Thomas R A, Macaskie L E
School of Biological Sciences, University of Birmingham, UK.
Appl Microbiol Biotechnol. 1998 Feb;49(2):202-9. doi: 10.1007/s002530051159.
The biodegradation of tributyl phosphate (Bu3-P, TBP), releasing phosphate at a high enough concentration locally to precipitate uranium from solution, was demonstrated by a mixed culture consisting primarily of pseudomonads. The effect of various parameters on Bu3-P biodegradation by growing cells is described. Growth at the expense of Bu3-P as the carbon and phosphorus source occurred over a pH range from 6.5 to 8, and optimally at pH 7. Bu3-P biodegradation was optimal at 30 degrees C, reduced at 20 degrees C and negligible at 4 degrees C and 37 degrees C. Incorporation of Cu or Cd inhibited, and Ni, Co and Mn reduced its degradation. Inorganic phosphate (above 10 mM) and kerosene (up to 1 g/l) reduced Bu3-P biodegradation significantly, but nitrate had no effect. Sulphate (10-100 mM) was inhibitory. When pregrown biomass was used the fastest rates of tributyl and dibutyl phosphate biodegradation were 25 mumol h-1 mg protein-1 and 37 mumol h-1 mg protein-1 respectively. Microcarrier-immobilised biomass decontaminated uranium-bearing acid mine waste water by uranium phosphate precipitation at the expense of Bu3-P hydrolysis in the presence of 35 mM SO(4)2-. At pH 4.5, 79% of the UO2(2)+ was removed at a flow rate of 1.4 ml/h on a 7-ml.test column.
由主要由假单胞菌组成的混合培养物证明了磷酸三丁酯(Bu3-P,TBP)的生物降解,其在局部释放出足够高浓度的磷酸盐,以使铀从溶液中沉淀出来。描述了各种参数对生长细胞进行Bu3-P生物降解的影响。以Bu3-P作为碳源和磷源进行生长发生在pH值为6.5至8的范围内,最适pH值为7。Bu3-P生物降解在30℃时最佳,在20℃时降低,在4℃和37℃时可忽略不计。加入Cu或Cd会抑制其降解,而Ni、Co和Mn会降低其降解。无机磷酸盐(高于10 mM)和煤油(高达1 g/l)会显著降低Bu3-P的生物降解,但硝酸盐没有影响。硫酸盐(10 - 100 mM)具有抑制作用。当使用预生长的生物质时,磷酸三丁酯和磷酸二丁酯生物降解的最快速率分别为25 μmol h-1 mg蛋白质-1和37 μmol h-1 mg蛋白质-1。在35 mM SO(4)2-存在的情况下,微载体固定化生物质通过以Bu3-P水解为代价的磷酸铀沉淀来净化含铀酸性矿山废水。在pH 4.5时,在7 ml测试柱上以1.4 ml/h的流速可去除79%的UO2(2)+。