Chemical Research in Chinese Universities ›› 2011, Vol. 27 ›› Issue (3): 407-412.
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BI Hai-tao, ZHANG Lan-ying, LIU Na* and ZHU Bo-lin
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Supported by the National Natural Science Foundation of China(Nos.40702039, 20090879029).
Abstract: Screened atrazine-mineralizing bacterium―Pseudomonas W4 was embedded inside an improved PVA- H3BO3 embedment matrix to make bio-beads to degrade atrazine. The atrazine degradation characteristics were studied. The preparation procedure of bio-beads was as follows: (1) preparing a mixture of 100, 12.5, 10, 1.5 and 1 g/L PVA, bentonite(Ca), activated carbon powder, sodium alginate and centrifuged Pseudomonas W4 bacterium, respectively; (2) the mixture was dropped into a gently stirred cross linker solution(pH=6.7) and cured at 10 °C for 24 h. The optimal atrazine degradation conditions by bio-beads were as follows: pH=7, the auxiliary carbon source was glucose, and the concentration of glucose was greater than 325 mg/L. The bio-beads demonstrated stronger tolerance ability than the free microorganism to the increase of PCBs, hydrogen ion and hydroxide ion. SEM images show the uniform distribution of the microorganism inside bio-beads and the porous cross-linked structure of bio-beads which provides excellent mass transfer capacity.
Key words: Atrazine, Polyvinyl alcohol(PVA), Embedment, Bio-bead
BI Hai-tao, ZHANG Lan-ying, LIU Na* and ZHU Bo-lin. Preparation of Bio-beads and Their Atrazine Degradation Characteristics[J]. Chemical Research in Chinese Universities, 2011, 27(3): 407-412.
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https://crcu.jlu.edu.cn/EN/Y2011/V27/I3/407