends raised mixograph absorption with insignificant changes in protein content and dough strength-related parameters. WWF incorporation generally increased specific volume and crumb softness of CSB. The analysis of covariance revealed that CSB quality attributes were little affected by protein content and dough strength-related parameters, indicating that starch amylose content was largely responsible for the changes in CSB quality. Flour blends with 5–10% WWF, of which starch amylose content was 22.4–24.7%, produced CSB with superior crumb structure compared to other blends, but insignificant changes in surface smoothness, stress relaxation and total score compared to the respective control wheat flours. Flour blends with 15% WWF to produce a starch amylose content of 21.4–22.7% exhibited reduced staling of CSB with total scores comparable to the respective control wheat flours. CSB prepared from blends with more than 10% WWF exhibited a higher soluble starch content, indicative of reduced starch retrogradation, than that prepared from wheat flours without WWF during storage for 3 days.  相似文献   

19.
Gelatinisation and retrogradation of starch in wheat flour systems and whole wheat grains were studied using DSC and the impact of these events on starch digestibility was investigated. Gelatinisation of starch was possible in wheat flours with more than 60% moisture content (dwb) and gelatinised samples had higher digestibility values. Retrogradation of starch was studied with partially and fully cooked (boiled at 100 °C for 12 min and 32 min, respectively) wheat grains that were subjected to storage at 22 °C for 48 h. Stored samples had lower digestibility values when compared to the freshly cooked counterparts. The effect of moisture on retrogradation was studied with fully cooked wheat grains that were dried to a range of moisture contents (14.6–35.9%, wwb) and stored at 20 °C for 24 h. Retrogradation enthalpy increased with increasing moisture content; however, digestibility values did not reflect the changes in retrogradation enthalpy. The possibility of estimating the degree of retrogradation in fully cooked grains (32 min cooking) was investigated using a wheat flour-water system. The retrogradation enthalpy of fully cooked grains was slightly higher than the wheat flour-water system (at a moisture content of 49%, wwb) during the course of storage at 22 °C.  相似文献   

20.
Gelatinisation and retrogradation of starch in wheat flour systems and whole wheat grains were studied using DSC and the impact of these events on starch digestibility was investigated. Gelatinisation of starch was possible in wheat flours with more than 60% moisture content (dwb) and gelatinised samples had higher digestibility values. Retrogradation of starch was studied with partially and fully cooked (boiled at 100 °C for 12 min and 32 min, respectively) wheat grains that were subjected to storage at 22 °C for 48 h. Stored samples had lower digestibility values when compared to the freshly cooked counterparts. The effect of moisture on retrogradation was studied with fully cooked wheat grains that were dried to a range of moisture contents (14.6–35.9%, wwb) and stored at 20 °C for 24 h. Retrogradation enthalpy increased with increasing moisture content; however, digestibility values did not reflect the changes in retrogradation enthalpy. The possibility of estimating the degree of retrogradation in fully cooked grains (32 min cooking) was investigated using a wheat flour-water system. The retrogradation enthalpy of fully cooked grains was slightly higher than the wheat flour-water system (at a moisture content of 49%, wwb) during the course of storage at 22 °C.  相似文献   

设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号