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生长条件对磷酸三丁酯生物降解的影响以及天然混合微生物培养物对酸性矿山排水的修复潜力。

The effect of growth conditions on the biodegradation of tributyl phosphate and potential for the remediation of acid mine drainage waters by a naturally-occurring mixed microbial culture.

作者信息

Thomas R A, Macaskie L E

机构信息

School of Biological Sciences, University of Birmingham, UK.

出版信息

Appl Microbiol Biotechnol. 1998 Feb;49(2):202-9. doi: 10.1007/s002530051159.

DOI:10.1007/s002530051159
PMID:9534259
Abstract

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.

摘要

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)+。

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