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Selection of a Very Active Microbial Community for the Coupled Treatment of Tetramethylammonium Hydroxide and Photoresist in Aqueous Solutions

机译:活性很强的微生物群落的选择用于水溶液中的四甲基氢氧化铵和光致抗蚀剂的联合处理

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摘要

Aerobic treatment of wastewater containing Tetramethylammonium hydroxide (TMAH) and photoresist was investigated using a lab scale reactor inoculated with activated sludge coming from urban wastewater treatment that never received TMAH before. The consumption of TMAH was monitored by liquid ion chromatography. Biodiversity indices were calculated from Denaturing Gradient Gel Electrophoresis (DGGE) bands distribution and used to estimate changes in community composition related to adaptation to the new feeding compound. The first week of adaptation was crucial, and it was analyzed in detail: many organisms died, and the microbial community suffered a great shock. TMAH levels remained constant through the first four days, and then suddenly dropped to undetectable, and at the same time NH4+ increased. When the community showed complete adaptation, predominant groups of bacteria were obtained by the Illumina sequencing of 16s rDNA amplicons, to provide insights on ecology of the adapted community, focusing on the main actors of TMAH abatement. Richness of species (Rr) peaks suggest that the development of TMAH-consuming bacteria leads to persistent consortia that maintain toxicity resistance over time. This showed adaptation and changes of the population to the different feeding conditions, and it opens new perspectives in the in situ treatment of these important residues of industrial processes without relying on external processing plants.
机译:使用实验室规模的反应器对含有四甲基氢氧化铵(TMAH)和光致抗蚀剂的废水的好氧处理进行了研究,该反应器接种了从未处理过TMAH的城市污水处理产生的活性污泥。通过液体离子色谱法监测TMAH的消耗。根据变性梯度凝胶电泳(DGGE)谱带分布计算生物多样性指数,并将其用于估计与适应新饲料化合物相关的群落组成变化。适应的第一周至关重要,并对其进行了详细分析:许多生物死亡,微生物群落遭受了巨大冲击。在开始的四天内,TMAH含量保持恒定,然后突然下降至无法检测的水平,同时NH4 + 升高。当社区显示出完全的适应性时,通过Illumina测序的16s rDNA扩增子获得了主要的细菌群体,从而为适应社区的生态学提供了见识,重点关注了TMAH消减的主要参与者。物种丰富度(Rr)峰表明,消耗TMAH的细菌的发展导致了持续的聚生体,这些聚生体随时间保持了抗药性。这表明了种群对不同喂养条件的适应性和变化,并且为在不依赖外部加工厂的情况下原位处理这些重要的工业过程残渣提供了新的视角。

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