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Pretreatment of spiramycin fermentation residue using hyperthermophilic digestion: quick startup and performance

机译:使用超嗜热消化的预处理螺旋霉素发酵残留物:快速启动和性能

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This study aimed to evaluate the feasibility of hyperthermophilic anaerobic digestion at 70 degrees C in the pretreatment of spiramycin fermentation residue. By feeding municipal excess sludge under a solid retention time of 5 days, the hyperthermophilic digester was successfully started up within 3 days from mesophilic digestion by a one-step temperature increase from 35 to 70 degrees C. MiSeq sequencing showed the fast establishment of thermophilic fermenting bacterial communities in 3 days immediately after the temperature increase, with increases in abundance of Coprothermobacter, Spirochaetaceae uncultured and Fervidobacterium from 0.001%, 1.06% and 0.001% to 33.77%, 11.65% and 3.42%, respectively. The feasibility of hyperthermophilic digestion for spiramycin residue was evaluated in batch experiments for 7 days. Hyperthermophilic digestion considerably reduced antibiotic concentrations, with removal efficiencies of 55.3% and 99.0% for the spiramycin residue alone and its mixture with hyperthermophilic sludge, respectively. At the same time, the abundances of four macrolide-lincosamide-streptogramin resistance genes were also reduced within 7 days, due to the decrease of their corresponding hosts. These results suggest that hyperthermophilic digestion could easily be started up from mesophilic digestion and might be a suitable pretreatment approach for spiramycin residue.
机译:本研究旨在评估70摄氏度在螺霉素发酵残留物预处理中高热厌氧消化的可行性。通过在固体保留时间下喂养城市多余污泥5天,通过从35至70摄氏度的一步温度升高的嗜苯胺消化,高嗜热蒸煮器在3天内成功启动。MISEQ测序显示嗜热发酵的快速建立在温度升高后3天内的细菌群落,随着豆类酸的丰富,螺旋形肌肌细胞的丰富,螺旋形织物缺乏,分别为0.001%,1.001%至33.77%,11.65%和3.42%。在分批实验中评价螺旋霉素残留物的超嗜热消解的可行性7天。超热嗜热消化显着降低抗生素浓度,除去螺旋霉素残留物的除去效率为55.3%和99.0%,分别与高嗜热污泥的混合物。同时,由于其相应宿主的降低,在7天内,在7天内也减少了四种大氯化酰胺 - 磷酰胺 - 链图的丰度。这些结果表明,从嗜培素的消化中可以容易地启动超嗜热消化,并且可能是螺霉素残留物的合适预处理方法。

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