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1.
阴极极化对不锈钢表面微生物膜的附着有一定的影响.通过荧光显微镜记数和细菌双染色方法(AO PI).对在不同电位下极化过的不锈钢表面进行了观察.同时做了对比实验。实验证明在一定的范围内(-800mV~-1000mv)。阴极极化对微生物向洁净金属表面的附着有一定的抑制作用.但是对已经附着的微生物膜不能够起到脱除或完全杀灭作用.只能杀死靠近金属表面的微生物。通过模拟膜实验,从侧面证明了只有微生物膜附着而无生物活性时.钝性金属的开路电位不会发生正移.  相似文献   

2.
目的研究316L不锈钢在海洋深水环境中的局部腐蚀规律。方法利用自行设计的实验装置在南海170 m水深位置开展316L不锈钢腐蚀模拟实验,并通过电化学测试方法与扫描电子显微镜(SEM)、能谱仪(EDS)等测试手段进行分析。结果浸泡7天时,316L不锈钢表面发生局部腐蚀,但微生物吸附会形成保护性的微生物膜,引起其自腐蚀及击穿电位正移,耐点蚀性能会升高。随着浸泡时间的延长,溶解氧含量逐渐降低,试样表面吸附的微生物膜性质发生变化,导致钝化膜在微生物与Cl-的作用下破裂,自腐蚀电位及击穿电位负移,耐点蚀性能下降。结论 316L不锈钢在海洋深水环境中的耐点蚀性能随着浸泡时间的延长,先降低而后增加。  相似文献   

3.
供水管网不同管材内壁微生物分布的显微观察   总被引:2,自引:1,他引:1  
采用扫描电镜、原子力显微镜以及激光共聚焦显微镜对不锈钢插片表面和供水管网末端PPR管内壁微生物的分布和生物膜结构进行了观察和分析.结果表明,在供水管网中,不锈钢材质表面不利于微生物附着生长,在短时间内(3个月)只有很少的微生物附着.在管网末端PPR管表面有明显的微生物附着生长,细菌容易附着在基底表面的凹穴中,细菌与基底是紧密黏附在一起的.扫描电镜和原子力显微镜结合是观察管壁非连续生长生物膜表面结构的有效手段.采用激光扫描共聚焦显微镜可同时实现管壁生物膜内部和三维结构观察.  相似文献   

4.
生物炭载体的表面特征和挂膜性能研究   总被引:6,自引:0,他引:6       下载免费PDF全文
以花生壳为原料,于300~700℃下热解制备生物炭以作为生物膜载体,对其进行了理化性质表征和挂膜试验.结果表明:较高的热解温度(700℃)能促进生物炭载体孔隙结构发展,生物炭表面ζ电位上升,亲水性增加,从而有利于污水微生物的附着和生长. 挂膜期间,生物炭载体单位挂膜量分别高出陶粒44%~84%,高温(700℃)生物炭载体生物膜对NH4+-N的去除率高出陶粒1%~3%,而中低温(300、500℃)生物炭载体生物膜对NH4+-N的去除率较陶粒低5%~10%,显示生物炭表面理化性质可能对附着的生物膜微生物种类和活性产生影响.  相似文献   

5.
介绍了一种新型的废水处理器—生物膜-膜生物反应器(BMBR),并综述了其技术进展、优点和缺点,比较了几种常见的生物膜膜生物反应器。生物膜膜生物反应器中微生物主要以附着方式生长于填料上,可以延缓膜的污染;反应器中填料的移动可对膜表面进行有效清洗,减轻膜污染;同时该类反应器具有较高的有机物的去除率、脱氮除磷效率,抗冲击负荷能力强。生物膜膜生物反应器是一种具有很好应用前景的废水处理技术。  相似文献   

6.
Q235钢在海洋铁细菌作用下的腐蚀行为研究   总被引:1,自引:0,他引:1  
采用开路电位、电化学极化曲线、电化学阻抗谱(EIS)等方法研究了海洋铁细菌作用下Q235钢的腐蚀行为与腐蚀机理。扫描电子显微镜(SEM)形貌分析结果表明有大量的杆状铁细菌附在Q235钢铁表面。在海洋微生物的影响下,Q235钢的开路电位变小,腐蚀倾向与腐蚀率变大。EIS结果表明在海洋铁细菌作用下Q235钢的交流阻抗模值减少,而且大大降低了Q235钢的极化电阻和表面膜的电阻。微生物的附着促进了钢材表面的溶解,使其表面氧化膜层消失,进而形成了疏松不致密的生物膜层,从而加速了其腐蚀进程。  相似文献   

7.
目的 研究不同阴极极化电位下高强不锈钢的极化行为,确定某高强不锈钢合理的阴极保护电位区间。方法 通过动电位极化测试以及电化学阻抗测试等电化学测试手段,研究此种高强不锈钢在海水中的阴极反应过程,通过不同极化电位下的恒电位极化测试,结合扫描电子显微镜和能谱仪,观察分析试样表面的腐蚀产物,研究阴极极化电位对高强不锈钢表面阴极产物膜的影响规律,以及对高强不锈钢在海水中的阴极保护效果。结果 动电位极化测试表明,在‒0.50~‒0.90 V,只需要施加很小的阴极电流,就可使极化电位发生显著变化。电化学阻抗谱测试及拟合结果表明,极化电位在‒0.70 V时,电极反应的电荷转移电阻最大,此时腐蚀被完全抑制。恒电位极化测试发现,随着电位负移,极化电流密度整体上呈现先减小、后增大的趋势。用能谱仪分析其表面产物发现,钙镁沉积层的致密度呈现先增加、后降低的趋势。结论 此种高强不锈钢在海水环境中施加阴极电位为‒0.50~‒1.00 V时,可以得到有效保护。  相似文献   

8.
王杨  朱斌  童俊  白晓慧 《环境科学》2019,40(2):853-858
管网生物膜由各种活性微生物、微生物残体及有机无机杂质组成,管网生物膜的生长会导致机会致病菌寄居、管道腐蚀以及水质恶化等系列饮用水卫生问题.为研究供水管壁生物膜形成过程和附着生长活性微生物的分布特征,采用异养菌平板计数(HPC)、流式细胞术(FCM)和16S rRNA高通量测序对3种典型室内供水管材:聚氯乙烯(PVC)、无规共聚聚丙烯(PPR)、不锈钢(STS)内壁活性微生物的生长特性和群落多样性进行了分析.结果表明,PVC管壁生物量在第73 d最先达到峰值,3种管材内壁单位面积最大生物量、生物膜成熟时期生物量均呈现PVC PPR STS的规律. 3种管材表面活性细菌群落结构组成上,PVC管表面主要以硝化螺旋菌门为主,PPR和STS管以疣微菌门为主,其中STS管壁上生物膜物种丰富度最低、多样性最小,群落结构最简单. PVC和PPR管内壁表面相较STS管存在更多的蓝藻细菌和放线菌,在饮用水输配过程中更易引发饮用水嗅味问题.管材介质对管壁生物膜上微生物群落结构存在一定影响.  相似文献   

9.
管网生物膜由各种活性微生物、微生物残体及有机无机杂质组成,管网生物膜的生长会导致机会致病菌寄居、管道腐蚀以及水质恶化等系列饮用水卫生问题。为研究供水管壁生物膜形成过程和附着生长活性微生物的分布特征,采用异养菌平板计数(HPC)、流式细胞术(FCM)和16S rRNA高通量测序对3种典型室内供水管材:聚氯乙烯(PVC)、无规共聚聚丙烯(PPR)、不锈钢(STS)内壁活性微生物的生长特性和群落多样性进行了分析。结果表明,PVC管壁生物量在第73 d最先达到峰值,3种管材内壁单位面积最大生物量、生物膜成熟时期生物量均呈现PVCPPRSTS的规律。3种管材表面活性细菌群落结构组成上,PVC管表面主要以硝化螺旋菌门为主,PPR和STS管以疣微菌门为主,其中STS管壁上生物膜物种丰富度最低、多样性最小,群落结构最简单。PVC和PPR管内壁表面相较STS管存在更多的蓝藻细菌和放线菌,在饮用水输配过程中更易引发饮用水嗅味问题。管材介质对管壁生物膜上微生物群落结构存在一定影响。  相似文献   

10.
目的研究316L不锈钢在南海环境中的缝隙腐蚀行为。方法利用自主设计的实海实验装置,在南海170m水深的位置开展316L不锈钢缝隙腐蚀实验。利用光学显微镜观察试样的腐蚀形貌,利用扫描电子显微镜(SEM)观察腐蚀产物膜的微观形貌,结合能谱仪(EDS)分析腐蚀产物膜的微区成分,并利用荧光显微镜观察缝隙腐蚀试样表面微生物的附着情况。通过对比点蚀试样与缝隙腐蚀试样的腐蚀形貌,并观察缝隙腐蚀试样腐蚀形貌随腐蚀时间的变化,分析研究316L不锈钢在南海环境中的缝隙腐蚀行为。结果实海工况下浸泡120 h后,点蚀试样腐蚀轻微,机械划痕清晰可见,缝隙腐蚀试样表面有腐蚀产物生成,并出现明显的局部损伤。随着腐蚀时间的延长,缝隙腐蚀试样表面的局部损伤发展为浅表局部腐蚀,缝隙口堆积锈红色腐蚀产物,并形成闭塞电池。腐蚀408h后,在Cl~-的催化及微生物膜的加速作用下,缝隙口生成许多细小的点蚀坑,并聚集形成点蚀带,缝隙内部呈现波纹状腐蚀形貌,缝隙外部腐蚀相对轻微。荧光照片可见缝隙腐蚀试样表面有微生物附着。结论316L不锈钢在南海环境中具有较高的缝隙腐蚀敏感性。  相似文献   

11.
As a special biofilm structure, microbial attachment is believed to play an important role in the granulation of aerobic granular activated sludge (AGAS). This experiment was to investigate the biological effect of Ca2 +, Mg2 +, Cu2 +, Fe2 +, Zn2 +, and K+ which are the most common ions present in biological wastewater treatment systems, on the microbial attachment of AGAS and flocculent activated sludge (FAS), from which AGAS is always derived, in order to provide a new strategy for the rapid cultivation and stability control of AGAS. The result showed that attachment biomass of AGAS was about 300% higher than that of FAS without the addition of metal ions. Different metal ions had different effects on the process of microbial attachment. FAS and AGAS reacted differently to the metal ions as well, and in fact, AGAS was more sensitive to the metal ions. Specifically, Ca2 +, Mg2 +, and K+ could increase the microbial attachment ability of both AGAS and FAS under appropriate concentrations, Cu2 +, Fe2 +, and Zn2 + were also beneficial to the microbial attachment of FAS at low concentrations, but Cu2 +, Fe2 +, and Zn2 + greatly inhibited the attachment process of AGAS even at extremely low concentrations. In addition, the acylated homoserine lactone (AHL)-based quorum sensing system, the content of extracellular polymeric substances and the relative hydrophobicity of the sludges were greatly influenced by metal ions. As all these parameters had close relationships with the microbial attachment process, the microbial attachment may be affected by changes of these parameters.  相似文献   

12.
Complex organics contained in dye wastewater are difficult to degrade and often require electrochemical advanced oxidation processes (EAOPs) to treat it. Surface activation of the electrode used in such treatment is an important factor determining the success of the process. The performance of boron-doped nanocrystalline diamond (BD-NCD) film electrode for decolorization of Acid Yellow (AY-36) azo dye with respect to the surface activation by electrochemical polarization was studied. Anodic polarization found to be more suitable as electrode pretreatment compared to cathodic one. After anodic polarization, the originally H-terminated surface of BD-NCD was changed into O-terminated, making it more hydrophilic. Due to the oxidation of surface functional groups and some portion of sp2 carbon in the BD-NCD film during anodic polarization, the electrode was successfully being activated showing lower background current, wider potential window and considerably less surface activity compared to the non-polarized one. Consequently, electrooxidation (EO) capability of the anodically-polarized BD-NCD to degrade AY-36 dye was significantly enhanced, capable of nearly total decolorization and chemical oxygen demand (COD) removal even after several times of re-using. The BD-NCD film electrode favored acidic condition for the dye degradation; and the presence of chloride ion in the solution was found to be more advantageous than sulfate active species.  相似文献   

13.
北京东南化工区土壤有机氯农药污染特征和分布规律   总被引:5,自引:1,他引:4  
采集北京原东南化工区表层土壤样品,测定了土壤有机氯农药(滴滴涕、六六六和六氯苯)残留浓度,结果表明化工区土壤有机氯农药浓度较高,滴滴涕和六六六平均浓度高达5470ng/g和2110ng/g,比一般农业和城市土壤中的浓度高出很多;某些点位甚至超过国家土壤三级标准,高浓度的点位主要集中在原农药厂的生产车间和存储点。六氯苯由于来源和挥发性跟滴滴涕和六六六不同,所以六氯苯残留在化工区土壤中的分布相对比较均匀。化工区土壤滴滴涕和六六六的异构体组成特征表明工业区土壤的有机氯农药降解速度较慢,滴滴涕残留来源于工业滴滴涕和三氯杀螨醇,而六六六主要来源于工业六六六。化工区的有机氯农药污染主要来自于原农药厂的生产和存储,重污染点位对周围化工厂的有机氯残留有一定的影响。由于高残留浓度和较低的降解速度,化工区土壤有机氯农药残留的环境风险值得进一步关注。  相似文献   

14.
环保型二次锌电极的研究   总被引:5,自引:0,他引:5  
为了保护环境 ,减小污染 ,节约金属资源 ,十分有必要研究和开发环保型二次锌电极。本文提出了在表面覆盖稀土氢氧化物膜的二次锌电极的新思想 ,首先利用恒电位电解的方法在电极表面成功地覆盖一层均匀致密的稀土氢氧化物膜 ,再用恒电位电解、循环伏安、模拟充放电等实验方法 ,全面考察了稀土氢氧化物膜对锌电极可充性的影响。实验结果表明 :在锌电极表面成膜后 ,可以显著地抑制充电过程中的枝晶生长 ,又在电解液中加入枝晶抑制剂 ( CTMB) ,最后达到了令人满意的效果 ;同时 ,成膜还能有效地缓解锌电极在充放电过程中的容量损失。在整个实验过程中 ,完全去掉了传统的锌电极添加剂——有毒的汞 ,从而为研究和开发实用的环保型二次锌电极提供了一条新的途径  相似文献   

15.
实验用液相沉积法制备铬掺杂改性的二氧化钛(Cr-TiO2)薄膜电极,并在可见光下利用制备的电极对甲基橙溶液(MO)进行光电降解实验研究.并对制备的薄膜进行光电流(I-t)、交流阻抗(EIS)和Mott-Schottky等电化学相关表征.当掺杂浓度为0.2%时,薄膜电极具有最好的光电催化活性.在以0.2% Cr-TiO2...  相似文献   

16.
钼酸盐复合缓蚀剂对海水中碳钢缓蚀性及机理研究   总被引:1,自引:0,他引:1  
采用失重法、电极化法和X-射线光电子能谱XPS技术对钼酸盐复合缓蚀剂的缓蚀性及缓蚀机理进行了研究。实验结果表明:单一钼酸盐对海水中碳钢的缓蚀率随着钼酸盐使用浓度的增加而增加,但低浓度使用缓蚀率较低。通过失重法确定了与钼酸盐有较好协同效应的缓蚀剂配方-钼酸盐、柠檬酸钠、有机膦酸盐(HEDP)和锌盐,当缓蚀剂各组分浓度分别为10mg/L、40mg/L、10mg/L和4mg/L时,该缓蚀剂对海水中碳钢的缓蚀率超过93%。动电位极化曲线测试结果表明:单一钼酸盐缓蚀剂和钼酸盐复合缓蚀剂均为抑制阳极反应为主的阳极型缓蚀剂;X-射线光电子能谱XPS实验结果表明:添加了缓蚀剂的碳钢表面形成了以氧化铁和有机铁络合物为主要成分,钼与磷也参与成膜的不溶性沉淀膜,有效的抑制了海水对碳钢表面的腐蚀。  相似文献   

17.
Electrochemical dechlorination of chloroform in neutral aqueous solution was investigated using palladium-loaded electrodes at ambient temperature. Palladium/foam-nickel (Pd/foam-Ni) and palladium/polymeric pyrrole film/foam-nickel (Pd/PPy/foam-Ni) composite electrodes which provided catalytic surface for reductive dechlorination of chloroform in aqueous solution were prepared using an electrodepositing method. Scanning electron microscope (SEM) micrographs showed that polymeric pyrrole film modified the electrode-surface characteristics and resulted in the uniform dispersion of needle-shaped palladium particles on foam-Ni supporting electrode. The experimental results of dechlorination indicated that the removal efficiency of chloroform and current efficiency in neutral aqueous solution on Pd/PPy/foam-Ni electrode could be up to 36.8% and 33.0% at dechlorination current of 0.1 mA and dechlorination time of 180 min, which is much higher than that of Pd/foam-Ni electrode.  相似文献   

18.
An electrochemical-activated denitrifying biofilm system consisting of activated carbon fiber electrodes immobilized with denitrifying bacteria film as cathode was studied. A revised model for an electrochemical-activated denitrifying biofilm was developed and validated by electrochemical analysis of cathodal polarization curves and nitrate consumption rate. The cathodal polarization curve and nitrate consumption rate were introduced to verify the rate of electrochemical reaction and the activity of denitrifying bacteria, respectively. It was shown that the denitrification process effectively strengthened the electrochemical reaction while the electron also intensified denitrification activity. Electron was transferred between electrochemical process and biological process not only by hydrogen molecule but also by new produced active hydrogen atom. Additionally, a parameter of apparent exchange current density was deprived from the cathodal polarization curve with high overpotential, and a new bio-effect current density was defined through statistical analysis, which was linearly dependent to the activity of denitrification bacteria. Activated carbon fiber (ACF) electrode was also found to be more suitable to the electrochemical denitrifying system compared with graphite and platinum. Translated from Environmental Pollution & Control, 2005, 27(7): 501–504 [译自: 环境污染与防治]  相似文献   

19.
Multi-walled carbon nanotube(MWCNT) sheet was fabricated from a drawable MWCNT forest and then deposited on poly(methyl methacrylate) film. The film was further coated with a natural antimicrobial peptide nisin. We studied the effects of nisin coating on the attachment of Bacillus anthracis spores, the germination of attached spores, and the subsequent biofilm formation from attached spores. It was found that the strong adsorptivity and the super hydrophobicity of MWCNTs provided an ideal platform for nisin coating. Nisin coating on MWCNT sheets decreased surface hydrophobicity, reduced spore attachment, and reduced the germination of attached spores by 3.5 fold, and further inhibited the subsequent biofilm formation by 94.6% compared to that on uncoated MWCNT sheet. Nisin also changed the morphology of vegetative cells in the formed biofilm.The results of this study demonstrated that the anti-adhesion and antimicrobial effect of nisin in combination with the physical properties of carbon nanotubes had the potential in producing effective anti-biofilm formation surfaces.  相似文献   

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