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首页> 外文期刊>Chemical Engineering Science >Effect of surfactants on liquid-side mass transfer coefficients in gas-liquid systems: A first step to modeling
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Effect of surfactants on liquid-side mass transfer coefficients in gas-liquid systems: A first step to modeling

机译:表面活性剂对气液系统中液侧传质系数的影响:建模的第一步

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摘要

This paper focuses on the effect of surfactants on the mass transfer parameters (volumetric mass transfer coefficient k(L)a and liquid-side mass transfer coefficient k(L)). Tap water and aqueous solutions with surfactants (anionic, cationic and non-ionic at concentrations up to 3500 mg l(-1)) are used as liquid phases. The bubbles are generated into a small-scale bubble column having an elastic membrane with a single orifice as gas sparger. To understand the effects of the surfactants on the mass transfer, not only the static surface tension is used, but also the characteristic adsorption parameters like the surface coverage ratio at equilibrium Se. The liquid-side mass transfer coefficient is obtained from the ratio of the volumetric mass transfer coefficient (measured by a chemical method) and the specific interfacial area. These two parameters are obtained simultaneously. The methods used to obtain these parameters are described in Painmanakul et al. [2005. Effects of surfactants on liquid-side mass transfer coefficients. Chemical Engineering Science 60, 6480-6491].
机译:本文重点研究表面活性剂对传质参数(体积传质系数k(L)a和液侧传质系数k(L))的影响。自来水和具有表面活性剂(阴离子,阳离子和非离子浓度最高3500 mg l(-1)的水溶液)用作液相。气泡产生到小规模的气泡塔中,该气泡塔具有带有单个孔的弹性膜作为气体喷射器。为了理解表面活性剂对传质的影响,不仅使用静态表面张力,还使用特征吸附参数,例如平衡Se下的表面覆盖率。液体侧传质系数由体积传质系数(通过化学方法测定)与比界面面积之比求出。这两个参数是同时获得的。用于获得这些参数的方法在Painmanakul等人中进行了描述。 [2005。表面活性剂对液体侧传质系数的影响。化学工程科学60,6480-6491]。

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