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有机营养物和生长因子对底泥微生物和阴沟肠杆菌促进三丁基锡去除的生物刺激作用的影响。

Effects of organic nutrients and growth factors on biostimulation of tributyltin removal by sediment microorganisms and Enterobacter cloacae.

机构信息

David Livingstone Centre for Sustainability, Department of Civil Engineering, University of Strathclyde, Glasgow, Scotland, G1 1QE, UK.

出版信息

Appl Microbiol Biotechnol. 2011 Apr;90(1):353-60. doi: 10.1007/s00253-010-3023-3. Epub 2010 Dec 4.

Abstract

Natural attenuation can reduce contamination of tributyltin (TBT), but persistence of the xenobiotic can cause long-term issues in the environment. Biostimulation is used to accelerate biodegradation. This study investigated the ability of individual organic nutrients and growth factors to enhance TBT biodegradation by sediment microorganisms (SED) and Enterobacter cloacae strain TISTR1971 (B3). The supplements that produced high biomass yield were selected for degradation enhancement. For TBT degradation at initial concentration of 0.1 mg/l, negative or limited degradation was observed in some selected supplements indicating that increasing the biomass did not necessarily promote degradation. Consequently, the addition of nutrients was expected to increase both dioxygenase activity and the degrader population. At different concentrations of supplements, a mixture of succinate/glycerol showed the highest removal for SED which reduced TBT by 77%, 75%, and 68% for 0.1×, 1×, and 10× supplement concentration, respectively. For B3, the addition of succinate showed degradation of 49% (0.1×), 75% (1×), and 77% (10×). Most nutrients and amino acids had an inhibitory effect at 1× or 10× levels. Excess amount of the nutrients added can inhibit the initial degradation of TBT. Therefore, TBT biostimulation requires supplements that increase the capability of TBT degraders at an appropriate amount.

摘要

自然衰减可以减少三丁基锡(TBT)的污染,但这种外来物质的持久性会在环境中造成长期问题。生物刺激被用于加速生物降解。本研究调查了单个有机营养素和生长因子对沉积物微生物(SED)和肠杆菌 cloacae 菌株 TISTR1971(B3)增强 TBT 生物降解的能力。选择产生高生物量的补充剂来增强降解。对于初始浓度为 0.1mg/L 的 TBT 降解,在一些选定的补充剂中观察到负或有限的降解,这表明增加生物量不一定能促进降解。因此,预计添加营养物质会增加双加氧酶活性和降解剂种群。在不同浓度的补充剂下,琥珀酸盐/甘油混合物显示出最高的 SED 去除率,分别为 0.1×、1×和 10×补充浓度时,SED 将 TBT 减少了 77%、75%和 68%。对于 B3,琥珀酸盐的添加导致 49%(0.1×)、75%(1×)和 77%(10×)的降解。大多数营养素和氨基酸在 1×或 10×水平下具有抑制作用。添加的营养物质过多会抑制 TBT 的初始降解。因此,TBT 生物刺激需要以适当的量增加 TBT 降解菌能力的补充剂。

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