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1.
通过在厌氧氨氧化塔式生物滤池内通入不同浓度的NO气体,探究NO对厌氧氨氧化反应的影响。当NO进气浓度升高至4 018 mg·m-3,NO-2-N进水浓度降低至20 mg·L~(-1)时,NO-N在电子受体中的比例升高至78.8%,NO去除速率最高达165.8 mg·d-1,证明厌氧氨氧化菌可以利用NO-N为电子受体进行厌氧氨氧化反应脱除NO。在这一过程中,TN去除负荷与不通入NO时相比下降了74.3%,NO-3-N生成∶NH+4-N消耗比从0.26下降至0.13。当NO进气浓度升高至8 036 mg·m-3时,NO对厌氧氨氧化菌产生了抑制,TN去除负荷和NO消耗速率分别下降了47.1%和69.6%,同时NO-2-N在电子受体中的比例升高至56.9%。实验证明,提高NO-2-N进水浓度能降低高浓度NO对厌氧氨氧化菌的抑制性。  相似文献   

2.
以城市污水厂回流污泥中的硝化细菌(氨氧化细菌和亚硝酸盐氧化细菌)为受试生物,HgCl2为标准毒性物质,通过对两组实验--氨氧化速率实验(NH 4-N→NO-2-N)和亚硝酸盐氧化速率实验(NO-2-N→NO-3-N)的研究表明,氨氧化细菌对HgCl2的灵敏度(IC50=0.034 mmol/L)明显高于亚硝酸盐氧化细菌(IC50=0.20 mmol/L).氨氧化速率法测试活性污泥活性时,使用NH 4-N或NO-X-N指标需要120 min或更长的时间,但使用NO-2-N指标仅需30 min就可完成测试,而且结果重现性要比NH 4-N和NO-X-N好,其变异系数CV为5.9 %.  相似文献   

3.
DO浓度对间歇曝气单级自养脱氮系统N2O排放的影响   总被引:1,自引:0,他引:1  
以单级自养脱氮系统为研究对象,采用有效容积为15 L的SBBR反应器,系统进水NH+4-N浓度约为360 mg/L,控制温度为(30±2)℃,采用间歇曝气方式运行,曝气段DO浓度从2.4~2.6 mg/L逐渐下降到0.9~1.1 mg/L,研究了单级自养脱氮系统的脱氮性能与N2O排放情况。结果表明,反应器曝气段DO浓度从2.4~2.6 mg/L下降到0.9~1.1mg/L,系统TN去除率均达到80%,但在相同运行时间内的TN去除率依次降低,NH+4-N平均反应速率从0.19 mg/(L·min)降低至0.05 mg/(L·min),NO-3-N累计产生量稳定于14.9~16.5 mg/L,NO-2-N浓度在反应器内未产生明显的积累。随着曝气段DO浓度的下降,最大N2O释放速率逐渐降低,N2O累计释放量从73.8 mg下降到61.0 mg,N2O转化率介于2.4%~2.9%。  相似文献   

4.
微量NO2对厌氧氨氧化甲烷化反硝化耦合影响的动力学分析   总被引:1,自引:0,他引:1  
采用批试验方法,研究微量 NO2对颗粒污泥厌氧氨氧化、甲烷化和反硝化耦合的影响.基于 Haldane 模型建立了厌氧氨氧化的 NO2 强化函数,估计了强化函数中的最大强化系数(30.55)、NO2 半饱和常数(1.96 mg/L)、NO2 抑制常数(0.0082 mg/L)和基础速率系数(0.0314).微量 NO2 对甲烷化和反硝化动力学可用反竞争性抑制动力学方程进行描述.甲烷化的最大比乙酸盐去除速率为0.15 mg COD/(mg VSS·h),乙酸盐半饱和常数为395 mg COD/L,NOz抑制系数为0.623 mg/L.反硝化的亚硝酸盐氮最大去除速率 0.00685 h-1,亚硝酸盐氮半饱和常数0.214 mg/L,NO2 抑制系数为22.4 mg/L.试验中大部分的 NOx 气体物质出现损失.  相似文献   

5.
利用SBR,控制曝气量为60 L/h,利用在线pH曲线控制曝气时间,成功实现了短程生物脱氮过程,并考察了不同进水方式下SBR运行性能及N2O产量。结果表明,分段进水能够有效降低短程生物脱氮过程中外加碳源投加量。在原水进水碳氮比较低时,采用递增进水量的进水方式,能够有效降低生物脱氮过程中NO-2积累量,从而降低系统N2O产量。1次进水、2次等量进水和2次递增进水方式下,生物脱氮过程中N2O产量分别为11.1、8.86和5.04 mg/L。硝化过程中NO-2-N的积累是导致系统N2O产生的主要原因。部分氨氧化菌(AOB)在限氧条件下以NH+4-N作为电子供体,NO-2-N作为电子受体进行反硝化,最终产物是N2O。  相似文献   

6.
厌氧硫酸盐还原-氨氧化的研究   总被引:3,自引:0,他引:3  
采用厌氧序批式反应器,在无机营养条件下培养历时354 d,成功实现了SO2-4和NH+4的同步生物去除。结果表明,提高进水的TN负荷有利于促进硫酸盐还原-氨氧化的发生,当进水TN负荷提高到120 mg/(L·d)时,对TN的平均去除速率和硫酸盐硫的平均去除速率达到了最大,分别为64.43 mg/(L·d)和44.82 mg/(L·d);在同步生物脱氮除硫前期生成了大量的NO-3-N,平均浓度为53.88 mg/L,远大于由Anammox反应生成的量,推测部分NO-3是直接由NH+4和SO2-4发生氧化还原反应生成。该体系中存在单质硫的自养反硝化,可以解释反应后期硫酸盐重生成的现象。  相似文献   

7.
利用SBR,控制曝气量为60 L/h,利用在线pH曲线控制曝气时间,成功实现了短程生物脱氮过程,并考察了不同进水方式下SBR运行性能及N2O产量。结果表明,分段进水能够有效降低短程生物脱氮过程中外加碳源投加量。在原水进水碳氮比较低时,采用递增进水量的进水方式,能够有效降低生物脱氮过程中NO-2积累量,从而降低系统N2O产量。1次进水、2次等量进水和2次递增进水方式下,生物脱氮过程中N2O产量分别为11.1、8.86和5.04 mg/L。硝化过程中NO-2-N的积累是导致系统N2O产生的主要原因。部分氨氧化菌(AOB)在限氧条件下以NH+4-N作为电子供体,NO-2-N作为电子受体进行反硝化,最终产物是N2O。  相似文献   

8.
制备并考察了Cu-Mn/SiO2催化氧化NO的性能,研究了各操作条件对NO催化氧化效率的影响,在NO体积分数1 000×10-6、O210%,空速5 000 h-1,240℃时,NO的氧化率高于60%(此时最适宜吸收处理),300℃时,氧化率可达到70%,接近平衡值.Cu-Mn/SiO2有良好的单独抗H2O、SO:毒化性能,H2O和SO2同时存在时,很快失活.Cu-Mn/SiO2可用于不同时含H2O和SO2的含NO气体氧化吸收处理.  相似文献   

9.
采用批式呼吸法求得好氧氨氧化菌产率系数为0.2119 mg COD/mg NH4 -NOD(或者0.7268 mg COD/mg NH4 -N)和氨氧化菌最大氨氮降解速率为0.1 mg NOD/(mg COD·h)(或者0.0292 mg N/(mg COD·h)).用间歇式批试验法,加入24 μmol/L NaN3抑制NO2--N氧化,建立氨氧化反应动力学方程,得到氨氮半饱和系数为18.38 mg NOD/L(或者5.36 mg NH4 -N/L),DO半饱和系数为0.494 mg/L.对比参数值表明,用一步硝化动力学来描述氨氧化反应动力学模型是错误的.  相似文献   

10.
有机物浓度对厌氧氨氧化脱氮性能影响试验研究   总被引:8,自引:2,他引:6  
通过间歇试验和连续试验研究了不同有机物浓度对厌氧氨氧化活性及脱氮性能的影响。间歇试验结果表明:自养条件下厌氧氨氧化菌的最大比反应速率为0.189 kg NH+4-N/(kg VSS·d);当氨氮和亚硝酸盐氮浓度为80 mg/L时,有机物的添加降低了厌氧氨氧化速率,当有机物浓度超过70 mg/L时,厌氧氨氧化菌的最大比反应速率降低到0.05 kg NH+4-N/(kg VSS·d)以下,是反硝化菌与厌氧氨氧化菌竞争亚硝酸盐产生了可逆抑制的结果。连续试验结果表明,高氮低碳源有机环境下厌氧氨氧化能稳定运行,并且比自养系统中总氮的去除率有所提高,当COD值为50 mg/L时,总氮去除率最大,平均值达96.59%,是反硝化菌和厌氧氨氧化菌共同脱氮的结果;当有机物浓度过高时,ANAMMOX对TN去除贡献率持续降低,反硝化不断得到强化,厌氧氨氧化运行不稳定。  相似文献   

11.
Redox reactions in the Fe-As-O2 system   总被引:1,自引:0,他引:1  
Johnston RB  Singer PC 《Chemosphere》2007,69(4):517-525
We have examined two redox reactions involving arsenic and iron at near-neutral pH: the reduction of As(V) by Fe(II) under anoxic conditions, and the co-oxidation of As(III) during Fe(II) oxygenation. We also considered the impact of goethite, pH buffers, and radical scavengers on these reactions. In a series of anoxic experiments, Fe(II) was found to reduce As(V) in the presence of goethite, but not in homogeneous solution. The reaction rate increased with increasing pH and Fe(II) concentration, but in all cases was relatively slow. In aerobic experiments, the kinetics of Fe(II) oxygenation at neutral pH, and the corresponding oxidation of As(III) were found to depend heavily on pH buffer type and concentration. The classic formulation of Fe(II) oxidation by oxygen, involving four single-electron transfers, was reviewed and found to be inadequate for explaining observed oxidation of Fe(II) and As(III). Widely cited rate constants for Fe(II) oxygenation originate from experiments conducted in carbonate buffer, and do not match observations made in phosphate, MES, or HEPES systems. In phosphate buffer, Fe(II) oxidation is rapid and dependent on phosphate concentration. In MES and HEPES buffers, Fe(II) oxidation is much slower due to the lack of labile ferrous iron species. Oxygenation of Fe(II) appears to proceed through different mechanisms in phosphate and MES or HEPES systems. In both cases, reactive intermediary species are produced which can oxidize As(III). These oxidants are not the hydroxyl radical, but may be Fe(IV) species.  相似文献   

12.
超声-过氧化氢-氧化铜组合技术催化氧化水中苯酚   总被引:4,自引:0,他引:4  
研究了超声-H2O2-CuO组合技术对苯酚的降解效果。考察了苯酚初始浓度、溶液温度及鼓入空气对苯酚去除率的影响。实验结果表明,与未鼓入空气时相比,连续鼓气时苯酚的降解效果较好;初始浓度低,苯酚去除率高;溶液温度从20%上升到55%时,苯酚去除率随温度升高而增大,温度对该过程的影响主要表现为对催化剂的影响而不是对超声作用的影响。高效液相色谱分析表明,苯酚降解的中间产物主要为对苯二酚、邻苯二酚及其他有机小分子物质,最终产物为草酸、二氧化碳和水。  相似文献   

13.
研究了超声-H2O2-CuO组合技术对苯酚的降解效果。考察了苯酚初始浓度、溶液温度及鼓入空气对苯酚去除率的影响。实验结果表明,与未鼓入空气时相比,连续鼓气时苯酚的降解效果较好;初始浓度低,苯酚去除率高;溶液温度从20℃上升到55℃时,苯酚去除率随温度升高而增大,温度对该过程的影响主要表现为对催化剂的影响而不是对超声作用的影响。高效液相色谱分析表明,苯酚降解的中间产物主要为对苯二酚、邻苯二酚及其他有机小分子物质,最终产物为草酸、二氧化碳和水。  相似文献   

14.
用浸渍法制备了一系列稀土催化剂,研究了其催化CO还原SO2为单质硫的耐氧特性及影响其耐氧性能的主要因素,运用XRD技术分析了催化剂物相的变化及脱硫产物成分.结果表明,12% La2O3-8% CeO2/γ-Al2O3复组分催化剂比其他La2O3-CeO2/γ-Al2O3催化剂具有更好的耐氧性能;脱硫温度、催化剂用量、SO2与CO的摩尔比等对催化剂的耐氧性能均有明显的影响.最后,探讨了稀土催化剂脱硫机理,并分析在有O2条件下,引起脱硫率下降的原因是反应过程中O2与CO、S发生了竞争性反应.  相似文献   

15.
Rates of CO2 production in the reaction CO + OH and CO + OH + halocarbon have been used to determine rate constants for some OH + halocarbon reactions at 29.5°C relative to that of k(CO + OH) = 2.69 × 10?13 cm3 molecule?1 sec?1. The following rate constants were obtained: k(OH + CH3Cl) = 3.1 ± 0.8, k(OH + CH2Cl2) = 2.7 ± 1.0, k(OH + C2H5Cl) = 44.0 ± 25, k(OH + CICH2CH2CI) = 6.5, (<29) and k(OH + CH3CCl3) = 2.1 (<5.7) cm3 molecule?1 sec?1 × 10?14. The k values, CH2Cl2 excepted, are in substantial agreement with determinations made in nonoxygen environments. The present results for CH2Cl2 are almost certainly in error due to difficulties with the competitive approach used.  相似文献   

16.
低浓度Pb2+、Cd2+对鲫鱼肝脏组织中 HSP70诱导的影响   总被引:3,自引:0,他引:3  
以鲫鱼(Carassius auratus)作为实验对象,经过40 d Pb2+、Cd2+不同浓度的暴露后,运用SDS-PAGE和Western Blotting方法检测鱼肝脏组织内应激蛋白HSP70的诱导表达情况.结果表明,在实验浓度下,与对照组相比,Pb2+、Cd2+对鱼肝脏内HSP70有显著的诱导(P<0.05),但在Cd2+浓度为0.2 mg/L有停止表达HSP70的现象,可能是由于浓度过高造成了组织病理损伤而破坏了诱导表达机制.实验还发现,在实验浓度低于国家渔业用水标准时,HSP70仍然表现为明显诱导(P<0.05),充分说明运用分子生物学指标要比传统的环境检测指标敏感,具有对污染物早期预警的作用.  相似文献   

17.
Environmental Science and Pollution Research - Production of the greenhouse gas nitrous oxide (N2O) from the completely autotrophic nitrogen removal over nitrite (CANON) process is of growing...  相似文献   

18.
Lee C  Yoon J 《Chemosphere》2004,56(10):923-934
The thermal enhancement of the formation of *OH by the hv/Fe(III)/H2O2 system (including the Fe(III)/H2O2 system) was quantitatively investigated with reaction temperatures ranging from 25 to 50 degrees C. A temperature dependent kinetic model for the hv/Fe(III)/H2O2 system, incorporating 12 major reactions with no fitted rate constants or activation energies, was developed, and successfully explained the experimental measurements. Particularly, the thermal enhancement of Fe(OH)2+ photolysis which is the most significant step in the hv/Fe(III)/H2O2 system was effectively explained by two factors; (1) the variation of the Fe(OH)2+ concentration with temperature, and (2) the temperature dependence of the quantum yield for Fe(OH)2+ photolysis (measured activation energy=11.4 kJ mol(-1)). Although in both the hv/Fe(III)/H2O2 and Fe(III)/H2O2 systems, elevated temperatures enhanced the formation of *OH, the thermal enhancement was much higher in the dark Fe(III)/H2O2 system than the hv/Fe(III)/H2O2 system. Furthermore, it was found that the relative thermal enhancement of the formation of *OH in the presence of *OH scavengers (tert-butyl alcohol) was magnified in the Fe(III)/H2O2 system but was not in the hv/Fe(III)/H2O2 system.  相似文献   

19.
A field study was conducted to investigate the impact of soil amendments on concentrations of two volatile organic compounds, 2-undecanone and 2-tridecanone, in onion bulbs. The soil in five plots was mixed with sewage sludge, five plots were mixed with yard waste compost, five plots were mixed with laying hen manure each at 15 t acre?1, and five unamended plots that never received soil amendments were used for comparison purposes. Plots (n = 20) were planted with onion, Allium cepa L. var. Super Star-F1 bulbs. Gas chromatographic/mass spetrometric (GC/MS) analyses of mature onion bulbs crude extracts revealed the presence of two major fragment ions that correspond to 2-undecanone and 2-tridecanone. Soil amended with yard waste compost enhanced 2-undecanone and 2-tridecanone production by 31 and 59%, respectively. Soil amended with chicken manure enhanced 2-undecanone and 2-tridecanone production by 28 and 43%, respectively. Concentrations of 2-undecanone and 2-tridecanone were lowest in onion bulbs of plants grown in sewage sludge and unamended soil, respectively. The increased concentrations of 2-undecanone and 2-tridecanone in onion bulbs may provide a protective character against insect and spider mite attack in field grown onions.  相似文献   

20.
Liao CH  Lu MC  Su SH 《Chemosphere》2001,44(5):913-919
The purpose of this study is to reveal the role of cupric ions as a natural water contaminant in the H2O2/UV oxidation of humic acids. Humic acids are naturally occurring organic matter and exhibit a strong tendency of complexation with some transition metal ions. Chlorination of humic acids causes potential health hazards due to formation of trihalomethane (THM). The removal of THM precursors has become an issue of public concern. The H2O2/UV process is capable of mineralizing humic acids due to formation of a strong oxidant, hydroxyl radicals, in reaction solution. Experiments were conducted in a re-circulated photoreactor. Different cupric concentrations (0-3.8 mg/l) and different pH values (4-9) were controlled to determine their effects on the degradation of humic acids, UV light absorbance at 254 nm, and H2O2. The presence of cupric ions inhibits humic mineralization and decreases the rate of destruction of humic acids which absorb UV light at 254 nm. On the other hand, the higher the cupric concentration, the lower the H2O2 decomposition rate. In the studied pH range, the minimum of total organic carbon (TOC) removal occurs at pH = 6 in the presence of 2.6 mg/l of cupric ions; both acidification (pH = 4) and alkaline condition (pH = 9) lead to a better removal of TOC. It is inferred from this study that the cupric-complexed form of humic acids is more refractory than the non-complexed one.  相似文献   

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