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Organics and nitrogen removal and sludge stability in aerobic granular sludge membrane bioreactor

机译:好氧颗粒污泥膜生物反应器中有机物和氮的去除及污泥稳定性

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Novel aerobic granular sludge membrane bioreactor (GMBR) was established by combining aerobic granular sludge technology with membrane bioreactor (MBR). GMBR showed good organics removal and simultaneous nitrification and denitrification (SND) performances for synthesized wastewater. When influent total organic carbon (TOC) was 56.8–132.6 mg/L, the TOC removal of GMBR was 84.7–91.9%. When influent ammonia nitrogen was 28.1–38.4 mg/L, the ammonia nitrogen removal was 85.4–99.7%, and the total nitrogen removal was 41.7–78.4%. Moreover, batch experiments of sludge with different particle size demonstrated that: (1) flocculent sludge under aerobic condition almost have no denitrification capacity, (2) SND capacity was caused by the granular sludge, and (3) the denitrification rate and total nitrogen removal efficiency were enhanced with the increased particle size. In addition, study on the sludge morphology stability in GMBR showed that, although some granular sludge larger than 0.9 mm disaggregated at the beginning of operation, the granular sludge was able to maintain the stability of its granular morphology, and at the end of operation, the amount of granular sludge (larger than 0.18 mm) stabilized in GMBR was more than 56–62% of the total sludge concentration. The partial disaggregation of large granules is closely associated with the change of operating mode from sequencing batch reactor (SBR) system to MBR system.
机译:通过将好氧颗粒污泥技术与膜生物反应器(MBR)相结合,建立了新型好氧颗粒污泥膜生物反应器(GMBR)。 GMBR对合成废水显示出良好的有机物去除性能,同时具有硝化和反硝化(SND)性能。当进水总有机碳(TOC)为56.8–132.6 mg / L时,GMBR的TOC去除率为84.7–91.9%。当进水氨氮为28.1–38.4 mg / L时,氨氮去除率为85.4–99.7%,总氮去除率为41.7–78.4%。此外,不同粒径污泥的分批实验表明:(1)好氧条件下的絮凝污泥几乎没有反硝化能力;(2)颗粒污泥引起的SND能力;(3)脱氮率和总氮去除率效率随着颗粒尺寸的增加而增强。此外,对GMBR中污泥形态稳定性的研究表明,尽管一些大于0.9毫米的颗粒状污泥在操作开始时便会分解,但该颗粒状污泥仍能够保持其颗粒状形态的稳定性,并且在操作结束时, GMBR中稳定的颗粒污泥(大于0.18毫米)的数量占污泥总浓度的56-62%以上。大颗粒的部分分解与从分批测序反应器(SBR)系统到MBR系统的操作模式的变化密切相关。

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