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41.
【背景】微生物燃料电池(Microbial Fuel Cell,MFC)作为一种新型的燃料电池资源,在产电的同时可应用于污水处理领域,达到资源最大化的目的。【目的】从MFC中分离获得一株可培养微生物,研究其产电特性及在污水处理中的微生物絮凝、重金属耐受、苯酚降解性能,为扩展产电菌资源库提供理论基础。【方法】利用WO_3纳米探针从MFC阳极中筛选获得一株具备产电和絮凝性能的菌株,命名为EFS1。运用循环伏安分析结合扫描电镜观测阳极电极;改变外电阻测定极化曲线和功率密度曲线。测定菌株的絮凝、重金属耐受及苯酚降解性能。【结果】经16S rRNA基因序列分析,结合形态学和生理生化鉴定菌株EFS1为微嗜酸寡养单胞菌(Stenotrophomonas acidaminiphila)。菌株EFS1具有稳定的产电周期,周期电压最高可达300m V,功率密度可达56.25m W/m~2;扫描电镜发现菌株存在直接接触电极及分泌电子中介体传递电子的方式;MFC内阻为1 000Ω左右。有氧条件下菌株的絮凝率可达到70%,存在电子受体的无氧环境中可达到80%;该菌株还具有良好的Cd~(2+)、Cu~(2+)、Mn~(2+)耐受性及苯酚降解性能,在48 h、2–4 mg/L时苯酚降解率达到了100%。【结论】研究验证了产电菌EFS1具备絮凝能力、重金属耐受、苯酚降解的可能性,为产电菌的开发及污水处理方面提供理论依据。  相似文献   
42.
《农业工程》2020,40(3):214-220
The aim of the present study is to assess the antimicrobial activities of various leaf extracts of Ocimum americanum were tested against pathogenic microorganisms. Preparation of different extracts viz., aqueous, acetone, ethyl acetate and methanol through soxhlet extraction method. Various extracts were investigated against MTCC strains of Bacillus cereus, Clostridium penfrigens, Klebsilla pnemoniae, Salmonella paratyphi, Candida albicans and Aspergillus niger by agar well diffusion and disc diffusion methods. Minimum inhibitory concentration (MIC), Minimum Bactericidal/Fungicindal Concentration (MBC/MFC) were determined through micro dilution method. Elucidation of phytochemicals and functional groups were observed by HPLC and FT-IR respectively. Ethyl acetate leaf extract of O.americanum showed significant antimicrobial activity against the all tested pathogens in agar well diffusion method in which B.cereus (17 mm) was observed high zone of inhibition. Whereas lowest inhibition was observed in aqueous extract against C.pentrigens (7 mm). The ranges of MIC values from 0.78 μg/ml to 50 μg/ml and MBC/MFC 1.56 μg/ml to 50 μg/ml were observed. Phytochemicals such as alkaloids, steroids, saponins, flavonoids, tannins, terepenes, phenolic compounds cardiac glycosides were detected. Saponinns, flavonoids, tannins, phenolic compounds were observed in only ethyl acetate leaf extracts. Functional group of the leaf extracts was exhibited by FTIR and HPLC analysis of the ethyl acetate leaf extract was elutated at six peaks. Based on the results we concluded that ethyl acetate leaf extract of O.americanum has proved to be potentially effective than the other extracts. Therefore, ethyl acetate leaf extract of O.americanum could act as antimicrobial agent and further studies are recommended for isolation of compounds and toxicological studies.  相似文献   
43.
张铁焕  吴玉霞  奠佐红  左国营 《广西植物》2020,40(12):1712-1720
为考察19种中药材乙醇提取物的体外抗临床常见致病菌的活性,该文将中药粗粉用80%乙醇浸泡提取, 提取液减压浓缩制备成浸膏,采用琼脂打孔法测定提取物抑菌圈, 通过微量倍比稀释法测定最低抑菌浓度(MIC)和最低杀菌浓度(MBC/MFC)。结果表明:所筛选的19种中药材乙醇提取物对不同的菌株具有不同程度的抑制作用, 14种中药材乙醇提取物抗SA、EC、PA和CA的抑菌圈范围在8~27 mm之间, 其中地锦草、四块瓦、三颗针、马尾黄连和土大黄的提取物抗SA、EC的抑菌圈范围在10.3~26.6 mm之间。马尾黄连、孜然、地锦草、广西莪术、穿心莲、益母草、吴茱萸、土大黄、叶上花、土连翘、凤尾草和三颗针的醇提物对MRSA和铜绿假单胞菌耐药菌均具有显著的抗微生物活性, 其MIC/MBC值在391~6 250 μg·mL-1之间; 地锦草、三颗针抗MRSA的最低MIC值分别为391、781 μg·mL-1, 抗PA耐药菌的最低MIC值均为1 562.5 μg·mL-1; 马尾黄连、孜然和三颗针的醇提物对白色念珠菌耐药菌有中等抑制作用, 杀菌效果不明显。该研究结果为后续相关植物作为潜在抗菌化合物及其抗菌药物佐剂的研究提供了参考。  相似文献   
44.
The anode potential regulates bacterial activity in microbial fuel cells   总被引:3,自引:0,他引:3  
The anode potential in microbial fuel cells controls both the theoretical energy gain for the microorganisms as the output of electrical energy. We operated three reactors fed with acetate continuously at a poised anode potential of 0 (R 0), −200 (R −200) and −400 (R −400) mV versus Ag/AgCl and investigated the resulting bacterial activity. The anode potential had no influence on the start-up time of the three reactors. During a 31-day period, R −200 produced 15% more charge compared to R 0 and R −400. In addition, R −200 had the highest maximal power density (up to 199 W m−3 total anode compartment during polarization) but the three reactors evolved to the same power density at the end of the experimental period. During polarization, only the current of R −400 levelled off at an anode potential of −300 mV versus Ag/AgCl. The maximum respiration rate of the bacteria during batch tests was also considerably lower for R −400. The specific biomass activity however, was the highest for R −400 (6.93 g chemical oxygen demand g−1 biomass-volatile suspended solids (VSS) d−1 on day 14). This lowered during the course of the experiment due to an increase of the biomass concentration to an average level of 578 ± 106 mg biomass-VSS L−1 graphite granules for the three reactors. This research indicated that an optimal anode potential of −200 mV versus Ag/AgCl exists, regulating the activity and growth of bacteria to sustain an enhanced current and power generation.  相似文献   
45.
Anodophilic bacteria have the ability to generate electricity in microbial fuel cells (MFCs) by extracellular electron transfer to the anode. We investigated the anode‐specific responses of Shewanella oneidensis MR‐1, an exoelectroactive Gammaproteobacterium, using for the first time iTRAQ and 2D‐LC MS/MS driven membrane proteomics to compare protein abundances in S. oneidensis when generating power in MFCs, and growing in a continuous culture. The regulated dataset produced was enriched in membrane proteins. Proteins shown to be more abundant in anaerobic electroactive anodic cells included efflux pump TolC and an uncharacterised tetratricopeptide repeat (TPR) protein, whilst the TonB2 system and associated uncharacterised proteins such as TtpC2 and DUF3450 were more abundant in microaerobic planktonic cells. In order to validate the iTRAQ data, the functional role for TolC was examined using a δTolC knockout mutant of S. oneidensis. Possible roles for the uncharacterised proteins were identified using comparative bioinformatics. We demonstrate that employing an insoluble extracellular electron acceptor requires multiple proteins involved in cell surface properties. All MS and processed data are available via ProteomeXchange with identifier PXD004090.  相似文献   
46.
Bioelectrochemical systems (BES) hold great promise for sustainable energy generation via a microbial catalyst from organic matter, for example, from wastewater. To improve current generation in BES, understanding the underlying microbiology of the electrode community is essential. Electron mediator producing microorganism like Pseudomonas aeruginosa play an essential role in efficient electricity generation in BES. These microbes enable even nonelectroactive microorganism like Enterobacter aerogenes to contribute to current production. Together they form a synergistic coculture, where both contribute to community welfare. To use microbial co‐operation in BES, the physical and chemical environments provided in the natural habitats of the coculture play a crucial role. Here, we show that synergistic effects in defined cocultures of P. aeruginosa and E. aerogenes can be strongly enhanced toward high current production by adapting process parameters, like pH, temperature, oxygen demand, and substrate requirements. Especially, oxygen was identified as a major factor influencing coculture behavior and optimization of its supply could enhance electric current production over 400%. Furthermore, operating the coculture in fed‐batch mode enabled us to obtain very high current densities and to harvest electrical energy for 1 month. In this optimized condition, the coulombic efficiency of the process was boosted to 20%, which is outstanding for mediator‐based electron transfer. This study lays the foundation for a rationally designed utilization of cocultures in BES for bioenergy generation from specific wastewaters or for bioprocess sensing and for benefiting from their synergistic effects under controlled bioprocess condition.  相似文献   
47.
Recent advances in the separators for microbial fuel cells   总被引:2,自引:0,他引:2  
Separator plays an important role in microbial fuel cells (MFCs). Despite of the rapid development of separators in recent years, there are remaining barriers such as proton transfer limitation and oxygen leakage, which increase the internal resistance and decrease the MFC performance, and thus limit the practical application of MFCs. In this review, various separator materials, including cation exchange membrane, anion exchange membrane, bipolar membrane, microfiltration membrane, ultrafiltration membranes, porous fabrics, glass fibers, J-Cloth and salt bridge, are systematically compared. In addition, recent progresses in separator configuration, especially the development of separator electrode assemblies, are summarized. The advances in separator materials and configurations have opened up new promises to overcome these limitations, but challenges remain for the practical application. Here, an outlook for future development and scaling-up of MFC separators is presented and some suggestions are highlighted.  相似文献   
48.
VTK是医学可视化领域的主流工具,MFC是Windows平台下的应用程序框架。尝试将两者进行结合编程,以实现二维医学图像的三维重建。实现医学图像三维重建的主要方法是面绘制和体绘制。将利用多组医学图像数据进行三维重建研究,其中面绘制用移动立方体法,体绘制用光线投射法、最大密度投影法和合成体绘制法实现。最后比较两种绘制技术的结果并讨论了它们的特点。结果表明,VTK作为一种图像处理和三维可视化工具其功能是十分强大的。  相似文献   
49.
The performance of a prototype up‐flow single‐chambered microbial fuel cell (MFC) for electrical power generation using brewery wastewater as fuel is reported. The designed reactor consisted of three zones, namely a lower anaerobic digestion zone, a central MFC zone, and an upper effluent clarifier zone. Tests were conducted in batch mode using a beer wastewater as the fuel/electron donor (COD concentration: 430 mg/L) and mixed consortia (both sewage microflora and anaerobic sludge) as a source of electrogenic bacteria. A stable current density of ~2,270 mA/m2 was generated under continuous polarization with a constant external resistance (0.01 kΩ) and cell polarization gave a peak power density of 330 mW/m2 at a current density of 1,680 mA/m2. Electrochemical impedance analysis showed that the overall internal resistance of the reactor was quite low, that is, 8.0 Ω. Cyclic voltammetric analysis of the anodic biofilm at low scan rate revealed quite complex processes at the anode, with three redox peaks, at potentials of 116, 214, and 319 mV (vs. NHE). Biotechnol. Bioeng. 2010;107: 52–58. © 2010 Wiley Periodicals, Inc.  相似文献   
50.
Cellulose has been used in two-chamber microbial fuel cells (MFCs), but power densities were low. Higher power densities can be achieved in air-cathode MFCs using an inoculum from a two-chamber, aqueous-cathode microbial electrolysis cell (MEC). Air-cathode MFCs with this inoculum produced maximum power densities of 1070 mW m−2 (cathode surface area) in single-chamber and 880 mW m−2 in two-chamber MFCs. Coulombic efficiencies ranged from 25% to 50%, and COD removals were 50-70% based on total cellulose removals of 60-80%. Decreasing the reactor volume from 26 to 14 mL (while maintaining constant electrode spacing) decreased power output by 66% (from 526 to 180 mW m−2) due to a reduction in total mass of cellulose added. These results demonstrate that air-cathode MFCs can produce high power densities with cellulose following proper acclimation of the inoculum, and that organic loading rates are important for maximizing power densities from particulate substrates.  相似文献   
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