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Enhanced bacterial quorum aggregation on a zeolite capping layer for sustainable inhibition of ammonium release from contaminated sediment

机译:增强沸石覆盖层上的细菌法量聚集,可持续抑制含铵释放污染沉积物

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The main objective of this study was to investigate how signal molecules enhance bacterial quorum aggregation on a zeolite capping layer for sustainable inhibition of ammonium release from contaminated sediment. Sediment remediation experiments were carried out by using nitrifying bacteria (WGX10, WGX18), denitrifying bacteria (HF3, HF7) and two kinds of signal molecules (OHHL, C8-HSL). The results showed that nitrifying bacteria and denitrifying bacteria could significantly aggregate on zeolite after adding 1.0 mu M OHHL at a C/N ratio of 7. The maximum ammonium removal of five times the amount of ammonium adsorbed was achieved when 1.0 mu M OHHL was added at the C/N ratio of 7 (the bio-regeneration rate was up to 88.32%), which was 1.24-2.02 times the ammonium removal amount at C/N ratios of 3, 5, 9. The concentration of total nitrogen in the overlying water was no more than 0.8 mg/L during four rounds of sediment remediation experiments. In addition, the bio-regeneration rate was up to 71.20%, which achieved sustainable inhibition of ammonium release from contaminated sediment.
机译:本研究的主要目的是研究信号分子如何如何增强沸石覆盖层上的细菌批量生成,以便可持续抑制铵释放污染沉积物。通过使用硝化细菌(WGX10,WGX18),反硝化细菌(HF 3,HF7)和两种信号分子(OHHL,C8-HSL)进行沉积物修复实验。结果表明,硝化细菌和反硝化细菌在加入1.0μmoHH1的比例的情况下在沸石中显着聚集。当加入1.0μmOhhl时,在加入1.0μmOhhl时,最大铵去除吸附的铵的量的最大铵的5倍。在C / N比为7(生物再生率高达88.32%),其在3,5,9的C / N比下的铵去除量为1.24-2.02倍。总氮的浓度在四轮沉积物修复实验中,覆盖水在四轮沉积物中不超过0.8mg / l。此外,生物再生率高达71.20%,从而可持续抑制污染沉积物的铵释放。

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