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1.
不同生物反应器中基因工程菌生物强化处理阿特拉津研究   总被引:4,自引:3,他引:1  
在膜-生物反应器(MBR)和复合生物反应器中,考察基因工程菌生物强化处理阿特拉津去除效果,并对基因工程菌浓度和降解基因atzA基因丰度变化进行检测.结果表明,阿特拉津对COD和氨氮的生物去除活性具有一定的抑制作用;基因工程菌生物强化后,COD及氨氮的去除效率得到恢复.MBR对COD和氨氮的去除效果优于复合生物反应器.基...  相似文献   

2.
基因工程菌生物强化处理系统微生物群落分析   总被引:2,自引:0,他引:2  
在膜-生物反应器(MBR)和传统活性污泥反应器(CAS)中,考察了基因程菌生物强化对阿特拉津的去除效果,并通过PCRDGGE分析了反应器不同运行阶段污泥微生物群落的变化.结果表明,基因工程菌生物强化实现了阿特拉津的高效生物去除,MBR和CAS阿特拉津平均去除率分别达到88.6%和85.3%.阿特拉津生物强化去除有助于反...  相似文献   

3.
溶解氧对膜生物反应器处理高氨氮废水的影响   总被引:4,自引:0,他引:4  
采用膜生物反应器(MBR)处理高氨氮有机废水,探讨了溶解氧(DO)对有机物、氨氮、总氮等去除效果的影响。当进水COD1500mg/L,NH4+-N150mg/L,TP为15mg/L,pH7.5~8.0,MLSS控制在6000~7000mg/L,DO在0.5~4mg/L时对COD的去除效果没有明显影响,都可高达95%;在DO为4.0和2.0mg/L时对NH4+-N的去除率都很高,最高可达99.17%,在DO为0.5mg/L时明显降低,最低降至48.30%。在DO2.0mg/L时,取得了较好的同步硝化反硝化效果,COD、NH4+-N、TN去除率分别高达97%、97%、68%。MBR中硝化反应的比氨氮消耗速率与氨氮浓度成零级反应动力学,比氨氮硝化速率为0.0979/d,比常规处理系统中的污泥硝化活性高。  相似文献   

4.
移动床膜生物反应器同步硝化反硝化特性   总被引:11,自引:3,他引:8  
杨帅  杨凤林  付志敏 《环境科学》2009,30(3):803-808
采用挂膜填料代替传统膜生物反应器(MBR)的活性污泥,构建一种新型的移动床膜生物反应器 (MBMBR),考察其处理模拟生活污水的效果及同步硝化反硝化(SND)特性.结果表明,移动床膜生物反应器运行67 d,对模拟生活污水表现出良好的去除有机物及同步硝化反硝化能力.进水COD浓度为573.5~997.7 mg/L时,膜出水COD去除率为88.3%~99.2%.进水氨氮浓度为45.5~99.2 mg/L时,膜出水氨氮去除率为72.1%~99.8%,总氮去除率为62.0%~96.3%.批式实验结果表明,生物膜去除总氮的最佳溶解氧浓度为1 mg/L,其中氨氮和总氮去除率分别为100%和60%.生物膜系统内可能存在好氧反硝化现象.DO为3 mg/L且有机碳源充足时,生物膜总氮去除率为99.0%,SND率达到99.8%.扫描电镜对生物膜的观察发现生物膜内部存在着明显的孔隙,有利于溶解氧和有机基质从外界向生物膜内部传递.  相似文献   

5.
刘春  于长富  张静  陈晓轩  张磊  杨景亮 《环境科学》2016,37(8):3101-3107
在疏水SPG(shirasu porous glass)膜表面形成基因工程菌生物膜,构建SPG膜曝气-生物膜反应器(MABR)生物强化处理阿特拉津废水,考察MABR反应器稳定运行过程中污染物去除性能及其影响因素.结果表明,增大SPG膜孔径和曝气压力,能够提高曝气供氧能力,改善COD和阿特拉津生物强化去除效能.1.5μm疏水SPG膜在70 k Pa曝气压力下的最大供氧能力约为22.4 g·(m~2·d)~(-1).曝气压力为70 k Pa、水力停留时间(HRT)为1.5 h时,1.5μm膜MABR反应器COD平均去除率为80.1%,平均去除负荷为1.86 kg·(m~3·d)~(-1);阿特拉津平均去除率为62.5%,平均去除负荷为0.18 kg·(m~3·d)~(-1).进一步缩短HRT、增加进水负荷后,MABR反应器DO浓度显著下降,COD和阿特拉津去除效率大幅降低.DO浓度对阿特拉津去除的影响更为显著.随着MABR反应器的稳定运行,SPG膜表面单一基因工程菌生物膜逐渐演化为复杂微生物群落,但基因工程菌可以较好地存在于生物膜内,从而保持阿特拉津生物强化去除能力.  相似文献   

6.
魏敏捷  王慧  刘春  宁大亮 《环境科学》2008,29(6):1555-1560
考察了固定化基因工程菌强化处理(GEM)/传统活性污泥处理(CAS)串联工艺对阿特拉津废水的处理效果,水力停留时间(HRT)对处理效果的影响,基因工程菌的生长和流失情况.结果表明,当HRT为4~24h,阿特拉津初始浓度为20mg/L,以实际生活污水为碳源时,串联工艺均可以实现对高浓度高负荷的阿特拉津生物强化处理.水力停留时间为24h时,固定化细胞反应器(串联工艺A段)的处理效果最好,阿特拉津平均去除率为96.64%,出水浓度为0.56ms/L.水力停留时间为12、8和4h时,平均去除率分别为88.59%、89.79%、88.61%.反应器在以上4个HRT时, COD平均去除率分别为72.76%、64.59%、66.16%和65.84%. 在整个反应过程中,没有出现大量工程菌流失的现象,同时在固定化颗粒的表面以及浅层均观察到了大量工程菌菌体,固定化颗粒的表面还出现了生物膜和菌胶团,反应结束时,颗粒形态完好,强度满足本工艺条件下长期使用的需求.  相似文献   

7.
间歇式活性污泥法处理含硫氨废水   总被引:1,自引:0,他引:1  
采用程序间歇式活性污泥法(简称 SBR 法)处理重油催化裂化汽提塔出水,取得了脱碳(降低 COD)、硝化(除氮)、反硝化(去除总氮)的良好效果。当废水 COD 为2000mg/L,容积负荷3.5kgCOD/m~3d,处理出水 COD 小于300mg/L 时,去除率在80%以上,适当降低进水负荷,可取得好的脱氨氮效果。废水氨氮为150~200mg/L,当容积负荷为2.0kgCOD/m~3d 时,处理水氨氮含量小于10mg/L,去除率90%以上。  相似文献   

8.
用平板膜好氧处理技术对炼油污水进行了处理量为180~250 L/h的侧线试验研究,试验结果表明:在进水COD为100~450 mg/L、氨氮20~90 mg/L、pH6~8的情况下,出水COD小于40 mg/L,出水氨氮小于6 mg/L,平均去除率90%以上。且该工艺的停留时间、出水指标和容积负荷均优于曝气生物滤池单元,从而证明膜生物工艺处理能力远超于现有曝气生物滤池工艺。  相似文献   

9.
地下渗滤处理村镇生活污水的中试   总被引:52,自引:1,他引:51  
以红壤土作为填充土壤,在2cm/d的水力负荷下,进行了地下渗滤系统处理村镇生活污水的现场中试.结果表明,地下渗滤系统对COD、氨氮、总磷和总氮有着良好的去除效果,去除率分别达到84.7%、70.0%、98.0%和77.7%,出水COD、氨氮、总磷和总氮的平均浓度分别为11.7mg/L、4.0mg/L、0.04mg/L、4.7mg/L,达到建设部颁发的生活杂用水水质标准对总氮去除机理的分析表明,由硝化/反硝化实现生物脱氮是地下渗滤系统去除总氮的主要途径.在本中试系统中,反硝化效果良好但硝化效果不够理想,改善土壤环境以促进硝化作用是提高总氮去除率的关键.对土壤中氧化还原电位的测定结果表明,土壤内部的还原性质是阻碍硝化反应进行的主要原因.  相似文献   

10.
本文模拟夏季高温,考察了温度(30~45℃)和氨氮容积负荷对污水处理厂好氧池活性污泥硝化功能及微生物群落的影响,同时探讨中温富集硝化污泥高温驯化前后用于强化受高温冲击的生物处理系统的硝化效果.结果表明,在30~40℃水温下好氧池活性污泥的氨氮去除效果保持在90%以上,硝化菌含量也逐步升高至4. 55%;当水温升至45℃时氨氮去除率和硝化菌含量均分别降至40%和1. 97%.为快速恢复受夏季高温冲击的生物系统,将中温富集硝化污泥在40℃下驯化61 d后,获得硝化活性为(60±5) mg·(L·h)-1的硝化污泥,考察中温富集硝化污泥驯化前后对受高温冲击的生物处理系统的强化效果,发现驯化后的中温富集硝化污泥只需投加5%(体积分数)即可提高10%的氨氮去除率,而未驯化的则需要投加10%(体积分数).上述结果表明,中温富集硝化污泥经驯化后能更好地用于强化受高温冲击的生物处理系统的硝化功能.  相似文献   

11.
Bioaugmentation with genetically engineered microorganisms (GEMs) in a membrane bioreactor (MBR) for enhanced removal of recalcitrant pollutants was explored. An atrazine-degrading genetically engineered microorganism (GEM) with green fluorescent protein was inoculated into an MBR and the effects of such a bioaugmentation strategy on atrazine removal were investigated. The results show that atrazine removal was improved greatly in the bioaugmented MBR compared with a control system. After a start-up period of 6 days, average 94.7% of atrazine was removed in bioaugmented MBR when atrazine concentration of influent was 14.5 mg/L. The volumetric removal rates increased linearly followed by atrazine loading increase and the maximum was 65.5 mg/(L·d). No negative effects were found on COD removal although carbon oxidation activity of bioaugmented sludge was lower than that of common sludge. After inoculation, adsorption to sludge flocs was favorable for GEM survival. The GEM population size initially decreased shortly and then was kept constant at about 104–105 CFU/mL. Predation of micro-organisms played an important role in the decay of the GEM population. GEM leakage from MBR was less than 102 CFU/mL initially and was then undetectable. In contrast, in a conventionally activated sludge bioreactor (CAS), sludge bulking occurred possibly due to atrazine exposure, resulting in bioaugmentation failure and serious GEM leakage. So MBR was superior to CAS in atrazine bioaugmentation treatment using GEM.  相似文献   

12.
气升循环分体式膜生物反应器再生回用厕所污水的研究   总被引:20,自引:0,他引:20  
徐慧芳  樊耀波 《环境科学》2003,24(2):125-129
研究了分体浸没式膜生物反应器及其应用于厕所污水的再生回用.试验结果表明,在人水浓度COD440~970mg/L、BOD5 307~612mg/L、NH3-N59~111mg/L的情况下,出水水质稳定,平均COD<47mg/L、BOD5<8.5mg/L、NH3-N<20mg/L,处理水质达到建设部颁布的生活杂用水回用标准.研究了动力学参数污泥负荷、容积负荷和HRT对出水COD的影响,确定本试验较佳的污泥负荷和容积负荷分别为0.1kg/(kg·d)和1kg/(m3·d),HRT为7~8h.本文对污泥浓度、温度和产水时间与间歇时间比对膜通量的影响进行了测定与探讨.  相似文献   

13.
The bacterial strain Paracoccus denitrificans W12, which could utilize pyridine as its sole source of carbon and nitrogen, was added into a membrane bioreactor (MBR) to enhance the treatment of a pharmaceutical wastewater. The treatment efliciencies investigated showed that the removal of chemical oxygen demand, total nitrogen, and total phosphorus were similar between bioaugmented and non-bioaugmented MBRs, however, significant removal of pyridine was obtained in the bioaugmented reactor. When the hydraulic retention time was 60 hr and the influent concentration of pyridine was 250-500 mg/L, the mean effluent concentration of pyridine without adding W12 was 57.2 mg/L, while the pyridine was degraded to an average of 10.2 mg/L with addition of W12. The bacterial community structure of activated sludge during the bioaugmented treatment was analyzed using polymerase chain reaction-denaturing gradient gel electrophoresis (PCR-DGGE). The results showed that the W12 inoculum reversed the decline of microbial community diversity, however, the similarity between bacterial community structure of the original sludge and that of the sludge after bioaugmentation decreased steadily during the wastewater treatment. Sequencing of the DNA recovered from DGGE gel indicated that sp., Sphingobium sp., Comamonas sp., and Hyphomicrobium sp. were the dominant organisms in time sequence in the bacterial community in the bioaugmented MBR. This implied that the bioaugmentation was affected by the adjustment of whole bacterial community structure in the inhospitable environment, rather than being due solely to the degradation performance of the bacterium added.  相似文献   

14.
IntroductionThedyeingwastewaterofwoolenmillcontainsalotkindsofpollutants,suchasacidicdyes,dispersedyes,mordantdyes,auxiliaries,saltsandsoon .Theeffluentsfromwastewatertreatmentplantsfortreatmentofthedyeingwastewaterofwoolenmillswithnormalbiologicalproce…  相似文献   

15.
An anaerobic/oxic membrane bioreactor (A/O MBR) was used for treatment of dyeing wastewater from a woolen mill.COD and color of the wastewater were 54-473 mg/L and 40-400 dilution time (DT) respectively. The ratio of BOD5/COD was less than 0.13. By the A/O MBR process, the average removal of COD, BOD5, color and turbidity was 82%, 96%, 71% and 99%, respectively. The average COD, BOD5, color and turbidity of effluent was 37 nag/L, 0.8 mg/L, 40 DT and 0.44 NUT respectively. The effluent COD met the local standard of reuse water in Beijing, China. The average COD volume load of the anaerobic biological tank was 0. 0483 kgCOD/(m3·d) and that of the aeration tank of the MBR was 0. 3589 kgCOD/(m3·d). The sludge load of the MBR was 0.19 kgCOD/(kg· MLSS· d) on average and the maximum of that was 0.4 kgCOD/( kg· MLSS· d).The flux of the A/O membrane bioreactor could be remained at larger than 50 L/(h· m2· 0.1MPa). The results indicated that A/O membrane bioreactor has technical feasibility for treatment of woolen mill wastewater.  相似文献   

16.
固定化硝化菌去除废水中氨氮工艺的研究   总被引:36,自引:2,他引:34  
采用聚乙烯醇-硼酸包埋固定化法,选用PVA为包埋载体,粉末活性炭作为无机载体,包埋固定A/O生物脱氮系统中的再经驯化过的硝化污泥,制成固定化硝化菌颗粒。  相似文献   

17.
影响一体式好氧膜生物反应器膜清洗周期的几个因素   总被引:20,自引:3,他引:17  
刘锐  汪诚文  钱易 《环境科学》1998,19(4):26-28
一体式好氧中空纤维膜生物反应器不同操作条件下处理生活污水的试验结果表明,在膜通量10.4L/m^2.h)污泥龄20d,污泥去除负荷(COD/VSS)为0.22kg(kg.d)的正常稳定运行条件下,该系统可在整个膜寿命期限内(3-5a)不同洗燕得到优质出水;COD〈20mg/L,NH3-N〈1.0mg/L,无色无味透明,未检出大肠杆菌,其中,污泥去除负荷,系统运行稳定状况和反应器流态是影响膜清洗周期  相似文献   

18.
采用平板膜MBR工艺处理小区生活污水,研究了MBR工艺对COD、BOD、NH4+-N、SS及浊度等去除效果,在进水COD、BOD平均浓度为325mg/L、274mg/L的情况下,出水达到20mg/L和8mg/L,去除率在93%以上,SS及浊度去除率达到100%和98%,NH4+-N去除率79%,出水NH4+-N小于10mg/L。通过研究系统三氮转化可知,该系统没有发生反硝化反应,出水NO2--N和NO3--N浓度较高。通过投加葡萄糖人为改变容积负荷,在容积负荷变化3.2kgCOD/m·3d情况下,系统受负荷冲击影响较小,COD去除率仍能保持在88%以上。通过对膜通量的研究发现,膜通量在连续运行的前3天变化不大,第3天后,膜通量迅速降低,第10天后膜污染达到极限,因此清洗周期设定为3~4天。  相似文献   

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