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1.
SFBR工艺顺序进行硝化和反硝化的动力学研究   总被引:3,自引:0,他引:3  
采用序半连续式反应器(sequencing fed-batch reactor,简称SFBR)对人工合成废水顺序地进行硝化和反硝化动力学进行了研究.硝化和反硝化所用微生物为活性污泥.反应器在不同的操作条件进行操作,获得了用于确定动力学常数的数据;获得动力学参数um=0.05 h-1,KNO=2.0 mg/L,y=0.47 mg X/mg N,a=0.001 h^-1.类似地确定了反硝化动力学参数kD=0.01 h^-1和KD,NO=0.4 mg/L.在一定范围内硝化和反硝化速率随着氨浓度和硝酸盐浓度的增加而增加.实验数据表明,硝化和反硝化的动力学符合Monod动力学方程.  相似文献   

2.
讨论了影响同步硝化反硝化反应的各参数,并进行了单因素实验与正交实验,获得了同步硝化反硝化生物脱氮工艺运行的最佳条件:DO浓度控制在0.5~2 mg/L,COD浓度为600~800mg/L,混合液悬浮固体(MLSS)为5000 mg/L,pH值在8.0左右,反应时间为6 h.在此条件下,氨氮及COD的去除率都较高,分别达85%和95%,总氮去除率为68 5%.  相似文献   

3.
同步硝化反硝化工艺中DO浓度对N2O产生量的影响   总被引:1,自引:0,他引:1  
采用序批式生物膜反应器(SBBR),在连续曝气全程好氧的运行条件下,考察不同溶解氧浓度对同步硝化反硝化脱氮性能及N2O产量的影响.控制溶解氧浓度恒定在1、2、2.5和3 mg/L.结果表明,DO为2 mg/L和2.5 mg/L时,氨氮去除率分别为97.9%和98.5%,同步硝化反硝化率均为99%.DO为2 mg/L时,...  相似文献   

4.
碱度指示MBR中同步硝化反硝化的研究   总被引:5,自引:0,他引:5  
在连续的操作环境下,通过改变在膜生物反应器(MBR)中的C/N和曝气量,研究碱度对同步硝化反硝化脱氮效果的指示作用。结果发现,在反硝化完全的情况下,出水碱度(330~440 mg/L)在硝化过程中较高并与出水TN表现出好的线性关系(Alk=3.22[N]+333.08,R2=0.85);在硝化完全的情况下,出水碱度(60~280 mg/L)在反硝化过程中较低并与出水TN也有很好的线性关系(Alk=-4.93[N]+317.86,R2=0.89)。实际消耗的碱度可以作为另一个指示因子(ΔAlkexper),实际消耗的碱度随出水的NH4+-N浓度升高而降低(ΔAlkexper=-3.85[N]+149.11,R2=0.88,出水NO3--N4.5 mg/L);实际消耗的碱度随出水的NO3--N浓度升高而升高(ΔAlkexper=3.68[N]+161.11,R2=0.88,出水NH4+-N5.5 mg/L)。虽然pH的变化有一定的规律,但是对SND脱氮效果指示不灵敏。  相似文献   

5.
同步硝化反硝化生物脱氮技术研究   总被引:5,自引:0,他引:5  
讨论了影响同步硝化反硝化反应的各参数,并进行了单因素实验与正交实验,获得了同步硝化反硝化生物脱氮工艺运行的最佳条件:DO浓度控制在0.5~2mg/L,COD浓度为600~800mg/L,混合液悬浮固体(MLSS)为5000mg/L,pH值在8.0左右,反应时间为6h。在此条件下,氨氮及COD的去除率都较高,分别达85%和95%,总氮去除率为68.5%。  相似文献   

6.
戴鹏  张勇 《环境工程学报》2008,2(4):507-510
研究了压力式接触氧化法的脱氮性能,分析了容积负荷、溶解氧和停留时间等因素对反应器脱氮效果的影响.研究表明,压力式接触氧化法具有明显的同步硝化反硝化现象,当HRT=1.8 h时,DO高达5.4 mg/L,可获得90%以上的反硝化率.当HRT=1.8 h,溶解氧4~5 mg/L,容积负荷为10~12 kg COD/(m3·d)时,氨氮去除率80%左右,总氮去除率达70%~80%.  相似文献   

7.
采用SBBR在溶解氧1.0 mg/L条件下考察了不同温度对实际炼油催化剂废水脱氮系统效能的影响.结果表明,SBBR容积负荷及同步硝化反硝化(SND)三氮去除率与进水氨氮浓度正相关.不同进水浓度下,反应器SND三氮去除率最高可达40%左右.33、30及28℃条件下,反应器亚硝积累率均可稳定保持在90%以上.不同温度下短程硝化反硝化pH值及ORP变化趋势基本一致,结合在线监控pH值及ORP变化规律调控反应时间,最大限度保证短程硝化的稳定性.  相似文献   

8.
溶解氧和有机碳源对同步硝化反硝化的影响   总被引:9,自引:5,他引:9  
利用SBR反应器,探讨了溶解氧(DO)和有机碳源(COD)对同步硝化好氧反硝化的影响.结果表明,DO范围在0.5~0.6 mg/L时最适合于同步硝化好氧反硝化脱氮.在同步硝化反硝化过程中出现了亚硝酸盐氮的积累,推断经由短程硝化反硝化途径.总氮的去除率随着COD/N(碳氮比)的增加而增加,当COD/N为10.05时,总氮去除率最高可达70.39%.继续增加碳氮比时,总氮去除率增加不多,并且还会导致硝化作用不完全.当存在足够的易降解有机碳源时,能发生完全的好氧反硝化作用.  相似文献   

9.
采用序批式生物膜反应器(SBBR),在连续曝气全程好氧的运行条件下,考察不同溶解氧浓度对同步硝化反硝化脱氮性能及N2O产量的影响。控制溶解氧浓度恒定在1、2、2.5和3 mg/L。结果表明,DO为2 mg/L和2.5 mg/L时,氨氮去除率分别为97.9%和98.5%,同步硝化反硝化率均为99%。DO为2 mg/L时,系统中N2O产生量最低,为0.423 mg/L,占氨氮去除量的1.4%;DO为3 mg/L时N2O的产生量最高,为2.01 mg/L,是DO为2 mg/L时的4.75倍。系统中亚硝酸盐的存在可能是高溶解氧条件下N2O产量增加的主要原因,同步过程中没有NOx-的积累即稳定的SND系统有利于降低生物脱氮过程中N2O的产生量。  相似文献   

10.
膜生物反应器同步硝化反硝化系统的研究   总被引:2,自引:2,他引:0  
设计结构合理的膜生物反应器,驯化培养硝化污泥,复配反硝化细菌,构建了具有同步硝化反硝化功能且能去除COD的膜生物反应器系统.MLVSS的增高和污泥结构的改善为同步硝化反硝化提供条件.进水氨氮浓度在50 mg/L,MLVSS为8 g/L时,最佳HRT为4~6 h,气量控制在0.5 m3/h左右,TN去除率达80%以上.系统承受负荷变化范围0~0.36 kg N/(m3·d),TN去除率均能保持80%左右,COD去除率稳定在90%.系统投加粉末活性炭的方法可以改善污泥结构,进而减轻膜污染.在试验阶段内,添加了PAC的活性污泥MLVSS的高低对膜通量的影响不大,膜通量基本保持稳定.  相似文献   

11.
As a part of a study developing a biological reactive barrier system to treat nitrate-contaminated groundwater, the effects of reactive media composition and co-contaminants on sulfur-oxidizing autotrophic denitrification were investigated. The size of sulfur granules affected the denitrification rates; kinetic constants of 2.883, 2.949, and 0.677 mg-N(1/2)/L(1/2)/day were obtained when the granule sizes were below 2 mm, between 2 and 5 mm, and over 5 mm, respectively. When the volume ratios of sulfur to limestone were 1:1, 2:1, 3:1, and 4:1, kinetic constants of 5.490, 3.903, 4.072, and 2.984 mg-N(1/2)/L(1/2)/day were obtained, respectively. The presence of TCE up to 20 mg/L didn't significantly affect nitrate removal efficiency. At the TCE concentration of 80 mg/L, however, nitrate removal was markedly inhibited. Also, Zn and Cu inhibited the denitrification activity at more than 0.5 mg/L of concentration whereas Cr (VI) did not significantly affect the nitrate removal efficiency at all levels tested.  相似文献   

12.
In the hydroblasting of ships' boiler tubes, a wastewater high in nitrite (as high as 1200 mg litre(-1)) is produced by the US Navy. This research has evaluated the use of a suspended-growth biological system to treat this wastewater by denitrification. Two biological treatment configurations were evaluated (direct denitrification versus nitrification/denitrification) with nitrification/denitrification producing better nitrite removal efficiencies (54 to 62% versus 40%, respectively). The introduction of metals (cadmium, chromium, lead, copper and iron) in concentrations typical for this wastewater did not inhibit the nitrite removal efficiencies. The influent metal concentrations ranged from 0.02 mg litre(-1) for cadmium to 22 mg litre(-1) for iron and the metal removal efficiencies ranged from 4.8% for cadmium to 50% for copper. Increasing sludge age resulted in improved nitrite removal efficiencies (52%, 57% and 74% for sludge ages of 4, 6 and 8 days, respectively). The resulting biokinetic constants were similar to those reported by others for lower influent concentrations of nitrite or nitrate (Ygs=0.02 mg/mg; Ygn=0.16 mg/mg; Yb=0.8 mg/mg; and b=0.006 h(-1)).  相似文献   

13.
低COD/N-NH_4比废水的同时硝化反硝化生物处理策略   总被引:3,自引:0,他引:3  
从生化反应计量学出发 ,提出了对低 COD/ N- NH4比废水可以通过控制营养配比、调控溶解氧浓度和控制生物硝化及生物反硝化 ,经过 NO- 2 途径进行同时硝化反硝化的生物处理策略。对香港低 COD/ N- NH4比的垃圾渗漏水用同时硝化反硝化处理的成功实例进行了讨论  相似文献   

14.
超声波和零价铁联用对氯代苯酚脱氯降解作用的研究   总被引:2,自引:1,他引:1  
赵保卫  周怡  赵艺 《环境工程学报》2009,3(11):1973-1976
采用超声波和零价铁联用对氯代有机物3氯苯酚(CP)、2,4-二氯苯酚(DCP)和2,4,6-三氯苯酚(TCP)模拟废水进行了脱氯处理研究。以单因素法, 考察了铁粉初始投加量、溶液的初始浓度、超声波功率和溶液的pH值等因素对氯代酚降解的影响,并探讨了降解反应动力学。结果表明,超声波和零价铁联用对氯酚具有显著的降解效果,当水样初始浓度为25 mg/L,溶液pH呈弱酸性,超声波功率为200 W时,氯代酚的脱氯效率达到最大值。降解反应符合准一级反应,CP、DCP和TCP的反应速率常数分别0.0613 h-1、0.374 h-1和0.197 h-1。  相似文献   

15.
Huang JS  Chou HH  Chen CM  Chiang CM 《Chemosphere》2007,68(2):382-388
A laboratory study using a combined upflow anaerobic sludge bed (UASB)-activated sludge (AS) reactor system was undertaken to explore the effect of recycle-to-influent ratio (R(e)=1, 2, and 3) on the activities of nitrifiers and denitrifiers. Suspended-solids pre-settled piggery wastewater was used as the substrate-feed wastewater. At the R(e) of 1-3, the combined reactor system achieved efficient removal of COD (96-97%), TKN (100%) and total nitrogen TN (54-77%). Methanogenesis occurred with nearly-complete denitrification in the UASB reactor, whereas complete nitrification took place in the AS reactor. A higher R(e) (i.e., accompanied with a shorter solids retention time) resulted in a larger amount of high-activity denitrifiers and thereby achieved a higher TN removal efficiency. Compact granules and a high biomass concentration in the UASB reactor were observed. At the R(e) of 1-3, the maximum specific reaction rate of nitrifiers (0.45-0.49 NH(4)(+)-NmgVSS(-1)d(-1)) and the specific nitrification rates of mixed culture (0.18-0.22mg NH(4)(+)-NmgVSS(-1)d(-1)) in the AS reactor varied slightly; whereas the maximum specific reaction rate of denitrifiers (0.18-0.27mg NO(x)(-)-NmgVSS(-1)d(-1)) and the specific denitrification and COD removal rates of mixed culture (0.025-0.050mg NO(x)(-)-NmgVSS(-1)d(-1); 0.24-0.31mgCODmgVSS(-1)d(-1)) in the UASB reactor increased with increasing R(e). The primary finding of the study is that the combined UASB-AS reactor system should be operated at a higher R(e) to maintain high-activity denitrifiers to remove organic materials and nitrogen from piggery wastewater.  相似文献   

16.
Nitric oxide (NO) is an intermediate of denitrification process and can be produced by denitrifiers, nitrifiers and other bacteria. In our experiments we measured the dynamic flow of NO depending on oxidation reduction potential (ORP). Different ORP-ranges were related to various carbon loading stages in the wastewater treatment pilot plant. Nitrification and denitrification were achieved by a sequence of aeration and non-aeration periods. Our measurements show that different carbon loading conditions (low feed, balanced and overloaded conditions) did not change the range of the mixing ratio of NO emissions when the aeration conditions like air-flow and temperature were kept constant. Minimum and maximum NO mixing ratios were 34.7 and 91.8 ppbv; 52.3 and 91.3 ppbv; 57.6 and 109 ppbv for low feed, balanced and overloaded conditions, respectively. The curve of the NO graph relied on nitrification/denitrification dynamics. The dependence of NO release on different ORP and CO2-release during the various conditions are shown. Longer aeration times resulted in an increased release of gaseous NO. The net-release of NO g(-1) nitrogen removed was between 0.014% and 0.028%. The NO fluxes to the air were observed between 8.3 and 14.9 mg m(-2) d(-1) NO. The major release occurred during high aeration periods whereas the concentration of dissolved [NOaq] in the wastewater was less than 0.05% of the gaseous release due to very low solubility of the NO.  相似文献   

17.
侧沟式一体化OCO工艺中DO和C/N对同步硝化反硝化的影响   总被引:1,自引:0,他引:1  
以自配模拟生活污水为处理对象,研究了不同DO和C/N对侧沟式一体化OCO反应器同步硝化反硝化和COD降解效果的影响。实验结果表明,维持进水COD均值约为300 mg/L,TN约为40 mg/L,MLSS约为2 600 mg/L,进水流量为20 L/h时,COD去除率随着DO的增大逐步提高,当好氧区DO均值约为2.0 mg/L时,同步硝化反硝化效果最好,TN去除率达到了80%以上;维持好氧区DO均值约为2.0 mg/L,MLSS约为2 600 mg/L,进水流量为20 L/h时,不同C/N对COD去除率影响不大,当进水C/N约为8时,同时硝化反硝化效果最好,TN去除率均值达到了82%。  相似文献   

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