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首页> 外文期刊>Journal of environmental sciences >An innovative membrane bioreactor and packed-bed biofilm reactor combined system for shortcut nitrification-denitrification
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An innovative membrane bioreactor and packed-bed biofilm reactor combined system for shortcut nitrification-denitrification

机译:创新的膜生物反应器和填充床生物膜反应器组合系统,用于快速硝化-反硝化

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An innovative shortcut biological nitrogen removal system, consisting of an aerobic submerged membrane bioreactor (MBR) and an anaerobic packed-bed biofilm reactor (PBBR), was evaluated for treating high strength ammonium-bearing wastewater. The system was seeded with enriched ammonia-oxidizing bacteria (AOB) and operated without sludge purge with a decreased hydraulic retention time (HRT) through three phases. MBR was successful in both maintaining nitrite ratio over 0.95 and nitrification efficiency higher than 98% at HRT of 24 h, and PBBR showed satisfactory denitrification efficiency with very low effluent nitrite and nitrate concentration (both below 3 mg/L). By examining the nitrification activity of microorganism, it was found that the specific ammonium oxidization rate (SAOR) increased from 0.17 to 0.51 g N/(g VSS-d) and then decreased to 0.22 g N/(g VSS-d) at the last phase, which resulted from the accumulation of extracellular polymers substances (EPS) and inert matters enwrapping around the zoogloea. In contrast, the average specific nitrite oxidization rate (SNOR) is 0.002 g N/(g VSS-d), only 1% of SAOR. Because very little Nitrobactor has been detected by fluorescence in situ hybridization (FISH), it is confirmed that the stability of high nitrite accumulation in MBR is caused by a large amount of AOB.
机译:评价了一种创新的捷径生物脱氮系统,该系统由好氧潜水膜生物反应器(MBR)和厌氧填充床生物膜反应器(PBBR)组成,用于处理高强度含氨废水。该系统播种了富氨氧化细菌(AOB),并在不进行污泥吹扫的情况下运行,减少了三个阶段的水力停留时间(HRT)。 MBR在HRT 24 h时成功地保持亚硝酸盐比率超过0.95和硝化效率均高于98%,并且PBBR表现出令人满意的反硝化效率,且出水亚硝酸盐和硝酸盐浓度非常低(均低于3 mg / L)。通过检查微生物的硝化活性,发现比氨氧化率(SAOR)从0.17增加到0.51 g N /(g VSS-d),然后在0.25 g / g VSS-d时降低到0.22 g N /(g VSS-d)。最后阶段是由于细胞外聚合物物质(EPS)的积聚和包裹在动物小球周围的惰性物质造成的。相反,亚硝酸盐的平均比氧化率(SNOR)为0.002 g N /(g VSS-d),仅为SAOR的1%。因为通过荧光原位杂交(FISH)检测到的硝化细菌非常少,所以可以确认MBR中亚硝酸盐积累的高稳定性是由大量的AOB引起的。

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