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1.
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   

2.
污水生物生态处理工艺中的脱氮机理研究   总被引:2,自引:0,他引:2  
曹玉梅  李田  陆斌  王玲 《环境工程学报》2009,3(10):1735-1740
通过水解池-美人蕉湿地、水解/接触氧化池-菖蒲湿地现场实验装置考察了生物-生态工艺深度净化分散生活污水的效果。结果表明,水解池-美人蕉湿地尽管湿地停留时间达到7 d,出水NH+4-N仍难以达到一级A(GB18918-2002)标准;而增加接触氧化池后,湿地停留时间仅2 d,组合工艺出水水质远优于一级A出水要求。美人蕉湿地脱氮的主要途径是湿地微生物的硝化/反硝化,植物吸收约占28%。对经接触氧化处理,NH+4-N、NO-3-N浓度均较高的进水,菖蒲湿地可在C/N小于2时高效脱氮。菖蒲湿地对TN的去除占组合工艺TN去除量的79%,其中植物吸收仅占湿地除氮总量的8%。湿地介质的厌氧氨氧化活性试验表明,菖蒲湿地介质表面的微生物在无有机碳源存在的条件下,可使培养液中的NH+4-N与NO-3-N、NO-2-N短期内发生同步脱氮,厌氧氨氧化可能是菖蒲湿地在进水低碳源条件下脱氮的主要原因。  相似文献   

3.
花叶芦竹水平潜流人工湿地脱氮性能研究   总被引:2,自引:1,他引:1  
谢龙  汪德爟 《环境工程学报》2009,3(10):1759-1762
采用花叶芦竹水平潜流人工湿地处理生活污水,对其脱氮性能进行研究。结果表明:在HRT=5 d,对TOC,NH+4-N,NO-2-N,NO-3-N和TN的去除效果分别达到92%、93%、84%、51%和88%,相应空白湿地的去除率分别为91%、85%、-232%、-203%和66%。大部分TOC在湿地的前端被去除。花叶芦竹可以直接吸收氮素,向湿地输送氧气,通过根系分泌物提供碳源。因此,花叶芦竹人工湿地具有很好的硝化反硝化能力,实现了良好的脱氮性能。  相似文献   

4.
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   

5.
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   

6.
水平潜流人工湿地系统处理微污染原水的研究   总被引:5,自引:1,他引:4  
采用水平潜流人工湿地系统处理微污染原水,同时考察了水力停留时间、温度、水力负荷以及植物的生长状况等对人工湿地系统处理效果的影响。结果表明,水平潜流人工湿地系统对微污染原水有较好的处理效果,COD、TP、TN、NH+4-N、NO-3-N和NO-2-N的平均去除率分别为51.55%、49.90%、51.74%、 47.36%、52.67%和63.23%。按照国家地表水环境质量标准(GB3838-2002),经过湿地处理后,出水COD平均值达到Ⅰ类;出水TP平均值达到Ⅱ类;出水TN平均值基本接近Ⅳ类;出水NH+4-N平均值达到Ⅱ类。另外,研究表明, 本系统在水力停留时间为3 d时,水力负荷为0.2 m/d处理效果最好,温度的变化与污染物的去除率呈正相关关系,植物生长旺盛程度直接影响着整个系统的处理效果。  相似文献   

7.
水位波动带氮素迁移转化规律   总被引:1,自引:0,他引:1  
为考察水位波动对非饱和-饱和土层中氮素迁移转化的影响,设计土柱实验装置Ⅰ和Ⅱ分别模拟水位稳定与波动两种情景,测定一个水位波动周期内地下水中NO3--N、NO2--N和NH4+-N浓度变化情况。结果表明,柱Ⅱ水位第1次下降柱内1#,2#,3#,4#采样点NO3--N浓度均增大,增幅分别为6.5%、14.9%、15.33%和19.8%。水位上升时结果相反,分别降低17.3%、26.15%、50.29%和44.61%。第2次水位下降至初始位置4个采样点NO3--N浓度再次增大,幅度分别为7.1%、10.6%、13.89%和7.76%。铵态氮呈相反趋势不同程度的变化。水位波动柱Ⅱ连通水槽内总氮量增加显著高于柱I水槽,即水位波动有利于波动带地下水中氮素垂向迁移,加重波动带以下地下水硝酸盐污染。因此,水位波动对氮素迁移转化的影响不容忽视。  相似文献   

8.
提出了城市生态河道工程构建的技术方法,并研究了示范工程对城市污水处理厂出水的深度净化规律。实验结果表明,在保证生态景观功能的前提下,将生态河道技术工艺用于污水处理厂出水的深度净化,能够高效、稳定地去除氮磷等营养物,河道出水可以满足城市景观水体补充水源的水质要求,出水TP、PO3-4、TN、NH3-N和NO3-N平均值分别达到0.263、0.116、2.570、0.752和2.438 mg/L,去除率分别达到85.4%、92.8%、60.8%、39.7%和77.2%。  相似文献   

9.
采用一体化A/O移动床生物膜法工艺,以模拟生活污水研究了该工艺的除碳脱氮效果,并对一体化移动床生物膜反应器的好氧区和缺氧区各纵向断面的COD、DO、NH3-N、TN、NO-3-N和NO-2-N进行了检测,通过对缺氧区各断面的DO和TN浓度分布情况,分析了脱氮的产生过程。试验结果表明: 在水力停留时间HRT=12 h,好氧区DO保持5 mg/L左右,COD进水浓度处于250~400 mg/L时,COD的去除率均在90%以上,且出水COD均在40 mg/L以下;TN进水浓度为20~50 mg/L时,NH3-N去除率高于90%,其出水浓度可达到5 mg/L以下,脱氮效率也较高,TN去除率可达到65%~85%。COD和NH3-N的浓度分布状况表明该一体化A/O移动床生物膜反应器的流态趋于全混式。  相似文献   

10.
混合固定化硝化菌和好氧反硝化菌处理焦化废水   总被引:4,自引:1,他引:3  
蔡昌凤  梁磊 《环境工程学报》2009,3(8):1391-1394
对传统的聚乙烯醇(PVA)固定化方法进行了改进,试制了加入麦秸粉末的固定化球和以活性炭纤维膜为载体膜固定化细胞产品。混合固定化硝化细菌和好氧反硝化细菌对经过厌氧折流板反应器酸化后的焦化废水进行脱氮,焦化废水在厌氧折流板反应器中经过18 h的酸化后,pH在8.0左右,开始进入好氧槽进行脱氮。在有效容积为5 L好氧槽中经过12 h的曝气处理,加入麦秸粉末的固定化球对氨氮的去除率高达94.3%;纤维膜固定化细胞产品对氨氮的去除率为85%。整个脱氮过程无NO-2-N和NO-2-N的积累,实现了好氧条件下的同时硝化和反硝化。  相似文献   

11.
3种载体固定化菌藻共生系统脱氮除磷效果的对比   总被引:1,自引:0,他引:1  
采用3种不同载体(海藻酸钠、聚乙烯醇、复合载体),分别将小球藻和栅藻与活性污泥固定成菌藻共生系统,制成菌藻凝胶小球,单独菌、单独藻的凝胶小球,用于处理人工污水。结果表明,(1)复合载体固定的菌藻共生系统氮磷去除效果最好,PVA载体的脱氮除磷效果次于复合载体优于海藻酸钠;(2)固定化菌藻共生系统的脱氮除磷效果明显优于单独固定菌和单独固定藻,固定菌的效果较差;(3)3种载体包埋下的固定化小球藻的脱氮除磷效果均较相同载体固定化的栅藻效果好。  相似文献   

12.
Wastewater nutrient removal by Chlorella pyrenoidosa and Scenedesmus sp   总被引:4,自引:0,他引:4  
Two different species of photosynthetic microalgae, Chlorella pyrenoidosa and Scenedesmus sp., were grown in settled and activated sewage filtrates at two different inoculum sizes, aimed to reduce nutrient load from wastewater. Higher growth rates were recorded in cultures with higher inoculum size, and algal cells usually grew better in settled sewage than in activated sewage. As algae started to grow and multiply, both nitrogen and phosphorus content in wastewater decreased significantly. The removal rate was rapid during the first week of growth and more than 2/3 of wastewater N and P was reduced. After the initial period, the removal rate slowed down. At the end of this study, more than 80% of total-P and inorganic N present in settled sewage were reduced but such removal efficiency was lower in activated sewage. In general, high inoculum size of algal cells provided more N and P removal than low inoculum, and Chlorella cells performed better than Scenedesmus. These results suggest that cultivation of Chlorella seems to be one of the feasible methods to reduce the amount of nitrogen and phosphorus entering the nearby coastal water, thus preventing the eutrophication problem. It is also clear that algal ponds with high inoculum size might be more suitable to be installed as a secondary rather than a tertiary treatment process.  相似文献   

13.
Integration of algal biofuel production to wastewater anaerobic digestion infrastructure has the potential to increase biogas production, decrease high and variable internal nitrogen loads, and improve sludge digestibility and dewaterability. In this research, two species of microalgae, Spirulina platensis and Chlorella sp., were grown on sludge centrate and a centrate and nitrified wastewater effluent mixture. Harvested algae were co-digested with waste activated sludge (WAS) at varying ratios. High-growth (6.8 g m(-2) x d(-1)), nitrogen (36.5 g m(-3) x d(-1)), and phosphorus (6.5 g m(-3) x d(-1)) uptake rates were achieved with Chlorella on centrate. No growth was observed with S. platensis under the same conditions; however, both organisms grew well on the centrate and effluent mixture. Co-digestion of algae with WAS improved volatile solids reduction. Although co-digestion with S. platensis improved biosolids dewaterability, Chlorella had a slight negative effect on dewaterability compared to WAS alone. The efficiency of energy conversion from photons to biogas generated from Chlorella was estimated at 1.4%.  相似文献   

14.
The microscopic green alga, Chlorella pyrenoidosa was grown in settled and activated sewage under two different culture systems, batch and semi-continuous. Good growth was obtained in both types of wastewater and the algal production was comparable to and even higher than that found in commercial Bristol medium. The semi-continuous culture supported more growth than the batch system. There was a close relationship between algal growth and the amount of nutrient removed from both settled and activated sewage. A more rapid drop in NH(4)(+)-N was found in settle rather than activated sewage. The NH(4)(+)-N of settled sewage dropped from its initial 27 to 5 mg litre(-1) in both culture systems. On the other hand, the NO(3)(-)-N of activated sewage started to decrease from Day 2 onwards and the final NO(3)(-)-N concentration was less than 1 mg litre(-1) (over 90% removal efficiency). The amount of total inorganic nitrogen being reduced due to algal culture was similar in both types of sewage. The changes of phosphate content followed the same trend in both sewage, the P concentration increased slightly in the first two days then decreased, especially in the semi-continuous cultures. The final ortho-P in the sewage treated by Chlorella in semi-continuous culture was less than 5 mg litre(-1) (about 62% reduction). Such removal efficiency was slightly lower than those reported in previous studies. In general, the semi-continuous algal culture appeared to be a more suitable and efficient way for wastewater treatment than the batch system. With respect to the total reduction of wastewater inorganic N and P by means of Chlorella cells, there was no significant difference between settled and activated sewage.  相似文献   

15.
固定化菌藻系统对污水处理厂出水的深度处理   总被引:4,自引:1,他引:3  
严清  高旭  彭绪亚 《环境工程学报》2012,6(10):3629-3634
将海藻酸钠固定化活性污泥和小球藻制成颗粒小球,以自制的流化床反应器对重庆市某污水处理厂出水进行深度处理,探讨了系统对氨氮、TP、COD的去除效果,实验结果表明:在HRT=12 h,溶解氧浓度为3.0 mg/L左右,pH值为6.2至8.0之间,环境室温条件下,系统对氨氮、TP、COD均有较好的去除效果,系统稳定运行后对氨氮、TP、COD去除率基本维持在60%、60%和30%以上,出水氨氮、TP、COD浓度基本维持在8、0.5和40 mg/L以下,出水浓度达到了《城镇污水处理厂污染物排放标准》(GB 18918-2002)的一级A标准。这项研究显示固定化菌藻胶球系统在污水处理厂出水的深度处理中具有潜在的应用前景。  相似文献   

16.
赤泥复合剂絮凝处理太湖水华藻与海洋赤潮藻   总被引:1,自引:0,他引:1  
陈静  王军  赵颖  栾兆坤 《环境工程学报》2011,5(9):1933-1936
研究了一种新型赤泥复合剂对太湖夏季水华原水、实验室培养海洋赤潮藻及模拟海水的絮凝除藻降浊性能。结果表明,赤泥复合剂具有良好的除藻降浊效果,对太湖水华藻去除率为97.3%,原水浊度去除率为95%;对海洋小球藻和三角褐指藻2种赤潮藻去除率分别高达99.1%和98.9%;对2种模拟海水的最高除浊率分别为96.3%和95.3%,其剩余浊度均低于4 NTU,从而为治理淡水水华与海洋赤潮提供一种新技术,同时为赤泥综合利用提供一种新途径。  相似文献   

17.
二氧化氯杀灭小球藻   总被引:1,自引:0,他引:1  
实验研究了二氧化氯投加量、小球藻的初始浓度、pH、有机物和氨氮含量对ClO2杀灭来自于水库水的小球藻的影响,考察了ClO2氧化与混凝工艺结合时去除小球藻的效果并对工艺条件进行优化。结果表明,ClO2在投加量1.1 mg/L下,接触10 min,小球藻的杀灭率为71.93%。小球藻的杀灭率随着ClO2投加量的增大和藻初始浓度的升高而提高,随水中有机物含量的增加而显著降低,氨氮含量对小球藻杀灭的效果影响很小。在酸性条件和碱性条件下,小球藻的杀灭率均随pH升高而急剧下降,而在中性至弱碱性区间内,藻的杀灭率随pH升高而缓慢下降。对于某以小球藻为优势藻的供水水库源水,ClO2氧化与混凝工艺结合,藻的去除率高达98.47%。除藻的最佳工艺条件为:二氧化氯投加量为0.5 mg/L,聚合氯化铝为5 mg/L,二氧化氯与混凝剂同时投加。  相似文献   

18.
原核小球藻USTB-01去除化肥厂废水中总氮的研究   总被引:1,自引:0,他引:1  
采用1株异养原核小球藻USTB-01对化肥厂废水中总氮的去除进行了研究。结果表明,添加一定量的磷酸盐和碳酸钠特别是葡萄糖分别作为磷、无机碳和有机碳源,不仅可以明显促进原核小球藻USTB-01的生长,而且可以大幅度提高废水的总氮去除效率。在4 d时间内原核小球藻USTB-01的生长从OD680 nm0.5增加到3.6,提高到7倍,而废水中总氮的浓度从125 mg/L降低到10.3 mg/L,去除率达到了93.1%,处理后的废水可以达标排放。不仅在高含氮废水的处理,而且在利用废水中的氮培养原核小球藻USTB-01的废水资源化利用方面均具有重要的意义。  相似文献   

19.
Chong AM  Wong YS  Tam NF 《Chemosphere》2000,41(1-2):251-257
A series of batch experiments was conducted to compare the ability of 11 microalgal species of the same cell density in removing nickel (Ni) and zinc (Zn) from synthetic wastewater. These included Chlorella vulgaris (commercially available), Chlorella sorokiniana and Scenedesmus quadricauda (isolates from polluted water of Wuhan, China), and eight different isolates from Hong Kong. The Wuhan isolate of Scenedesmus removed most Ni, probably due to its large biomass. Nickel concentration was reduced from an initial 30 to 0.9 mg/l after 5 min (97% Ni removal), and further declined to 0.4 mg/l after 90 min of treatment. In wastewater containing 30 mg/l Ni and 30 mg/l Zn, more than 98%, Ni and Zn were removed simultaneously at the end of 5 min treatment, indicating that the presence of Zn in wastewater did not affect Ni removal by this Scenedesmus isolate. The second most effective species for Ni removal was an isolate, tentatively identified as Chlorella miniata, Ni concentration was reduced to 10 mg/l after 90 min, and was only slightly interfered by the presence of Zn. In terms of metal removal per unit biomass or unit surface area of algal cells, C. miniata was the best species in removing Ni and Zn. At the other extreme, one Hong Kong isolate (Synechocystis sp.) did not remove any Ni and only achieved 40% Zn removal. Performance of the other isolates was comparable with the commercial C. vulgaris, less than 50% Ni was removed after 5 h of treatment and Ni removal was significantly reduced by the presence of Zn. All algae tested were found to be viable, showing these 11 species could tolerate a mixture of 30 mg/l Ni and 30 mg/l Zn in wastewater.  相似文献   

20.
固定化小球藻与活性污泥的共生系统处理含锌废水   总被引:3,自引:0,他引:3  
研究固定化小球藻与活性污泥的共生系统对含锌废水中Zn2+的去除效果,分析菌藻状态、初始Zn2+浓度、pH、固定化菌藻小球投加量和菌藻体积比等5个因素对固定化菌藻共生系统去除Zn2+的影响。结果表明,固定化活性污泥、固定化小球藻和固定化菌藻对Zn2+的去除效果均优于悬浮小球藻,其中固定化菌藻对Zn2+的去除效果最好;废水中初始Zn2+浓度小于100 mg/L时,固定化菌藻系统对废水中Zn2+的去除率达到90.5%;固定化菌藻系统去除废水中Zn2+的最佳条件是:初始Zn2+浓度为80 mg/L,pH=7,固定化小球投加量为80 mL,菌藻体积比为1∶2。  相似文献   

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