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1.
缺氧条件下含氮杂环化合物吲哚和吡啶的共代谢研究   总被引:1,自引:0,他引:1  
以含氮杂环化合物吲哚和吡啶为研究对象,在传统的缺氧反硝化机理研究基础上,通过向配制废水中加入硝酸盐氮,研究吡啶和吲哚在缺氧条件下的共代谢作用.结果表明,吡啶和吲哚缺氧共代谢的最佳碳氮比为8.4~8.9之间.硝酸还原酶适宜作用的环境条件为:温度28℃,pH值7.0~7.5.吡啶的加入有利于硝酸还原酶活性的提高,吡啶对吲哚的缺氧降解有协同作用.在最佳碳氮比条件下,当吲哚起始浓度为150mg/L,吲哚和吡啶的浓度比例为1~10之间时,吲哚的降解符合零级动力学规律,反应过程中亚硝酸盐氮基本没有积累.当吡啶和吲哚的浓度比小于0.25时,随着吡啶浓度比例的提高,硝酸还原酶活性及吲哚降解速率的增长较快;当吡啶和吲哚的浓度比大于0.25时,硝酸还原酶活性及吲哚降解速率的增长变得比较缓慢.  相似文献   

2.
在对焦化废水中有机物在A1-A2-O生物膜系统中降解转化规律进行分析的基础上,选取焦化废水中6种主要的含氮杂环化合物,吡啶,吲哚,喹啉,异喹啉,8-羟基喹啉,与苯酚共同配制成溶液,在A1-A2-O生物膜系统中运行,结果表明上述几种含氮杂环有机物在A1-A2-O 都可得到较完全的去除,它们在厌氧段的降解速率从大到小依次为,吲哚>2-甲基喹啉>8-羟基喹啉>异喹啉>喹啉>吡啶。在厌氧条件下,吲哚和喹啉存在拮抗作用,而吡啶对喹啉有协同作用,啉啶的加入有利于改善由喹啉和吲哚之间产生的拮抗作用。  相似文献   

3.
微气泡曝气生物膜反应器是微气泡曝气技术与好氧生物处理相结合的新型处理工艺.本研究采用微气泡曝气生物膜反应器在低气水比下处理低C/N比废水,考察了生物脱氮过程和性能,并分析了脱氮功能菌群变化.结果表明,通过低气水比(小于1∶2)控制DO浓度并降低进水C/N比,可以实现生物脱氮过程从同步硝化-反硝化向同步短程硝化-厌氧氨氧化-反硝化(SNAD)过程转变,并可获得较高的低C/N比废水生物脱氮性能. DO浓度低于1. 0 mg·L-1、进水C/N比为1∶2. 8时,SNAD过程成为生物脱氮的主要途径,TN平均去除率可达到76. 3%,TN平均去除负荷为1. 42 kg·(m3·d)-1,厌氧氨氧化过程对TN去除的贡献率为86. 0%.随着进水C/N比降低,生物膜中亚硝化菌群和厌氧氨氧化菌群的相对丰度逐渐增加,而硝化菌群和反硝化菌群的相对丰度逐渐降低.生物脱氮功能菌群变化与脱氮过程转变为SNAD过程相一致.  相似文献   

4.
缺氧反硝化去除难降解杂环化合物吡啶研究   总被引:6,自引:2,他引:6  
在实验室中,采用好氧、厌氧和缺氧间歇试验,研究焦化废水中一种难降解有机物--吡啶的生物降解性能。试验主要研究了在缺氧状态下吡啶的生物降解性能、适宜的N/C比、N源的变化情况等。研究结果表明,缺氧反硝化状态下吡啶的生物降解性能有显著的提高。  相似文献   

5.
以苯、联苯和萘为模型化合物,研究了厌氧滤池(AF)反应器在反硝化及连续运行条件下对含这几种芳香族化合物模拟废水的处理效果,并以葡萄糖为补充碳源,考察了不同C/N对有机物反硝化降解特性的影响.结果表明,在长期连续流运行及反硝化条件下,AF反应器对废水中几种典型芳香族化合物具有良好地去除效果,当进水COD浓度约为1?000mg/L,苯、联苯和萘总浓度为60mg/L时,出水COD去除率可达到90%,芳香族化合物的去除率可达到84%.苯比萘和联苯更易于反硝化降解.C/N在5~30范围内,苯的降解率均达到90%,C/N对苯的降解没有明显影响;COD、萘和联苯去除率受C/N影响较大,C/N为15时,COD、萘和联苯去除率最大,分别为90%、78%和82%.  相似文献   

6.
硝化液回流比对A2/O-BCO工艺反硝化除磷特性的影响   总被引:1,自引:0,他引:1       下载免费PDF全文
以低C/N城市生活污水为处理对象,重点考察了硝化液回流比对A2/O - BCO(生物接触氧化)工艺脱氮除磷特性的影响.在A2/O反应池水力停留时间(HRT)为8h,污泥回流比为100% 条件下,将硝化液回流比分别设定为100%、200%、300%和400%进行试验.结果表明, 系统在A2/O中实现了反硝化除磷,具有很好的同步氮磷的去除效果,出水COD浓度均在50mg/L以下.上述不同硝化液回流比下总氮(TN)去除率分别为48.8%、66.5%、75.6%和62.5%,总磷(TP)去除率分别为86.0%、90.3%、91.0%和95.0%.在硝化液回流比为300%时,系统平均出水TN和TP浓度分别为14.96mg/L和0.49mg/L.系统反硝化除磷量随着硝化液回流比的增大略有增加,在硝化液回流比为400%时,反硝化除磷量高达磷总去除量的98%.  相似文献   

7.
The feasibility of pH and oxidation reduction potential (ORP) as on-line control parameters to advance nitrogen removal in pulsed sequencing batch reactors (SBR) was evaluated. The pulsed SBR, a novel operational mode of SBR, was utilized to treat real municipal wastewater accompanied with adding ethanol as external carbon source. It was observed that the bending-point (apex and knee) of pH and ORP profiles can be used to control denitrification process at a low influent C/N ratio while dpH/dt can be used to control the nitrification and denitrification process at a high influent C/N ratio. The experimental results demonstrated that the effluent total nitrogen can be reduced to lower than 2 mg/L, and the average total nitrogen (TN) removal efficiency was higher than 98% by using real-time controll strategy. __________ Translated from Techniques and Equipment for Environmental Pollution Control, 2006, 7(12): 32–35 [译自: 环境污染治理技术与设备]  相似文献   

8.
To investigate the nitrogen transport and conversion inside activated sludge flocs, micro-profiles of O2, NH4+, NO2, NO3, and pH were measured under different operating conditions. The flocs were obtained from a laboratory-scale sequencing batch reactor. Nitrification, as observed from interfacial ammonium and nitrate fluxes, was higher at pH 8.5, than at pH 6.5 and 7.5. At pH 8.5, heterotrophic bacteria used less oxygen than nitrifying bacteria, whereas at lower pH heterotrophic activity dominated. When the ratio of C to N was decreased from 20 to 10, the ammonium uptake increased. When dissolved oxygen (DO) concentration in the bulk liquid was decreased from 4 to 2 mg·L−1, nitrification decreased, and only 25% of the DO influx into the flocs was used for nitrification. This study indicated that nitrifying bacteria became more competitive at a higher DO concentration, a higher pH value (approximately 8.5) and a lower C/N.  相似文献   

9.
Simultaneous nitrification and denitrification (SND), which is more economical compared with the traditional method for nitrogen removal, is studied in this paper. In order to find the suitable conditions of this process, a mixed flow activated sludge system under low oxygen concentration is investigated, and some key control parameters are examined for nitrogen removal from synthetic wastewater. The results show that SND is accessible when oxygen concentration is 0.3–0.8 mg/L. The nitrogen removal rate can be obtained up to 66.7% with solids retention time (SRT) of 45 d, C/N value of 10, and F/M ratio of 0.1 g COD/(g MLSS·d). Theoretical analysis indicates that SND is a physical phenomenon and governed by oxygen diffusion in flocs. Translated from Environmental Pollution and Control, 2004, 26(1): 11–13 [译自: 环境污染与防治]  相似文献   

10.
耐受高浓度氨氮异养硝化菌的筛选及其脱氮条件优化   总被引:5,自引:4,他引:1  
司文攻  吕志刚  许超 《环境科学》2011,32(11):3448-3454
研究了异养硝化菌对高浓度氨氮的耐受能力和去除能力.采用多点取样、高浓度氨氮废水强行驯化、驯化液连续梯度稀释、颜色指示剂快速硝化效果检测、平板划线分离等步骤,筛选能耐受高浓度氨氮废水的异养硝化菌株,以各菌株16S rDNA序列的系统发育分析来鉴定其种属,考察了菌株的脱氮特性,并通过提高C/N比和优化菌株配伍的方式对其脱氮能力进行了优化.结果共筛出8株高效的异养硝化菌株,并将其命名为N1~N8.系统发育分析表明8株菌分属丛毛单胞菌属(Comamonassp.)、红球菌属(Rhodococcus sp.)、假单胞菌属(Pseudomonas sp.)、节杆菌属(Arthrobacter sp.)、副球菌属(Paracoccus sp.),其对起始氨氮浓度为256.9 mg.L-1、C/N=5.5的人工废水,72 h后氨氮去除率约在65%~80%之间,其中最高为N4的80.2%.若将上述废水的C/N比提高至8.0,则各菌株的氨氮去除率相应提高至约80%~90%.部分菌株配伍后脱氨氮效果优于任一单菌株,其中N4+N5+N6对起始浓度为261.1 mg.L-1的氨氮、在C/N=5.5的条件下,48 h去除率为88.2%.将N4+N5+N6组合驯化菌液,则能将该氨氮去除率提高至99.8%;在将起始氨氮浓度提高至446.9 mg.L-1、C/N比降为3.2后,52h后氨氮去除率亦可达99.9%,且最终几乎无亚硝酸盐氮和硝酸盐氮的积累,总氮去除率为66.5%,菌株同化的氮仅占损失氨氮的33%.可见驯化菌液中一些未能分离的菌株对分离出的菌株的脱氨氮效果有显著的协同作用.  相似文献   

11.
利用硝酸盐还原菌处理甲醇废水的研究   总被引:3,自引:0,他引:3  
主要探讨了硝酸盐还原菌在缺氧条件下利用硝酸盐作为电子受体处理甲醇废水的可行性。结果表明,采用该法处理甲醇废水是可行的,最佳N/C比为1.4,CODCr去除率及NO^-3-N利用率均可达到80%以上。每消耗1mg的NO^-3-N可以除2.992mg CODCr该值与进水浓度,N/C比及停留时间关系不大。  相似文献   

12.
用浸渍法制得硝酸铁/活性炭粉催化剂,通过吸附法将催化剂吸附到碳毡上制作Fe/C催化剂碳毡空气阴极电极.通过改变初始活性炭粉投加量和硝酸铁浓度,考察了两者对以垃圾渗滤液为燃料的MFC产电性能影响;通过循环伏安测试,对不同硝酸铁浓度下自制阴极电极性能进行了评价;在最佳催化条件下考察了装置运行稳定性;并对不同进水COD浓度下同步产电和污水净化性能进行了研究.结果表明,随着活性炭粉投加量或硝酸铁浓度的增加,MFC产电性能均呈现先升高后降低的趋势;当活性炭粉投加量为1 g且硝酸铁浓度为0.25 mol.L-1时,电池性能最佳,功率密度为4 199.8 mW.m-3,表观内阻为465Ω;在硝酸铁和活性炭粉最佳比范围内,MFC的内阻和功率密度分别随着催化剂量的增加而减小和增加;循环伏安测试进一步表明,硝酸铁浓度为0.25 mol.L-1时放电容量最大,且性能稳定;在最佳催化条件下,随着进水COD浓度的增加,MFC产电性能增加,功率密度达5 478.92 mW.m-3,同时COD去除量也增加,最大为1 505.2 mg.L-1,垃圾渗滤液的COD去除率最大达89.1%.  相似文献   

13.
The effects of chlorine dioxide and chlorine disinfections on the genotoxicity of different biologically treated sewage wastewater samples were studied by umu-test. The experiment results showed that when chlorine dioxide dosage was increased from 0 to 30 mg/L, the genotoxicity of wastewater first decreased rapidly and then tended to be stable, while when the chlorine dosage was increased from 0 to 30 mg/L, the genotoxicity of wastewater changed diversely for different samples. It was then found that ammonia nitrogen did not affect the change of genotoxicity during chlorine dioxide disinfection of wastewater, while it greatly affected the change of genotoxicity during chlorine disinfection of wastewater. When the concentration of ammonia nitrogen was low (< 10–20 mg/L), the genotoxicity of wastewater decreased after chlorine disinfection, and when the concentration of ammonia nitrogen was high (> 10–20 mg/L), the genotoxicity of wastewater increased after chlorine disinfection.  相似文献   

14.
An aerobic sequencing batch biofilm reactor (SBBR) packed with Bauer rings was used to treat real domestic wastewater for simultaneous nitrification and denitrification. The SBBR is advantageous for creating an anoxic condition, and the biofilm can absorb and store carbon for good nitrification and denitrification. An average concentration of oxygen ranging from 0.8 to 4.0 mg/L was proved very efficient for nitrification and denitrification. Volumetric loads of TN dropped dramatically and effluent TN concentration increased quickly when the concentration of average dissolved oxygen was more than 4.0 mg/L. The efficiency of simultaneous nitrification and denitrification (SND) increased with increasing thickness of the biofilm. The influent concentration hardly affected the TN removal efficiency, but the effluent TN increased with increasing influent concentration. It is suggested that a subsequence for denitrification be added or influent amount be decreased to meet effluent quality requirements. At optimum operating parameters, the TN removal efficiency of 74%–82% could be achieved. Translated from Acta Scientiae Circumstantiae, 2006, 26(5): 728–733 [译自: 环境科学学报]  相似文献   

15.
以乙酸钠为碳源,在不同的碳氮比(COD/NO_3~--N)条件下,通过控制反应器中反硝化时间,将NO_3~--N仅还原至NO_2~--N,实现NO_2~--N的稳定积累.结果表明,反硝化时间从60 min缩短至20 min,NO_3~--N还原速率和NO_2~--N积累速率分别增大至0.417 g·g~(-1)·h~(-1)(以VSS计,下同)和0.402g·g~(-1)·h~(-1).经过108 d的培养,NO_2~--N的积累率为95%.反硝化活性随碳氮比的增大而增大,而较低碳氮比更有利于NO_2~--N的稳定积累.在反硝化亚硝氮积累过程中,当碳源充足时,由于电子受体NO_3~--N和NO_2~--N相互竞争碳源,NO_3~--N的存在会抑制NO_2~--N的还原,从而导致NO_2~--N积累;而当碳源不足时,基质限制使NO_3~--N优先还原,导致NO_2~--N的积累.微生物宏基因组测序结果表明,培养污泥中的优势菌群为Thauera(71.85%),该菌仅能将NO_3~--N还原为NO_2~--N,从而导致NO_2~--N的积累.  相似文献   

16.
吲哚是一种典型的氮杂环芳烃污染物,在焦化废水和畜牧废水中大量存在.本研究从近海泥沙中分离纯化得到一株高效吲哚降解菌DCX,经16S rRNA基因序列比对分析,鉴定其为普罗维登斯菌属(Providencia sp.).该菌株能够以吲哚为唯一碳源,在28 h内将100 mg·L~(-1)吲哚完全降解.液相色谱/飞行时间-质谱联用(LC/TOF-MS)的结果表明,靛蓝、靛红、靛红酸及邻氨基苯甲酸是菌株DCX降解吲哚过程中的中间产物.此外,本研究中发现,外加营养物质可以促进菌株DCX降解吲哚,特别是加入酵母浸粉后,反应体系中会产生大量靛蓝.利用表面响应法确定菌株DCX转化吲哚合成靛蓝的最优条件为:吲哚207.49 mg·L~(-1),酵母浸粉2.9 g·L-1,接菌量4.23%(V/V),并且在最优条件下,靛蓝产率达到最高(9.90%),比初始条件提高了4.38倍.  相似文献   

17.
Indole, a typical nitrogen heterocyclic aromatic pollutant, is extensively spread in industrial wastewater. Microbial degradation has been proven to be a feasible approach to remove indole, whereas the microbial resources are fairly limited. A bacterial strain designated as SHE was isolated and found to be an efficient indole degrader. It was identified as Cupriavidus sp. according to 16S rRNA gene analysis. Strain SHE could utilize indole as the sole carbon source and almost completely degrade 100 mg/L of indole within 24 hr. It still harbored relatively high indole degradation capacity within pH 4–9 and temperature 25°C–35°C. Experiments also showed that some heavy metals such as Mn2 +, Pb2 + and Co2 + did not pose severe inhibition on indole degradation. Based on high performance liquid chromatography–mass spectrum analysis, isatin was identified as a minor intermediate during the process of indole biodegradation. A major yellow product with m/z 265.0605 (C15H8N2O3) was generated and accumulated, suggesting a novel indole conversion pathway existed. Genome analysis of strain SHE indicated that there existed a rich set of oxidoreductases, which might be the key reason for the efficient degradation of indole. The robust degradation ability of strain SHE makes it a promising candidate for the treatment of indole containing wastewater.  相似文献   

18.
焦化废水中几种难降解有机物的厌氧生物降解特性   总被引:20,自引:1,他引:20  
在试验室条件下,采用厌氧间歇试验,分别研究了焦化废水中几种有代表性的难降解有机物——喹啉、吲哚、吡啶、联苯的厌氧生物降解特性.文中突出了以厌氧预处理改善焦化废水中难降解有机物生物降解性的工程实用背景,对这四种有机物的厌氧处理的动力学特性、共基质作用、厌氧处理下去除效果的改善等,进行了较为深入的研究.  相似文献   

19.
吴鹏  程朝阳  沈耀良  赵诗惠  吕亮 《环境科学》2017,38(9):3781-3786
基于厌氧折流板反应器(ABR)微生物相分离及膜生物反应器(MBR)高效截留的特性,通过加设硝化液回流与污泥回流实现了ABR-MBR一体化反应器的循环联动,对连续流条件下调控进水COD浓度及COD/TN比条件下的反硝化除磷影响机制展开了研究.结果表明在5个不同进水C/N比下,ABR-MBR组合工艺最终出水溶解性PO_3-4-P平均浓度分别为0.22、0.34、0.39、0.42和2.45 mg·L~(-1),低C/N比可获得更好的除磷效果,而C/N为4.8~6.0时,工艺对COD、TN和溶解性PO_3-4-P去除率分别在87%、76%和93%以上.此外,在C/N为3.6~6.0时,ABR缺氧吸磷量与工艺对TN去除量呈良好的线性关系,提高进水C/N比有助于系统对TN的去除.最终获得进水C/N比为6时最有利于氮和磷的同步去除.  相似文献   

20.
从内碳源有效利用角度出发,开发了新型连续流后置反硝化AOA工艺,将厌氧段混合液按一定比例分流至缺氧段,从而强化缺氧段反硝化除磷作用.进水NH4+-N和PO43--P浓度保持在(38.31±2.03) mg·L-1和(5.74±0.13) mg·L-1,在不同运行阶段进水COD分别控制在300 mg·L-1和250 mg·L-1,考察了AOA工艺处理低C/N(C/P)比污水过程影响因素.当进水C/N比和C/P比分别为7.41±0.26和52.36±1.25时,通过将SRT由10 d延长到16 d,系统TN和PO43--P去除率分别稳定在65.86%±2.06%和90.00%±3.97%;当进水C/N比、C/P比降至6.14±0.32和43.40±1.37时,在SRT为16 d条件下,将A/O/A体积比由1/3/1调整为1/2/2,TN和PO43--P去除率分别升至69.76%±3.36%和98.73%±1.82%.结果表明,采用控制SRT、调整好氧/缺氧HRT等策略,可保证处理低C/N(C/P)比污水AOA工艺高效稳定运行.  相似文献   

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