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1.
为探究乙酸钠作为碳源时,不同污泥源外源短程反硝化过程中亚硝酸盐积累特性,采用1号和2号SBR分别接种某污水处理厂二沉池和同步硝化反硝化除磷系统剩余污泥,通过合理控制初始硝酸盐浓度和缺氧时间,实现了短程反硝化的启动,并考察了其在不同初始COD和NO3--N浓度条件下的碳、氮去除特性。试验结果表明:以乙酸钠为碳源,1号和2号SBR可分别在21d和20d实现短程反硝化的成功启动,且其NO2--N积累量和亚硝酸盐积累率(NAR)均维持在较高水平,分别为12.61mg·L-1、79.76%和13.85mg·L-1、87.60%。当2号SBR初始NO3--N浓度为20mg·L-1,且初始COD浓度由60mg·L-1升高至140mg·L-1时,系统实现最高NO2--N积累时间可由160min逐渐缩短至6min,同时NO3--N比反硝化速率(以VSS计)由3.84mg·(g·h)-1增加至7.35mg·(g·h)-1,初始COD浓度的提高有利于实现短程反硝化过程NO2--N积累。2号SBR初始COD浓度为100mg·L-1,当初始NO3--N浓度由20mg·L-1增加至30mg·L-1时,系统NAR均维持在90%以上,最高可达100%(NO3--N初始浓度为25mg·L-1);当初始NO3--N浓度≥35mg·L-1时,系统COD不足导致NO3--N不能被完全还原为NO2--N。此外,在不同初始COD浓度(80、100、120mg·L-1)和NO3--N浓度(20、25、30、40mg·L-1)条件下,2号SBR的脱氮除碳和短程反硝化性能均优于1号SBR。  相似文献   

2.
基于不同废污泥源的短程反硝化快速启动及稳定性   总被引:1,自引:1,他引:0  
张星星  王超超  王垚  徐乐中  吴鹏 《环境科学》2020,41(8):3715-3724
为探究不同废污泥源快速启动短程反硝化和实现稳定NO_2~--N积累的可行性,在3个完全相同的SBR反应器(S1、S2和S3)分别接种:实验室城市污水反硝化除磷系统排泥、城市污水厂剩余污泥及河涌底泥,比较其短程反硝化启动快慢和NO_2~--N积累特性,考察系统短程反硝化活性和NO_3~--N→NO_2~--N转化性能,并从微生物学角度分析反应器功能菌群特征.结果表明,在乙酸钠为唯一碳源、高碱度和适宜COD/NO_3~--N比进水条件下,3个SBR短程反硝化反应器在短时间内均能够成功启动,系统平均NO_3~--N→NO_2~--N转化率为S1 S2 S3(75. 92% 73. 36% 69. 90%).同时发现持续低温条件下S1和S2呈现不同程度的短程反硝化性能恶化趋势,但S3能够稳定维持良好NO_2~--N积累性能.微生物高通量测序表明,变形菌门和拟杆菌门居PD系统主导地位,3个短程反硝化反应器NO_2~--N积累关键功能菌属Thauera属丰度差异明显:S3 S1 S2(25. 09% 4. 71% 3. 60%),表明S3具备稳定高效的NO_2~--N积累性能,同时高丰度Thauera属可能是维持低温短程反硝化活性的重要原因.  相似文献   

3.
低温SBR反硝化过程亚硝态氮积累试验研究   总被引:9,自引:3,他引:6  
采用SBR法处理经缺氧/厌氧UASB预处理的渗滤液,在SBR反硝化过程观察到明显的亚硝态氮积累现象.在此基础上,为深入了解反硝化过程亚硝态氮积累的机制,考察低温条件下5种类型碳源(甲醇、乙醇、乙酸钠、丙酸钠和葡萄糖)对SBR反硝化过程亚硝态氮积累的影响.结果表明,在温度为13.9℃情况下,甲醇、乙醇、乙酸钠、丙酸钠为反硝化碳源时,系统内均发生明显的亚硝态氮积累.此外,4种不同初始NO_3~--N浓度(64.9、 54.8、 49.3、 29.5 mg/L)还原过程中, NO_2~--N最大积累浓度分别为37.8、 21.5、 25.2、 18.8 mg/L,积累速率(N/VSS·t)分别为 0.117、 0.136、 0.235、 0.068 g/(g·d),并且ORP曲线先后出现"nitrate knee"和"nitrite knee"2个拐点,可分别指示NO_3~--N、NO_2~--N还原反应结束.  相似文献   

4.
接种反硝化过程中亚硝态氮(NO_2~--N)积累效果稳定的短程反硝化污泥,以甲醇为碳源,通过批次试验研究了不同碳氮比(C/N)、硝态氮(NO_3~--N)浓度及p H条件下短程反硝化过程中NO_2~--N积累特性.实验结果表明:当C/N为2.5时,NO_2~--N积累率最高为89%,且NO_2~--N不会被还原;当C/N为3~5时,NO_2~--N积累到最大值后开始降低,但NO_2~--N最大积累量和比反硝化速率没有明显差异.当NO_3~--N浓度在14.91~82.58mg/L范围内,NO_3~--N浓度越高,达到NO_2~--N最大积累率理论所需C/N越低.且当NO_3~--N浓度小于58.71mg/L时,比NO_3~--N还原速率、比NO_2~--N积累速率随NO_3~--N浓度增加而上升.当p H=7时,NO_2~--N积累量、比NO_3~--N还原速率和比NO_2~--N积累速率最高,分别为24.49mg/L、18.96(mg/(g VSS·h))、18.91(mg/(g VSS·h)),然后依次是p H=6、8、9.p H=5和10时,短程反硝化基本不能进行.本研究可以为短程反硝化的实现及应用提供理论依据.  相似文献   

5.
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   

6.
本研究以模拟城市污水和高硝酸盐废水为处理对象,在一个厌氧-缺氧-微曝气运行的SBR反应器内,将短程反硝化工艺(PD,NO_3~-→NO_2~--N)与反硝化除磷工艺(DPR)耦合,并通过联合调控进水C/N比、厌氧排水率和缺氧时间,考察了PD-DPR系统的亚硝酸盐积累特性和除磷性能.结果表明,经过140d,NO_3~-→NO_2~--N转化率(NTR)为80.1%,PO~(3-)_4-P去除率高达97.64%.在厌氧段(180 min),聚糖菌(GAOs)和聚磷菌(PAOs)对污水有机碳源进行充分利用,将其转化为内碳源;缺氧段(150 min),反硝化聚糖菌(DGAOs)和异养反硝化菌(DOHOs)分别进行内源和外源短程反硝化实现NO~-_2-N稳定积累,同时反硝化聚磷菌(DPAOs)进行高效反硝化吸磷;微曝气段(10 min),在不发生硝化反应的前提下,PAOs超量吸磷,提高了系统的除磷性能.系统出水NO~-_2-N/NH~+_4-N为1.31∶1(接近厌氧氨氧化工艺理论值1.32∶1),PO~(3-)_4-P浓度为0.30 mg·L~(-1),COD浓度为12.94 mg·L~(-1).其出水水质可满足与厌氧氨氧化(ANAMMOX)工艺耦合进行深度脱氮的需求.  相似文献   

7.
试验采用序批式反应器(SBR)处理高氨氮废水,逐步提高废水氨氮(NH+4-N)浓度到800 mg·L-1,通过控制曝气量实现了短程硝化.SBR周期试验表明,在低溶解氧和高游离氨等共同作用下,氨氧化菌(AOB)活性较低,导致AOB以亚硝酸盐氮(NO_2~--N)作为电子受体进行好氧反硝化,氧化亚氮(N_2O)释放因子为9.8%.静态试验控制初始NH_4~+-N为100 mg·L-1且改变曝气量(0.22~0.88 L·min~(-1))条件下,溶解氧浓度的增加能够提高硝化菌活性,N2O释放因子为0.51%~0.85%.当初始NH_4~+-N浓度为100 mg·L~(-1)且曝气量控制在0.66 L·min-1时,初始NO-2-N浓度为0~100 mg·L~(-1)对硝化菌活性影响较小,N2O释放因子为0.50%~0.71%.当溶解氧和游离氨浓度控制在适宜范围内,可维持AOB较高活性,抑制AOB发生好氧反硝化作用,降低N2O释放率.  相似文献   

8.
该文以乙酸钠为碳源,通过批次试验探究短程反硝化过程中硝酸盐对亚硝酸盐积累的影响。试验结果表明在不同的C/N比条件下,NO_2~--N均能出现积累,C/N较低(0.8~2.4)的情况下系统中出现NO_3~--N与NO_2~--N共存情况;当C/N为3.2~8.0时,随着反应进行NO_2~--N的量有所损耗,表明C/N比过高不利于NO_2~--N的积累;C/N比会影响NO_2~--N的积累速率,但对转化率影响不大。当起始系统中只有NO_3~--N时,NO_3~--N→NO_2~--N反应速率高于NO_2~--N→N_2的反应速率;随着初始NO_3~--N浓度(20~150 mg/L)增加,NO_2~--N积累速率加快。向只有NO_2~--N的反应系统中添加当NO_3~--N,一直被还原的NO_2~--N开始出现积累,表明系统中存在NO_3~--N时,对NO_2~--N→N_2发生可能存在抑制作用。初始系统中同时存在NO_3~--N和NO_2~--N时,NO_3~--N还原速率高于NO_2~--N的还原速率;当NO_3~--N消耗完全之后,NO_2~--N的还原速率高于血清瓶有NO_3~--N存在时的还原速率;随着NO_3~--N/NO_2~--N的比值的增加,NO_3~--N的还原速率和NO_2~--N的积累速率加大。该研究可为短程反硝化厌氧氨氧化耦合工艺处理含氮污水提供一定的理论依据。  相似文献   

9.
买文可  彭永臻  吉建涛 《环境科学》2019,40(7):3162-3168
短程生物脱氮工艺在废水处理中已经得到较为广泛的应用,其反硝化过程是实现氮去除的关键步骤,而关于废水中常见重金属离子Cu~(2+)对以NO2-为电子受体反硝化过程的影响尚无系统研究.选取A/O反应器内具有良好短程生物脱氮特性的污泥,通过批次试验及SBR长期试验分别探究了Cu~(2+)对以NO2-为电子受体反硝化过程的短期及长期影响.短期试验结果表明,Cu~(2+)对以NO2-为电子受体反硝化过程具有明显抑制作用,对污泥反硝化活性的半抑制浓度EC50为4. 79 mg·L-1.在长期影响试验中逐渐提高污泥对Cu~(2+)的耐受浓度,当Cu~(2+)浓度为0. 5 mg·L-1和1 mg·L-1时,污泥反硝化活性降低后均能够通过驯化恢复至原有水平;而Cu~(2+)浓度升高至3 mg·L-1后污泥反硝化性能遭到破坏且难以恢复,NO_2~--N去除率降低至10%以下,反硝化系统遭到严重抑制.但是,停止投加Cu~(2+)后污泥反硝化活性在第14 d恢复至原有水平.同时,在Cu~(2+)的长期影响过程中,EPS含量增多,对微生物抵御Cu~(2+)的毒害起到重要保护作用,促使污泥粒径增大,污泥沉降性得到提高.  相似文献   

10.
SBR短程脱氮系统中亚硝酸盐积累对生物除磷的影响   总被引:3,自引:1,他引:2  
采用SBR工艺处理实际生活污水,通过控制好氧段的DO浓度及曝气时间,实现了短程硝化反硝化,并考察了短程硝化引起的亚硝酸盐积累对生物除磷系统的影响.结果表明,在没有补充外碳源的情况下,好氧阶段NO2--N的积累低于10 mg·L-1时,聚磷菌的吸磷及放磷能力没有受到影响,好氧出水磷浓度基本维持在1 mg·L-1以下;当N...  相似文献   

11.
Laogang landfill near Shanghai is the largest landfill in China, and receives about 10000 t of daily garbage per day, Samples of topsoil and plants were analyzed to evaluate mercury pollution from the landfill. For topsoil samples, there were significant correlations among total mercury (HgT), combinative mercury (Hgc) and gaseous mercury (HgG), and content of total organic carbon (TOC), but, no significantly relationship was found between Hg content and filling time. Hg content changes in vertical profiles with time showed that the average Hgv of profiles 1992, 1996, and 2000 was similar, but their average HgG was quite different. HgT was significantly correlated with Hgc in profile 1992 and 2000, and Hgv was significantly correlated with Hg6 in profile 1996. HgG/Hgv ratio in profile samples decreased in the order of (HgG,/HgT)1992〉(HgG/HgT)1996〉〉(HgG/HgT)2000. A simple outline of Hg release in landfill could be drawn: with increasing of filling time, degradation undergoes different biodegradation, accordingly, gaseous mercury goes through small, more, and small proportion to total mercury. Distribution of Hg in plants was inhomogeneous, following the order of leaf〉root〉stem. The highest value of leaf may be associated with higher atmospheric Hg from landfill. Ligneous plants (e.g. Phyllostachys glanca, Prunus salicina and Ligustrum lucidum) are capable of enriching more Hg than herbaceous plants.  相似文献   

12.
Phytoremediation is a potential cleanup technology for the removal of heavy metals from contaminated soils.Bidens maximowicziana is a new Pb hyperaccumulator,which not only has remarkable tolerance to Pb but also extraordinary accumulation capacity for Pb.The maximum Pb concentration was 1509.3 mg/kg in roots and 2164.7 mg/kg in overground tissues.The Pb distribution order in the B. maximowicziana was:leaf>stem>root.The effect of amendments on phytoremediation was also studied.The mobility of soil Pb and the Pb concentrations in plants were both increased by EDTA application.Compared with CK(control check),EDTA application promoted translocation of Pb to overground parts of the plant.The Pb concentrations in overground parts of plants was increased from 24.23-680.56 mg/kg to 29.07-1905.57 mg/kg.This research demonstrated that B.maximowicziana appeared to be suitable for phytoremediation of Pb contaminated soil,especially,combination with EDTA.  相似文献   

13.
Decomposition of alachlor by ozonation and its mechanism   总被引:1,自引:0,他引:1  
Decomposition and corresponding mechanism of alachlor, an endocrine disruptor in water by ozonation were investigated. Results showed that alachlor could not be completely mineralized by ozone alone. Many intermediates and final products were formed during the process, including aromatic compounds, aliphatic carboxylic acids, and inorganic ions. In evoluting these products, some of them with weak polarity were qualitatively identified by GC-MS. The information of inorganic ions suggested that the dechlorination was the first and the fastest step in the ozonation of alachlor.  相似文献   

14.
The influence of the nonionic surfactant Tween 80 on pentachlorophenol (PCP) oxidation catalyzed by horseradish peroxidase was studied. The surfactant was tested at concentrations below and above its critical micelle concentration (CMC). Enhancement of PCP removal was observed at sub-CMCs. The presence of Tween 80 in the reaction mixture reduced enzyme inactivation which occurred through a combination of free radical attack and sorption by precipitated products. A simple first-order model was able to simulate time profiles for enzyme inactivation in the presence or absence of Tween 80. At supra-CMCs, the surfactant caused noticeable reductions in PCP removal, presumably through micelle partitioning of PCP which precluded the hydrophobic PCP molecule from interacting with the enzyme.  相似文献   

15.
以三峡大学的校园河道求索溪为研究对象,利用综合水质标识指数法确定求索溪水质类别,分析其水质时空变化规律,并利用对应分析法得出求索溪中不同监测点的主要污染因子.研究结果表明:求索溪整体的综合水质标识指数为7.423,整体水质为劣V类(地表水环境质量标准GB 3838-2002)且黑臭.从时间变化来看,求索溪4月份的水质最差,5月份次之,4、5月份所有监测点的水质都劣于V类且黑臭;8月份水质最好,水质为Ⅳ类;从空间分布来看,8个监测点综合水质标识指数均超过6.0,水质为劣V类,其中6号监测点的水质相对最好,监测点3号的水质相对最差;对应分析法得出求索溪的整体水体污染程度受总氮因子的影响最大,其次为总磷.该研究拟为求索溪及类似校园河道的水环境治理研究提供基础依据和参考.  相似文献   

16.
Effects of chitosan on a submersed plant, Hydrilla verticillata, were investigated. Results indicated that H. venicillata could prevent ultrastructure phytotoxicities and oxidativereaction from polluted water with high chemical oxygen demand (COD). Superoxide dismutase (SOD) activity and malondialdehyde (MDA) contents in H. verticillata treated with 0.1% chitosan in wastewater increased with high COD (980 mg/L) and decreased with low COD (63 mg/L), respectively. Ultrastructural analysis showed that the stroma and grana of chloroplast basically remained normal. However, plant cells from the control experiment (untreated with chitosan) were vacuolated and the cell interval increased. The relict of protoplast moved to the center, with cells tending to disjoint. Our findings indicate that wastewater with high COD concentration can cause a substantial damage to submersed plant, nevertheless, chitosan probably could alleviate the membrane lipid peroxidization and ultrastructure phytotoxicities, and protect plant cells from stress of high COD concentration polluted water.  相似文献   

17.
Removal of cadmium using MnO2 loaded D301 resin   总被引:6,自引:0,他引:6  
MnO2 loaded weak basic anion exchange resin D301 (Anion exchange resin, macroreticular weak basic styrene) as adsorbent has been prepared and applied to the removal of cadmium. The adsorption characteristics have been investigated with respect to effect of pH, equilibrium isotherms, removal kinetic data, and interference of the coexisting ions. The results indicated that the Cd^2+ could be efficiently removed using MnO2 loaded D301 resin in the pH range of 3-8 from aqueous solutions with the co-existence of high concentration of alkali and alkaline-earth metals ions. The saturate adsorption capacity of the Cd^2+ was 77.88 mg/g. The adsorption process followed the pseudo first-order kinetics. The equilibrium data obtained in this study accorded excellently with the Langmuir adsorption isotherm.  相似文献   

18.
The purpose of this study is to understand the effect and mechanism of preventing membrane fouling, by coagulation pretreatment, in terms of fractional component and molecular weight of natural organic matter (NOM). A relatively higher molecular weight (MW) of hydrophobic compounds was responsible for a rapid decline in the ultrafiltration flux. Coagulation could effectively remove the hydrophobic organics, resulting in the increase of flux. It was found that a lower MW of neutral hydrophilic compounds, which could remove inadequately by coagulation, was responsible for the slow declining flux. The fluxes in the filtration of coagulated water and supernatant water were compared and the results showed that a lower MW of neutral hydrophilic compounds remained in the supernatant water after coagulation could be rejected by a membrane, resulting in fouling. It was also found that the coagulated flocs could absorb neutral hydrophilic compounds effectively. Therefore, with the coagulated flocs formed on the membrane surface, the flux decline could be improved.  相似文献   

19.
Acidithiobacillus ferrooxidans ATCC23270 and Acidithiobacillus thiooxidans TM-32 were used for bioleaching of spent refractories of aluminium and copper melting furnaces for their recycling.Firstly,penetration of elements into aluminium melting furnace refractory was investigated and it was found that up to 7 cm from surface was contaminated.Comparison on leaching efficiency by the strains ATCC23270 and TM-32 found that the strain ATCC23270 could treat larger amount of the refractories than the strain TM-32 could do.In the experiment of bioleaching of spent refractory aluminium melting furnace by the strain ATCC23270,high leaching efficiency were obtained on Al,Si,and Ca,and extremely low leaching performance was,however,shown on the rest of elements i.e.,Na,Mn,and Zn.Under the strain TM-32 use,relatively high leaching performance was recognized on Al,Si,Ca,Na,Mn,and Zn.In the experiment of bioleaching for spent refractory copper melting furnace,almost the same leaching trends were shown on Cu,Zn,Al,and Si under the strains ACTT23270 and TM-32 uses.  相似文献   

20.
Zeolite synthesized from fly ash (ZFA) without modification is not efficient for the purification of NH4+ and phosphate at low concentrations that occur in real effluents, despite the high potential removal capacity. To develop an effective technique to enhance the removal efficiency of ammonium and phosphate at low concentrations, ZFA was modified with acid treatment and the simultaneous removal of ammonium and phosphate in a wide range of concentration was investigated. It was seen that when compared with untreated ZFA, only the treatment by 0.01 mol/L of H2SO4 significantly improved the removal efficiency of ammonium at low initial concentrations. The behavior was well explained by the pH effect. Treatment by more concentrated H2SO4 led to the deterioration of the ZFA structure and a decrease in the cation exchange capacity. Treatment by 0.01 mol/L H2SO4 improved the removal efficiency of phosphate by ZFA at all initial P concentrations, while the treatment by concentrated H2SO4 (≥0.9 mol/L) resulted in a limited maximum phosphate immobilization capacity (PIC). It was concluded that through a previous mild acid treatment (e.g. 0.01 mol/L of H2SO4), ZFA can be used in the simultaneous removal of NH4+ and P at low concentrations simulating real effluent.  相似文献   

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