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1.
接种污泥源对厌氧氨氧化启动效能的影响   总被引:3,自引:0,他引:3  
厌氧氨氧化(anaerobic ammonium oxidation,ANAMMOX)菌生长缓慢是影响其实际应用的主要问题之一,选取合适的接种污泥十分重要.本研究采用好氧污泥、厌氧颗粒污泥和厌氧消化污泥3种接种污泥,分别经过61、70和85 d的运行均实现了厌氧氨氧化过程,氨氮去除率分别为82%、92%和91%,总氮去除率达76%、82%和80%.分别接种3种污泥源的厌氧序批式反应器(ASBR)R1、R2、1t3出水pH值最终稳定在8.4、8.5、8.5.好氧污泥呈絮状,但沉降性比接种前好,厌氧颗粒污泥解体后最终形成粒径集中在0.5~1.0 mm的污泥,厌氧消化污泥则呈沙化状态,有细小颗粒出现.根据厌氧氨氧化细胞产率系数及NH4+-N、NO2--N去除量和NO3--N生成量之间的计量学关系,估算出厌氧氨氧化菌产率系数(以1 mol NH4+产生的CH2O0.5N0.15量计)分别为0.080、0.105和0.114 mol·mol-1,说明反应器内厌氧氨氧化菌有不同程度的衰减.总体而言,厌氧颗粒污泥是富集厌氧氨氧化菌的最适污泥源.  相似文献   

2.
采用上流式厌氧污泥床处理某垃圾填埋场渗滤液.实验结果表明,在厌氧氨氧化活性稳定后,反应器对氨氮、亚硝氮具有较好的处理效果,氨氮和亚硝氮的平均去除率分别达到98.42%和99.01%,相应的平均容积去除负荷分别为93.64 mg·l-1·d-1和127.57 mg·l-1·d-1,COD的平均去除率为23.51%,平均容积去除负荷为84.53 mg·l-1·d-1.通过GC-MS总共检测出48种主要有机污染物,其中14种有机物的去除率为100%,2种有机物的去除率介于90%和100%之间,7种有机物的去除率介于50%和90%之间,此外还有13种有机物去除率低于50%,反应中亚硝氮和氨氮的去除率比值为1.37,反应器中存在厌氧氨氧化和反硝化的协同作用.  相似文献   

3.
浅水体浮萍污水净化系统的除氮途径   总被引:20,自引:0,他引:20  
以稀释的猪场厌氧污水为供试水样,少根紫萍为供试生物材料,对夏、冬2季浅水体浮萍污水净化系统TN、NH4 -N和NOx--N(NO2--N与NO3--N之和)的去除途径进行了试验研究。结果表明,在夏季气温条件下,TN通过气态氨挥发、浮萍系统吸收/吸附NH4 -N和NOx--N得以去除,3途径去除的N分别占TN去除量的30.5%、15.9%和53.6%;NH4 -N通过气态氨挥发、浮萍系统吸收/吸附和硝化反应得以去除,3途径去除的N分别占NH4 -N总去除量的33.1%、17.3%和49.6%;NOx--N则完全通过浮萍系统吸收/吸附得以去除。在冬季气温条件下,TN通过气态氨挥发和浮萍系统吸收/吸附NH4 -N得以去除,2途径去除的N分别占TN去除量的31.7%和68.3%;NH4 -N通过气态氨挥发、浮萍系统吸收/吸附和硝化反应得以去除,3途径去除的N分别占NH4 -N总去除量的28.9%、69.5%和1.6%;而水体中的NOx--N含量始终保持稳定。  相似文献   

4.
氨氮废水的厌氧氨氧化生物脱氮研究   总被引:1,自引:0,他引:1  
利用从厌氧污泥中筛选和驯化的厌氧氨氧化(Anammox)菌直接启动UASB反应器,通过缩短水力停留时间(HRT)提高系统运行负荷,探讨水力停留时间对模拟废水脱氮性能的影响。结果表明,(1)富含Anammox菌的颗粒污泥能够快速启动反应器(只需14d)。(2)连续91d的HRT测试期间,系统具有良好的脱氮性能,且随着HRT的缩短,系统的脱氮效率具有波动上升的特点。NH4+-N、NO2--N和TN(总氮)的平均去除率超过70.0%。(3)系统总氮容积负荷(TNLR)和总氮去除负荷(TNRR)最大值(以N计)分别为2.04kg·m-3·d-1和1.56kg·m-3·d-1。(4)系统能够比较好的遵循Anammox生物脱氮的理论途径:NH4+-N、NO2--N的去除速率与NO3--N的生成速率的比例为1?1.15?0.22,与其相应理论值(1?1.32?0.26)非常接近。  相似文献   

5.
利用筛选的耐高温亚硝化单胞菌结合适量的市政污水厂活性污泥,通过逐步提高温度进行曝气、驯化、挂膜,获得能够在38~47℃条件具有高氨氧化活性的硝化生物膜,在进水氨浓度120~180mg/L,氨氧化率达到90%~99.9%;将该生物膜回复常温硝化,显示其氨氧化活性较差,氨氧化率仅35%~70%.对其氨氧化产物分析发现,低于43℃时被氧化的氨氮为117~143mg/L,亚硝酸盐和硝酸盐积累较高,总浓度在115~135mg/L;但随着温度升高至44~45℃,亚硝酸盐积累显著下降到5.6~27.9mg/L,NO3--N低于2mg/L;至47℃稳定运行期间,NO2--N维持在10mg/L以下,NO3--N在2mg/L以下.对反应器中消耗的碱度的分析表明,当温度从43℃逐渐升高时,碱度消耗明显下降,由7.16~9.14mg(CaCO3)/mg(NH4+-N)降至4.08~5.19mg(CaCO3)/mg(NH4+-N).结合大量的NH4+-N被氧化且氨氧化产物中又只有少量的NO2--N和NO3--N,以及碱度消耗明显下降的特征,推测在高温条件下发生了自养硝化反硝化脱氮现象.  相似文献   

6.
肖羽堂  吕晓龙 《生态环境》2006,15(2):212-215
为去除微污染原水中的NO2--N和提高水厂的饮水安全性,采用弹性填料微孔曝气富氧生物硝化法处理某微污染水源原水,探讨了原水不同水质及天然水体温度下富氧生物硝化工艺的除NO2--N效果,研究了水温与富氧生物硝化工艺NO2--N去除效果的相关性。结果表明,当富氧生物硝化工艺正常稳定运行HRT为1.2h,气水比为1∶1,pH6.5~7.4,DO为8~10mg·L–1,原水水温26~30℃、NO2--N0.05~0.4mg·L–1、NH4 -N0.4~1.8mg·L–1和CODMn7.01~9.61mg·L–1时,富氧生物硝化工艺NO2--N的去除率为77%~100%;原水水温20~22℃、NO2--N0.09~0.5mg·L–1、NH4 -N0.7~2.5mg·L–1和CODMn5.84~9.11mg·L–1时,去除率为44%~63%;原水水温10~12℃、NO2--N0.04~0.8mg·L–1、NH4 -N0.9~4.5mg·L–1·和CODMn6.53~9.27mg·L–1时,去除率为25%~40%。原水水温与富氧生物硝化工艺NO2--N去除率呈现明显的线性相关性,相关方程为:y=3.3628x-9.528,相关系数为0.8744。  相似文献   

7.
采用垂向移动式生态床与生态浮床两种生态处理技术对太湖入湖河流低污染水进行了处理试验.结果表明,垂向移动式生态床对COD、NH3-N、NO3-N、TN和TP的去除率分别为38.6%、59.2%、89.6%、51.5%和78.6%,生态浮床对上述物质的去除率分别为40.7%、47.9%、85.1%、54.2%和62.5%.垂向移动式生态床技术对NH3-N、NO3-N和TP的去除率高于生态浮床技术,但后者对COD和TN的去除效果略优于前者.  相似文献   

8.
序批式膜反应器处理高氨氮渗滤液同步硝化反硝化特性   总被引:1,自引:1,他引:0  
应用序批式生物膜反应器(SBBR)处理实际垃圾渗滤液,在DO浓度分别为0.45mg.l-1和1.19mg.l-1条件下,研究了系统的有机物,氨氮和总氮去除特性以及游离氨(FA),DO对系统同步硝化反硝化(SND)类型的影响.250d试验研究表明:SBRR系统能够稳定高效地同步去除渗滤液内高浓度有机物和高浓度氨氮.在初始COD浓度为122—2385 mg.l-1的情况下,出水COD浓度为23—929 mg.l-1,有机物最大去除速率25.6 kgCOD.m-2载体.d-1.在初始NH4+-N浓度为40—396.5 mg.l-1的情况下,出水NH4+-N浓度为0—41.2 mg.l-1,最大硝化速率2.87 kgN.m-2载体.d-1.SBBR系统内发生了明显的同步硝化反硝化(SND)现象,TN平均去除率分别为73.8%(DO=0.45 mg.l-1)和30%(DO=1.19 mg.l-1)左右.当FA浓度在1.5—11.6 mg.l-1范围内时,系统中共存硝酸型SND和亚硝酸性SND.当FA从18.6 mg.l-1增加到56 mg.l-1,系统中形成稳定的亚硝酸SND.因此,FA是影响系统SND类型的主要因素,DO可促进亚硝酸性SND向硝酸型SND转化.  相似文献   

9.
异养硝化微生物菌剂及其好氧颗粒污泥的脱氮试验   总被引:1,自引:0,他引:1  
在3个相同的反应器(No.1、No.2、No.3)中,向活性污泥中投加异养硝化微生物菌剂,以批次试验和SBR试验的方式,研究了异养硝化微牛物菌剂对模拟废水的处理效果.结果表明,该菌剂可以大幅度提高活性污泥对氨氮和COD的去除率.批次运行试验中,反应器No.1运行3 d,氨氮去除率大于98.11%,COD去除率大于99%.该投加菌剂的活性污泥每克干污泥的脱氮能力为15.77 mg d-1.以SBR方式运行16 d的试验中,可能是由于功能菌株的流失导致3个反应器的脱氮效果有逐步降低的趋势.采用该异养硝化脱氮微生物菌剂培育出的异养硝化好氧颗粒污泥对模拟废水进行了脱氮试验.在较低运行温度(11~13℃)下以SBR方式运行10 d,反应器处理效果稳定,氨氮去除率70.75%~76.42%,COD去除率在90%以上.该异养硝化好氧颗粒污泥每克干颗粒的脱氮能力为372.00 mg d-1.以上试验都没有发现硝酸氮和亚硝酸氮的积累.图5表1参19  相似文献   

10.
厌氧氨氧化污水处理工艺及其实际应用研究进展   总被引:5,自引:0,他引:5  
厌氧氨氧化(Anammox)反应是指在厌氧或者缺氧条件下,厌氧氨氧化微生物以NO2--N为电子受体,氧化NH4+-N为氮气的生物过程。该过程是一种新型自养生物脱氮反应,反应无需外加有机碳源,且污泥产生量小,相对于传统硝化/反硝化脱氮工艺具有显著优势,对处理含高氨氮废水特别是低有机碳源废水具有重大的潜在实际应用价值。近年来,厌氧氨氧化为主体的污水处理工艺已经在各种类型废水处理中得到成功应用,取得了显著的经济和环境效益。综述了厌氧氨氧化反应中常用的亚硝化-厌氧氨氧化工艺(Sharon-Anammox工艺)和完全自养脱氮工艺(CANON工艺)的作用原理、环境调控因子与功能性微生物种群动态分布等最新研究进展,且阐述了两工艺在垃圾渗滤液、厌氧消化液和猪场养殖废水等低碳氮比废水的处理应用效能和最优化控制参数等,为厌氧氨氧化为主体的污水处理工艺的工程化应用提供了技术支撑。最后,总结并介绍了国内外厌氧氨氧化工艺现场规模化应用实例和控制参数,同时,对厌氧氨氧化污水处理工艺实际应用的研究前景及亟待解决的问题进行了展望,认为现场应用中Anammox菌的快速富集培养、有机碳源对Anammox菌的抑制效应以及厌氧氨氧化工艺的广谱适用性等将是厌氧氨氧化工艺大规模应用的难点和热点问题。为厌氧氨氧化工艺实际应用控制和推广提供了理论基础,具有重要的理论和现实意义。  相似文献   

11.
During brewery wastewater treatment by a hydrolyzation-food chain reactor (FCR) system, sludge was recycled to the anaerobic segment. With the function of hydrolyzation acidification in the anaerobic segment and the processes of aerobic oxidation and antagonism, predation, interaction and symbiosis among microbes in multilevel oxidation segment, residual sludge could be reduced effectively. The 6-month dynamic experiments show that the average chemical oxygen demand (COD) removal ratio was 92.6% and average sludge production of the aerobic segment was 8.14%, with the COD of the influent at 960–1720 mg/L and hydraulic retention time (HRT) of 12 h. Since the produced sludge could be recycled and hydrolyzed in the anaerobic segment, no excess sludge was produced during the steady running for this system.  相似文献   

12.
The highest removal efficiencies of COD and TN were achieved under 10 mg/L of Al3+. The highest TP removal efficiency occurred under 30 mg/L of Al3+. EPS, PS and PN concentrations increased with the addition of Al3+. Sludge properties significantly changed with the addition of Al3+. Aluminum ions produced by aluminum mining, electrolytic industry and aluminum-based coagulants can enter wastewater treatment plants and interact with activated sludge. They can subsequently contribute to the removal of suspended solids and affect activated sludge flocculation, as well as nitrogen and phosphorus removal. In this study, the effects of Al3+ on pollutant removal, sludge flocculation and the composition and structure of extracellular polymeric substances (EPS) were investigated under anaerobic, anoxic and oxic conditions. Results demonstrated that the highest chemical oxygen demand (COD) and total nitrogen (TN) removal efficiencies were detected for an Al3+ concentration of 10 mg/L. In addition, the maximal dehydrogenase activity and sludge flocculation were also observed at this level of Al3+. The highest removal efficiency of total phosphorus (TP) was achieved at an Al3+ concentration of 30 mg/L. The flocculability of sludge in the anoxic zone was consistently higher than that in the anaerobic and oxic zones. The addition of Al3+ promoted the secretion of EPS. Tryptophan-like fluorescence peaks were detected in each EPS layer in the absence of Al3+. At the Al3+ concentration of 10 mg/L, fulvic acid and tryptophan fluorescence peaks began to appear, while the majority of protein species and the highest microbial activity were also detected. Low Al3+ concentrations (<10 mg/L) could promote the removal efficiencies of COD and TN, yet excessive Al3+ levels (>10 mg/L) weakened microbial activity. Higher Al3+ concentrations (>30 mg/L) also inhibited the release of phosphorus in the anaerobic zone by reacting with PO43-.  相似文献   

13.
高浓度洗毛废水生物降解的研究   总被引:9,自引:0,他引:9  
根据高浓度洗毛废水的水质特性,选择、驯化出高效污泥和菌株,并对生物降解该废水时的工艺、污泥量、时间三要素进行了深入的研究.结果表明,对于物化处理彻底的废水, H/ O 工艺( 水解/ 好氧工艺) 与好氧工艺处理差异不大;70 % 左右物化效果时, H/ O 工艺处理时, C O Dcr 去除率增加;废水在处理过程中成分变化大,后段水可用筛选优势菌的方法处理.实验室流动模型运行结果为:在原水ρ( C O Dcr) 18544 mg/ L 和设定t H R( 延滞期) 下,混凝后出水ρ( C O Dcr) 5322 mg/ L,水解池出水ρ( C O Dcr) 4763 mg/ L,好氧池出水 C O Dcr199 .9 mg/ L,总 C O Dcr去除率为98 .9 %  相似文献   

14.
This study evaluated the influence of clinoptilolite on the performance of activated sludge system shocked by high concentration of ammonium. The ammonium and chemical oxygen demand (COD) removal from the experimental reactor containing clinoptilolite and from the clinoptilolite-free control reactor was determined. The ammonium and COD removal was approximately 8 and 20% higher in the experimental reactor than in the control reactor, respectively. The removal increased with an increase in clinoptilolite concentration over the tested range up to 50?mg?L?1. The presence of clinoptilolite resulted in the sludge flocs being more compacted with smoother surfaces and edges. Molecular biological analysis revealed that clinoptilolite increased the DNA diversity, richness, and evenness of sludge microbes. The enhanced-performance activated sludge previously treated with clinoptilolite was less influenced by the shock of ammonium than non-treated sludge in terms of the ammonium and COD removal. These results suggest that clinoptilolite enhanced the performance of activated sludge system in the removal of ammonium and COD. Amendment of activated sludge with natural zeolites may thus improve the efficiency of wastewater treatment.  相似文献   

15.
竹炭固定床-聚氨酯流化床一体化反应器处理生活污水   总被引:1,自引:0,他引:1  
为解决剩余污泥问题,研制了产泥率少的片状竹炭固定床-聚氨酯切块流化床一体化反应器,在保证流化床高浓度微生物的同时,维持竹炭固定床的好氧,兼性厌氧,以实现污泥的原位分解.试验采用南京林业大学紫湖溪生活污水,COD为140—170 mg·L-1,TP为1—2 mg·L-1,TN为35—45 mg·L-1,氨氮25—30 mg·L-1,SS为35—40 mg·L-1.反应器在第30 d启动成功.稳定的运行结果显示,水力停留时间为10 h时,反应器对有机物的去除效果较好,出水中COD、TN、TP、氨氮的浓度分别为19 mg·L-1、7 mg·L-1、0.47 mg·L-1、4.5 mg·L-1,去除率达到87%、76%、72%、84%,出水中各指标均满足《城镇污水处理厂污染物排放标准》(GB18918—2002)中的一级B排放标准.经竹炭固定床处理的出水SS浓度很低,长期维持在14 mg·L-1左右,二沉池出水中的SS平均浓度为12.7 mg·L-1,整个反应器对二沉池依赖性较小.  相似文献   

16.
Based on the anoxic/oxic (A/O) step feed process, a modified University of Cape Town (UCT) step feed process was developed by adding an anaerobic zone and adjusting sludge return pipeline. Performance evaluation of these two types of processes was investigated by optimizing operational parameters, such as the anaerobic/anoxic/oxic volumes, internal recycle ratios, and sludge retention times, for removal of chemical oxygen demanding (COD), nitrogen, and phosphorus. Results showed high removal efficiencies of COD of (85.0±1.7)%, ammonium of (99.7±0.2)%, total nitrogen (TN) of (85.5±1.7)%, phosphorus of (95.1±3.3)%, as well as excellent sludge settleability with average sludge volume index of (83.7±9.5) L·mg-1 in the modified UCT process. Moreover, (61.5±6.0)% of influent COD was efficiently involved in denitrification or phosphorus release process. As much as 35.3% of TN was eliminated through simultaneous nitrification and denitrification process in aerobic zones. In addition, the presence of denitrifying phosphorus accumulating organisms (DNPAOs), accounting for approximately 39.2% of PAOs, was also greatly beneficial to the nitrogen and phosphorus removal. Consequently, the modified UCT step feed process was more attractive for the wastewater treatment plant, because it had extremely competitive advantages such as higher nutrient removal efficiencies, lower energy and dosages consumption, excellent settling sludge and operational assurance.  相似文献   

17.
低碳氮比(C/N)废水处理是含氮废水处理中的难题之一.本实验在C/N为4:1和2:1(COD和NH4+-N浓度分别为400 mg·L-1和100 mg·L-1,400 mg·L-1和200 mg·L-1)条件下,考察好氧颗粒污泥系统对低碳氮比废水的处理效果、长期运行稳定性,研究C/N对好氧颗粒微生物结构变化的影响.研究结果表明,在C/N为4:1的废水中接种活性污泥培养好氧颗粒污泥,形成的颗粒沉降性能良好,MLSS为4.94 g·L-1,SVI30为40 mL·g-1,COD去除率90%以上,氨氮去除率接近100%.降低碳氮比,即C/N为2:1后,好氧颗粒的物理及硝化性能无明显变化,MLSS为11.38 g·L-1,SVI30/SVI5维持在1左右,COD去除率大于85%,氨氮去除率98%.碳氮比降低使颗粒微生物多样性减少,其中陶厄氏菌受影响较小,而硝化功能菌出现更替:噬氢菌、食酸菌、里德拜特氏菌消失,鞘氨醇单胞菌、束缚杆菌等成为优势菌种.实验表明,该低碳氮比条件下好氧颗粒污泥系统能够稳定运行,且具有优良的处理性能.  相似文献   

18.
The biodegradation of two popular nitramine energetics were investigated. The HMX (octa‐hydro‐1,3,5,7‐tetranitro‐1,3,5,7‐tetrazocine) was mineralized by anaerobic mixed denitrifiers in digested sewage sludge culture. An initial HMX concentration of 120 mg/L decreased to a non‐detectable level (> 99% removal efficiency) in 8 days of incubation under strict anaerobic conditions. It was, however, not effectively metabolized by single denitrifying species, P. aeruginosa, B. subtilis in a nitrogen limiting condition under their optimum growth conditions. The other nitramine energetic, ADN (ammonium dinitramide), was mineralized well in the anaerobic mixed culture. The initial ADN concentration of 250 mg/L was reduced to non‐detectable levels (> 99% removal efficiency) in 5 days of incubation under anaerobic conditions. These results show that the anaerobic mixed culture, compared to the pure monoculture, is superior in the degradation of nitramine energetics.  相似文献   

19.
A pilot-scale anaerobic ammonia oxidation (ANAMMOX) reactor was used to treat mixed wastewater resulting from a chlortetracycline and starch production process. The results, collected over the course of 272 days, show that the ratio of influent ammonium to nitrite, pH, and temperature can all affect the efficiency of nitrogen removal. The ratio of influent ammonium to nitrite was maintained at about 1:1 at a concentration below 200 mg·L-1 for both influent ammonium and nitrite. The total nitrogen (TN) loading rate was 0.15–0.30 kgN·m-3·d-1, pH remained at 7.8–8.5, and temperature was recorded at 33±1°C. The rate of removal of ammonia, nitrite, and TN were over 90%, 90%, and 80%, and the effluent ammonium, nitrite and TN concentrations were below 50, 30, and 100 mg·L-1.  相似文献   

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