4.7 Article

The influence of a static magnetic field on a Chlorella vulgaris-Bacillus licheniformis consortium and its sewage treatment effect

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JOURNAL OF ENVIRONMENTAL MANAGEMENT
卷 295, 期 -, 页码 -

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ACADEMIC PRESS LTD- ELSEVIER SCIENCE LTD
DOI: 10.1016/j.jenvman.2021.112969

关键词

Static magnetic field; Algal-bacterial consortium; Extracellular polymeric substances; Microbial community; Nutrient removal

资金

  1. Major Science and Technology Program for Water Pollution Control and Treatment [2012ZX07103-004]

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The study investigated the influence of a static magnetic field (SMF) on a Chlorella vulgaris-Bacillus licheniformis consortium and its subsequent effect on sewage treatment. The results showed that the SMF promoted the rapid formation of the algal-bacterial consortium, leading to improved efficiency in wastewater treatment.
In this study, the influence of a static magnetic field (SMF) on a Chlorella vulgaris-Bacillus licheniformis consortium and the subsequent effect of this algal-bacterial consortium on sewage treatment were explored. Accordingly, the algal density, Fv/Fm, algal aggregation percentage, extracellular polymeric substances (EPS) content, dissolved organic matter distribution, enzymatic activity, metabolites, microbial community diversity and nutrient removal were investigated. For the treatment group exposed to an SMF of 150 mT, the total phosphorus removal rate reached 82.21%, which was 19.10% higher than the control group. On the last day, the algal density of the 150 mT group was the highest, being 56.01% greater than the control group. The high intensity SMF promoted the anti-oxidative stress response in C. vulgaris. It also affected EPS secretion, subsequently influencing the algal aggregation percentage and bacterial growth. Bacillus accounted for the largest proportion of the overall microbial community in the 150 mT group, which was conducive to rapid formation of the C. vulgaris-B. licheniformis consortium. In short, the SMF was conducive to the rapid formation of a C. vulgaris-B. licheniformis consortium. The use of an SMF can promote the efficiency of the algal-bacterial consortium, thereby shortening the processing time.

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