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1.
超高压处理对多酚氧化酶活性的影响   总被引:20,自引:1,他引:19       下载免费PDF全文
 研究了超高压中温协同处理对砀山梨汁中多酚氧化酶活性的影响,实验压力为0.1~500 MPa,温度为20~60 ℃。此外,考察了不同pH值(3~7)和保压时间(2~34 min)超高压处理对酶活性的影响。实验结果分析表明:在处理温度为50 ℃、保压时间为10 min和梨汁pH值为5的条件下,200~300 MPa处理梨汁时多酚氧化酶被激活,活性表现最高;500 MPa时酶的活性下降到75.3%。协同温度为30 ℃处理梨汁时,酶的活性反而增大;30 ℃以后,酶活性随温度升高而迅速降低;有效协同高压处理的温度为40 ℃。随着保压时间的延长,梨汁中过氧化物酶的活性减小;18 min以前下降速度较快些,之后下降速度变缓。pH在5~6之间,酶的残留活性最大;pH值为6时,梨汁中多酚氧化酶最为耐压。  相似文献   

2.
 为了研究超高压与酶抑制剂联合处理对荔枝果肉中过氧化物酶(POD)和果胶甲基酯酶(PME)的影响,将荔枝(“淮枝”品种)果肉在两种酶抑制剂组合溶液(A:5 g/L柠檬酸+2.5 g/L L-抗坏血酸+5 g/L氯化钙;B:10 g/L柠檬酸+5 g/L L-抗坏血酸+10 g/L氯化钙)中分别浸泡10 min,并在100~400 MPa压力、10 ℃温度条件下处理30 min,采用分光光度法测定果肉中POD、PME的活性。结果表明:A、B两种组合处理能够明显钝化POD,但却显著激活了PME;超高压与A组合联合处理不能使POD、PME活性下降;超高压与B组合联合处理对POD、PME的影响与压力值有关系,100~300 MPa的超高压与B组合联合处理使POD活性下降,200~400 MPa的超高压与B组合联合处理则使PME活性升高。因此,超高压与酶抑制剂联合处理对荔枝果肉中POD的钝化存在一定的协同效应,且浓度越高,协同抑制效应越明显;而超高压与酶抑制剂联合处理对荔枝果肉中PME的钝化却表现出一定的拮抗性。  相似文献   

3.
高压对米曲霉理化性质影响及诱变的研究   总被引:1,自引:0,他引:1  
 在100~400 MPa压力、保压20 min的条件下处理酱油酿造菌种——米曲霉,研究高压对米曲霉存活率、形态特征、生理性质、蛋白酶、淀粉酶活性等的影响,并诱变筛选优良菌株。结果表明:高压对米曲霉的存活率、形态特征有明显的影响;压力对蛋白酶及淀粉酶活性的影响也有特异的规律,即在一定压力范围内(0.1~200 MPa)蛋白酶的活性随着压力的增加而减小,但随着压力的进一步升高(200~400 MPa)蛋白酶的活性又逐渐增强,在300 MPa时超过对照组,400 MPa时蛋白酶的活性达到最高值;淀粉酶在0.1~100 MPa时活性下降,在200 MPa时其平均的糊化和糖化活性最强、活力最高,当压力升高活性又开始降低,400 MPa时几乎又回到对照值。另外,高压处理后获得一株理想的变异菌株HP300a:生长速度快、孢子数量多、蛋白酶活力高,且不易被杂菌污染。其成曲的几项主要指标均优于对照株,酿出酱油的几项主要指标也明显优于对照株。为利用高压诱变筛选米曲霉优良菌种、提高酿造酱油产品的产量及质量提供了理论依据,并发现了高压处理米曲霉引起其蛋白酶及淀粉酶活性改变的特殊规律。  相似文献   

4.
 为了研究超高压处理对荔枝果肉中过氧化物酶(POD)、果胶甲基酯酶(PME)及可溶性蛋白含量的影响,将荔枝(“淮枝”品种)果肉在100~400 MPa压力、10 ℃温度条件下处理30 min,采用分光光度法测定果肉中POD、PME的活性,用天然凝胶电泳法以及活性染色法测定POD、PME同工酶的变化,用SDS凝胶电泳法测定果肉中可溶性蛋白含量。结果表明:100~200 MPa超高压处理使荔枝果肉中POD活性上升且出现新的同工酶,300~400 MPa超高压处理则使其活性降低且新出现的同工酶消失;100 MPa压力处理使荔枝果肉中PME活性上升且出现新的同工酶,200~400 MPa超高压处理则使其活性降低且新出现的同工酶消失;100 MPa超高压处理使荔枝果肉中可溶性蛋白含量有所增加,而在200~400 MPa压力处理下其含量持续下降。  相似文献   

5.
 以黑莓β-葡萄糖苷酶为对象,研究其温压协同条件下的失活动力学规律,可为超高压食品处理技术的工业化和花色苷的保留提供有力的技术支持。实验压力为300~600 MPa,温度为35~55 ℃。结果表明:β-葡萄糖苷酶在温压协同条件下的失活过程为两个阶段,第一阶段用瞬时失活值描述,压力和温度影响其大小,不受保压时间影响;第二阶段将β-葡萄糖苷酶分为稳定部分和敏感部分,β-葡萄糖苷酶的失活过程用双相一级反应动力学模型描述,其失活速率常数随温度、压力的升高而增大。敏感部分和稳定部分在400 MPa、55 ℃条件下,失活速率常数KL和KS分别为2.777和0.047 min-1,二者失活90%所需时间DL和DS分别为0.83和49.1 min。在400 MPa条件下,敏感部分的D值减少90%所需增加的温度TZ和活化能Ea分别为23.36 ℃和81.95 kJ/mol;在45 ℃条件下D值减少90%所需增加的压力pZ和活化体积Va分别为1 111 MPa和-5.02 cm3/mol。  相似文献   

6.
 因子试验研究结果表明,显著影响超高压杀灭金黄色葡萄球菌效果的外界因子是温度、压力和保压时间。在此基础上,采用响应曲面法(Response Surface Methodology,RSM)建立了超高压杀灭金黄色葡萄球菌的二次多项数学模型,验证了模型的有效性,并探讨了上述3个因子的交互作用及其最佳水平范围,优化出杀灭6个数量级金黄色葡萄球菌ATCC6538的外界条件为:温度34.35 ℃,压力329.84 MPa,时间15.53 min。  相似文献   

7.
实验研究了皱纹盘鲍的超高压脱壳工艺,评价了超高压脱壳对鲍鱼品质的影响。结果表明:超高压处理有利于鲍鱼的脱壳,200MPa保压1min和300MPa不保压的超高压处理组与对照组(手工脱壳)相比,脱壳时间分别节约69%和72%,同时提高了鲍鱼的完整性,鲍鱼肉得率分别提高18%和16%;超高压脱壳处理后,鲍鱼菌落总数从2.2×103 cfu/g减少至270~350cfu/g,水分含量显著增大,pH值变化不显著(P0.05);经超高压脱壳后,鲍鱼肉的亮度L*显著增大,而红度a*和黄度b*较对照组降低,有效改善了鲍鱼的色泽;随着处理压强的增大和保压时间的延长,鲍鱼硬度增加,弹性下降。经综合评价,选择处理压强300MPa、保压时间为零作为最佳超高压脱壳工艺参数。  相似文献   

8.
西瓜汁的超高压杀菌效果研究   总被引:24,自引:3,他引:21       下载免费PDF全文
 研究了西瓜汁常温超高压处理后的微生物存活量与杀菌压力、脉动施压之间的关系,并用VITEK 32型细菌鉴定仪对耐压菌种进行了鉴别。实验杀菌压力范围在100~500 MPa之间、保压时间为10 min、以“加压—保压(10 min)—卸压-停顿(5 min)”为一个脉动施压循环,对西瓜汁样品进行多次循环高压处理。结果表明:在30 ℃、处理压力达到或超过400 MPa时,西瓜汁中微生物含量达到国家食品卫生标准要求;随着脉动施压次数的增加,微生物存活量减少;西瓜汁中残存耐压菌以革兰氏阳性菌为主,达70%,此外还残存有少量革兰氏阴性菌和霉菌。  相似文献   

9.
鲜榨果蔬汁富含维生素C、酚类等活性物质。超高压均质技术是基于传统均质技术发展起来的一种非热加工技术,压力最高可达400MPa,能在常温或较低温度下达到杀菌、钝酶等效果。将超高压均质技术应用于鲜榨果蔬汁的加工,可最大限度地保留鲜榨果蔬汁的原有品质。综述了超高压均质处理对鲜榨果蔬汁中微生物、酶及品质影响的研究进展,讨论了超高压均质技术在鲜榨果蔬汁加工中的应用前景。  相似文献   

10.
超高压均质技术在鲜榨果蔬汁加工中应用的研究进展   总被引:1,自引:0,他引:1  
鲜榨果蔬汁富含维生素C、酚类等活性物质。超高压均质技术是基于传统均质技术发展起来的一种非热加工技术,压力最高可达400MPa,能在常温或较低温度下达到杀菌、钝酶等效果。将超高压均质技术应用于鲜榨果蔬汁的加工,可最大限度地保留鲜榨果蔬汁的原有品质。综述了超高压均质处理对鲜榨果蔬汁中微生物、酶及品质影响的研究进展,讨论了超高压均质技术在鲜榨果蔬汁加工中的应用前景。  相似文献   

11.
This study evaluated high pressure processing (P1 – 400?MPa/5?min; P2 – 550?MPa/2?min) and thermal pasteurization (TP – 70°C/30?s) effects on sweet cherry juice's microbiological and physicochemical parameters, during four weeks of refrigerated storage. All treatments reduced the microbiological load to undetectable levels not affecting total soluble solids and titratable acidity. The pH increased with all treatments, however, it decreased during storage. Phenols were differently affected: TP increased them by 6%, P1 had no effect while P2 decreased them by 11%. During storage, phenols in control and TP samples decreased by 26% and 20%, P1 samples decreased them by 11% whereas P2 showed no variation. TP had no effect on anthocyanins, while pressure treatments increased them by 8%. Anthocyanins decreased during storage, particularly in the control and P1 (decreasing 41%). All treatments had no effect on antioxidant activity until the 14th day, thereafter high pressure processing samples showed the highest antioxidant activity.  相似文献   

12.
The aim of this study was to investigate the effect of high hydrostatic pressure (HHP) treatment (200, 300, 400?MPa; 5°C, 15°C and 25°C; 5 and 10 min) on some quality properties of pomegranate juice. Juice samples are obtained under industrial conditions at two different squeezing pressure levels (100 and 150?psi – 0.689 and 1.033?MPa, respectively). Results are compared against conventional thermal treatment (85°C/10 min) and raw sample. For all three processing temperature, HHP combinations at 400?MPa for 10 min were sufficient to decrease the microbial load around 4.0 log cycles for both squeeze levels. All HHP treatments showed no significant decrease at antioxidant activity, total phenolic content and monomeric anthocyanin pigment concentrations, while there was a significant decrease (p?≤?.05) in thermal-treated samples. Being the highest sugar alcohol in pomegranate juice, mannitol content must be considered for determining the authenticity, and mannitol content increased with squeezing pressure and thermal treatment.  相似文献   

13.
ABSTRACT

The effects of high hydrostatic pressure (HHP) on the physicochemical properties of high-β-glucan barley flour were investigated in the present study. Dough samples were made from two types of barley flour with low and high β-glucan content, respectively, and treated with HHP (200–600?MPa) for 10?min. Although the elevation of pasting properties for the samples treated at 600?MPa was reduced to the same extent as that in wheat flour at normal atmospheric pressure, β-glucan content was maintained regardless of the pressure applied. The significant increase in starch damage of the dough samples at 550 and 600?MPa was confirmed by the results of microscopic observation, which revealed that elliptical starch granules were cracked and damaged in samples with low β-glucan at 600?MPa, and in samples with high β-glucan content at 400?MPa or more. X-ray diffraction patterns of the samples treated at 600?MPa indicated the formation of amylose-lipid complexes that were considered to inhibit the elevation of viscosity.  相似文献   

14.
High hydrostatic pressure (HHP) has high success potential in pollen protein extraction, but its effect on pollen protein profiles has not been studied yet. The aim of this study is to put forward whether HHP processing causes a change in the protein profiles extracted from pollens or not. In this study, proteins extracted from Betula pendula pollens were studied at 100, 200 and 300?MPa at room temperature for 5?min. In addition, the efficiency of three different extraction solvents, namely phosphate buffer saline (PBS) buffer pH 7.5, trichloroacetic acid–acetone and Tris–HCl buffer pH 8.8, was also observed, and the results were compared with the conventional pollen protein extraction procedure. As a result, it is concluded that 200?MPa for 5?min has extracted similar amounts of protein compared with the conventional extraction method which lasted for 24?h, which lasted for 24 h. On the other hand, the application time for 200 MPa for 5 min is extremely shorter when it is compared to the conventional extraction method.  相似文献   

15.
对300, 450和600 MPa不同高静压力下导致的淀粉结晶结构变化进行研究。选择不同类型、不同链/支比的三种淀粉为研究对象,进行高静压处理,利用X射线衍射法分析高静压对不同类型,不同链/支比淀粉晶体结构的影响。结果表明:由于X射线衍射峰加强及相对结晶度增大,糯玉米淀粉在300 MPa表现为韧化作用,在450 MPa结晶结构完全解体,600 MPa时发生重结晶;HylonⅦ淀粉在600 MPa以下的高静压处理只表现出韧化效果,结晶度增加但不明显;木薯淀粉在300 MPa具有韧化作用,600 MPa结晶结构完全消失,表现为韧化-颗粒结晶解体两个过程。因此,本文提出淀粉颗粒在高静压处理过程中经历压缩韧化-晶体结构解体-重结晶三个发展阶段。  相似文献   

16.
Abstract

Hydrostatic pressure technology is a novel non-thermal food processing technology whereby foods are subjected to high hydrostatic pressure, generally in the range of 100 to 600 MPa, at or around room temperature.  相似文献   

17.
宝石翡翠的合成、热行为和热稳定性的研究   总被引:2,自引:1,他引:1       下载免费PDF全文
 按硬玉分子组成配料,在1 350~1 550 ℃的高温下灼烧,然后淬火到室温得到具有硬玉组成的玻璃;在5.0 GPa,1 450 ℃下晶化,合成了宝石翡翠,其尺寸可达到Φ12 mm×6 mm,并通过差热分析及高压下的淬火分析研究了翡翠在常压下及高压下的熔点变化。利用淬火、退火及老化试验研究了人工翡翠宝石的稳定性。结果表明,人工翡翠宝石的热稳定性与天然翡翠相同。  相似文献   

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