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1.
为了优选杏鲍菇秋葵咀嚼片配方,以杏鲍菇粗多糖、杏鲍菇超细粉为主要原料,采用全粉末直接压片技术,选取片重差异、崩解时限、硬度及脆碎度的综合评定值为评价指标,通过响应面法确定最佳配方,并制定产品的质量指标。结果表明,杏鲍菇秋葵咀嚼片的最佳配方为杏鲍菇粗多糖38%、杏鲍菇超细粉49%和黄秋葵超细粉13%,制成的咀嚼片表面光滑、色泽均匀。综上,采用多指标综合评分法优化杏鲍菇秋葵咀嚼片配方是可行的,所得工艺配方稳定可靠,这为我国咀嚼片剂工艺创新及其产业化应用研究提供了新思路。  相似文献   
2.
以菠萝蜜种子淀粉为壁材,采用饱和水溶液法制备香草兰精油微胶囊,以包埋产率为指标,采用响应面分析法对微胶囊的包埋条件进行优化探讨。结果表明:5个单因素中,影响最显著的因素为壁芯材比例、包埋温度和包埋时间。响应面优化得到香草兰精油微胶囊的最佳工艺条件为壁芯材比例为7.5∶1;包埋时间72 min;包埋温度54℃,此条件下的包埋产率为(95.46±0.2)%,包埋率为(76.35±0.6)%,载油量为(27.73±0.3)%。试验证明,此条件结果与模型预测值相吻合,此工艺条件可为菠萝蜜种子淀粉包埋香草兰精油微胶囊工艺提供理论依据。  相似文献   
3.
采用响应面法优化超声波辅助提取薏苡仁低聚糖的工艺条件。在单因素试验基础上,选取液料比、超声波时间以及超声波功率3个因素结合Box-Behnken试验建立数学模型,分析考察3个因素对薏苡仁低聚糖响应值的影响程度,优化工艺参数。各因素对薏苡仁低聚糖提取率影响程度从大到小顺序依次为:超声波功率超声波时间液料比。响应面设计法优化出其最佳超声波提取条件为:超声波温度70℃,液料比33∶1(m L/g),超声波时间27 min,超声波功率450 W。在该条件下,薏苡仁低聚糖提取率为0.94%,与模型预测值0.98%接近。说明使用响应面法优化超声波辅助提取薏苡仁低聚糖的工艺条件是可行的。  相似文献   
4.
Effect of heat-moisture treatment on quality properties of two bread wheats (cvs. Tosunbey and Bayraktar) were investigated by using response surface methodology (RSM). Temperature and moisture conditions in the experimental design were in the range of 55–95 °C and 13–19%. Heat-moisture treated grains were milled into flour and quality properties were determined. The optimum moisture-temperature combination for the highest dry gluten, Zeleny sedimentation, Alveograph W and bread volume values were estimated as 14%-63 °C for Tosunbey and 19%-55 °C for Bayraktar samples. Alveograph W seems to be a good indicator of baking quality for wheats treated at higher temperatures. In order to describe the relationship between the dependent and independent variables (moisture, temperature), the response values were fitted by second order polynomial models. Significance analysis showed that the effect of both moisture and temperature on dry gluten content, sedimentation and falling number values for Tosunbey; falling number and damaged starch values for Bayraktar were significant (p < 0.05). The effect of temperature on Farinograph water absorption, W and P/G, bread volume and firmness values were significant for both cultivars (p < 0.05). It can be concluded that improvement in baking quality can be achieved and flours with different properties can be produced by heat-moisture treatments on wheat.  相似文献   
5.
以普鲁兰为成膜材料制备一种CO2敏感型指示标签,以食品包装中CO2含量作为监控指标,以甲基红和溴百里酚蓝为指示剂,与成膜材料普鲁兰多糖及甘油混合制得对CO2敏感的凝溶液,以滤纸为基材制备指示标签,并研究普鲁兰多糖浓度、甘油添加量、倒板量对指示标签变色的影响,采用响应面分析法对指示标签的制作工艺进行优化。结果表明,指示标签制备的最佳工艺条件为:在甲基红溶液与溴百里酚蓝溶液体积比为3∶2,质量浓度为5%的混合指示液中添加普鲁兰多糖7.5 g/100 mL、甘油2 g/100 mL,将6.5 mL溶液倒入铺有滤纸的平皿中,浸泡2 h并自然晾干12 h,可制得CO2气敏性指示标签,对其进行验证,色差值为18.21。该指示标签制备工艺简单,可重复操作,具有较大的使用价值。  相似文献   
6.
通过群钻钻头直径D,进给量f和切削速度n对孔径扩张量,圆度,孔中心线垂直度和直线度影响的试验,得出它们的变化规律。  相似文献   
7.
为探讨绿色木霉固体发酵产孢子的最佳发酵培养基。运用响应面法设计试验,筛选出主要影响因子碳酸钙、硫酸铵及氯化锰,以孢子量为响应值建立二次回归方程,并借助Design Expert 8.0.6软件进行分析数据并确定优化条件。结果表明,在温度28℃,接种量15%,料水比1:0.70的培养条件下发酵7天,孢子量为8.505×109CFU/g。通过优化,最终确定最佳发酵配方为:麸皮(过40目筛)50%,稻壳粉(过20目筛)30%,玉米粉(过80目筛)20%,硫酸铵1.08%,黄豆饼粉2.00%,玉米浆干粉2.00%,碳酸钙0.55%,氯化锰0.37%,pH 6.0~7.0。该配方所用原料廉价易得,发酵水平高,为大规模工业化生产提供保障。  相似文献   
8.
旨在研究金线莲总黄酮的最佳提取工艺条件。采用超声波辅助溶剂法,在单因素实验的基础上,采用响应面法优化了金线莲总黄酮的提取工艺。结果表明:当金线莲颗粒度为100目、乙醇体积分数为40%、料液比为1:40(mg:m L)、超声波功率为250 W、超声波时间为30 min时,所得金线莲总黄酮提取率为2.13%。超声波辅助溶剂法强化了金线莲总黄酮的提取效果。  相似文献   
9.
Three of the most commonly used veterinary antibiotics—enrofloxacin (ENR), sulfamethoxazole (SMX), and oxytetracycline (OTC)—were chosen as representative antibiotics for UV/H2O2 treatments. The objective was to determine the optimization of UV/H2O2 to remove antibiotics from aquaculture discharge water using response surface methodology. The degradation of the antibiotics was investigated under varying UV/H2O2 conditions in environments with different levels of pH, water matrices, humic acid, and constituent ions. The degradation results demonstrated that increasing the H2O2 dosage facilitated ENR degradation at a neutral pH while facilitating degradation of SMX and OTC at a slightly acidic pH. The optimum removal conditions for ENR, which was used in all influential effect experiments and the contact tank experiments, was obtained at 10 mM H2O2, a pretreated COD of 87.51 mg L−1, and an initial pH of 6.15. Among the tested anions, only the presence of Cl- showed slight positive effects on ENR degradation, due to the generation of secondary active radicals. During the reaction, the hydroxyl radical (OH) was present at a higher pH while singlet oxygen (1O2) was slightly present at a lower pH. The experimental results from H2O2 sequential addition indicated that freshly added H2O2 could quench the recently generated OH and therefore a high H2O2 concentration with frequent adding was not necessary. Our contact system reduced the ENR concentration in both the effluent reservoir and in the UV irradiation zone. The overall results supported the use of the UV/H2O2 system to treat remnant antibiotics in the discharge water.  相似文献   
10.
Different relationships between soil-test methods results have been reported in several agricultural regions. Differences in the same soil-test procedure (e.g., soil/solution ratio) exist between soil-testing laboratories from different agricultural regions. Our objectives were to (1) determine the effect of soil/solution ratio on the amount of phosphorus removed by Bray 1 and Mehlich 3 methods, (2) compare the amounts of phosphorus removed by Bray 1 and Mehlich 3 in Mollisols from the Pampean region, and (3) determine whether soil/solution ratio affects the relationship between Bray 1 and Mehlich 3. Soil phosphorus availability was determined with two extractants (Bray 1 and Mehlich 3), using two soil/solution ratios (1:10 and 1:8, wt/v) in 72 soils (noncalcareous, loess-derived Molisolls) from the Pampean region. The amount of phosphorus removed was 20–24% greater when using 1:10 than 1:8 (wt/v) soil/solution ratio. This effect was significantly greater in Bray 1 than in Mehlich 3 (p = 0.04). When compared using the same soil/solution ratio, Mehlich 3 removed 4 to 8% more phosphorus than Bray 1. The soil/solution ratio used in the comparison affected the relationship between both extractants. The difference between extractants was slightly greater with a soil/solution ratio of 1:8 than of 1:10 (p = 0.03). Our results showed that even when using the same method, changes in the procedure (like soil/solution ratio) may cause different soil-test results and also differences in the relationship between two extracting solutions. Therefore, reported relationships between two methods are only valid for the soils and region where the relationship was developed and should not be extrapolated to other regions, even with similar soils.  相似文献   
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