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1.
Bacterium Providencia rettgeri YL was found to exhibit an unusual ability to heterotrophically nitrify and aerobically denitrify various concentrations of ammonium (NH4+-N). In order to further understand its removal ability, several experiments were conducted to identify the growth and ammonium removal response at different carbon to nitrogen (C/N) mass ratios, shaking speeds, temperatures, ammonium concentrations and to qualitatively verify the production of nitrogen gas using gas chromatography techniques. Results showed that under optimum conditions (C/N 10, 30°C, 120 r/min), YL can significantly remove low and high concentrations of ammonium within 12 to 48 h of growth, respectively. The nitrification products hydroxylamine (NH2OH), nitrite (NO2) and nitrate (NO3) as well as the denitrification product, nitrogen gas (N2), were detected under completely aerobic conditions.  相似文献   

2.
文章研究了C/N对悬浮填料生物反应器脱氮效果的影响。出水中NH4+-N、NO2--N和NO3--N浓度以及pH值变化均受C/N的影响,实验得到的最佳C/N质量比为12∶1,TN去除率平均在85%。  相似文献   

3.
筛选出1株耐盐异养硝化-好氧反硝化菌qy37,通过形态观察、生理生化试验和16S rDNA序列分析,确定其为假单胞菌属(Pseudomonas).研究了异养硝化-好氧反硝化菌qy37的脱氮特性.在以NH4Cl为氮源的异养硝化系统内,该菌32 h内使NH 4+-N由138.52 mg/L降至7.88 mg/L,COD由2 408.39 mg/L降至1 177.49 mg/L,NH2 OH最大积累量为9.42 mg/L,NO 2--N最大积累量仅为0.02 mg/L,推测该菌将NH2OH直接转化为N2O和N2从系统中脱除.在以NaNO2为氮源的好氧反硝化系统内,该菌24 h内使NO 2--N由109.25 mg/L降至2.59 mg/L,NH2OH最大积累量为3.28 mg/L.好氧反硝化系统与异养硝化系统相比菌体生长量高,TN去除率低,COD消耗量低,NH2OH积累量低,并且检测到NO 3--N的积累.认为好氧反硝化在菌体生长和能量利用方面比异养硝化更有效率.在异养硝化-好氧反硝化混合系统内,16 h NH 4+-N去除速率比异养硝化系统提高了37.31%.混合系统的NH2 OH积累量低于异养硝化系统和好氧反硝化系统,但N2 O产出量高于二者.  相似文献   

4.
A self-design bioreactor system employing a fixed bed operation process with immobilized Bacillus subtilis AYC beads for NH4 +-N removal from slightly polluted water was proposed. Polyvinyl alcohol and Na-alginate were used as a gel matrix to entrap Bacillus subtilis AYC to form the immobilized beads. The NH4 +-N removal process was studied in a intermittent operation mode to examine the start-up and steady state behaviors of the immobilized AYC in the reactor. The results indicated that the reactor was in the start-up state during the first week. NH4 +-N began to be steadily removal since the second week, and the nitrogen removal rate was between 84.61% and 96.19% when the hydraulic retention time (HRT) was 30 min. To apply Bacillus subtilis AYC to develop a practical nitrogen removal system and further understand its nitrogen removal ability, the bioreactor was continuously operated under different experimental perameters. The results showed that under the optimum conditions of an HRT of 20 min and DO of 3.77–5.80 mg/L, the NH4 +-N removal rate reached 99.55%. The NH4 +-N removal rate increased as the C/N ratio increased. However, a high C/N may cause a high residual carbon level in the effluent, therefore, the most suitable C/N ratio was 10. In addition, the results showed that the bioreactor system could remove many types of nitrogen such as NH4 +-N, NO3??-N and organic-N, and had a good performance for inorganic nitrogen removal from sewage.  相似文献   

5.
SBR系统中好氧颗粒污泥脱氮特性研究   总被引:16,自引:0,他引:16  
以颗粒污泥为研究对象,在序批式反应器中研究了不同运行模式(有厌氧段和无厌氧段两种模式)和不同碳氮比(COD与NH4+-N质量比取6、10、14)下,颗粒污泥对氨氮、总无机氮的去除情况.比较了2种运行模式应用于颗粒污泥脱氮中的差别和优劣.采用分段函数的方法对不同碳氮比下的氨氮去除曲线进行了分割,对曝气第一阶段(碳源富足阶段)和曝气第二阶段(碳源贫乏阶段)的氨氮去除曲线进行了拟合,发现其线性化特征明显.计算了不同碳氮比下曝气前后期氨氮去除速率,并简要分析了好氧颗粒污泥同步硝化反硝化脱氮的作用机理.  相似文献   

6.
研究了HRT为24 h,电流密度为0.052 mA/cm2,纯电化学条件下进水氮形态分别为NO2--N,NH4+-N和NO2--N+NH4+-N三种情况下,生物挂膜前亚硝化/电化学生物反硝化全自养脱氮工艺(CANNED)中的电化学生物反硝化段的电化学脱氮效能。结果表明,当只投加NO2--N,浓度从100 mg/L增加到400 mg/L时,电化学生物反硝化段对NO2--N的去除率随其浓度的增大而减小,从40%左右逐渐降至20%左右,可能是由自配水中恒定的Cl-所生成的HClO氧化造成;当只投加NH4+-N,浓度从100 mg/L增加到400 mg/L时,电化学生物反硝化段对NH4+-N的去除率均为35%左右,主要因为自配水中的NH4+-N是以NH4Cl形式投加,随着NH4+-N浓度的增加Cl-浓度也增加,能与NH4+-N反应的HClO增多;当同时投加NO2--N和NH4+-N时,NO2--N和NH4+-N的去除率与各自单独投加时相比几乎没有变化,说明在电化学条件下,自配水中Cl-对NO2--N,NH4+-N均有一定的去除,且NH4+-N和NO2--N的去除之间没有相互影响。  相似文献   

7.
生物膜反应器厌氧氨氧化脱氮效能研究   总被引:7,自引:0,他引:7  
利用厌氧氨氧化生物膜反应器,分别研究提高基质浓度和缩短水力停留时间(HRT)对提高反应器总氮容积去除负荷的影响。实验之前总氮容积去除负荷达到2.11kgN(/m·3d),总氮去除率为87.9%。以提高基质浓度的方式经过50d的培养,总氮容积去除负荷稳定在4.0kgN(/m·3d),进水总氮浓度从300mg/L逐渐提高到700mg/L,NH4+-N、NO2--N出水浓度分别达到70mg/L和100mg/L;以缩短HRT的方式经过55d的培养,总氮容积去除负荷达到7.0kgN(/m·3d),HRT由3h缩短至0.67h,NH4+-N、NO2--N出水浓度分别达到40mg/L和60mg/L。实验结果表明随着进水基质浓度的增加水中游离氨和亚硝酸的浓度随之增加,从而抑制厌氧氨氧化菌活性,不利于反应器脱氮效能的提高。在相同总氮容积负荷下缩短HRT有利于厌氧氨氧化细菌的富集,但过短的HRT容易导致微生物流失。  相似文献   

8.
常温ANAMMOX工艺运行性能及功能菌研究   总被引:3,自引:0,他引:3       下载免费PDF全文
通过改变进水基质浓度,对以火山岩为填料的常温上向流厌氧氨氧化生物滤池在不同基质浓度下的脱氮性能进行了研究.借助显微镜、电镜(SEM)观察对滤池内的微生物形态进行了分析,利用变性凝胶电泳(DGGE)和克隆测序等微生物方法,对ANAMMOX种属进行了鉴定.试验结果表明,常温条件下,厌氧氨氧化滤池在高、低不同基质下都能够保持较高的脱氮效果,其中TN去除负荷最高能够达到2.99kgN/(m3×d),NH4+-N和NO2--N最高去除率分别能够达到99.4%和98.8%;显微镜、电镜观察显示:滤池下部的微生物种类更丰富,ANAMMOX菌在滤池的中部和上部的比例更高;16SrRNA克隆测序鉴定结果表明:滤池中的ANAMMOX菌为Candidatus Kuenenia stuttgartiensis,其对温度和基质浓度都有着较宽的适应性.  相似文献   

9.
Anaerobic ammonium oxidation (ANAMMOX) technology has potential technical superiority and economical efficiency for the nitrogen removal from landfill leachate, which contains high-strength ammonium nitrogen (NH4 -N) and refractory organics. To complete the ANAMMOX process, a preceding partial nitritation step to produce the appropriate ratio of nitrite/ammonium is a key stage. The objective of this study was to determine the optimal conditions to acquire constant partial nitritation for landfill leachate treatment, and a bench scale fixed bed bio-film reactor was used in this study to investigate the effects of the running factors on the partial nitritation. The results showed that both the dissolved oxygen (DO) concentration and the ammonium volumetric loading rate (Nv) had effects on the partial nitritation. In the controlling conditions with a temperature of 30±1℃, Nv of 0.2-1.0 kg NH4 -N/(m3d), and DO concentration of 0.8-2.3 mg/L, the steady partial nitritation was achieved as follows: more than 94% partial nitritation efficiency (nitrite as the main product), 60%-74% NH4 -N removal efficiency, and NO2--N/NH4 -N ratio (concentration ratio) of 1.0-1.4 in the effluent. The impact of temperature was related to iVv at certain DO concentration, and the temperature range of 25-30癈 was suitable for treating high strength ammonium leachate. Ammonium-oxidizing bacteria could be acclimated to higher FA (free ammonium) in the range of 122-224 mg/L. According to the denaturing gradient gel electrophoresis analysis result of the bio-film in the reactor, there were 25 kinds of 16S rRNA gene fragments, which indicated that abundant microbial communities existed in the bio-film, although high concentrations of ammonium and FA may inhibit the growth of the nitrite-oxidizing bacteria and other microorganisms in the reactor.  相似文献   

10.
通过计算N和DO的质量平衡,研究饮用水生物处理小试工艺中是否存在NH4 -N的非硝化去除途径,并探讨其可能机制.结果表明,当生物流化床和生物滤池进水NH4 -N浓度大于2 mg/L时,前者进水的NH4 -N、NO2--N和NO3--N之和比出水高出0.91 mg/L,后者理论上消耗的DO比实际多约2.90 mg/L,说明这2种工艺中均有氮亏损现象发生,一部分NH4 -N通过与DO无关的非硝化作用被去除.对非硝化去除途径的分析表明,因为反应器对磷元素和有机物的利用不随氮亏损发生变化,可以排除掉同化作用和反硝化作用;因为反应器进水低碳高氮的特性NO2--N的积累与发生氮亏损的废水生物处理系统相似,据此提出在生物膜缺氧内部发生、通过短程硝化和厌氧氨氧化的偶联(或OLAND反应)将NH4 -N和NO2--N同时转变为N2脱除的自养脱氮是饮用水生物处理中氮亏损的可能途径.  相似文献   

11.
潜流水平湿地对农业灌溉径流氮磷的去除   总被引:5,自引:0,他引:5       下载免费PDF全文
构建了潜流水平芦苇湿地,对农业灌溉径流(TN约为7mg/L,TP约为0.5mg/L)中氮磷进行了为期1年的去除研究.在水力停留时间(HRT)为2,4,6d时,TP和TN的去除率均大于87%和68%.湿地对TN、NH4+-N和TP的去除受HRT的影响较大(P<0.05),对PO43--P的去除受HRT的影响较小.在不同HRT情况下,NH4+-N、NO2--N、NO3--N和PO43--P的去除率均高于93%,出水浓度一般均小于0.04mg/L.且出水中的TP和TN主要为有机态,存在一个TP和TN背景浓度.TN去除率与负荷之间具有很好的相关性(R2=0.9968),但是TP去除率与负荷之间相关性较差(R2=0.5987).以HRT为2d计算,1m2的芦苇床处理该农业灌溉径流的能力为0.1m3/d,出水TN和TP浓度可控制在0.50mg/L和0.154mg/L以下.  相似文献   

12.
氮氧化物气体的产生及其对厌氧氨氧化的影响研究   总被引:1,自引:0,他引:1  
硝化、反硝化生物脱氮反应,因产生N2O温室气体,开始引发一些环保工作者的关注。新开发的厌氧氨氧化工艺在生物脱氮方面具有无可比拟的优越性。在其脱氮的3种反应途径中,也可能产生NO、NO2和N2O微量气体。文章对目前厌氧氨氧化反应中,这3种微量气体的产生情况进行了综述,并总结了这3种气体对厌氧氨氧化反应的影响。提出考察厌氧氨氧化过程中温室气体的排放情况和如何减少或控制温室气体的排放将成为厌氧氨氧化工艺应用中重要的研究方向之一。  相似文献   

13.
从生活排污渠中分离筛选出高效异养硝化菌株Ni3-1,通过形态和16S r DNA序列分析,初步鉴定为Alcaligenes faecalis。脱氨特性研究表明:Ni3-1的异养硝化作用主要发生在指数期;碳源对菌株脱氨效果影响较大,柠檬酸三钠和丁二酸钠为最佳碳源;在氨氮为10~1 000 mg/L时,Ni3-1均表现出较高的脱氨能力;Ni3-1适应能力较强,温度为25~35℃,p H为6~9,C/N为10~15时,24 h氨氮去除率均达95%以上。将Ni3-1用于处理高氨氮猪场废水,48 h氨氮去除率可达93.2%,且未检测到亚硝态氮和硝态氮的积累。总体而言,菌株Ni3-1在脱氨效率和适应能力方面具有明显优势,在污水脱氮处理中具有一定的开发利用价值。  相似文献   

14.
速分球生物滤柱是速分技术与曝气生物滤池技术的结合。具有污泥消化和无需反冲洗等优点。实验采用速分球生物滤柱实验装置,以低C/N比生活污水为处理对象,考查了单污泥前置反硝化A2/O系统的脱氮除磷特性。实验结果表明,在平均C/N比为1.6,内回流比R为100%的条件下,平均进水COD、氨氮、TP分别为440.7、274.0和13.6 mg/L,平均去除率分别为77.0%、19.2%和42.4%。系统对氨氮的去除率较低,对总磷的去除率要明显高于对氨氮的去除率。结论得出,系统脱氮除磷的效果不理想。  相似文献   

15.
N2O是一种强温室气体,而污水处理已被报道是导致N2O产生的潜在人为源之一,且主要发生在生物脱氮的硝化和反硝化过程.本文立足于当前的污水脱氮热点工艺,如短程硝化反硝化、同步硝化反硝化、厌氧氨氧化和反硝化除磷,介绍了这些新工艺的反应机理,描述了它们在非稳态运行过程N2O的释放特征以及溶解氧(Dissolved Oxygen,DO)、NO 2-、自由氨(Free Ammonia,FA)、自由亚硝酸(Free Nitrous Acid,FNA)和进水COD/N等关键因子的影响作用,并进一步从微生物学和生物化学角度剖析了各工艺脱氮过程产生N2O的可能原因.在全球积极应对气候变暖趋势的大背景下,探明污水脱氮工艺N2O的释放本质,提出有效的减排控制方法,对于防止环境污染问题由水环境转移到大气环境具有重要意义.  相似文献   

16.
The combination of leachate recirculation and aeration to landfill may be an efficient way for in-situ nitrogen removal. However, nitrogenous substances contained in the landfill layer are concomitantly transformed into N2O and NH3, leading to increased emissions into the atmosphere. In the present study, the emissions of N2O and NH3 were measured under conditions of fresh or partially stabilized refuse with or without leachate recirculation or intermittent aeration. The results showed that the largest N2O emission (12.4 mg-N/L of the column) was observed in the aerated column loaded with partially stabilized refuse and recycled with the leachate of low C/N ratio; while less than 0.33 mg-N/L of the column was produced in the other columns. N2O production was positively correlated with the prolonged aerobic time and negatively related with the C/N ratio in the recycled leachate. NH3 volatilization increased with enhanced gas flow and concentration of free ammonia in the leachate, and the highest cumulative volatilization quantity was 1.7 mg-N/L of the column.  相似文献   

17.
Chemical precipitation to form magnesium ammonium phosphate (MAP) is an effective technology for recovering ammonium nitrogen (NH4 +-N). In the present research, we investigated the thermodynamic modeling of the PHREEQC program for NH4 +-N recovery to evaluate the effect of reaction factors on MAP precipitation. The case study of NH4 +-N recovery from coking wastewater was conducted to provide a comparison. Response surface methodology (RSM) was applied to assist in understanding the relative significance of reaction factors and the interactive effects of solution conditions. Thermodynamic modeling indicated that the saturation index (SI) of MAP followed a polynomial function of pH. The SI of MAP increased logarithmically with the Mg2+/NH4 + molar ratio (Mg/N) and the initial NH4 +-N concentration (CN), respectively, while it decreased with an increase in Ca2+/NH4 + and CO3 2??/NH4 + molar ratios (Ca/N and CO3 2??/N), respectively. The trends for NH4 +-N removal at different pH and Mg/N levels were similar to the thermodynamic modeling predictions. The RSM analysis indicated that the factors including pH, Mg/N, CN, Ca/N, (Mg/N) (CO3 2??/N), (pH)2, (Mg/N)2, and (CN)2 were significant. Response surface plots were useful for understanding the interaction effects on NH4 +-N recovery.  相似文献   

18.
烧结烟气湿式氨法同时脱硫脱硝实验研究   总被引:1,自引:1,他引:0  
在鼓泡反应器中进行烧结烟气湿式氨法同时脱硫脱硝的实验研究,考察了添加剂/NO物质的量比、吸收液NH3-NH+4浓度和烟气性质对烧结烟气脱硫脱硝的影响。实验结果表明:随着添加剂/NO物质的量比、烟气温度和NO浓度的增加,脱硝率均呈现先增大后减小的趋势。脱硝率随着吸收液中NH3-NH+4浓度的增大而增大。随着SO2浓度的增大,脱硝率逐渐减小。在所有实验条件下,脱硫率均接近或达到100%。在最佳实验条件下,脱硝率可达61.49%。通过添加添加剂部分氧化烧结烟气,可使烧结烟气湿式氨法脱硫工艺的脱硝率提高20%~30%。  相似文献   

19.
页岩-钢渣组合填料湿地强化脱氮除磷研究   总被引:10,自引:3,他引:7  
谭洪新  周琪  杨殿海 《环境科学》2006,27(11):2182-2187
以城市污水A/O工艺出水为处理对象,运用页岩和钢渣物化除磷、调控进水碳氮比和氮素氧化性等技术手段,在中试规模上研究了页岩和钢渣组合填料湿地的脱氮除磷效能及影响因素.结果表明,当COD面积负荷率、TN面积负荷率、TP面积负荷率、HRT(水力停留时间)分别为6.5~20.7 g·(m2·d)-1、2.57~8.22 g·(m2·d)-1、0.41~1.32 g·(m2·d)-1、0.5~1.6d时,①氨氮、亚硝态氮和硝态氮的去除率分别为85.8%、56.3%和18.6%,TN去除率为58.0%,TN面积负荷去除率为3.58g·(m2·d)-1,TN反应动力学常数为0.31 m·d-1,TN面积负荷去除率随进水TN负荷的增加而线性增加.②TP去除率为90.4%,TP面积负荷去除率为0.89 g·(m2·d)-1,TP反应动力学常数为0.86 m.d-1,TP面积负荷去除率随进水TP负荷的增加而线性增加.③水温、HRT、氮素组分、C/N等因素对湿地系统的脱氮除磷效率有显著影响.TN面积负荷去除率随HRT、COD/TN值的增加而幂函数增加.TN面积负荷去除率随水温(、NO2--N+NO3--N)/TN值的增加而呈指数函数增加.  相似文献   

20.
菌株DA-1被发现能在好氧和厌氧环境中将硝酸盐转化为气态氮。在以NO3-为唯一氮源的条件下研究了碳源、C/N和pH值对菌株DA-1好氧和厌氧反硝化脱氮的影响。结果表明:同等条件下,48 h内菌株DA-1的厌氧脱氮效率高于好氧脱氮率;菌株DA-1能在好氧和厌氧条件下利用乙酸、柠檬酸以及葡萄糖进行细胞增殖和反硝化。在厌氧条件下,三者作为碳源时的反硝化效率分别为(34.04±0.15)%、(22.72±0.32)%和(11.32±0.06)%,均低于好氧条件下的(25.38±0.14)%、(17.52±0.11)%和(8.06±0.01)%。2种条件下均是乙酸为碳源时反硝化效率最高。而丁二酸仅能在厌氧环境中作为电子供体参与反硝化反应。C/N越高越有利于菌株DA-1的厌氧反硝化,当C/N为10时,反硝化效率最高为(35.06±0.19)%。而在好氧条件下,菌株反硝化效率随着C/N的升高,先升高再降低,当C/N为8时,反硝化效率最高;好氧和厌氧脱氮的最适pH值为7.0。体系偏酸或者偏碱都会造成菌株DA-1脱氮效率的降低并出现亚硝酸盐累积。厌氧环境中pH=5.0时累积的亚硝酸盐浓度高达(8.95±2.05)mg/mL。  相似文献   

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