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Biodegradation of phenol at low temperature using two-phase partitioning bioreactors

机译:两相分配生物反应器在低温下苯酚的生物降解

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Two-phase partitioning bioreactors offer many advantages for the removal of toxic pollutants. In particular, such systems can be loaded with very large quantities of pollutants without risks of microbial inhibition, they are self-regulated and they prevent the risks of hazardous pollutant volatilisation during aerobic treatment. However, their potential has never been tested at low temperatures. Phenol biodegradation by a cold adapted Pseudomonas strain was therefore tested at 14 or 4 degrees C using 2-undecanone, diethyl sebacate or 2-decanone as organic phases in a two-phase partitioning bioreactor. The three solvents were biocompatible at 14 degrees C but evidence was found that diethyl sebacate was biodegraded by the bacteria and this solvent was not tested further. Although only 2-decanone was suitable at 4 degrees C, phenol biodegradation was more efficient in 2-undecanone at WC, reaching a maximum volumetric rate (based on the volume of aqueous phase) of approximately 1.94 g/L-day after 47 h of cultivation. In 2-clecanone at 14 degrees C, evidence was found that phenol degradation was limited by the release of biosurfactants, which increased the solubility and toxicity of the solvent in the aqueous phase inhibiting microbial activity. This study therefore shows that pollutant removal at low temperature is feasible but that the production of biosurfactants can have a negative impact on the process and must be taken into consideration when selecting the organic solvent. Future work should therefore focus on the selection of solvents suitable for use at temperatures below 14 degrees C.
机译:两相分配生物反应器为去除有毒污染物提供了许多优势。尤其是,此类系统可以装载大量污染物,而没有微生物抑制的风险,它们是自我调节的,并且可以防止在好氧处理过程中有害污染物挥发的风险。但是,从未在低温下测试过它们的潜力。因此,在两相分配生物反应器中,使用2-十一烷酮,癸二酸二乙酯或2-癸酮作为有机相,在14或4摄氏度下测试了冷适应的假单胞菌菌株对苯酚的生物降解作用。这三种溶剂在14摄氏度下具有生物相容性,但有证据表明癸二酸二乙酯被细菌生物降解,并且未对此溶剂进行进一步测试。虽然只有2-癸烷酮适合在4摄氏度下使用,但苯酚在WC的2-十一烷酮中的生物降解效率更高,在47 h的条件下,最大体积速率(基于水相的体积)约为1.94 g / L天。培养。在14摄氏度的2-clecanone中,有证据表明,苯酚降解受到生物表面活性剂释放的限制,这增加了溶剂在水相中的溶解度和毒性,从而抑制了微生物的活性。因此,这项研究表明在低温下去除污染物是可行的,但是生物表面活性剂的生产可能会对工艺产生负面影响,因此在选择有机溶剂时必须予以考虑。因此,未来的工作应集中在选择适合在14摄氏度以下温度下使用的溶剂。

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