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1.
鸟粪石结晶法回收垃圾渗滤液氨氮研究   总被引:7,自引:3,他引:4  
采用MgSO4·7H2O和Na2HPO4·12H2O使NH3-N生成MgNH4PO4·6H2O(鸟粪石)结晶沉淀法回收渗滤液中NH3-N。考察了pH值、反应时间、药剂配比对NH3-N去除率的影响。结果表明,鸟粪石结晶回收NH3-N反应的适宜pH值为9~9.5之间,过高的pH会破坏鸟粪石晶体结构,导致固定氨从MgNH4PO4中游离出来,不利于氨氮的去除。在pH值为9.5、反应时间为25 min、Mg2+∶NH+4∶PO3-4=1.5∶1∶1.5的最佳条件下,渗滤液中NH3-N浓度由初始3 500 mg/L,经结晶沉淀后降低至175 mg/L,去除率达95%。鸟粪石结晶沉淀过程中几乎不吸收重金属,同时回收了氨氮,其沉淀产物鸟粪石是一种优良的缓释肥原料。  相似文献   

2.
MAP沉淀法处理高NH3-N废水,操作简便,处理效果好。本试验以NH3-N浓度为1 000 mg/L的模拟废水为研究对象,研究结果表明,在Mg2+∶PO3-4∶NH+4=1.2∶1.2∶1(摩尔比)、NaOH投加量为675 g/L的条件下NH3-N去除率高达98%以上。试验选择出水pH作为控制反应进程的参数,并建立了出水pH与NH3-N去除率之间的关系。通过调整NaOH投加量控制出水pH在7.5~8之间时,NH3-N去除率最高,可达98%以上。X-衍射图谱及定量分析表明,沉淀物中MAP的纯度较高,具有一定的回收价值。  相似文献   

3.
为缓解湖泊富营养化问题,需进一步降低入湖河流氮的含量。针对滇池流域新运粮河的低C/N水质特征,研究了冬季低温条件下的微曝气生物滤池(BAF)及固相反硝化(SPD)组合异位脱氮工艺。结果表明,BAF+SPD组合工艺启动挂膜阶段,约3周后,NH4+-N的去除率达80%以上,而反硝化细菌增殖相对缓慢,约5周后,NO3--N的去除率达80%以上;稳定运行的低温阶段,除降雨时间外,NH4+-N平均去除率达80%,出水NH4+-N浓度<1 mg/L;NO3--N平均去除率达到85%以上,出水NO3--N浓度<1 mg/L;TN平均去除率达80%以上,出水TN浓度<2 mg/L,主要水质指标达到国家地表水Ⅴ类标准。  相似文献   

4.
利用13X沸石分子筛净化含NH+4-N废水的实验研究   总被引:1,自引:0,他引:1  
研究了13X沸石分子筛在静态和动态条件下对中低浓度含NH+4-N废水的吸附性能,包括影响吸附的主要因素、沸石对NH+4-N的吸附效果和沸石的再生等。静态实验结果表明,pH值为6.5~7.5,吸附时间35 min,吸附温度20~30℃的条件下,沸石对50 mL NH+4-N初始浓度(C0)为80 mg/L的废水吸附效果最佳,吸附过程符合Langmuir型吸附等温式,饱和吸附量为8.61 mg/g。动态条件下,随水力停留时间增加,沸石对NH+4-N的吸附量上升,最大饱和吸附量可达24.20 mg/g,吸附过程符合Thomas吸附模型。直接焙烧法对吸附后的沸石进行再生活化处理效果良好。实验证明,利用13X沸石净化中低浓度含NH+4-N废水具有良好的工业化应用前景。  相似文献   

5.
A/O和A2/O工艺对膜生物反应器处理焦化废水影响的研究   总被引:3,自引:1,他引:2  
为提高膜生物反应器对焦化废水的处理效果,采用A/O和A2/O两种工艺的膜生物反应器处理焦化废水,通过对比处理效果、分析膜污染情况,寻求膜生物反应处理焦化废水的最优工艺。实验结果表明:A2/O工艺系统对酚、NH3-N、COD的去除率分别为99%、90%和95%;A/O工艺系统对酚、NH3-N和COD的去除率分别为97%、75%和93%。A2/O膜生物反应器系统对焦化废水中NH3-N的去除效果明显优于A/O膜生物反应器系统,其反硝化率为50%~70%。对膜污染分析表明不同工艺对膜污染的影响不显著,A2/O工艺膜通量衰减59%,A/O工艺膜通量衰减56%。研究表明在膜生物反应器中,A2/O工艺对焦化废水的去除效果要优于A/O工艺。  相似文献   

6.
以天然矿物质沸石、细砂及煤渣取代传统滤料构建复合基质生态床,表面种植景观植物,采用下向流-上向流运行方式修复北方景观水体。分别进行静态实验及不同循环速率下的动态实验,考察对水体污染物去除过程。结果表明,2种运行方式下对水体NH+4-N去除率都在85%以上,其中以1 h为循环周期的运行方式去除率达97%,较静态提高12.8%;TN去除率最高为84%;TP去除不稳定,过程缓慢。煤渣层对NH+4-N的去除效果差,硝化作用不彻底与反硝化作用的加强使下层出水NH+4-N 、NO-2-N及NO-3-N浓度均高于上层。提高循环速率有利于对氮的去除。  相似文献   

7.
UASB反应器厌氧氨氧化菌的脱氮特性研究   总被引:8,自引:3,他引:5  
研究UASB厌氧氨氧化(ANAMMOX)反应器运行情况,采用普通城市污水厂活性污泥接种,人工合成废水,pH值在7.4~7.8之间,温度控制在(32±1)℃。在反应器稳定运行270~450 d之间的180 d中,对NH+4-N和NO-2-N去除率均达到99.9%以上,总氮去除率保持在90%以上,NO-3-N产生量在20~30 mg/L之间波动。研究表明,UASB厌氧氨氧化反应器处理废水效果明显,对NH+4-N、NO-2-N和TN去除率高,NO-2-N和NH+4-N比值可以指示厌氧氨氧化反应器性能的演变。UASB反应器稳定运行阶段容积负荷的影响较小,ANAMMOX菌对合成废水适应性强,反应器抗冲击能力较强,受冲击后恢复迅速。出水pH值稳定在8.5附近,pH值变化情况可作为反应器运行状况的指示。关键词硝化厌氧氨氧化上流式厌氧污泥床生物脱氮  相似文献   

8.
针对含氨氮废水,研究了逐步提高盐度(以氯离子浓度计)驯化活性污泥过程、淡水活性污泥受到一定盐度冲击过程以及经过30 000 mg Cl/L驯化后的活性污泥在盐度波动时对SBR反应器中亚硝化和硝酸化过程的影响。研究结果表明:在逐步提高盐度驯化的过程中,NH+4-N的降解速率在盐度提高为15 000 mg Cl/L时先降低后升高,当盐度为25 000 mg Cl/L时,反应周期末有大量的NO-2-N累积,当盐度高达30 000 mg Cl/L时, NH+4N的降解速率仍然维持在一定水平,这说明硝酸化过程比亚硝化过程更容易受到高盐度的抑制。而在冲击实验中,当淡水活性污泥受到20 000 mg Cl/L盐度冲击时,即使经过长时间的驯化后亚硝化过程仍然受到较大的抑制,且反应周期末有大量NO-2-N累积,当受到30 000 mg Cl/L盐度冲击时硝化作用几乎完全被抑制。经过30 000 mg Cl/L驯化后的活性污泥的硝化作用对盐度波动具有较强的适应性。  相似文献   

9.
不同填充率对移动床生物膜反应器的产泥性能影响研究   总被引:1,自引:0,他引:1  
研究了不同填充率下(10%~70%)移动床生物膜反应器的生物膜特征和处理效果,以及填充率与污泥产率的关系。结果表明:随着填充率的增加,填料上生物膜厚度逐渐减少,反应器中附着微生物浓度逐渐增加;污泥产率因填充率不同而有很大差异,同一个反应器内污泥产率随填充率的增加而减少;在进水COD为400 mg/L、NH+4-N为40 mg/L、水力停留时间为12 h条件下,不同填充率下COD去除率均可达到94%以上,NH+4-N去除率达到97%以上。  相似文献   

10.
氨吹脱-Fenton氧化预处理阿奇霉素废水的研究   总被引:1,自引:1,他引:0  
采用氨吹脱-Fenton试剂氧化法对阿奇霉素废水进行预处理,考察了各种因素对处理效果的影响。实验结果表明:在pH值为11,吹脱时间160 min,温度30℃的条件下,氨氮浓度从2 458.7 mg/L降低到421.7 mg/L,去除率可达82.85%;Fenton氧化吹脱出水的适宜工艺条件:初始pH值为3、反应时间90 min、FeSO4·7H2O投加量为0.01 mol/L、H2O2/Fe2+的投加比16∶1,此时,COD去除率为72.6%;废水经预处理后,有效地改善了废水水质,提高了废水的可生化性,由初始的0.1增至0.37,为后续废水的生化处理提供了有利条件。  相似文献   

11.
通过对复合垂直流渗滤系统中增加球型填料,利用生物强化提高系统对城市生活污水污染物去除能力的研究,优化了复合垂直流渗滤系统.并且通过研究,探索了系统非生物作用与生物作用对氮的降解机制.结果表明,通过生物强化系统生活污水中COD的去除率由原来的74.7%提高到85.3%;对NH3-N的去除率由原来的28.7%提高到52.9%;对TN的去除率从31.0%提高到41.7%;系统对TP的去除率由30.9%提高到49.3%.球形填料通过提高系统的硝化活性,增加对氨氮的降解转化效率,同时生物量的大小,也是影响氨氮的降解转化效率的重要因素.系统对污水中氮的降解是以生物作用为主,氮转化以硝化效果较强,反硝化效果比较弱.  相似文献   

12.
垃圾渗滤液是公认的一种成分复杂且难以处理的高浓度有机废水,笔者在北京市海淀区六里屯垃圾填埋场通过2007—2010年垃圾渗滤液处理的工程实践,以COD和氨氮的去除率为指标,研究了不同的垃圾渗滤液处理工艺组合,以及不同运行参数条件下对垃圾渗滤液的处理效果。结果表明,在中温UASB和A/O的平均水力停留时间(HRT)缩短1/3的情况下,通过改进A/O段曝气方式,优化系统的pH、DO等运行参数,用MBR替代絮凝工艺,使整个组合工艺对COD的年平均去除率达到了94.3%,氨氮的去除率维持在99.5%以上,出水氨氮稳定在10 mg/L以内,而改造前的COD与氨氮的年平均去除率仅为82.2%与55.3%。与改造前的UASB+A/O+絮凝工艺组合相比,改造后的UASB+A/O+MBR工艺组合具有更高的污染物去除能力、更好的抗缓冲性和稳定性。  相似文献   

13.
改进型波形潜流人工湿地处理猪场废水   总被引:1,自引:0,他引:1  
提出了一种改进型波形潜流人工湿地(improved wavy subsurface flow constructed wetland,IW-SFCW)并研究了该湿地系统在5个水力停留时间(hydraulic retention time,HRT)(2、3、4、6和8 d)下对猪场废水的处理效果。结果表明,该湿地系统对猪场废水中各污染物有较好的去除效果。在水力停留时间为4 d,进水COD、TN、NH4+-N和TP浓度分别为511、120、110和10 mg/L左右时,该湿地系统对COD、TN、NH4+-N和TP的去除率分别为86.0%、54.4%、70.1%和91.6%。此外,该湿地系统对废水中COD、TP的去除效率随水力停留时间的延长逐渐提高,在HRT=8 d时去除效果最好,去除率分别达到92.7%和96.8%;但对TN、NH4+-N的去除率却随水力停留时间的延长出现先上升后下降的趋势,在HRT=4 d时去除率最高,分别为54.4%和70.1%。  相似文献   

14.
采用气质联用分析,并结合自动识别与定量系统(AIQS-DB)考察2种再生水厂采用的深度处理工艺对微量有机污染物的去除效果。结果表明,以污水为原水的膜生物反应器(MBR)+臭氧氧化+生物活性炭滤池(BAC)工艺用于再生水生产,MBR工艺对有机污染物的去除起主要作用;城市污水厂二级出水为原水的混凝沉降+浸没式超滤(SMF)/连续微滤(CMF)+部分反渗透(RO)+臭氧氧化工艺用于再生水生产,其SMF和CMF工艺段的膜截留作用均可有效消减有机污染物含量,SMF的效果优于CMF;2种工艺中采用的臭氧技术都能进一步加强部分物质的去除效果。气质联用结合AIQS-DB可用于再生水中污染物的筛查和不同污水再生工艺对微污染物消减效果的评价。  相似文献   

15.
Growing common duckweed Lemna minor L. in diluted livestock wastewater is an alternative option for pollutants removal and consequently the accumulated duckweed biomass can be used for bioenergy production. However, the biomass accumulation can be inhibited by high level of ammonium (NH4 +) in non-diluted livestock wastewater and the mechanism of ammonium inhibition is not fully understood. In this study, the effect of high concentration of NH4 + on L. minor biomass accumulation was investigated using NH4 + as sole source of nitrogen (N). NH4 +-induced toxicity symptoms were observed when L. minor was exposed to high concentrations of ammonium nitrogen (NH4 +-N) after a 7-day cultivation. L. minor exposed to the NH4 +-N concentration of 840 mg l?1 exhibited reduced relative growth rate, contents of carbon (C) and photosynthetic pigments, and C/N ratio. Ammonium irons were inhibitory to the synthesis of photosynthetic pigments and caused C/N imbalance in L. minor. These symptoms could further cause premature senescence of the fronds, and restrain their reproduction, growth and biomass accumulation. L. minor could grow at NH4 +-N concentrations of 7–84 mg l?1 and the optimal NH4 +-N concentration was 28 mg l?1.  相似文献   

16.
SBR-BAF工艺处理效能的试验研究   总被引:1,自引:0,他引:1  
根据生物除磷和脱氮的机理,污水的脱氮除磷存在基质竞争和泥龄等方面的矛盾。为了分析和解决这个问题,设计开发了一种新的污水生物处理工艺——SBR-BAF复合工艺,并以模拟城市生活污水为处理对象对该工艺的处理效能进行了考察。试验结果表明,系统对COD(不计BAF加入的外碳源)、TP、NH+4-N和TN的平均去除率分别为96%、98%、93%和84%,出水中COD、TP、NH+4-N和TN的平均浓度分别为20、0.23、3.24和7.68 mg/L,各项水质指标均达到《城镇污水处理厂污染物排放标准》(GB 18918-2002 ) 规定的一级标准中的A标准。  相似文献   

17.

Pseudomonas sp. Y-5, a strain with simultaneous nitrification and denitrification (SND) capacity, was isolated from the Wuhan Municipal Sewage Treatment Plant. This strain could rapidly remove high concentrations of inorganic nitrogen. Specifically, Pseudomonas sp. Y-5 removed 103 mg/L of NH4+-N in 24 h without nitrate or nitrite accumulation when NH4+-N was its sole nitrogen source. The NH4+-N removal efficiency (RE) was 97.26%, and the average removal rate (RR) was 4.30 mg/L/h. Strain Y-5 also removed NO3?-N and NO2?-N even in aerobic conditions, with average RRs of 4.39 and 4.23 mg/L/h, respectively, and REs of up to 99.34% and 95.81% within 24 h. When cultured in SND medium (SNDM-1), strain Y-5 achieved an NH4+-N RE of up to 97.80% and a total nitrogen (TN) RE of 93.01%, whereas NO3?-N was fully depleted in 48 h. Interestingly, high nitrite concentrations did not inhibit the nitrification capacity of Y-5 when grown in SNDM-2, the RE of NH4+-N and TN reached 96.29% and 94.26%, respectively, and nitrite was consumed completely. Strain Y-5 also adapted well to high concentrations of ammonia (~401.68 mg NH4+-N/L) or organic nitrogen (~315.12 mg TN/L). Our results suggested that Pseudomonas sp. Y-5 achieved efficient simultaneous nitrification and denitrification, thus demonstrating its potential applicability in the treatment of nitrogen-polluted wastewater.

  相似文献   

18.
Abstract

A process on crystallized precipitation of ammonium by adding magnesium salt and phosphate was carried out to improve C/N ratio in swine wastewater. After completion of crystallized precipitation of ammonium, an intermittent aeration process with aeration and non‐aeration periods alternated at interval of 1:1 hr day‐1 is used for the improved swine wastewater (T‐N/BOD=0.14: BOD=8200 mg/liter and T‐N=1166 mg/liter). The results obtained from the experiment show that the removal ratios of T‐N and NH4‐N are 91% and 99%, respectively. T‐P is not removed, while the removal ratio of PO4‐P is 60% as 3% of CaCl2 liquid is added. The results also indicate that dilution with water is effective to improve the removal of phosphorus even if raw swine wastewater contains high concentrations of T‐N, T‐P, BOD, and TOC.  相似文献   

19.
铁盐絮凝+MBR处理钨冶炼含砷含氨氮废水   总被引:1,自引:0,他引:1  
选用铁盐絮凝+MBR组合系统对钨冶炼废水进行了实验研究,考察了组合系统对废水中As、COD、NH+4-N和TN的去除效果。结果表明,系统对As、COD、NH+4-N和TN的去除效果较好,去除率分别为97.2%、93.4%、74.0%和52.8%;系统的抗流量冲击能力和抗有机物负荷冲击能力较强。  相似文献   

20.
Simultaneous sludge reduction and malodor abatement in humus soil cooperated an anaerobic/anoxic/oxic (A2O) wastewater treatment were investigated in this study. The HSR-A2O was composed of a humus soil reactor (HSR) and a conventional A2O (designated as C-A2O).The results showed that adding HSR did not deteriorate the chemical oxygen demand (COD) removal, while total phosphorus (TP) removal efficiency in HSR-A2O was improved by 18 % in comparison with that in the C-A2O. Both processes had good performance on total nitrogen (TN) removal, and there was no significant difference between them (76.8 and 77.1 %, respectively). However, NH4 +–N and NO3 ?–N were reduced to 0.3 and 6.7 mg/L in HSR-A2O compared to 1.5 and 4.5 mg/L. Moreover, adding HSR induced the sludge reduction, and the sludge production rate was lower than that in the C-A2O. The observed sludge yield was estimated to be 0.32 kg MLSS/day in HSR-A2O, which represent a 33.5 % reduction compared to a C-A2O process. Activated sludge underwent humification and produced more humic acid in HSR-A2O, which is beneficial to sludge reduction. Odor abatement was achieved in HSR-A2O, ammonium (NH3), and sulfuretted hydrogen (H2S) emission decreased from 1.34 and 1.33 to 0.06 mg/m3, 0.025 mg/m3 in anaerobic area, with the corresponding reduction efficiency of 95.5 and 98.1 %. Microbial community analysis revealed that the relevant microorganism enrichment explained the reduction effect of humus soil on NH3 and H2S emission. The whole study demonstrated that humus soil enhanced odor abatement and sludge reduction in situ.  相似文献   

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