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1.
固定化微生物对养殖水体浮游生物的影响及生物除氮研究   总被引:18,自引:0,他引:18  
研究了固定化微生物(含有光合细菌、芽胞杆菌、硝化细菌以及反硝化细菌)对养殖水体中藻类和浮游动物的种类、数量、生物量以及水体氮素等理化环境的影响.结果表明,固定化微生物处理后,水体中藻的种数增加,藻类细胞(或丝状体)数量及生物量减少;水体中浮游动物种类和生物量增加,从而浮游动物的群落组成发生了变化.微生物经固定化处理后,脱氮率高,有效期长;小球内固定化微生物总数和与脱氮速率呈正相关,其回归方程为y=-6.23×10-3 1.86×10-5x;固定化微生物处理可以显著降低水体的总氮、氨态氮和硝态氮的浓度,其含量分别是对照的40.8%、36.5%和45.9%.图3表1参10  相似文献   

2.
生物电化学系统(BES)因兼有污染物去除与能量回收等优点,近年来已成为环境污染治理领域的关注热点. 对生物电化学技术在脱氮方面的基本原理、含氮污染物的转化途径进行综述,主要的生物脱氮过程包括阴极反硝化、阳极氨氧化以及阴极同步硝化反硝化等,而非生物脱氮过程包括NH3/NH4^+的跨膜转移、氨气逃逸等. 总结已报道的BES中主要脱氮微生物及其脱氮机制,BES中多数反硝化菌属于变形菌门(Proteobacteria);硝化细菌主要是亚硝化菌属(Nitrosomonas)和硝化杆菌属(Nitrobacter);在同步硝化反硝化过程中,电极上的硝化、反硝化菌有明显的分层现象. 最后阐述了生物电化学脱氮技术在生活污水、渗滤液、地下水处理等领域的最新应用研究,通过改变反应器构型以及运行模式等条件构建不同BES处理各类污水,以达到去除污染物同时回收电能或资源的目的. 基于目前BES的优势,认为减少脱氮中间产物(NO2^- -N、N2O)的积累及扩大BES规模对电能输出和污染物去除效果的影响将是未来的研究方向. (图3 表2 参66)  相似文献   

3.
生物电化学系统(BES)因兼有污染物去除与能量回收等优点,近年来已成为环境污染治理领域的关注热点.对生物电化学技术在脱氮方面的基本原理、含氮污染物的转化途径进行综述,主要的生物脱氮过程包括阴极反硝化、阳极氨氧化以及阴极同步硝化反硝化等,而非生物脱氮过程包括NH_3/NH_4~+的跨膜转移、氨气逃逸等.总结已报道的BES中主要脱氮微生物及其脱氮机制,BES中多数反硝化菌属于变形菌门(Proteobacteria);硝化细菌主要是亚硝化菌属(Nitrosomonas)和硝化杆菌属(Nitrobacter);在同步硝化反硝化过程中,电极上的硝化、反硝化菌有明显的分层现象.最后阐述了生物电化学脱氮技术在生活污水、渗滤液、地下水处理等领域的最新应用研究,通过改变反应器构型以及运行模式等条件构建不同BES处理各类污水,以达到去除污染物同时回收电能或资源的目的.基于目前BES的优势,认为减少脱氮中间产物(NO_2~--N、N_2O)的积累及扩大BES规模对电能输出和污染物去除效果的影响将是未来的研究方向.  相似文献   

4.
许多研究致力于固定化微生物技术在去除水环境中污染物方面的应用。生物炭具有高的比表面积、大的孔隙率、低成本和来源广等优势,生物炭与固定化微生物技术结合在处理水中污染物方面具有很大的应用潜力。因此,了解生物炭固定化微生物对水中污染物去除的作用机制对于其在环境修复和废水利用中的应用至关重要。文章综述了微生物固定化方法、载体的选择、生物炭作为载体材料在固定化微生物技术中的优势及应用以及生物炭固定化微生物在去除水中不同种污染物的应用及其作用机制。同时,还探讨了初始污染物浓度、pH、温度、接触时间和颗粒投加量等对生物炭固定化微生物对去除水中污染物的影响,并分析这些环境因素对微生物生长、生物炭特性以及污染物去除效果的影响。当前研究表明:生物炭相比于其他固定化载体而言更加适宜微生物的生长,生物炭固定化微生物去除污染物的主要作用机制是吸附和生物降解的协同作用,以及生物炭对微生物具有保护及快速定殖作用。另外,过高的初始浓度、过高或过低的pH和温度都会影响微生物的活性而不利于污染物的去除。生物炭固定化微生物颗粒对污染物的去除能力随着时间和颗粒投加量的增加而提高。此外,文章分析了生物炭固定化微生物技术在水环境应用中存在的问题,可为未来相关领域的研究提供参考。  相似文献   

5.
在面源低污染水的原位修复领域,人工湿地生物脱氮过程受温度、p H波动影响以及NO2--N积累抑制反硝化脱氮效果等问题,因此强化系统脱氮性能在实际工程应用中具有重要意义。固定化微生物技术具有环境变化适应能力以及耐毒害能力强等优点。该研究通过分离筛选高效反硝化菌,对其进行DNA序列分析鉴定及其种属和系统发育地位分析,并以包埋法加以固定,考察固定化反硝化菌在不同温度、p H、DO和C/N下的反硝化性能,分析各因素变化对固定化反硝化菌脱氮效果的影响,探究各影响因素对固定化反硝化菌脱氮性能的作用机理,以期为固定化反硝化菌强化人工湿地脱氮性能提供参考。经反硝化能力测定,筛选得到的高效反硝化菌株对NO3--N、TN的去除率分别为98.83%、98.36%,NO2--N积累量仅为0.28mg·L~(-1),24 h内脱氮效率为8.59 mg·L~(-1)·h~(-1),经16S r RNA测序结果表明该菌株与Pseudomonas stutzeri A1501的最大相似度为99.7%。采用PVA、SA为材料包埋固定该菌株,固定化反硝化菌的生物量为15.67 g·L~(-1),颗粒密度为0.93 g·m L~(-1)。通过对固定化反硝化菌处理低污染水的性能研究得知,p H、T、DO的波动对固定化反硝化菌的脱氮效果影响均小于游离反硝化菌,固定化反硝化菌在p H为7,θ为30℃,DO为0.87~1.54 mg·L~(-1),C/N为5时的脱氮效果最好。  相似文献   

6.
沣河水系脱氮微生物群落结构研究   总被引:4,自引:0,他引:4  
河流水体氮素的超负荷不仅破坏了水体生态环境,也严重威胁着人类的生存和发展.水体中有机氮、无机氮(氨氮、亚硝氮、硝氮)和分子氮之间的转化(氮循环)有赖于水体中大量的氮循环微生物(固氮细菌、硝化细菌和反硝化细菌),然而这些氮循环微生物的生长繁殖也受到包括氮素的形态和浓度在内的多种环境因子的影响,这些因素也通过影响氮循环微生物的生长繁殖进而使得水体中氮素的转化速率发生变化,对水体氮污染的防治有不可忽视的作用.本研究通过在沣河设置不同的研究断面,采集水体样品,进行水质分析,并通过现代分子生物学技术(PCR-DGGE)方法对研究断面水体中氮循环微生物(固氮细菌、硝化细菌和反硝化细菌)的群落结构进行分析.再通过统计学软件对所得分子生物学信息与水质环境因子的相关性进行统计学分析,发现沣河水体中氮循环微生物群落结构受到多种环境因子共同影响,且在枯水期和丰水期表现出不同的特征.在丰水期沣河水体中,硝化细菌群落在中游表现出较高的多样性和丰富性,这与沣河中上游农业COD(化学需氧量)、BOD(生化需氧量)氨氮及有机氮污染物排放量较大,沣河水体DO(溶解氧)高有关.水体中的氨氮、亚硝氮、温度的增加是促进水体中硝化细菌的均匀性和丰富度的增高的主要因子,而pH 值的升高,使得水体中硝化细菌的均匀性和丰富度降低.反硝化微生物在中游和下游的多样性和丰富度较高,与有机物及硝酸盐含量相关.水体中的BOD、COD、TP(总磷)、硝氮的增加是促进水体中反硝化细菌的均匀性和丰富度的增高主要相关因子,而DO 的增多则会对部分反硝化细菌产生不利影响,使得水体中反硝化细菌的均匀性和丰富度降低.本研究结果为沣河以及其他河流的污染控制以及基于微生物的生态修复提供了科?  相似文献   

7.
新型废水生物脱氮的微生物学研究进展   总被引:18,自引:0,他引:18  
生物脱氮是含氮废水处理公认的最佳处理方式,随着对生物脱氮微生物学原理研究的不断深入,许多新的生物脱氮特殊菌株或菌群及微生物转化机制不断被发现.本文在传统生物脱氮过程机理上,结合最近国内外生物脱氮的新发现,就短程硝化反硝化、同时硝化反硝化、厌氧氨氧化的微生物学原理进行了阐述.图1表2参23  相似文献   

8.
好氧反硝化菌及其在生物处理与修复中的应用研究进展   总被引:5,自引:0,他引:5  
好氧反硝化菌因其生长特性与同步异养硝化好氧反硝化功能,为环境生物脱氮提供了崭新的技术思路.综述了已分离获得的好氧反硝化菌类群及其生长特性,重点阐述了好氧反硝化菌生物脱氮性能、影响因素与好氧反硝化机理,探讨了好氧反硝化在环境生物修复领域的应用.已有研究表明,好氧反硝化菌在环境生物脱氮方面具有明显的技术优势,但有关好氧反硝化反应机理、影响因素等仍待解析,以期为好氧反硝化菌固定化、活性持留以及受污染环境水体修复等研究提供理论依据.  相似文献   

9.
万顺刚  李桂英  安太成 《生态环境》2011,(10):1575-1584
恶臭污染物(Odor pollutants)是指一切刺激嗅觉器官引起人们不愉快感觉以及损害生活环境的恶臭气味物质的统称。文章首先简要地介绍了大气中恶臭污染物的来源、分类以及危害等,指出大气恶臭污染物的主要来源主要包括农牧业来源、工业生产过程来源和城市垃圾处理恶臭污染来源等;其次,文章对能够处理大气恶臭污染物的反应器类型及其应用现状进行了系统的总结,提出能够应用于大气恶臭污染物处理的固定化微生物技术主要包括生物过滤池、生物滴滤塔和生物膜反应器等;同时着重综述了处理大气中恶臭污染物的影响因素,如底物、微生物、填料、微生物固定化方法、pH值和温度等因素对大气中恶臭污染物净化效率的影响,并且对固定化微生物技术生物转化与生物降解恶臭污染物的微观机理进行了一定的归纳与总结;最后还对固定化微生物技术在处理恶臭污染物方面的应用和未来发展趋势进行了展望,指出如果要真正实现固定化微生物技术在大气恶臭污染物处理中的工业化应用,今后还需要加强以下几个方面的研究工作:优势微生物菌剂的培育、固定化载体的开发与改良、固定微生物反应器的构建与优化和固定化微生物技术与其它单元技术的联用等。  相似文献   

10.
通过构建室内模拟系统,研究了外源氮素恒定输入时沉水植物菹草对氮去除作用的影响.结果表明,(1)系统稳定后植物组对进水中总氮、氨氮和硝氮的去除率分别较无植物对照组提高了14.7%、25.0%和21.6%.(2)实验期间沉积物中可转化态氮含量整体呈下降趋势;与此同时,非转化态氮的含量上升,植物组的上升幅度是对照组的1.9倍.这表明菹草能够降低内源沉积物氮的释放风险.(3)整个实验期间生物脱氮是系统脱氮的主要途径,分别占植物组和对照组氮素输入总量的44.8%和28.7%;植物组微生物脱氮量较对照组增加了0.139 g,植物吸收脱氮量为0.182 g.可见植物吸收和加速微生物脱氮是菹草促进系统脱氮的两个主要途径.  相似文献   

11.
This report shows that soil heavy metals can be totally immobilized by grinding with nano-Fe/Ca/CaO. Remediation of soils contaminated by heavy metals is a critical issue in Japan. Indeed, contaminated soils are notoriously difficult to remediate using available technologies. Major setbacks in typical immobilization techniques for heavy metals are wet conditions, forming secondary effluents and further treatment for effluents. Solidification with nano-Fe/Ca/CaO dispersion mixture is a promising treatment for the total immobilization of soil heavy metals As, Cd, Cr, Pb, and separation in dry conditions. Here, we studied the heavy metal immobilization by simple grinding with the addition of three mixtures: nano-Fe/CaO, nano-Fe/Ca/CaO, and nano-Fe/Ca/CaO/PO4. Samples were analyzed by inductively coupled plasma optical emission spectrometry (ICP-OES) and scanning electron microscopy combined with electron dispersive spectroscopy (SEM–EDS). Results show that the addition of nano-Fe/Ca/CaO immobilized 95–99 % of heavy metals, versus 65–80 % by simple grinding. After treatment, 36–45 wt% of magnetic and 64–55 wt% of nonmagnetic fractions of soil were separated. Their condensed heavy metal concentration was 85–95 % and 10–20 %, respectively. Nano-Fe/Ca/CaO treatment reduced the concentration of leachates heavy metals to values lower than the Japan soil elution standard regulatory threshold of 0.01 mg/l for As, Cd, and Pb; and 0.05 mg/l for Cr. This technology can therefore immobilize totally soil heavy metals and reduce heavy metal by separation.  相似文献   

12.
There is a high demand for immobilized enzymes in the industry because it is a green technology, it improves the efficiency of the crude enzyme and it minimizes the step of product recovery. Selection of a suitable carrier for enzyme immobilization is crucial. Eggshells are abundantly available as an organic waste. Here, lipase from Thermomyces lanuginosus was immobilized on eggshell to produce butyl butyrate. We evaluated the effect of lipase loading, from 0.5 to 3.0 %, size of eggshells, lower than 1, 1–2 and 2–4 mm, and temperature, from 30 to 50 °C. Results show that the optimum conditions calculated by response surface methodology analysis for butyl butyrate synthesis were 40 % w/v of immobilized lipase loading and 0.2 M of substrate concentration at 38 °C during 24 h. The predicted yield was 92.78 %, and the yield obtained during synthesis was 93.48 %.  相似文献   

13.
固定化菌藻系统及对污水中氮磷营养盐的净化效果   总被引:5,自引:0,他引:5  
利用海藻酸钙分别包埋固定小球藻、活性污泥及其两者混合物.研究固定态小球藻与悬浮态小球藻对污水中氮磷营养盐的处理效果,实验结果表明固定态藻对氮磷的去除效果明显优于悬浮态藻,其原因主要由于海藻酸钙凝胶对氮磷的吸附,系统pH值提高引起氨的气提及磷酸盐的沉淀作用.研究固定化藻、同定化活性污泥及共固定化菌藻分别对污水中氮磷营养盐的处理效果,在同等条件下,固定化菌藻对氮磷的去除效果优于固定化活性污泥和固定化藻类.这项研究显示菌藻共生在污水处理中具有较大的潜力.  相似文献   

14.
雷国元  范唯  李媛  邓慧敏  李俊叶 《生态环境》2007,16(4):1166-1170
针对富营养化水体生物修复和污水深度处理氮磷的去除,将细颤藻、水绵、水网藻、栅裂藻固定在纤维填料上,形成固定化藻膜。用固定化藻膜处理模拟富营养化湖水、实际富营养化湖水、城市污水二级出水、低质量浓度生活污水,考察固定化藻膜去除氮磷的效果。实验结果表明,固定化藻膜具有良好的去除磷、氨氮能力,对水中有机物去除也有一定的促进作用。对TP质量浓度小于5.0mg·L-1,NH4 -N质量浓度小于34.0mg·L-1的污染水体,四种藻膜都有良好的去除氮磷能力,其中栅裂藻去除TP、NH4 -N的能力最强。综合除污能力和藻细胞的可固定性,水绵应是最佳的备选藻种。研究结果显示,固定化藻膜具有良好的除污性能,预示了悬浮载体将在水体生物修复、氧化塘污水处理方面具有重要的潜在应用价值。  相似文献   

15.
海口市绿地对空气含菌量影响的生态效应   总被引:1,自引:0,他引:1  
采用平皿自然沉降方法,选择海口市区主要交通干道、公园、居民区的主要不同类型的绿地,测定空气微生物的含量。绿地、对照地的平均含菌量分别5 203.4 CFU/m37、182.7 CFU/m3。对其进行t-检验,表明绿地能够减少空气含菌数量。此外,绿地的覆盖率、植物种类也是影响绿地降低气挟菌数量效应的重要因素。  相似文献   

16.
脱色酶和优势菌混合固定化降解染料的研究   总被引:11,自引:2,他引:9  
本文对分离到的脱色优势菌DN1的脱色酶特性进行了研究,将脱色酶与苯胺降解菌混合固定化处理染料废水,结果表明,脱色酶在厌氧条件下对染料的脱色效果好,最适条件为37℃,pH7.0;固定化酶相比粗酶液有更高的活性,对温度、pH、氧的要求范围较宽;混合固定化降解染料,脱色率及苯胺降解率分别大于80%和90%。  相似文献   

17.
A hypothesis for progressive nitrogen limitation (PNL) proposes that net primary production (NPP) will decline through time in ecosystems subjected to a step-function increase in atmospheric CO2. The primary mechanism driving this response is a rapid rate of N immobilization by plants and microbes under elevated CO2 that depletes soils of N, causing slower rates of N mineralization. Under this hypothesis, there is little long-term stimulation of NPP by elevated CO2 in the absence of exogenous inputs of N. We tested this hypothesis using data on the pools and fluxes of C and N in tree biomass, microbes, and soils from 1997 through 2002 collected at the Duke Forest free-air CO2 enrichment (FACE) experiment. Elevated CO2 stimulated NPP by 18-24% during the first six years of this experiment. Consistent with the hypothesis for PNL, significantly more N was immobilized in tree biomass and in the O horizon under elevated CO2. In contrast to the PNL hypothesis, microbial-N immobilization did not increase under elevated CO2, and although the rate of net N mineralization declined through time, the decline was not significantly more rapid under elevated CO2. Ecosystem C-to-N ratios widened more rapidly under elevated CO2 than ambient CO2 indicating a more rapid rate of C fixation per unit of N, a processes that could delay PNL in this ecosystem. Mass balance calculations demonstrated a large accrual of ecosystem N capital. Is PNL occurring in this ecosystem and will NPP decline to levels under ambient CO2? The answer depends on the relative strength of tree biomass and O-horizon N immobilization vs. widening C-to-N ratios and ecosystem-N accrual as processes that drive and delay PNL, respectively. Only direct observations through time will definitively answer this question.  相似文献   

18.
Crops grown in metal-rich serpentine soils are vulnerable to phytotoxicity. In this study, Gliricidia sepium (Jacq.) biomass and woody biochar were examined as amendments on heavy metal immobilization in a serpentine soil. Woody biochar was produced by slow pyrolysis of Gliricidia sepium (Jacq.) biomass at 300 and 500 °C. A pot experiment was conducted for 6 weeks with tomato (Lycopersicon esculentum L.) at biochar application rates of 0, 22, 55 and 110 t ha?1. The CaCl2 and sequential extractions were adopted to assess metal bioavailability and fractionation. Six weeks after germination, plants cultivated on the control could not survive, while all the plants were grown normally on the soils amended with biochars. The most effective treatment for metal immobilization was BC500-110 as indicated by the immobilization efficiencies for Ni, Mn and Cr that were 68, 92 and 42 %, respectively, compared to the control. Biochar produced at 500 °C and at high application rates immobilized heavy metals significantly. Improvements in plant growth in biochar-amended soil were related to decreasing in metal toxicity as a consequence of metal immobilization through strong sorption due to high surface area and functional groups.  相似文献   

19.
Discharge of wastewater containing nitrogen and phosphate can cause eutrophication. Therefore, the development of an efficient material for the immobilization of the nutrients is important. In this study, a low calcium fly ash and high calcium fly ash were converted into zeolite using the hydrothermal method. The removal of ammonium and phosphate that coexist in aqueous solution by the synthesized zeolites were studied. The results showed that zeolitized fly ash could efficiently eliminate ammonium and phosphate at the same time. Saturation of zeolite with Ca2+ rather than Na+ favored the removal of both ammonium and phosphate because the cation exchange reaction by the NH4 + resulted in the release of Ca2+ into the solution and precipitation of Ca2+ with PO4 3? followed. An increase in the temperature elevated the immobilization of phosphate whereas it abated the removal of ammonium. Nearly 60% removal efficiency for ammonium was achieved in the neutral pH range from 5.5 to 10.5, while the increase or decrease in pH out of the neutral range lowered the adsorption. In contrast, the removal of phosphate approached 100% at a pH lower than 5.0 or higher than 9.0, and less phosphate was immobilized at neutral pH. However, there was still a narrow pH range from 9.0 to 10.5 favoring the removal of both ammonium and phosphate. It was concluded that the removal of ammonium was caused by cation exchange; the contribution of NH3 volatilization to immobilization at alkaline conditions (up to pH level of 11.4) was limited. With respect to phosphate immobilization, the mechanism was mainly the formation of precipitate as Ca3(PO4)2 within the basic pH range or as FePO4 and AlPO4 within acidic pH range.  相似文献   

20.
添加铜对砖红壤性水稻土微生物群体数量影响的盆栽试验研究表明,添加铜浓度与土壤微生物数量之间的关系未能呈现良好的相关性,微生物的变化晚季比早季稳定,建议以晚季微生物受抑制的添加浓度125mg kg~(-1)做为土壤微生物的毒性临界浓度。  相似文献   

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