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Freshwater microalgae harvested via flocculation induced by pH decrease

delete2013-07-09
delete186
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OA
AI
J
Jiexia Liu
朱乙 (Yi Zhu)
Y
Yujun Tao
Y
Yuanming Zhang *
李爱芬 (Aifen Li)
T
Tao Li
M
Ming Sang
C
Chengwu Zhang
DOI:10.1186/1754-6834-6-98delete
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Abstract

Abstract

En 中文
Background: Recent studies have demonstrated that microalga has been widely regarded as one of the most promising raw materials of biofuels. However, lack of an economical, efficient and convenient method to harvest microalgae is a bottleneck to boost their full-scale application. Many methods of harvesting microalgae, including mechanical, electrical, biological and chemical based, have been studied to overcome this hurdle. Results: A new flocculation method induced by decreasing pH value of growth medium was developed for harvesting freshwater microalgae. The flocculation efficiencies were as high as 90% for Chlorococcum nivale, Chlorococcum ellipsoideum and Scenedesmus sp. with high biomass concentrations (>1g/L). The optimum flocculation efficiency was achieved at pH 4.0. The flocculation mechanism could be that the carboxylate ions of organic matters adhering on microalgal cells accepted protons when pH decreases and the negative charges were neutralized, resulting in disruption of the dispersing stability of cells and subsequent flocculation of cells. A linear correlation between biomass concentration and acid dosage was observed. Furthermore, viability of flocculated cells was determined by Evans Blue assay and few cells were found to be damaged with pH decrease. After neutralizing pH and adding nutrients to the flocculated medium, microalgae were proved to maintain a similar growth yield in the flocculated medium comparing with that in the fresh medium. The recycling of medium could contribute to the economical production from algae to biodiesel. Conclusions: The study provided an economical, efficient and convenient method to harvest fresh microalgae. Advantages include capability of treating high cell biomass concentrations (>1g/L), excellent flocculation efficiencies (>= 90%), operational simplicity, low cost and recycling of medium. It has shown the potential to overcome the hurdle of harvesting microalgae to promote full-scale application to biofuels from microalgae.
Keywords:
Microalgae
Harvest
Flocculation
pH decrease
Recycle
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Journal

B
Biotechnology for Biofuels
IF:
6.1
Papers:
2.5K
Citations:
1.3W

Organization

J
jinan university
Scholars:
4.2W
Papers: 2.6W
Citations: 38