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81.
好氧颗粒污泥膜生物反应器污泥性状研究 总被引:3,自引:2,他引:1
采用厌氧-好氧运行方式的颗粒污泥膜生物反应器(GMBR),连续运行近120 d表现出良好的有机物去除及同步硝化反硝化能力.对GMBR中污泥粒径分布变化研究表明,GMBR中污泥浓度的增加主要是由于粒径0.18~0.45 mm的小颗粒污泥及小于0.18 mm的絮状污泥的增加造成的,粒径大于0.45 mm的颗粒污泥能够基本稳定维持其颗粒形态,反应器运行末期,GMBR中颗粒污泥(粒径大于0.18 mm的污泥)含量稳定在污泥总量的60%~65%以上.污泥表面电荷量随着污泥组成形态的变化电负性逐渐增加,80 d后稳定在-0.42~-0.80 meq·g-1之间.污泥表面电荷的负电性增加主要是由小于0.45 mm的污泥造成的,其中小于0.18 mm的絮状污泥对其影响最大.并且,污泥粒径越大污泥表面负电荷量越少,两者具有较好的线性关系.另外,GMBR中SVI稳定在60~90 mL/g之间,并且随着污泥表面电荷负电性的增加污泥SVI值增加,两者之间具有一定的相关性. 相似文献
82.
PCR-DGGE研究处理垃圾渗滤液序批式生物膜反应器(SBBR)中的细菌多样性 总被引:14,自引:5,他引:9
为了研究序批式生物膜反应器中的细菌多样性及其脱氮的微生物学机理,为工艺改进提供依据,从同步高效去除垃圾渗滤液中高氨氮和高COD的SBBR生物膜和渗滤液原水中采集微生物样品并提取微生物总DNA,使用细菌通用引物对(GC341F/907R)从总DNA中成功扩增出目标16S rDNA片段,然后对扩增的16S rDNA进行DGGE,对凝胶染色并进行条带统计分析和切胶测序,使用序列数据进行同源性分析并建立了系统发育树.结果表明,该驯化后的SBBR生物膜和渗滤液原水中都有比较丰富的细菌多样性,驯化的生物膜细菌主要来自渗滤液原水,而且生物膜细菌在反应器正常运行时不会出现明显的群落结构变化;在该SBBR中有多种硝化细菌与反硝化细菌、好氧反硝化细菌和厌氧氨氧化细菌共存,说明该反应器中可能同时存在全程硝化反硝化、同步硝化反硝化和厌氧氨氧化3种脱氮方式.研究结果为SBBR脱氮微生物机理研究提供了一些有价值的参考依据. 相似文献
83.
Removal of inorganic nitrogen (inorganic-N) from toilet wastewater, using a pilot-scale airlift external circulation membrane bioreactor (AEC-MBR) was studied. The results showed that the use of AEC-MBR with limited addition of alkaline reagents and volumetric loading rates of inorganic-N of 0.19-0.40 kg inorganic-N/(m3·d) helped achieve the desired nitrification and denitrification. Furthermore, the effects of pH and dissolved oxygen (DO) on inorganic-N removal were examined. Under the condition of MLSS at 1.56-2.35 g/L, BOD5/ammonia nitrogen (NH/-N) at 1.0, pH at 7.0-7.5, and DO at 1.0-2.0 mg/L, the removal efficiencies of NH4 -N and inorganic-N were 91.5% and 70.0%, respectively, in the AEC-MBR. The cost of addition of alkaline reagent was approximately 0.5-1.5 RMB yuan/m3, and the energy consumption was approximately 0.72 kWh/m3 at the flux of 8 L/(m2·h). 相似文献
84.
Organic matter and concentrated nitrogen removal by shortcut nitrification
and denitrification from mature municipal landfill leachate 总被引:5,自引:0,他引:5
An UASB+Anoxic/Oxic (A/O) system was introduced to treat a mature landfill leachate with low carbon-to-nitrogen ratio and high ammonia concentration. To make the best use of the biodegradable COD in the leaehate, the denitrifieation of NOx^--N in the reeireulation effluent from the elarifier was carried out in the UASB. The results showed that most biodegradable organic matters were removed by the denitrifieation in the UASB. The NH4^+-N loading rate (ALR) of A/O reactor and operational temperature was 0.28- 0.60 kg NH4^+-N/(m^3-d) and 17-29℃ during experimental period, respectively. The short-cut nitrification with nitrite accumulation efficiency of 90%-99% was stabilized during the whole experiment. The NH4^+-N removal efficiency varied between 90% and 100%. When ALR was less than 0.45 kg NH4^+-N/(m^3.d), the NH4^+-N removal efficiency was more than 98%. With the influent NH4^+-N of 1200-1800 mg/L, the effluent NH4^+-N was less than 15 mg/L. The shortcut nitrification and denitrifieation can save 40% carbon source, with a highly efficient denitrifieation taking place in the UASB. When the ratio of the feed COD to feed NH4^+-N was only 2-3, the total inorganic nitrogen (TIN) removal efficiency attained 67%-80%. Besides, the sludge samples from A/O reactor were analyzed using FISH. The FISH analysis revealed that ammonia oxidation bacteria (AOB) accounted for 4% of the total eubaeterial population, whereas nitrite oxidation bacteria (NOB) accounted only for 0.2% of the total eubaeterial population. 相似文献
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Aged refuse from waste landfills closed for eight years was examined and found to contain rich methanotrophs capable of biooxidation
for methane. Specially, community structure and methane oxidation capability of methanotrophs in the aged refuse were
studied. The amount of methanotrophs ranged 61.97 103–632.91 103 cells/g (in dry basis) in aged refuse from Shanghai Laogang
Landfill. Type I and II methanotrophs were found in the aged refuse in the presence of sterilized sewage sludge and only Type I
methanotrophs were detected in the presence of nitrate minimal salt medium (NMS). The clone sequences of the pmoA gene obtained
from the aged refuse were similar to the pmoA gene of Methylobacter, Methylocaldum, and Methylocystis, and two clones were distinct
with known genera of Type I methanotrophs according to phylogenetic analysis. Aged refuse enriched with NMS was used for methane
biological oxidation and over 93% conversions were obtained. 相似文献
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