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Pretreatment of coking wastewater using anaerobic sequencing batch reactor (ASBR)

机译:使用厌氧顺序分批反应器(ASBR)预处理焦化废水

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摘要

A laboratory-scale anaerobic sequencing batch reactor (ASBR) was used to pretreat coking wastewater. Inoculated anaerobic granular biomass was acclimated for 225 d to the coking wastewater, and then the biochemical methane potential (BMP) of the coking wastewater in the acclimated granular biomass was measured. At the same time, some fundamental technological factors, such as the filling time and the reacting time ratio (t f/t r), the mixing intensity and the intermittent mixing mode, that affect anaerobic pretreatment of coking wastewater with ASBR, were evaluated through orthogonal tests. The COD removal efficiency reached 38%~50% in the stable operation period with the organic loading rate of 0.37~0.54 kg COD/(m3·d) at the optimum conditions of t f/t r, the mixing intensity and the intermittent mixing mode. In addition, the biodegradability of coking wastewater distinctly increased after the pretreatment using ASBR. At the end of the experiment, the microorganism forms on the granulated sludge in the ASBR were observed using SEM (scanning electron microscope) and fluoroscope. The results showed that the dominant microorganism on the granular sludge was Methanosaeta instead of Methanosarcina dominated on the inoculated sludge.
机译:实验室规模的厌氧排序批处理反应器(ASBR)用于预处理焦化废水。使接种的厌氧颗粒生物质在焦化废水中适应225 d,然后测量该适应的颗粒生物质中焦化废水的生化甲烷潜力(BMP)。同时,通过正交试验评价了影响ASBR焦化废水厌氧预处理的一些基本工艺因素,如填充时间和反应时间比(tf / tr),混合强度和间歇混合方式。 。在tf / tr最佳条件下,稳定运行期COD去除率达到38%〜50%,有机负荷率为0.37〜0.54 kg COD /(m 3 ·d),混合强度和间歇混合模式。此外,使用ASBR预处理后,焦化废水的生物降解能力明显提高。在实验结束时,使用SEM(扫描电子显微镜)和荧光镜观察了ASBR中颗粒污泥上的微生物形成。结果表明,颗粒污泥中的主要微生物是甲烷菌,而不是接种污泥中的甲烷藻。

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