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1.
利用电沉积法制备了钕(Nd)掺杂钛(Ti)基二氧化铅(PbO_2)复合阳极,采用扫描电子显微镜(SEM)、X射线衍射(XRD)、电化学阻抗谱、线性扫描伏安法、循环伏安法等对所制备电极的表面形貌、物相组成及电化学性能进行了分析.结果表明,Nd掺杂使得PbO_2阳极表面颗粒变小、结构更加致密,增大了电极比表面积,改善了电极电化学性能.PbO_2和PbO_2-Nd阳极表层主要为β-PbO_2,Nd掺杂提高了β-PbO_2的结晶纯度,改变了表面相的相对丰度,促进了β(101)晶面形成.PbO_2-Nd阳极具有更小的电化学反应电阻,更高的析氧电位,更强的电子交换能力和更长的使用寿命.将所制备电极应用于处理苯酚模拟难降解有机废水,PbO_2-Nd阳极对苯酚具有更好的电催化氧化效果,降解3 h,苯酚去除率达85.7%,COD去除率达73.8%.循环使用6次,PbO_2-Nd阳极电催化活性无明显衰减,显示出更好的电催化耐久性.  相似文献   

2.
本文在SnO2-Sb2O5氧化物为中间层的钛基体上,采用电沉积法制备了无掺杂的Ti/PbO2、掺杂F的Ti/PbO2(Ti/PbO2+F)和掺杂Co3O4纳米粒子的Ti/PbO2电极(Ti/PbO2+Nano-Co3O4).用X射线衍射(XRD)和扫描电镜(SEM)分析和观察了电极材料的组成、结构和形貌,并通过电化学方法研究了这三种电极对苯酚的电催化氧化性能.结果表明,Ti/PbO2+F电极的析氧电位较Ti/PbO2电极的发生明显正移,但其苯酚的氧化峰和析氧峰并不能分开;而Ti/PbO2+Nano-Co3O4电极虽然其析氧电位负移,但对苯酚的氧化峰出现在析氧峰之前.这一结果表明,体系存在着某种反应特别快的瞬态中间体,即在水分子被解离之前已与苯酚发生了反应,从而更有利于苯酚的转化和降解.  相似文献   

3.
利用电沉积法制备了钕(Nd)掺杂钛(Ti)基二氧化铅(PbO2)复合阳极,采用扫描电子显微镜(SEM)、X 射线衍射(XRD)、电化学阻抗谱、线性扫描伏安法、循环伏安法等对所制备电极的表面形貌、物相组成及电化学性能进行了分析. 结果表明,Nd 掺杂使得 PbO2 阳极表面颗粒变小、结构更加致密,增大了电极比表面积,改善了电极电化学性能. PbO2 和 PbO2-Nd 阳极表层主要为β- PbO2,Nd 掺杂提高了β- PbO2 的结晶纯度,改变了表面相的相对丰度,促进了β(101)晶面形成. PbO2-Nd 阳极具有更小的电化学反应电阻,更高的析氧电位,更强的电子交换能力和更长的使用寿命. 将所制备电极应用于处理苯酚模拟难降解有机废水,PbO2-Nd 阳极对苯酚具有更好的电催化氧化效果,降解3 h,苯酚去除率达85.7%,COD 去除率达73.8%. 循环使用6 次,PbO2-Nd 阳极电催化活性无明显衰减,显示出更好的电催化耐久性.  相似文献   

4.
采用电沉积法制备了Ti/Ti O2-NTs/Pb O2、Ti/Ti O2-NTs/Ce-Pb O2、Ti/Ti O2-NTs/Fe-Pb O2三种电极,采用X射线衍射(XRD)、线性伏安扫描(LSV)、电极加速寿命等手段分别对所制备电极进行了表征,并以邻甲酚作为目标污染物评价了电极的电催化活性。研究结果表明,被Fe、Ce修饰后的两种Pb O2电极的析氧电位、稳定性、电催化活性均高于未修饰电极,且所制备的三种电极的活性催化层均为β型Pb O2,邻甲酚在三种电极上的电催化降解反应均遵守一级反应动力学规律。其中被Fe修饰的Pb O2电极是降解邻甲酚综合性能最佳的电极,该电极析氧电位为2.12 V,当电流密度为10 m A/cm2时对邻甲酚去除率为99.74%,COD去除率为60.31%,加速寿命是未修饰电极的2.6倍。  相似文献   

5.
采用阳极氧化法和脉冲电沉积制备出β-PbO2改性TiO2纳米管(β-PbO2/TiO2-NTs)电极,通过扫描电子显微镜(SEM)、X射线衍射(XRD)和X射线光电子能谱(XPS)等技术手段对制备的β-PbO2/TiO2-NTs电极的表面形貌和结构进行了表征。结果表明,该方法成功地将β-PbO2纳米颗粒分散在TiO2纳米管中,通过电催化降解苯酚评价了β-PbO2/TiO2-NTs电极的电催化活性,实验结果表明,在TiO2-NTs中电沉积β-PbO2提高了电极的电催化活性,对苯酚的降解达到83%。  相似文献   

6.
以乙炔黑、活性炭、石墨粉与适量的Mn(NO3)2为原料,采用热压法制备氧电极,将其应用于光电催化降解水中苯酚的研究。采用BET、X射线衍射(XRD)及扫描电镜分析(SEM)测试技术对氧电极进行了表征,并考察了氧电极的制备条件对电极光电催化性能的影响,比较了铜片、镍片、氧电极3种不同阴极对苯酚的降解效果,也比较了相同操作条件下吸附、光催化、电催化、光电催化等过程对苯酚降解效果的影响。结果表明,氧电极的比表面积较大,主要晶相为石墨、Mn3O4,电极表面和内部的物料混合及气孔分布比较均匀;电极的较佳制备条件为:石墨、乙炔黑与活性炭的质量比1∶1∶1,烧结温度400℃,电极厚度1.0 mm;在降解水中苯酚的过程中,氧电极与光阳极能产生良好的光电协同效应,提高了水中苯酚的矿化率。  相似文献   

7.
钛基二氧化铅电催化电极的制备及电催化性能研究   总被引:32,自引:0,他引:32  
以电沉积法制备了钛基PbO2电极,优化并确定了电极的制备工艺,以苯酚为目标有机物,考察了电极的电催化氧化性能,研究结果表明,该电极的电催化性能优于传统的DSA钛基RuO2电极。采用该电极,在10Ma/cm^2电流密度下通过0.72Ah电量后,可使100Ml、COD浓度为270mg/L的苯酚溶液中的苯酚完全分解,COD去除率为67.4%,单位电量COD降解量为0.254mgCOD/Ah,且电流效率随电流密度的增加而减小,初步研究了苯酚的电催化氧化机理,提出了苯酚的电催化氧化可能是由苯酚的直接电化学氧化为苯醌及苯醌的间接电化学氧化有机酸两部分组成。  相似文献   

8.
陈野  赵文丽  温青 《电化学》2011,17(2):199-203
应用阳极电沉积法制备钛基二氧化锰(Ti/MnO2)电极. 采用X射线衍射(XRD)、扫描电子显微镜(SEM)及能谱(EDS)表征电极结构形貌. 用V~logi及苯酚降解实验优化电极制备工艺参数:在电流密度4 mA•cm-2、Mn2+离子浓度0.5 mol•L-1及温度70 ℃条件下阳极电沉积Ti/MnO2电极. 以苯酚为目标有机物,评价该电极电催化氧化性能,降解7h降解效率达49.6%.  相似文献   

9.
采用电沉积法制备了金属Bi3+改性PbO2(Bi-PbO2)电极,并通过扫描电镜(SEM)、X射线能谱(EDS)、X射线光电子能谱(XPS)、X射线衍射(XRD)、紫外-可见漫反射(UV-VisDRS)、荧光光谱(FP)、莫特-肖特基(Mott-Schottky)曲线、电化学阻抗谱(EIS)和线性极化扫描(LSV)等方法表征了其微结构和电化学性能.SEM、EDS和XPS结果表明,Bi3+以Bi2O3的形式掺杂进入PbO2镀层,同时其掺杂改性可明显改善PbO2镀层的微结构,使电极表面颗粒细化;XRD和UV-VisDRS分析结果显示Bi3+掺杂改性后,PbO2晶体的晶胞参数发生变化,同时禁带宽度(Eg)变小;荧光光谱分析表明Bi-PbO2电极可促进羟基自由基的产生,增强电极降解有机物的催化活性;电化学性能测试显示,Bi3+改性PbO2电极电催化活性的提升与电极的平带电势(Efb)负移、活性表面积增大、电化学反应电阻减小和析氧电位提高有关.  相似文献   

10.
鲍晋珍  王森林 《物理化学学报》2011,27(12):2849-2856
采用共沉淀法制备尖晶石型复合氧化物 NiCo2O4, 然后将其加入瓦特镀镍液中, 复合电沉积了 Ni/NiCo2O4复合镀层. 通过改变镀液pH值、阴极电流密度jk等条件, 探索复合电沉积的最佳工艺条件. 运用扫描电子显微镜(SEM)、能谱分析(EDS)和X射线衍射(XRD)表征了复合镀层的表面形貌、颗粒含量和结构. 结果表明: 在镀液pH=6.2和jk=100 mA·cm-2的条件下所得Ni/NiCo2O4复合镀层中, NiCo2O4的含量达到最高(30.6%,w). 在5 mo·lL-1的KOH溶液中, 采用循环伏安、稳态极化和电化学阻抗法研究了电极的电催化析氧性能. 与镍电极对比, Ni/NiCo2O4复合电极的电催化析氧性能更高, 表观活化自由能降低了53.2 kJ·mol-1, 其析氧反应的表观交换电流密度是镍电极的7倍. 电化学阻抗谱分析表明, Ni/NiCo2O4复合电极在碱性溶液中析氧反应由电化学步骤和扩散步骤联合控制. 恒电位长时间电解析氧实验表明, 该Ni/NiCo2O4复合电极在碱性溶液中的析氧具有高的稳定性.  相似文献   

11.
Electrocatalytic oxidation is a promising process for degrading toxic and biorefractory organic pollutants in wastewater treatment. Selection of electrode materials is crucial for electrochemical oxidation process. In this study, Ti/F-PbO2 and Ti/Sb-SnO2 electrodes were chosen to compare their electrocatalytic characterization, which were prepared by electrodeposition and thermal decomposition method, respectively. The surface morphology and crystal structure of two electrodes were characterized by scanning electron microscopy (SEM) and X-ray diffraction (XRD). The linear polarization curves show that Ti/Sb-SnO2 electrodes possess higher oxygen evolution overpotential than Ti/F-PbO2 electrodes. But the stability and corrosion resistance ability of Ti/F-PbO2 electrode was higher than that of Ti/Sb-SnO2 electrode. The electrocatalytic activity of Ti/F-PbO2 and Ti/Sb-SnO2 electrodes was examined for the electrochemical oxidation of malachite green (MG). The bulk electrolysis shows that the Ti/Sb-SnO2 electrodes exhibit the higher electrocatalytic activity for the degradation of MG than Ti/F-PbO2 electrodes, and the degradation process is good fitting for the pseudo-first order reaction. The higher electrocatalytic activity of Ti/Sb-SnO2 electrodes can be attributed to the higher oxygen evolution overpotential.  相似文献   

12.
In this study, Ti-Si-Sn-Sb/GAC particle electrodes were prepared by sol–gel method. The particle electrodes were characterized by SEM, XRD, EDX, and BET then used to carry out three-dimensional (3D) electrocatalytic oxidation degradation on simulated refractory p-aminophenol (PAP) wastewater. The effects of initial pH, cell voltage, aeration flow rate and initial PAP concentration on degradation experiments were investigated. Under the optimal conditions, the PAP and COD removal rates were 89.45% and 75.17% respectively. In addition, the possible degradation mechanism of PAP was further investigated by UV–Vis and HPLC. Finally, it was found that the Ti-Si-Sn-Sb/GAC particle electrodes with high catalytic activity and excellent stability could significantly improve the PAP wastewater removal efficiency.  相似文献   

13.
电催化氧化法处理苯酚废水的Mn-Sn-Sb/γ-Al2O3粒子电极研制   总被引:11,自引:0,他引:11  
张芳  李光明  盛怡  胡惠康  王华 《化学学报》2006,64(3):235-239
采用溶胶-凝胶法制备了一系列不同Mn/Sn/Sb比的γ-Al2O3负载型粒子电极, 以苯酚为模型污染物考察了粒子电极的催化活性, 并用BET表面积、SEM和XRD等手段, 对粒子电极的微结构、表面形貌及物相进行了表征. 研究表明, 在Sn和Sb含量相同的情况下, Mn与Sn的摩尔比为2∶1时催化活性最高, 其催化活性远远高于某化学物理所提供的Ru/TiO2粒子电极. 所制粒子电极不仅具有相当高的电催化活性, 而且在使用过程中催化性能稳定, 经5次反复使用后仍具有较高的催化活性. 反应过程中活性组分的流失是粒子电极失活的主要原因, 催化剂表面积炭也可能是粒子电极失活的原因之一.  相似文献   

14.
The electrocatalytic activity of platinised platinum (Pt Pt) electrodes in the electrooxidation of oxalic acid was found to be dependent on the degree of ageing. Pt Pt electrodes prepared by electrodeposition were aged by cycling the potential with an upper positive potential limit corresponding to Pt surface oxidation. This procedure results in surface reconstruction with an increase of mean particle size. The changes of surface area and roughness of Pt Pt during ageing have been discussed in terms of sintering processes for supported catalysts or ceramic materials. An increase of mean particle size is accompanied by a decrease in oxygen adsorption, e.g. through changes in the surface concentration of defects on the particle surface. Two possible mechanisms for the electrooxidation of oxalic acid involving either an oxygen adsorbate species (CE mechanism) or direct electrode transfer can be distinguished. Changes of oxidation rate are related to changes of oxygen coverage with ageing.  相似文献   

15.
王红森  吴仲达  林文廉  丁晓纪 《化学学报》1994,52(11):1053-1057
钛基体在能量40keV下,离子注入1×10^1^6~1×10^1^8Pd^+/cm^2.在30%的KOH溶液中,研究了这些电极对氢和氧析出的电催化性能.结果表明, 离子注入电极的催化活性明显地优于未注入的钛基体,并随着离子注入剂量的增大,催化活性增大. 由极化测量求得有关动力学参数.这些数据表明,用高剂量钯离子注入的钛电极, 其电化学性能与钯电极相似.根据AES和XPS数据,讨论了注入电极表面的组成  相似文献   

16.
Active oxygen evolution reaction electrocatalysts for water splitting have received great attention because of their importance in the utilization of renewable energy sources. Here, the electrochemical oxygen evolution reaction activities of a nanoporous gold (NPG)‐based electrode in acidic media are investigated. The dependence of the oxygen evolution reaction activity on the NPG surface area shows that the large electrochemical surface areas of the NPG are effectively utilized to enhance electrocatalytic activity. The NPG surfaces are modified with Pt using atomic layer electrodeposition methods, and the resulting NPG@Pt exhibited enhanced electrocatalytic activities compared to those of the NPG and flat Pt electrodes. Ir‐modified NPG (NPG@Ir) electrodes are prepared by spontaneous exchange of Ir on NPG surfaces and exhibit enhanced electrocatalytic activity compared to that of flat Ir surfaces. The modification of NPG@Pt with Ir results in NPG@Pt/Ir electrodes, and their electrocatalytic activities exceed those of NPG@Ir. The enhanced oxygen evolution reaction activity on NPG@Pt/Ir over that on NPG@Ir surfaces is examined by X‐ray photoelectron spectroscopy. The oxygen evolution reaction activity on NPG@Pt/Ir surfaces demonstrates synergistic electrocatalysis between the nanoporous surface structure and active electrocatalytic components.  相似文献   

17.
钛基氧化物电极的分形维数和电催化性能   总被引:5,自引:0,他引:5  
分形几何学是近十几年来发展起来的新的数学理论,它对研究自然科学中的不规则几何行为具有独特的优势,尤其对材料的表面结构与性能研究有着重要的理论和实际意义。多相催化反应的一个显著特征就是在整个反应的一个显著特征就是在整个反应过程中都存在着反应界面,而界面的结构性质对反应过程有重要的影响。十几年前,有关这类界面的研究几乎都基于欧氏几何模型,在简单情况下视之为平面,在较复杂的情况下视之为曲面,即总是把表面视为二维面,但在很多情况下,这种做法与实际情况并不相符,例如,催化剂是多孔的,表面极不规则,存在各种晶体缺陷,而这些缺陷一般又是活性中心的集中处,面对这类粗糙的表面,经典的夫整几何学已显得无能为力,近年来,由Mandelbrot建立起来的分形几何学给人们解决诸多粗糙表面的复杂问题提供了新的途径和思路,本文计算了几种电极材料的表面分形维数,并对其催化性能进行了讨论。  相似文献   

18.
采用电沉积法获得Ni、Ni-Fe和Ni-Fe-C合金镀层电极, 在90 °C模拟海水(0.5 mol·L-1 NaCl, pH=12)的稳态极化曲线表明Ni-Fe-C合金电极具有最好的析氢催化性能. 通过扫描电子显微镜(SEM)观察电极表面形貌、X射线衍射(XRD)与透射电子显微镜(HRTEM)分析合金的晶体结构, 发现电极材料的晶粒尺寸影响析氢催化性能, 晶粒尺寸越小析氢催化活性越好. 用电化学阻抗方法(EIS)研究电极析氢催化性能的本质原因, 结果表明电极表面活性点数目和电极的本质电催化活性对合金电极析氢催化活性有重要的影响.  相似文献   

19.
The effect of the partial substitution of tantalum by iron on the structural and electrical properties of the KTaO3 perovskite-type oxide powders has been studied. The powders were prepared by the standard ceramic method, and the respective structural characterization performed by X-ray powder diffraction. From the synthesized oxide samples, iron-coated electrodes were fabricated and tested as the anode for the oxygen evolution reaction in alkaline medium. An estimation of the electrode's capacity has been calculated from the charging currents and the corresponding roughness factor evaluated. The electrocatalytic activity/stability of the oxide electrodes in alkaline solutions has been analysed through the kinetic parameters. Electronic Publication  相似文献   

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