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两相剪切流法制备玉米胚芽油微胶囊的研究
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作者 王庆亮 侯丽雅 +1 位作者 朱丽 章维一 《现代食品科技》 EI CAS 北大核心 2013年第9期2218-2224,共7页
基于气液两相剪切流,提出了一种结构简单、成本低、控制方便的微胶囊制备方法,设计了基于冷热加工工艺的玻璃微喷嘴为核心器件的微胶囊制备系统。研究了微胶囊制备工艺参数和芯、壁材配方对微胶囊有效直径Deff的影响规律,利用混合正交... 基于气液两相剪切流,提出了一种结构简单、成本低、控制方便的微胶囊制备方法,设计了基于冷热加工工艺的玻璃微喷嘴为核心器件的微胶囊制备系统。研究了微胶囊制备工艺参数和芯、壁材配方对微胶囊有效直径Deff的影响规律,利用混合正交实验确定了最优的系统微胶囊制备工艺参数,并在最优的微胶囊制备工艺参数条件下确定了微胶囊芯、壁材的最佳配方。试验结果表明:表征微胶囊制备系统稳定性的液体含量l变化平缓,变异系数Cv<6.38%,系统具有较好的稳定性;在最优的微胶囊制备工艺参数和芯、壁材配方条件下即微喷嘴直径1000μm、微喷嘴不含平行端部、喷射压力0.04 MPa、海藻酸钠浓度1%、氯化钙浓度1%、壁材与芯材的比值为2:1时微胶囊的包埋率可达56.44%;干燥后玉米胚芽油微胶囊微观结构较规则,表面致密,可以有效完成对玉米胚芽油的包埋。 展开更多
关键词 两相剪切流 玉米胚芽油 微喷嘴 微胶囊制备
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Experimental detection of bubble-wall interactions in a vertical gas–liquid flow 被引量:6
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作者 Xing Wang Jiao Sun +1 位作者 Jie Zhao Wenyi Chen 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2017年第7期838-847,共10页
Bubble motions and bubble-wall interactions in stagnant liquid were experimentally investigated by high-speed CCD and PIV technique with the main feature parameters such as E?tv?s numbers Eo = 0.98–1.10, Morton numbe... Bubble motions and bubble-wall interactions in stagnant liquid were experimentally investigated by high-speed CCD and PIV technique with the main feature parameters such as E?tv?s numbers Eo = 0.98–1.10, Morton number Mo = 3.21 × 10^(-9)and Reynolds numbers Re = 180 ~ 190. The effect of bubble injecting frequency and the distance S between the gas injection nozzle and the wall on the statistical trajectory of bubbles, average velocity distribution of flow field and Reynolds shear stress were studied in detail. It was shown that the combination of bubble injecting frequency and the distance S caused different bubble motion forms and hydrodynamic characteristics.When the normalized initial distance was very little, like S*≈ 1.2(here S*= 2S/d_e, and deis the bubble equivalent diameter), bubbles ascended in a zigzag trajectory with alternant structure of high and low speed flow field around the bubbles, and the distribution of positive and negative Reynolds shear stress looked like a blob. With the increase of distance S*, bubbles' trajectory would tend to be smooth and straight from the zigzag curve. Meanwhile, with the increase of bubble injecting frequency, the camber of bubble trajectory at 20<y<60 mm had a slight increase due to the inhibitory effect from the vertical wall. Under larger spacing, such as S*≈ 3.6, the low-frequency bubbles gradually moved away from the vertical plane wall in a straight trajectory and the high-frequency bubbles gradually moved close to the vertical wall in a similar straight trajectory after an unstable camber motion. Under the circumstances, high-speed fluid was mainly distributed in the region between the wall and the bubbles, while the relative large Reynolds shear stress mainly existed in the region far away from the wall. 展开更多
关键词 Vertical plane wall BUBBLES Gas-liquid two-phase flow PIV
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