首页> 外文会议>IWA(International Water Association) International Conference on Biofilm Systems; 20030914-18; Cape Town(ZA) >High nitrification rate at low pH in a fluidized bed reactor with chalk as the biofilm carrier
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High nitrification rate at low pH in a fluidized bed reactor with chalk as the biofilm carrier

机译:在以粉笔为生物膜载体的流化床反应器中,在低pH值下具有很高的硝化率

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A typical steady state bulk pH of about 5 was established in a nitrifying fluidized bed with chalk as the only buffer agent. In spite of the low pH, high rate nitrification was observed with the nitrification kinetic parameters in the chalk reactor similar to those of biological reactors operating at pH > 7. Various methods were used to determine the reasons for high rate nitrification at such low pH including (ⅰ) determination of bacterial species, (ⅱ) microsensor measurements in the biofilm, and (ⅲ) comparison of nitrification performance at low pH with a non-chalk fluidized bed reactor. Fluorescence in situ hybridization (FISH) using existing 168 rRNA-targeted oligonucleotide probes showed common nitrifying bacteria in the low pH chalk reactor. The prevalent nitrifying bacteria were identified in the Nitrosomonas oligotropha, Nitrosomonas europeae/eutropha, Nitrosospira and Nitrospira related groups, all well known nitrifiers. Microelectrode measurements showed that the pH in the biofilm was low and similar to that of the bulk pH. Finally, reactor performance using a non-chalk biofilm carrier (sintered glass) with the same bacterial inoculum also showed high rate nitrification below pH 5. The results suggest that inhibition of nitrification at low pH is highly overestimated.
机译:在硝化流化床中用白垩作为唯一缓冲剂建立了大约5的典型稳态总体pH值。尽管pH值较低,但在白垩反应器中仍观察到高速率硝化反应,而白垩反应器中的硝化动力学参数与在pH> 7的生物反应器中的硝化动力学参数相似。使用各种方法来确定在如此低pH值下进行高速率硝化的原因,包括(ⅰ)确定细菌种类,(ⅱ)生物膜中的微传感器测量,以及(ⅲ)使用非粉笔流化床反应器在低pH下的硝化性能比较。使用现有的168种rRNA靶向寡核苷酸探针进行的荧光原位杂交(FISH)在低pH白垩反应器中显示出常见的硝化细菌。在硝化亚硝化单胞菌,欧洲亚硝化单胞菌/富营养化亚硝化螺菌和硝化螺菌相关组中鉴定出普遍的硝化细菌,这些都是众所周知的硝化剂。微电极测量表明,生物膜中的pH值较低,与总体pH值相似。最后,使用具有相同细菌接种物的非粉笔生物膜载体(烧结玻璃)的反应器性能也显示出pH低于5时的高硝化率。结果表明,高pH值下对硝化的抑制作用被高估了。

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