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Growth Kinetics of Hyphomicrobium and Thiobacillus spp. in Mixed Cultures Degrading Dimethyl Sulfide and Methanol

机译:Hyphomicrobium和Thiobacillus spp的生长动力学。在混合培养中降解二甲硫和甲醇

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摘要

The growth kinetics of Hyphomicrobium spp. and Thiobacillus spp. on dimethyl sulfide (DMS) and methanol (in the case of Hyphomicrobium spp.) in an enrichment culture created from a biofilter cotreating DMS and methanol were studied. Specific growth rates of 0.099 h−1 and 0.11 h−1 were determined for Hyphomicrobium spp. and Thiobacillus spp., respectively, growing on DMS at pH 7. These specific growth rates are double the highest maximum specific growth rate for bacterial growth on DMS reported to date in the literature. When the pH of the medium was decreased from pH 7 to pH 5, the specific growth rate of Hyphomicrobium spp. decreased by 85%, with a near 100-fold decline in the yield of Hyphomicrobium 16S rRNA gene copies in the mixed culture. Through the same pH shift, the specific growth rate and 16S rRNA gene yield of Thiobacillus spp. remained similar. When methanol was used as a substrate, the specific growth rate of Hyphomicrobium spp. declined much less over the same pH range (up to 30%) while the yield of 16S rRNA gene copies declined by only 50%. Switching from an NH4+-N-based source to a NO3-N-based source resulted in the same trends for the specific growth rate of these microorganisms with respect to pH. This suggests that pH has far more impact on the growth kinetics of these microorganisms than the nitrogen source. The results of these mixed-culture batch experiments indicate that the increased DMS removal rates observed in previous studies of biofilters cotreating DMS and methanol are due to the proliferation of DMS-degrading Hyphomicrobium spp. on methanol at pH levels not conducive to high growth rates on DMS alone.
机译:Hyphomicrobium spp的生长动力学。和硫杆菌属。研究了在生物滤池中将DMS和甲醇共沉淀的生物富集培养液中二甲硫(DMS)和甲醇(在Hyphomicrobium spp。的情况下)的浓度。确定了Hyphomicrobium spp的比生长速率分别为0.099 h -1 和0.11 h -1 。和硫杆菌属分别在pH值为7的DMS上生长。这些比生长速率是迄今为止文献中报道的DMS上细菌生长的最高最大比生长速率的两倍。当培养基的pH从pH 7降低至pH 5时,Hyphomicrobium spp的比生长速率。在混合培养中,Hyphomicrobium 16S rRNA基因拷贝的产量下降了85%,降幅近100倍。通过相同的pH变化,硫杆菌属的比生长速率和16S rRNA基因产量。保持相似。当使用甲醇作为底物时,Hyphomicrobium spp的比生长速率。在相同的pH范围内(最多30%)下降幅度较小,而16S rRNA基因拷贝的产量仅下降50%。从基于NH4 + -N的源转换为基于NO3 - -N的源导致这些微生物的特定生长速率相对于pH值具有相同的趋势。这表明pH对这些微生物的生长动力学的影响远大于氮源。这些混合培养分批实验的结果表明,先前对DMS和甲醇进行生物过滤的生物滤池研究中观察到的DMS去除率提高是由于降解DMS的Hyphomicrobium spp的增殖所致。 pH值的甲醇中不利于单独使用DMS的高生长速率。

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