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排序方式: 共有178条查询结果,搜索用时 15 毫秒
81.
82.
电袋复合除尘器捕集粉尘除了静电凝并作用外,滤袋表面的二次粉尘层和一次粉尘层中粉尘颗粒之间的微米级间隙,以及滤料纤维层中纤维间距的微距,加上荷电粉尘层形成的(内)电场力和(或)外加电场的作用,使微细粉尘发生极化、库伦和电场吸附,是实现高效捕集微细粉尘PM2.5的重要机理。 相似文献
83.
Oliveira RT Salazar-Banda GR Santos MC Calegaro ML Miwa DW Machado SA Avaca LA 《Chemosphere》2007,66(11):2152-2158
This work presents an electrochemical investigation of the benzene oxidation process in aqueous solution on boron-doped diamond (BDD) electrodes. Additionally, in order to determine the main products generated during the oxidation process, electrolysis and high performance liquid chromatography experiments were carried out. The complete degradation of this compound was performed aiming to a further application in waste water treatment. The cyclic voltammetry studies indicate that benzene is irreversibly oxidized in acid medium (H2SO4 0.5 M) on the BDD electrode surface at 2.0 V versus Ag/AgCl in a diffusion controlled process. During the cycling, other products are generated, and a pair of peaks was observed that can be associated with the oxi-reduction of anyone of the following species: hydroquinone, benzoquinone, resorcinol or catechol. The electrolysis experiments were carried out at 2.4 and 2.5 V on the BDD electrode surface in a solution containing 1 × 10−2 M of benzene (below the saturation concentration in aqueous solution), for 3 and 5 h, respectively. The main products measured were: hydroquinone, resorcinol, p-benzoquinone, catechol and phenol. The complete electrochemical benzene degradation was performed in the electrolysis experiments using a rotating BDD disc electrode (2.5 V for 5 h) and the main products detected were all measured at concentrations lower than 10−5 M in this condition. The boron-doped diamond electrode had proved to be a valuable tool for the electrochemical degradation of the benzene, a very stable chemical compound. 相似文献
84.
An assessment of the effectiveness and impact of electrokinetic remediation for pyrene-contaminated soil 总被引:2,自引:0,他引:2
The effectiveness of electrokinetic remediation for pyrene-contaminated soil was investigated by an anode-cathode separated system using a salt bridge. The applied constant voltage was 24 V and the electrode gap was 24 cm. Two types of soil (sandy soil and loam soil) were selected because of their different conductive capabilities. The initial concentrations of pyrene in these soil samples were 261.3 mg/kg sandy soil and 259.8 mg/kg loam soil After treatment of the sandy soil and loam soil for seven days, 56.8% and 20.1% of the pyrene had been removed respectively. Under the same power supply voltage, the removal of the pollutant from the sandy soil was greater than that from the loam soil, due to the higher current and lower pH. Further analysis revealed that the effectiveness of electrokinetic remediation was affected by the energy expenditure, and was associated with changes in soil properties. 相似文献
85.
Qiongfang Zhuo Xiang Li Feng Yan Bo Yang Shubo Deng Jun Huang Gang Yu 《环境科学学报(英文版)》2014,26(8):1733-1740
The 6:2 FTS was the substitute for perfluorooctane sulfonate(PFOS) in the chrome plating industry in Japan. Electrochemical oxidation of 6:2 FTS was investigated in this study. The degradabilities of PFOS and 6:2 FTS were tested on the Ti/SnO2–Sb2O5–Bi2O3anode. The effects of current density,potential,and supporting electrolyte on the degradation of 6:2 FTS were evaluated. Experimental results showed that 6:2 FTS was more easily degraded than PFOS on the Ti/SnO2–Sb2O5–Bi2O3anode. At a low current density of 1.42 mA/cm2,6:2 FTS was not degraded on Ti/SnO2–Sb2O5–Bi2O3,while the degradation ratio increased when the current density ranged from 4.25 to 6.80 mA/cm2. The degradation of 6:2 FTS at current density of 6.80 mA/cm2 followed pseudo first-order kinetics with the rate constant of 0.074 hr-1. The anodic potential played an important role in the degradation of 6:2 FTS,and the pseudo first-order rate constants increased with the potential. The surface of Ti/SnO2–Sb2O5–Bi2O3was contaminated after electrolysis at constant potential of 3 V,while the fouling phenomenon was not observed at 5 V. The fouled anode could be regenerated by incinerating at 600°C. The intermediates detected by ultra-performance liquid chromatography coupled with a triple-stage quadrupole mass spectrometer(UPLC–MS/MS) were shorter chain perfluorocarboxylic acids. The 6:2 FTS was first attacked by hydroxyl radical,and then formed perfluorinated carboxylates,which decarboxylated and removed CF2 units to yield shorter-chain perfluorocarboxylic acids. 相似文献
86.
海洋环境水下电磁场基本特性及抑制方法研究 总被引:2,自引:1,他引:1
目的掌握环境水下电磁场的基本特性以及适宜的降噪方法。方法从时域、频域、相关与极化等方面对某海域进行分析,并对得到的大量海洋环境水下电磁场特性进行总结,基于分析结果,研究自适应线谱增强技术在海洋环境水下电磁场抑制方面的应用。结果海洋环境水下电磁场具有一定的规律性和随机性,利用自适应线谱增强技术,信号强度增加了6 dB。结论通过对环境电磁场基本特性以及抑制方法的研究,可以对舰船测试中环境电磁场的影响程度进行评估,并提高目标的探测能力。 相似文献
87.
Sumit K. Jui Abishek B. Kamaraj Murali M. Sundaram 《Journal of Manufacturing Processes》2013,15(4):460-466
Micromachining of glass is essential for several microfluidic components, micro-pumps, micro-accelerometers, micro-reactors, micro-fuel cells and several biomedical devices. Unique properties such as high chemical resistance, thermal stability and transparency give glass scope for additional applications. However, poor machinability of glass is a major constraint, especially in high aspect ratio applications of glass in microsystem technology. Micro electrochemical discharge machining (micro ECDM) is an emerging nontraditional fabrication method capable of micromachining ceramic materials like glass. While surface features less than 100 μm have been successfully machined on glass, machining high aspect features is a challenge. Machining accuracy at high depths is severely affected due to overcut and tool wear. In this paper, high aspect ratio microtools fabricated in-house have been used for deep microhole drilling on glass using low electrolyte concentration. An aspect ratio of 11 has been achieved. The results show that lower electrolyte concentration reduced overcut by 22%, thus increasing the aspect ratio of the micro holes. Lowering the electrolyte concentration also reduced the tool wear and hole taper by 39% and 18% respectively. 相似文献
88.
89.
酸性条件下黄铁矿氧化机制的研究 总被引:3,自引:0,他引:3
以黄铁矿粉末制备成的碳糊电极为工作电极,利用循环伏安曲线和极化曲线等电化学手段,对酸性条件下黄铁矿的氧化过程和机制进行了研究.结果表明,黄铁矿的氧化主要包括以下两个过程:首先,黄铁矿(FeS2)矿物晶格中的Fe2+溶出而被氧化为Fe3+,此过程会伴随有如硫单质、缺铁硫化物(Fe1-xS2)和多硫化物(FeSn)等氧化中间产物的生成,覆盖在黄铁矿的表面而形成一层钝化膜,阻碍了其氧化溶解过程;接着,黄铁矿表面的钝化膜被进一步氧化为可溶性的SO24-.在酸性条件下,黄铁矿氧化反应的最终产物为Fe3+和SO24-.另外,在所研究的酸度范围内,随着H2SO4溶液浓度的增大,体系的开路电位和腐蚀电位均正移,氧化和还原的峰电流值升高,腐蚀电流增大,说明增加体系的酸度会促进黄铁矿的氧化过程. 相似文献
90.