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1.
本实验以膨化率为指标研究了酒精溶液浸泡处理对爆裂玉米微波常压与微波真空膨化的影响。实验证明:经过40%酒精溶液处理后,当真空度为93.3kPa时,爆裂玉米能够保持较好的爆花质量;爆裂玉米微波真空膨化比微波常压膨化具有较好的膨化特性。  相似文献   

2.
爆裂玉米的水分含量对其油炸膨化率和微波膨化率的影响   总被引:2,自引:0,他引:2  
研究了水分含量对黄玫瑰型爆裂玉米的两种膨化效果的影响。结果表明黄玫瑰型爆裂玉米含水量为13.85%时,油炸膨化率为最大,是19.8;含水量为13.67%时,微波膨化率为最大,是17.9。水分含量在8%~20%范围,油炸膨化率大于微波膨化率。  相似文献   

3.
爆裂玉米的化学成分对微波膨化率的影响   总被引:9,自引:0,他引:9  
通过测定黄玫瑰型3种不同产地的爆裂玉米的水分,淀粉,蛋白质含量,研究其对微波膨化效果的影响,同时对乙醇处理后的爆裂玉米的微波膨化效果,进行了初步探讨,结果表明,爆裂玉米的微波膨化率随淀粉含量的增加而提高,尤其是支链淀粉的含量;蛋白质和水分通过与淀粉之间的相互作用,影响爆裂玉米的微波膨化效果,微波膨化后,爆裂玉米的淀粉含量减少,低聚糖含量增加,蛋白质含量不变,乙醇浸渍后,可提高爆裂玉米的微波膨化率。  相似文献   

4.
爆裂玉米的微波膨化特性研究   总被引:3,自引:0,他引:3  
以爆裂玉米为原料,研究了在微波作用条件下它的微波膨化特性,探讨了不同的处理方法对其微波膨化率的影响,实验证明:爆裂玉米的水分含量大小是影响其微膨化率的主要因素之一,低浓度的食盐和乙醇溶液浸渍处理,能够提高爆裂玉米的微波膨化等。  相似文献   

5.
本实验以膨化率为指标研究了酒精溶液浸泡处理对爆裂玉米微波常压与微波真空膨化的影响。实验证明 :经过 40 %酒精溶液处理后 ,当真空度为 93 3kPa时 ,爆裂玉米能够保持较好的爆花质量 ;爆裂玉米微波真空膨化比微波常压膨化具有较好的膨化特性。  相似文献   

6.
以膨化率为指标研究了食盐对微波真空膨化爆裂玉米的影响。借助扫描电子显微镜技术对爆裂玉米经食盐溶液浸泡后胚乳细胞中淀粉粒排列的变化进行了比较 ,从而探讨了食盐产生影响的原因。实验证明 ,经过质量分数为 10 %的食盐溶液处理的爆裂玉米能够获得较好的微波真空膨化效果。  相似文献   

7.
用自行研制的微波真空装置探讨了氯化钠对爆裂型玉米微波真空膨化的影响.结果表明,爆裂型玉米的膨化率与氯化钠含量之间存在非线性关系.文章初步分析了实验现象,对微波真空膨化机理的研究方向提出了自己的看法.  相似文献   

8.
蓝莓热风-微波真空联合干燥工艺研究   总被引:1,自引:0,他引:1  
采用单因素和一次回归正交试验,对蓝莓热风-微波真空联合干燥工艺进行优化建模,研究初始水分含量、微波温度、微波功率、真空度和微波干燥时间对产品水分含量、膨化率和单位能耗的影响。试验结果表明,最佳干燥工艺参数为:初始水分含量30%~40%,微波干燥温度80℃,微波功率1.5 k W,真空度-80 k Pa,微波干燥时间4 min。根据一次回归正交试验得出微波功率和微波干燥时间对产品最终水分含量影响显著(P0.05),微波功率、真空度和微波干燥时间3个因素对单位能耗均有显著影响(P0.05),而以上3个因素对膨化率的影响不显著;同时得到微波功率、真空度和微波干燥时间与产品最终水分含量、膨化率和单位能耗的回归方程。此回归方程为蓝莓热风-微波真空联合干燥工艺提供了理论参考。  相似文献   

9.
甘薯片真空微波干燥工艺的优化   总被引:1,自引:0,他引:1  
为了获得高品质的膨化甘薯脆片,对真空微波干燥甘薯片工艺进行优化研究.在预干燥甘薯片水分含量、真空度、微波功率和加热时间对真空微波干燥甘薯片品质影响的单因素试验基础上,采用二次回归正交旋转组合设计优化真空微波干燥甘薯片的工艺条件.研究结果表明,适宜的水分含量、微波功率和加热时间可以提高甘薯片的膨化率和脆度,高真空度较利于甘薯片膨化;最佳真空微波干燥甘薯片的工艺参数组合为:预干燥甘薯片水分含量31.23%,微波功率771.38 W,微波加热时间39 s,真空度0.085 MPa.  相似文献   

10.
以鸭胸肉为对象,优化真空微波膨化鸭胸肉的最佳工艺条件。采用单因素试验考察膨化前水分含量、微波强度、微波时间和真空度对膨化鸭胸肉体积收缩率、复水比、感官评分的影响,利用响应面试验优化热风联合真空微波膨化鸭胸肉的工艺条件。结果表明:膨化前水分含量、微波强度、微波时间和真空度对膨化鸭胸肉的品质均有一定影响。在固定真空度为0.08 MPa条件下,各因素对膨化鸭胸肉体积收缩率和感官评分的影响程度大小顺序均为微波强度微波时间膨化前水分含量,通过等高线叠加法确定最佳膨化鸭胸肉加工工艺参数范围:膨化前水分含量为59%~63%,微波强度为20.5~24.7 W/g,微波时间为6.1~6.6 min。在此条件下,膨化鸭胸肉的体积收缩率可低于34%,感官评分在4.75以上,研究结果可为鸭肉膨化食品工业化生产提供理论参考。  相似文献   

11.
Studies on Popping of Popcorn in a Microwave Oven   总被引:2,自引:0,他引:2  
The popping performances of five different varieties of popcorn with moisture contents ranging from 8–18% w.b. were studied using a Litton microwave oven. Each variety was found to have different optimum moisture contents for maximum expansion volume and for minimum unpopped kernel ratio. In one variety (M-045) the expansion volume correlated with the size of the kernels. Long term frozen storage increased the popped volume in comparison with storage at room temperature. The effect of salt and oil on the popping performance of popcorn was complex. The presence of any surface damage on the kernels decreased the expansion volume significantly.  相似文献   

12.
Three popcorn genotypes, Koç Cin (composite), Nermin Cin and Ant Cin-98 (hybrid) were investigated for the effects of kernel size (4  <  D  <  5 and 5  <  D  <  6), popping methods (conventional and microwave) and moisture content (10, 12 and 14%) on popcorn quality. The relationships between physical kernel properties and popping characteristics were also researched. The Nermin Cin popcorn cultivar had the highest expansion volume, flake size and the lowest percentage of unpopped kernel values among genotypes. 5  >  D  >  6 mm kernel fraction and the conventional method produced higher popcorn quality in all popcorn cultivars. The optimum moisture levels for the highest expansion volume changed between 12 and 14% for different cultivars. The correlation coefficient between kernel properties (width, sphericity, L , a and b) and expansion volume were found significant ( P <  0.01) in microwave popping method. Color a had high direct effects on expansion volume in conventional and microwave popping methods according to path coefficient analysis. L values of popcorn cultivars negatively correlated with expansion volume in both popping methods.

PRACTICAL APPLICATIONS


Physical parameters like width, sphericity and color values were found important in predicting popping quality. Color values should be used to predict expansion volume instead of classic physical properties for ease ofmeasurement. Conventional popping method, 5 > D > 6 kernel size and 12–14% moisture content parameters should be used for optimum popcorn quality.  相似文献   

13.
The popping performance of 18 popcorn hybrids was studied using 2 microwave treatments, with and without salt, and 1 conventional method. Differences in popping quality indices between the 2 microwave treatments, indicated a negative effect of salt on popping for the majority of hybrids. Pericarp thickness, kernel volume, sphericity, diameter ratio, thousand kernel weight, hardness, and density were investigated. Pericarp thickness gave highest correlation with expansion volume in microwave and conventional popping while sphericity correlated slightly better in unsalted microwave popping. Regression models, which predict expansion volume in terms of pericarp thickness and kernel shape and size, were developed for both microwave and conventional popping.  相似文献   

14.
Response surface methodology was used to evaluate the effects of ingredients on popcorn popping characteristics. The effects of different ingredients on the expansion volume and unpopped kernel ratio of popcorn in a conventional popper and a microwave oven were evaluated and optimized by response surface methodology. The regression models were significant and had R2 value in the range of 0.919–0.956. The optimum levels of ingredients for microwave popping were 4.4% salt, 5.9% vegetable oil, 0% sodium bicarbonate and 16.4% butter, this formulation giving an expansion volume of 33.1 mL g?1. In the case of conventional popping, the maximum expansion volume of 37.3 mL g?1 was obtained for 3.5% salt, 6% vegetable oil, 0.10% sodium bicarbonate and 12.9% butter.  相似文献   

15.
Nondestructive physical property measurements, such as kernel size, sphericity, specific gravity and elastic deformation were evaluated as indicators of the popping characteristics of microwave popcorn. A greater expansion volume was observed in varieties having sphericity values greater than 0.70. Within a given variety, larger kernel sizes resulted in a lower unpopped kernel ratio and the expansion volume and flake size were higher for kernels with a higher specific gravity. The elastic deformation was found to have no correlation with microwave popping.  相似文献   

16.
Previous studies have shown that popping volume of popcorn is affected by water content, and that popping volume increases with an increase in water content up to an optimal value, and then the volume decreases with any additional moisture. The aim of this study was to explore the mechanism responsible for the peak in popping volume as a function of water content. Popcorn was equilibrated to various water contents from 6.7 to 16.5 g/100 g d.b. over salt solutions (aw0.33-0.82), and popped by an air popper. Maximal popping volume occurred at a water content of 15.5 g/100 g d.b. (aw=0.745 at room temperature) while the popping temperature dropped with increasing water content. Thermal analysis of the popcorn by DSC showed no significant effect of the moisture on the melting temperature orTg of the unpopped endosperm. However, the decrease of the pericarp melting temperature correlated with an increased water content. The results suggest that elevated water contents cause a rubbery collapse of the pericarp at lower temperature. The temperature of this melting event decreases by ∼7 °C over the 6-16.5 g/100 g moisture range. Thus, as the water content increases, the pressure in the kernel at the popping moment is lower, causing less expansion and lower final popped volume.  相似文献   

17.
不同油爆条件对不同类型爆裂玉米爆花特性影响   总被引:1,自引:0,他引:1  
为研究不同油爆条件对不同类型爆裂玉米爆花特性影响,选取蝶型和球型两类爆裂玉米,分析不同加油量和处理温度对其特性的影响。研究表明,对于膨爆倍数,加油量和处理温度对不同类型爆裂玉米的影响不显著,而膨爆倍数在40%~50%的加油量时为最佳,等体积下的蝶型需油量更多,蝶型的适宜处理温度低于球型。爆花温度受加油量影响明显且呈显著正相关,而处理温度影响不明显,不同加油量和处理温度下,蝶型平均爆花温度高于球型。爆花起始和总时间受加油量影响并呈显著负相关,处理温度影响不显著,但随处理温度增加呈下降趋势。由此可见,油爆时爆花温度和时间主要受加油量影响,而蝶型和球型爆裂玉米适宜处理温度不同。  相似文献   

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