4.6 Article

Investigating microalgae cell-microsphere interactions during microalgae harvesting by ballasted dissolved air flotation through XDLVO theory

期刊

BIOCHEMICAL ENGINEERING JOURNAL
卷 137, 期 -, 页码 294-304

出版社

ELSEVIER SCIENCE BV
DOI: 10.1016/j.bej.2018.06.013

关键词

Microalgae harvesting; Ballasted dissolved air flotation (BDAF); XDLVO theory; Prediction model

资金

  1. National Natural Science Foundation of China [41230314]
  2. Natural Science Foundation of Shaanxi Province [2017JM5054]
  3. Key Laboratory of Degraded and Unused Land Consolidation Engineering of the Ministry of Land and Resources of China [SXDJ2017-6]
  4. Special Fund for Basic Scientific Research of Central Colleges, Changan University [310829163406, 310829172001]

向作者/读者索取更多资源

Ballasted dissolved air flotation (BDAF) method is an innovative and efficient technology for harvesting microalgae. However, this flotation process is not yet fully understood. In this study, surface properties of Scenedesmus obliquus (S. obliquus), Chlorella vulgaris (C. vulgaris) and microspheres were characterized by Zeta potential and contact angle measurements, and then the attachment behavior of the microalgae cells on microspheres was investigated by thermodynamic and extended Derjaguin-Landau-VerweyOverbeek (XDLVO) theory approaches. The calculated results revealed that the van der Waals (vdW) interaction played an important role in determining the net attraction between the microalgae cell and the microsphere, while the Lewis acid-base (AB) interaction was always repulsion. Microalgae harvesting efficiency could be significantly improved by adding ferric chloride and lowering the pH value because the electrostatic (ES) interaction changed from repulsion to neutralization, and even to attraction, while the vdW and the AB interactions remained almost unchanged. The XDLVO analysis indicated that there was an effective attachment with a secondary minimum of -0.548 x 10(3) kT for S. obliquus-microsphere system and -0.744 x 10(3) kT for C. vulgaris-microsphere system. The deeper the well depth of secondary minimum, the better the attachment of microalgae cells to microspheres, which may result in a better harvesting efficiency. Finally, a suitable XDLVO prediction model was proposed to describe the relationship between microalgae cell-microsphere interactions and harvesting efficiency of BDAF. (C) 2018 Elsevier B.V. All rights reserved.

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