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Performance of enhanced biological SBR process for aniline treatment by mycelial pellet as biomass carrier

机译:菌丝颗粒作为生物质载体的增强生物SBR工艺处理苯胺的性能

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Mycelial pellet of Aspergillus niger Y3 was used as a biomass carrier to immobilize the aniline-degrading bacterium, Acinetobacter calcoaceticus JH-9 and the mix culture of the COD rapid degradation bacteria. In order to investigate its removal effect on aniline and COD, the combined mycelial pellets were applied in the SBR. Comparison of the performances was conducted between another SBR inoculated with sole strain JH-9 and the above SBR. The results showed that the stable degradations of aniline and COD were observed in both reactors. In the SBR with combined mycelial pellet, the biological removal efficiency was about 0.9. mg aniline/(L·d). It was much higher than that in the activated sludge reactor. Meanwhile, the performances of the sedimentation velocity, liquid-solid phase separation and the effluent quality were better in the SBR. According to SEM images and PCR-DGGE analysis, the species immobilized on the biomass carrier were more predominant in this system.
机译:黑曲霉Y3的菌丝体沉淀物被用作生物质载体,以固定苯胺降解细菌钙乙酸不动杆菌JH-9和COD快速降解细菌的混合培养。为了研究其对苯胺和COD的去除效果,将结合的菌丝体沉淀物应用于SBR。在接种了唯一菌株JH-9的另一种SBR与上述SBR之间进行性能比较。结果表明,在两个反应器中均观察到苯胺和COD的稳定降解。在结合了菌丝体沉淀的SBR中,生物去除效率约为0.9。毫克苯胺/(L·d)。它比活性污泥反应器中的要高得多。同时,SBR的沉降速度,液固分离和出水质量均较好。根据SEM图像和PCR-DGGE分析,固定在生物质载体上的物种在该系统中更占优势。

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