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An experimental study of immiscible liquid–liquid dispersions in a pump–mixer of mixer–settler 被引量:6
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作者 Qiao Tang Jiyizhe Zhang +2 位作者 Yuxin Wu Yundong Wang Zuohua Liu 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2020年第1期33-45,共13页
Drop size distribution(DSD) or mean droplet size(d32) and liquid holdup are two key parameters in a liquid–liquid extraction process. Understanding and accurately predicting those parameters are of great importance i... Drop size distribution(DSD) or mean droplet size(d32) and liquid holdup are two key parameters in a liquid–liquid extraction process. Understanding and accurately predicting those parameters are of great importance in the optimal design of extraction columns as well as mixer–settlers. In this paper, the method of built-in endoscopic probe combined with pulse laser was adopted to measure the droplet size in liquid–liquid dispersions with a pump-impeller in a rectangular mixer. The dispersion law of droplets with holdup range 1% to 24% in batch process and larger flow ratio range 1/5 to 5/1 in continuous process was studied. Under the batch operation condition, the DSD abided by log-normal distribution. With the increase of impeller speed or decrease of dispersed phase holdup, the d32 decreased. In addition, a prediction model of d32 of kerosene/deionized system was established as d32/D = 0.13(1 + 5.9φ)We-0.6. Under the continuous operation condition, the general model for droplet size prediction of kerosene/water system was presented as d32/D = C3(1 + C4φ)We-0.6. For the surfactant system and extraction system, the prediction models met a general model as d32/D = bφnWe-0.6. 展开更多
关键词 Dispersion droplet size distribution Liquid–liquid mean drop size Mixer–settler
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搅拌筛板萃取塔液滴直径研究
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作者 袁慎峰 李志鹏 +1 位作者 尹红 陈志荣 《高校化学工程学报》 EI CAS CSCD 北大核心 2021年第6期986-993,共8页
为明确搅拌筛板萃取塔的操作性能,在塔内进行了液滴直径实验,平均液滴直径数据利用照相法获取,考察了搅拌转速、两相流速、体系物性、溶质传递等因素对液滴直径的影响。结果表明,增大搅拌转速会减小液滴直径,增大两相流速则会增大液滴直... 为明确搅拌筛板萃取塔的操作性能,在塔内进行了液滴直径实验,平均液滴直径数据利用照相法获取,考察了搅拌转速、两相流速、体系物性、溶质传递等因素对液滴直径的影响。结果表明,增大搅拌转速会减小液滴直径,增大两相流速则会增大液滴直径,高界面张力或高黏度体系形成的液滴直径较大,高密度差体系形成的液滴直径则较小。此外,由于有机溶质的存在可降低界面张力,当两相流速改变时,塔内溶质浓度发生改变,因而体系界面张力也发生改变,进一步导致液滴直径发生改变。将实验数据进行了数学关联,关联式的计算值与实验值的平均偏差为5.6%,可为工程设计提供参考。 展开更多
关键词 溶剂萃取 萃取塔 两相流 平均液滴直径 关联式
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QH-1型填料在中等界面张力体系的应用──I.流体力学性能 被引量:2
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作者 朱永华 郁威 +1 位作者 陈德宏 费维扬 《化工冶金》 CSCD 北大核心 1997年第2期143-148,共6页
通过对QH-1型扁环填料在中等界面张力体系中的流体力学性能的研究,得到了两相流动特性模型和分散相液滴直径的半经验关联式,并对QH-1型填料萃取塔连续相出口的夹带情况进行了检测.实验表明,在中等界面张力体系中,该填料仍... 通过对QH-1型扁环填料在中等界面张力体系中的流体力学性能的研究,得到了两相流动特性模型和分散相液滴直径的半经验关联式,并对QH-1型填料萃取塔连续相出口的夹带情况进行了检测.实验表明,在中等界面张力体系中,该填料仍具有通量大、夹带少的优点,为该种填料在湿法冶金、医药、环保等工业领域的应用提供了实验和理论基础. 展开更多
关键词 QH-1型 填料 界面张力 流体力学 化工过程
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