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81.
A stain-based screening method was developed to screen different catalyst coatings for their germicidal activity. A Baclight dead/live bacteria viability kit (invitrogen, molecular probes) was used for staining the cell. The screening was carried out following a standard procedure. This included loading cell suspension to solid surface and maintaining contact for 30 min, then staining with a mixture containing dyes. The stained cells were observed using an epifluorescent microscope and photographed with a CCD camera under UV. Metal-doped TiO2 coatings on AI plates were prepared and tested for non-UV germicidal activity without using UV. It was tested using model microorganisms such as Bakers Yeast (Saccharomyces cerevisiae), Bacillus subtilis, Pseudomonas putida, and Escherichia coli. On the basis of the germicidal activity of catalyst and the degree of damage caused to the cells, the stained cells may appear green (viable), green with red or yellow nuclei and yellow (compromised) or red (nonviable). According to their stained color, cells were counted to calculate the percentage of dead, live, and compromised cells. Compromised cells are cells that grow very slowly after reculturing indicating a degree of reversible cell damage. Screening the germicidal activity using this staining method is accurate and efficient, and requires less time than the culture-based method. A modification to the procedure for measuring germicidal activity of rough surfaces or fibrous coatings was developed. Both TiO2 and metal-doped TiO2 (Ag, Pt, Au, Cu) possess non-UV based germicidal activity. The germicidal activity of TiO2 was found to be related with its wetting property and can be improved by UV irradiation before testing. It is not greatly affected by contact time, indicating a fast acting germicidal activity.  相似文献   
82.
废弃塑料生产涂料的工艺研究   总被引:5,自引:0,他引:5  
本文主要介绍以废弃塑料为原料生产涂料的工艺技术,使整个城市生活垃圾的处理跃上一个新台阶,达到生活垃圾无害化、资源化的环保目标。  相似文献   
83.
目的 研究氟碳重防腐涂层在循环盐雾试验后的防护性能.方法 开展氟碳涂层的实验室循环盐雾试验,通过电化学阻抗谱、附着力、光泽、色差测试等方法对氟碳涂层的各性能进行分析表征,并使用等效电路图对电化学阻抗谱数据进行拟合,评价涂层在盐雾试验后的腐蚀保护性能.结果 循环盐雾试验1440 h后,涂层无失光、变色、粉化等现象,模值由1.42×1011?·cm2下降至7.26×1010?·cm2,下降幅度较小.结论 经循环盐雾试验后的氟碳涂层仍具有优异的防护性能.  相似文献   
84.
目的探究车辆装备有机涂层在微小破损之后性能的变化情况,并通过完好涂层防护能力的对比分析,间接预测微小破损涂层的服役寿命。方法利用某型现役装备涂层作为试验样本,进行综合环境下的循环加速腐蚀试验,最后利用EIS分析实验数据,分析两者防护性能的差别。结果完好涂层与破损涂层的防护性能均出现了大幅度的下降,两者在经过10个周期的腐蚀试验之后,都失去了防护能力,出现了大面积锈迹。完好涂层的低频阻抗模值|Z|0.1 Hz在试验初期处于1010Ω·cm2数量级,最后下降到106Ω·cm2以下;初始状态破损涂层的低频阻抗模值|Z|0.1 Hz为1.2×105Ω·cm2,9个腐蚀周期之后下降至5.7×103Ω·cm2,下降了2个数量级。结论破损涂层在腐蚀初期更多地表现出电容性质,其试验初期的防护能力大约相当于完好涂层经历6~7次循环试验之后的防护能力,破损部分随着腐蚀周期的变化呈现“钝化—溶解—再钝化—再溶解”的周期性变化规律。  相似文献   
85.
GOAL, SCOPE AND BACKGROUND: Lake Shkodra/Skadar is the largest lake in the Balkans region and located on the border between Albania to the south and Montenegro to the north. Because of the wide range of endemic, rare or endangered plant and animal species it supports, Lake Shkodra/Skadar and its extensive associated wetlands are internationally recognised as a site of significance and importance (Ramsar site). In recent years, social and economic changes in both Albania and Montenegro have lead to unprecedented levels of urban and industrial effluent entering the lake. Of particular concern is the increasing input of toxic hydrophobic organic pollutants (HOPs) into the lake and the degree to which these compounds are available for uptake by aquatic biota. Semipermeable membrane devices (SPMDs) have been shown to sample the readily bioavailable fraction (dissolved phase) of waterborne HOPs and in doing so provide relevant data for exposure assessment. The aim of the current study was to use SPMD-based sampling in conjunction with appropriate bioassays and chemical analysis to identify readily bioavailable HOPs in the lake. METHODS: SPMDs were constructed and deployed at three sites in the Albanian sector and three sites in the Montenegrin sector of Lake Skadar/Shkodra for 21 days. Following the dialytic recovery of target analytes and size exclusion chromatographic clean-up, aliquots of SPMD samples were subjected to GC-MS scan analysis for major components, GC-MS SIM analysis for 16 priority pollutant polycyclic aromatic hydrocarbons (PP-PAHs) and assayed for EROD-inducing, estrogenic and mutagenic potential using rainbow trout liver cells (RTL-W1), the yeast estrogen screen (YES) and the Ames Test, respectively. RESULTS AND DISCUSSION: A total of 39 compounds were tentatively identified in SPMD samples from the six sampling sites. Alkylated PAHs were the most abundant and ubiquitous compounds present along with various sterols and sterol derivatives. Numerous other compounds remain unidentified. 15 of the 16 targeted PP-PAHs were present in samples from one or more of the sampling sites indicating these compounds are both readily bioavailable and widely distributed in Lake Shkodra/Skadar. Total PP-PAH concentrations ranged between 3991 ng/SPMD and 10695 ng/SPMD. Bioassays carried out on SPMD samples revealed significant EROD-inducing and estrogenic potential at five of the six sampling sites indicating toxicologically relevant compounds are readily available for uptake by resident aquatic biota. EROD-inducing potential was positively correlated with targeted PP-PAH concentration (r2 = 0.74). However, comparison of bioassay- and analytically-derived toxicity equivalents revealed targeted PP-PAHs were responsible for less than 0.06% of the total EROD-inducing potential. CONCLUSIONS AND OUTLOOK: The combination of SPMD-based sampling with appropriate bioassays and chemical analysis provided an effective tool for the identification of environmentally relevant waterborne pollutants in Lake Shkodra/Skadar. Our results show that toxicologically relevant HOPs including EROD-inducing and potentially estrogenic compounds are widely distributed in the lake and readily available for uptake by aquatic biota. Our results also suggest that alkylated PAHs rather than parent compounds may be of greater toxicological relevance in the lake. As anthropogenic influences continue to increase, SPMD-based sampling is expected to play a central role in future research concerned with the identification, monitoring and assessment of the risk posed by HOPs to Lake Shkodra/Skadar's aquatic biota.  相似文献   
86.
In this paper hydrophilic (HI) and hydrophobic (HO) fractions of dissolved organic matter (DOM) extracted from soils at different degrees of salinisation were characterised by means of fluorescence spectroscopy in the emission, excitation and synchronous-scan modes. Results provided evidence of the different chemical nature of DOM fractions and allowed to distinguish hydrophilic and hydrophobic fractions extracted from the same soil substrate. The strong decrease in fluorescence intensity observed with the increasing salinity of the soils can be utilised to obtain information on the salinity level of different soil substrates by comparison of spectral fluorescence intensities.  相似文献   
87.
金属喷涂层在青海盐湖水中的腐蚀初探   总被引:2,自引:0,他引:2  
喷锌、喷铝、喷锌铝合金三种保护层材料在青海格尔木盐水湖进行1年暴露试验,采用电化学方法研究了该金属喷涂层材料的腐蚀情况,并将其与碳钢的实验结果相对照,初步探讨了其耐蚀机理。  相似文献   
88.
目的将SiO2-PANI-GO三维复合物添加到水性醇酸涂层中,并对改性涂层防腐蚀性能进行研究。方法将纤维状的PANI和球状SiO2与片状的GO进行复合,通过扫描电子显微镜(SEM)、傅里叶变换红外光谱(FT-IR)、X射线衍射(XRD)对复合物进行材料表征。将纳米复合物作为填料按照1%的质量比添加到水性涂层中,利用电化学阻抗(EIS)研究涂层改性后的防腐蚀性能。结果SEM图像表明,SiO2-PANI-GO复合物为表面复合了纤维状PANI和球状SiO2的片层状GO。FT-IR及XRD证明了SiO2-PANI-GO复合物的成功制备。EIS结果表明,添加了SiO2-PANI-GO三维复合物改性后,水性醇酸涂层的阻抗提高了2个数量级,其中以SiO2与PANI-GO比例为1:4时效果最好。结论水性醇酸涂层中添加SiO2-PANI-GO/WAV三维复合物,可以增加腐蚀介质侵蚀基底的路径,有效提高涂层的防腐性能。  相似文献   
89.
目的探究三种电源模式对ADC12高硅铝合金微弧氧化膜层性能的影响,从中选择对其微弧氧化膜层性能较优的电源模式。方法在三种不同电源模式(交流电源、单极性脉冲电源和双极性脉冲电源)的条件下,应用微弧氧化(MAO)技术在ADC12高硅铝合金表面制备了陶瓷膜层,并采用扫描电镜(SEM)、X射线衍射仪(XRD)、显微硬度计、摩擦磨损试验机等手段表征ADC12铝合金微弧氧化膜层的显微组织与性能。结果三种电源模式下微弧氧化膜层中都存在α-Al_2O_3、γ-Al_2O_3和Al9Si等物相;双脉冲模式下制备的微弧氧化膜层的致密性最好,厚度为15μm,硬度达到719 HV,摩擦系数为1.2左右,膜层与基体开始脱落的载荷为25.8 N。交流模式下制备的微弧氧化膜层膜厚较低,厚度为9μm,硬度达到698 HV,摩擦系数为1.35左右,膜层与基体开始脱落的载荷为19.5 N。单极性模式下制备的微弧氧化膜层厚度为17μm,但硬度为706 HV,摩擦系数为1.35左右,膜层与基体开始脱落的载荷为13.09 N。结论通过三种电源模式的比较,ADC12高硅铝合金在双极性脉冲电源模式下制得膜层的综合性能较好。  相似文献   
90.
不同合成条件对ZnAl-LDHs覆膜改性生物陶粒除磷效果的影响   总被引:2,自引:2,他引:0  
采用3种Zn~(2+)/Al~(.+)金属浓度比的ZnCl_2和AlCl_3溶液,在两个不同pH值条件下,利用水热-共沉淀法对生物陶粒基质进行层状双金属氢氧化物(LDHs)覆膜改性.将生成的不同类型ZnAl-LDHs覆膜改性基质与原始生物陶粒基质分别填充于实验柱中,构建模拟垂直流人工湿地小试系统;对改性前后的7种基质进行磷素净化效果、等温吸附实验和解吸附实验研究,通过实验数据结合主成分分析,探讨ZnAl-LDHs覆膜改性生物陶粒除磷效果提升的影响因素.结果表明,pH=11的ZnAl-LDHs改性方式对磷素净化效果具有更为明显的提升功能;其中ZnAl-LDHs(pH=11,1∶1)改性生物陶粒基质相比于原始基质,对TP、TDP、SRP平均去除率的增幅超过70%,其最大理论吸附量达到原始生物陶粒的3倍.合成ZnAl-LDHs时的pH值和Zn~(2+)/Al~(3+)金属浓度比对改性生物陶粒的结构形态与覆膜效果有着不同程度的影响,其中合成时的pH值是ZnAlLDHs覆膜改性生物陶粒除磷效果的主要影响因素.通过合理调控制备ZnAl-LDHs覆膜改性生物陶粒时的pH值及Zn~(2+)/Al~(3+)金属浓度比,可以达到有效提高ZnAl-LDHs覆膜改性生物陶粒除磷效果的目的.  相似文献   
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