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首页> 外文期刊>Water Science and Technology >Flotation of algae for water reuse and biomass production: role of zeta potential and surfactant to separate algal particles
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Flotation of algae for water reuse and biomass production: role of zeta potential and surfactant to separate algal particles

机译:浮选藻类用于水的再利用和生物质生产:ζ电位和表面活性剂在分离藻类颗粒中的作用

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The effect of chemical coagulation and biological auto-flocculation relative to zeta potential was examined to compare flotation and sedimentation separation processes for algae harvesting. Experiments revealed that microalgae separation is related to auto-flocculation of Anabaena spp. and requires chemical coagulation for the whole period of microalgae cultivation. In addition, microalgae separation characteristics which are associated with surfactants demonstrated optimal microalgae cultivation time and separation efficiency of dissolved CO2 flotation (DCF) as an alternative to dissolved air flotation (DAF). Microalgae were significantly separated in response to anionic surfactant rather than cationic surfactant as a function of bubble size and zeta potential. DAF and DCF both showed slightly efficient flotation; however, application of anionic surfactant was required when using DCF.
机译:考察了化学絮凝和生物自絮凝相对于zeta电位的影响,以比较浮选和沉淀分离工艺对藻类收获的影响。实验表明,微藻的分离与鱼腥藻的自动絮凝有关。并且在整个微藻培养过程中都需要进行化学混凝。此外,与表面活性剂相关的微藻分离特性证明了最佳的微藻培养时间和溶解的CO2浮选(DCF)的分离效率,可替代溶解的气浮(DAF)。作为气泡大小和ζ电位的函数,响应于阴离子表面活性剂而不是阳离子表面活性剂,微藻被显着分离。 DAF和DCF均显示出略微有效的浮选。但是,使用DCF时需要使用阴离子表面活性剂。

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