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Electrochemical oxidation of aniline by a novel Ti/TiO_xH_y/Sb-SnO_2 electrode 被引量:10
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作者 李晓良 徐浩 延卫 《Chinese Journal of Catalysis》 SCIE EI CAS CSCD 北大核心 2016年第11期1860-1870,共11页
Electrochemical oxidation of aniline in aqueous solution was investigated over a novel Ti/TiOxHy/Sb-SnO2 electrode prepared by the electrodeposition method.Scanning electron microscopy,X-ray diffraction,and electroche... Electrochemical oxidation of aniline in aqueous solution was investigated over a novel Ti/TiOxHy/Sb-SnO2 electrode prepared by the electrodeposition method.Scanning electron microscopy,X-ray diffraction,and electrochemical measurements were used to characterize its morphology,crystal structure,and electrochemical properties.Removal of aniline by the Ti/TiOxHy/Sb-SnO2electrode was investigated by ultraviolet-Visible spectroscopy and chemical oxygen demand(COD)analysis under different conditions,including current densities,initial concentrations of aniline,pH values,concentrations of chloride ions,and types of reactor.It was found that a higher current density,a lower initial concentration of aniline,an acidic solution,the presence of chloride ions(0.2wt%NaCl),and a three-dimensional(3D) reactor promoted the removal efficiency of aniline.Electrochemical degradation of aniline followed pseudo-first-order kinetics.The aniline(200 mL of 100mg·L-(-1)) and COD removal efficiencies reached 100%and 73.5%,respectively,at a current density of 20 mA·cm-(-2),pH of 7.0,and supporting electrolyte of 0.5 wt%Na2SO4 after 2 h electrolysis in a 3D reactor.These results show that aniline can be significantly removed on the Ti/TiOxHy/Sb-SnO2electrode,which provides an efficient way for elimination of aniline from aqueous solution. 展开更多
关键词 ANILINE ti/tiOxHy/sb-sno2 electrode Electrochemical oxidation Chloride ions Three-dimensional reactor
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Effect of Sb dopant amount on the structure and electrocatalytic capability of Ti/Sb-SnO_2 electrodes in the oxidation of 4-chlorophenol 被引量:22
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作者 KONG Jiang-tao SHI Shao-yuan +1 位作者 ZHU Xiu-ping NI Jin-ren 《Journal of Environmental Sciences》 SCIE EI CAS CSCD 2007年第11期1380-1386,共7页
Ti/Sb-SnO2 anodes were prepared by thermal decomposition to examine the influence of the amount of Sb dopant on the structure and electrocatalytic capability of the electrodes in the oxidation of 4-chlorophenol. The p... Ti/Sb-SnO2 anodes were prepared by thermal decomposition to examine the influence of the amount of Sb dopant on the structure and electrocatalytic capability of the electrodes in the oxidation of 4-chlorophenol. The physicochemical properties of the Sb-SnO2 coating were markedly influenced by different amounts of Sb dopant. The electrodes, which contained 5% Sb dopant in the coating, presented a much more homogenous surface and much smaller mud-cracks, compared with Ti/Sb-SnO2 electrodes containing 10% or 15% Sb dopant, which exibited larger mud cracks and pores on the surface. However, the main microstructure remained unchanged with the addition of the Sb dopant. No new crystal phase was observed by X-ray diffraction (XRD). The electrochemical oxidation of 4-chlorophenol on the Ti/SnO2 electrode with 5% Sb dopant was inclined to electrochemical combustion; while for those containing more Sb dopant, intermediate species were accumulated. The electrodes with 5% Sb dopant showed the highest efficiency in the bulk electrolysis of 4-chlorophenol at a current density of 20 mA/cm^2 for 180 min; and the removal rates of 4-chlorophenol and COD were 51.0% and 48.9%, respectively. 展开更多
关键词 4-CHLOROPHENOL cyclic voltammogram electrochemical oxidation Sb dopant ti/sb-sno2 electrode
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Enhancing Capacitance Performance of Ti3C2Tx MXene as Electrode Materials of Supercapacitor: From Controlled Preparation to Composite Structure Construction 被引量:14
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作者 Xiaobei Zang Jiali Wang +5 位作者 Yijiang Qin Teng Wang Chengpeng He Qingguo Shao Hongwei Zhu Ning Cao 《Nano-Micro Letters》 SCIE EI CAS CSCD 2020年第6期152-175,共24页
Ti3C2Tx,a novel two-dimensional layer material,is widely used as electrode materials of supercapacitor due to its good metal conductivity,redox reaction active surface,and so on.However,there are many challenges to be... Ti3C2Tx,a novel two-dimensional layer material,is widely used as electrode materials of supercapacitor due to its good metal conductivity,redox reaction active surface,and so on.However,there are many challenges to be addressed which impede Ti3C2Tx obtaining the ideal specific capacitance,such as restacking,re-crushing,and oxidation of titanium.Recently,many advances have been proposed to enhance capacitance performance of Ti3C2Tx.In this review,recent strategies for improving specific capacitance are summarized and compared,for example,film formation,surface modification,and composite method.Furthermore,in order to comprehend the mechanism of those efforts,this review analyzes the energy storage performance in different electrolytes and influencing factors.This review is expected to predict redouble research direction of Ti3C2Tx materials in supercapacitors. 展开更多
关键词 ti3C2Tx MXene CAPACITANCE performance STORAGE mechanism electrode materials SUPERCAPACITOR
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Preparation and application of pharmaceutical wastewater treatment by praseodymium doped SnO_2/Ti electrocatalytic electrode 被引量:12
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作者 韩国成 刘峥 王永燎 《Journal of Rare Earths》 SCIE EI CAS CSCD 2008年第4期532-537,共6页
Praseodymium was selected as a promoter for SnO2/Ti electrode to improve the electrocatalytic performance by electrodeposition in pharmaceutical wastewater treatment; the micrograph and the structure were characterize... Praseodymium was selected as a promoter for SnO2/Ti electrode to improve the electrocatalytic performance by electrodeposition in pharmaceutical wastewater treatment; the micrograph and the structure were characterized by SEM and XRD. Mixture uniform design was used in the optimization of the electrolytic conditions; mathematical model was established according to the rate of wiping COD off, which revealed the relationship between the current intensity, time of electrolysis, the amount of doped Pr, and the ratio of area (SnOJTi:Al). On the basis of the analysis of the empirical model, the optimized parameters had been obtained; the rate of wiping COD off was up to 94.9%, it decreased from 392 to 20 mg/L. Experimental results showed that the electrocatalytic performance of the electrode doped with Pr was superior for the treatment of pharmaceutical wastewater. 展开更多
关键词 SnO2/ti electrode ELECTROCATALYtiC mixture uniform design pharmaceutical wastewater rare earths
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A high activity of Ti/SnO_2-Sb electrode in the electrochemicaldegradation of 2,4-dichlorophenol in aqueous solution 被引量:4
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作者 Junfeng Niu Dusmant Maharana +2 位作者 Jiale Xu Zhen Chai Yueping Bao 《Journal of Environmental Sciences》 SCIE EI CAS CSCD 2013年第7期1424-1430,共7页
Electrochemicaldegradation of2,4-dichlorophenol (2,4-DCP) in aqueous solutionwas investigated over Ti/SnO2-Sb anode. The factors influencing thedegradation rate, such as applied currentdensity (2-40 mA/cm2 ), pH ... Electrochemicaldegradation of2,4-dichlorophenol (2,4-DCP) in aqueous solutionwas investigated over Ti/SnO2-Sb anode. The factors influencing thedegradation rate, such as applied currentdensity (2-40 mA/cm2 ), pH (3-11) and initial concentration (5-200 mg/L)were evaluated. Thedegradation of2,4-DCP followed apparent pseudo first-order kinetics. Thedegradation ratio on Ti/SnO2 -Sb anode attained 〉 99.9% after 20 min of electrolysis at initial 5-200 mg/L concentrations at a constant currentdensity of 30 mA/cm2 with a 10 mmol/L sodium sulphate (Na2SO4 ) supporting electrolyte solution. The results showed that 2,4-DCP (100 mg/L)degradation and total organic carbon (TOC) removal ratio achieved 99.9% and 92.8%, respectively, at the optimal conditions after 30 min electrolysis. Under this condition, thedegradation rate constant (k) and thedegradation half-life (t1/2 )were 0.21 min1 and (2.8 ± 0.2) min, respectively. Mainly carboxylic acids (propanoic acid, maleic acid, propanedioic acid, acetic acid and oxalic acid) weredetected as intermediates. The energy efficiencies for2,4-DCPdegradation (5-200 mg/L)with Ti/SnO2-Sb anode ranged from 0.672 to 1.602 g/kWh. The Ti/SnO2-Sb anodewith a high activity to rapid organic oxidation could be employed todegrade chlorophenols, particularly2,4-DCP inwastewater. 展开更多
关键词 2 4-dichlorphenol ti/SnO2 -Sb electrode electrochemicaldegradation total organic carbon
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Electrochemical oxidation of Rhodamine B with cerium and sodium dodecyl benzene sulfonate co-modified Ti/Pb0_(2)electrodes:Preparation,characterization,optimization,application 被引量:3
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作者 Zhen Wei Xuanqi Kang +3 位作者 Shangyuan Xu Xiaokang Zhou Bo Jia Qing Feng 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2021年第4期191-202,共12页
Regulation of the electronic structure and interface property becomes a major strategy in the preparation of electrocatalyst.This paper reports the synthesis of cerium(Ce)and sodium dodecyl benzene sulfonate(SDBS)como... Regulation of the electronic structure and interface property becomes a major strategy in the preparation of electrocatalyst.This paper reports the synthesis of cerium(Ce)and sodium dodecyl benzene sulfonate(SDBS)comodified Ti/PbO_(2)electrodes(Ti/PbO2CeSDBS).Ce and SDBS could greatly change the electronic structure and interface property of PbO2.Ti/PbO_(2)CeSDBS exhibited excellent electrocatalytic activity and stability in Rhodamine B(RhB)electrocatalytic oxidation reaction.The improved electrocatalytic activity associates with the synergistic effect of electronic and interface factors.In the electrochemical degradation of RhB,the removal efficiencies of RhB and COD are about 0.880 and 0.694 respectively after the electrolysis of 220 min with Ti/PbO_(2)Ce4SDBS40,which are higher than the contrast Ti/PbO_(2)electrodes.In the meantime,the accelerated lifetime of Ti/PbO_(2)Ce4SDBS40 is more than 6.2 times than that of Ti/PbO_(2). 展开更多
关键词 ti/PbO_(2)electrodes Electrocatalytic oxidation
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Electrochemical treatment of COD in biologically pretreated coking wastewater using Ti/RuO2-IrO2 electrodes combined with modified coke 被引量:3
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作者 HE Xu-wen LIU Li-yuan GONG Jing-wen WANG Jian-bing QIN Qiang WANG Hao 《Journal of Coal Science & Engineering(China)》 2011年第4期426-430,共5页
The electrochemical treatment of COD contained in biologically pretreated coking wastewater treated by a three-dimensional electrode system with modified coke as the particle electrode was investigated. And the electr... The electrochemical treatment of COD contained in biologically pretreated coking wastewater treated by a three-dimensional electrode system with modified coke as the particle electrode was investigated. And the electrochemical perromance of the coke modified with various active components was studied. The results show that the coke modified with Fe(NO3)2 has the lowest energy consumption and higher COD removal rate under the same condition, and the modified coke has better surface characteristics for the purpose of this study. In addition, the kinetic constant was also calculated. The study shows that the three-dimensional electrode system with Fe (NO3)z-modified coke can give a satisfactory solution in biologically pretreated coking wastewater. 展开更多
关键词 three-dimensional electrode ti/RuO2-IrO2 anode Fe (NO3)2-modified coke coking wastewater
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Electro-catalytic degradation properties of Ti/SnO_2–Sb electrodes doped with different rare earths 被引量:3
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作者 Fu-Liang Zhu Yan-Shuang Meng Xiu-Yang Huang 《Rare Metals》 SCIE EI CAS CSCD 2016年第5期412-418,共7页
Ti/SnO2–Sb electrode has a good effect on the removal of organic pollutants. But its short service life limits its large-scale application in industry. Electro-catalytic degradation performances and service life of t... Ti/SnO2–Sb electrode has a good effect on the removal of organic pollutants. But its short service life limits its large-scale application in industry. Electro-catalytic degradation performances and service life of the electrode can be significantly improved by doping rare earth(RE) ions into the oxide coating of Ti/SnO2–Sb electrode. Ti/SnO2–Sb electrodes doped with different RE elements(Ce, Dy, La, and Eu) were prepared by the thermal decomposition method at 550 ℃. Electro-catalytic degradation performances of electrodes doped with different RE elements were evaluated by linear sweep voltammetry(LSV) and Tafel curves. During the electrolysis,the conversion of p-nitrophenol was performed with these electrodes as anodes under galvanostatic control. The structures and morphologies of the surface coating of the electrodes were characterized by scanning electron microscope(SEM). The results demonstrate that the electro-catalytic degradation performances of Ti/SnO2–Sb electrodes are improved to different levels by doping different RE ions. Improved Ti/SnO2–Sb electrodes by the introduction of different RE have higher oxygen evolution potential, better electro-catalysis ability, better coverage,and longer electrode life. 展开更多
关键词 ti/SnO_2–Sb electrode Rare earth doped Thermal decomposition method Catalytic degradation
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Photoelectrocatalytic Oxidation of Ethinylestradiol on a Ti/TiO<sub>2</sub>Electrode: Degradation Efficiency and Search for By-Products
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作者 Karla Moreira Vieira Fabiana Maria Monteiro Paschoal +2 位作者 Maria Valnice Boldrin Zanoni Clésia Cristina Nascentes Rodinei Augusti 《Green and Sustainable Chemistry》 2014年第3期151-161,共11页
The degradation of ethinylestradiol (EE, an orally bio-active estrogen) in an aqueous-methanolic solution using a Ti/TiO2 thin-film electrode and UV radiation (a photoelectrocatalytic system) was evaluated. Hence, HPL... The degradation of ethinylestradiol (EE, an orally bio-active estrogen) in an aqueous-methanolic solution using a Ti/TiO2 thin-film electrode and UV radiation (a photoelectrocatalytic system) was evaluated. Hence, HPLC/UV analysis shows that EE (at 0.34 mmol) is totally consumed after 30 minutes of exposure to the photoelectrocatalytic system in the presence of Na2SO4 (0.1 mol·L-1) and with an applied bias potential of +1.0 V versus the Ag/AgCl reference electrode. Moreover, monitoring by direct infusion electrospray ionization mass spectrometry (ESI-MS) and SPME-GC/ MS (solid phase microextraction coupled with gas chromatography-mass spectrometry) reveals that apparently no degradation products are formed under these conditions. Hence, this study demonstrates that the photoelectrocatalytic system can be efficiently used to promote the complete degradation (and likely mineralization) of this hormone under these conditions. 展开更多
关键词 PHOTOELECTROCATALYtiC Oxidation ETHINYLESTRADIOL ti/tiO2 Thin-Film electrode Degradation Efficiency SEARCH for By-Products
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Ti/Sb-SnO2功能电极的制备及电化学处理废水的性能 被引量:12
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作者 陈洁 尚鸿艳 +4 位作者 柴青立 朱清 徐玫瑰 涂洛 周幸福 《环境化学》 CAS CSCD 北大核心 2011年第8期1405-1410,共6页
采用热分解法制备了Ti/Sb-SnO2电极,并用XRD、SEM对电极涂层进行表征.研究了涂层次数对于析氧过电位的影响,应用阳极快速寿命测试法测试了Ti/Sb-SnO2电极的使用寿命,通过极化曲线考察了电极的析氧过电位.采用该电极对甲基橙模拟废水进... 采用热分解法制备了Ti/Sb-SnO2电极,并用XRD、SEM对电极涂层进行表征.研究了涂层次数对于析氧过电位的影响,应用阳极快速寿命测试法测试了Ti/Sb-SnO2电极的使用寿命,通过极化曲线考察了电极的析氧过电位.采用该电极对甲基橙模拟废水进行了电化学降解实验,并考察此电极处理实际废水的效果.研究表明,随着涂层次数的增加,其析氧过电位增加,当涂层次数达到15次时,析氧过电位高达1.8 V(vsSCE),有效抑制了阳极析氧副反应的发生.以Ti/Sb-SnO2电极作为阳极,对甲基橙模拟废水电解10 min后,脱色率接近100%,甲基橙模拟废水降解60 min后,TOC去除率才能达到86.2%,TOC去除率明显滞后于脱色率. 展开更多
关键词 ti/sb-sno2 极化曲线 甲基橙 电解
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镧掺杂对Ti/Sb-SnO_2阳极电催化性能影响的研究 被引量:11
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作者 毕强 薛娟琴 +2 位作者 于丽花 汪丛 于芳蕾 《中国稀土学报》 CAS CSCD 北大核心 2013年第4期465-472,共8页
元素掺杂是一种有效改善电极性能的手段。为了提高钛基锡系形稳阳极的催化活性,La被作为一种改性剂掺杂在Ti/Sb-SnO2电极的涂层中。掺杂改性后电极涂层的形貌通过SEM及XRD进行了检测;并通过EDS检测了涂层中各元素的组成比例;利用电化学... 元素掺杂是一种有效改善电极性能的手段。为了提高钛基锡系形稳阳极的催化活性,La被作为一种改性剂掺杂在Ti/Sb-SnO2电极的涂层中。掺杂改性后电极涂层的形貌通过SEM及XRD进行了检测;并通过EDS检测了涂层中各元素的组成比例;利用电化学阳极极化曲线(LSV)测试了电极的电化学性能。利用掺杂改性后的电极和未改性电极电解处理模拟对硝基苯酚(p-NP)废水,在相同条件下,掺杂La改性后电极处理废水的降解率为92.8%,远高于未改性电极处理废水的降解率(72%)。实验表明,稀土La改性后的Ti/Sb-SnO2电极在处理p-NP废水的优越性相当明显。 展开更多
关键词 ti sb-sno2-La电极 电催化活性 对硝基苯酚废水 稀土
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稀土La掺杂Ti/Sb-SnO_2电极的制备及性能研究 被引量:14
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作者 李善评 曹翰林 胡振 《无机化学学报》 SCIE CAS CSCD 北大核心 2008年第3期369-374,共6页
采用浸渍法制备稀土La掺杂Ti/Sb-SnO2电极,以活性艳红X-3B为目标有机物,考察电极的电催化性能,对制备温度和La掺杂量进行了详细的实验研究,确定了适宜的制备条件为热处理温度450℃、La掺杂量0.7%。采用SEM、EDS、XRD、XPS等分析方法表... 采用浸渍法制备稀土La掺杂Ti/Sb-SnO2电极,以活性艳红X-3B为目标有机物,考察电极的电催化性能,对制备温度和La掺杂量进行了详细的实验研究,确定了适宜的制备条件为热处理温度450℃、La掺杂量0.7%。采用SEM、EDS、XRD、XPS等分析方法表征了电极的形貌、组成及结构。发现掺杂稀土La能降低界面电阻,使Sb元素向电极表面富集,电极中的Sb、La元素分别以Sb4+、La3+的形式存在。对空白电极和La掺杂Ti/Sb-SnO2电极进行了动电位扫描测定,考察了空白电极和La掺杂Ti/Sb-SnO2电极的析氧电位;并采用破损法测定它们的电极寿命。结果表明,La掺杂Ti/Sb-SnO2电极具有更高的析氧电位和更长的电极寿命。 展开更多
关键词 ti/sb-sno2电极 掺杂 LA
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Sb-SnO2/Ti电极对对硝基苯酚电催化氧化影响因素和机理研究 被引量:7
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作者 杨芬 甘复兴 +2 位作者 侯能邦 汪帆 吕泽良 《水处理技术》 CAS CSCD 北大核心 2009年第2期58-61,共4页
以自制掺锑二氧化锡涂层电极为阳极,钛板为阴极,进行了对硝基苯酚溶液的电催化氧化降解试验。系统研究了pH、溶液温度、对硝基苯酚初始浓度、电解质浓度、电流密度等因素对电催化氧化降解效果的影响,并对氧化降解历程进行了讨论。结果表... 以自制掺锑二氧化锡涂层电极为阳极,钛板为阴极,进行了对硝基苯酚溶液的电催化氧化降解试验。系统研究了pH、溶液温度、对硝基苯酚初始浓度、电解质浓度、电流密度等因素对电催化氧化降解效果的影响,并对氧化降解历程进行了讨论。结果表明,pH为3、温度为30℃、电流密度为20mA·cm-2、Na2SO4电解质浓度为0.2mo·lL-1时,对硝基苯酚去除率和TOC的去除率都较高;对硝基苯酚的电催化氧化反应属于电化学燃烧过程。 展开更多
关键词 sb-sno2/ti涂层电极 对硝基苯酚 电催化氧化
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稀土Ce掺杂Ti/Sb-SnO-2电极的电化学性能及应用 被引量:5
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作者 方战强 杨梅 +1 位作者 南俊民 李伟善 《稀有金属材料与工程》 SCIE EI CAS CSCD 北大核心 2011年第9期1638-1642,共5页
采用热分解法制备Ti/Sb-SnO2电极和Ti/Sb-SnO2/Ce电极,采用扫描电子显微镜(SEM)、X射线衍射(XRD)仪和电化学实验技术对电极的表面形貌、物相组成和电化学性能进行表征。结果表明:Ti/Sb-SnO2电极表面形成了SnO2晶胞,经稀土Ce改性后SnO2... 采用热分解法制备Ti/Sb-SnO2电极和Ti/Sb-SnO2/Ce电极,采用扫描电子显微镜(SEM)、X射线衍射(XRD)仪和电化学实验技术对电极的表面形貌、物相组成和电化学性能进行表征。结果表明:Ti/Sb-SnO2电极表面形成了SnO2晶胞,经稀土Ce改性后SnO2晶粒明显细化,SnO2衍射峰强度变强且峰形宽化。Ti/Sb-SnO2/Ce电极峰电流值最大、表面稳定性增强和催化活性明显提高。在最佳工艺条件下,Ti、Ti/Sb-SnO2和Ti/Sb-SnO2/Ce电极对橙黄G目标污染物的去除率分别为46.6%、61.9%和94.9%,且降解过程均符合一级反应动力学模型,速率常数分别为0.0289、0.0633、0.1971min-1,Ti/Sb-SnO2/Ce电极的速率常数分别是Ti/Sb-SnO2电极的3倍,Ti电极的7倍,表明在电极表面涂层中掺杂稀土元素Ce可有效提高电极的性能。 展开更多
关键词 稀土Ce ti/sb-sno2电极 橙黄G 电化学性能
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β-PbO2/Sb-SnO2/Ti电极的苯酚电催化性能研究 被引量:3
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作者 李鹏 赵跃民 +2 位作者 王立章 张延乐 芦兆青 《电化学》 CAS CSCD 北大核心 2014年第5期493-498,共6页
采用刷涂热解-电镀工艺制得了β-PbO2/Sb-SnO2/Ti电极.采用X射线衍射(X-ray Diffraction,XRD)和扫描电镜(Scanning Electron Microscope,SEM)进行物相组成分析与微观形貌观察.Sb-SnO2中间层抑制PbF2的生成,NaF促进二氧化铅晶粒的成... 采用刷涂热解-电镀工艺制得了β-PbO2/Sb-SnO2/Ti电极.采用X射线衍射(X-ray Diffraction,XRD)和扫描电镜(Scanning Electron Microscope,SEM)进行物相组成分析与微观形貌观察.Sb-SnO2中间层抑制PbF2的生成,NaF促进二氧化铅晶粒的成型与分散,消除了β-PbO2聚团.据谢乐公式(Scherrer)计算晶粒尺寸为25.2 nm,电极表面结晶度高达100%.极化测试显示,β-PbO2/Sb-SnO2/Ti电极扩散段电位区、析氧电位和Tafel斜率分别为1.85~2.15 V、2.08 V和0.84,优于β-PbO2/Ti电极的1.40~1.80 V、1.75 V和0.36.使用β-PbO2/Sb-SnO2/Ti、β-PbO2/Ti电极在9 mA·cm-2电流密度对苯酚模拟废水处理240 min,前者COD(Chemical Oxygen Demand)去除率、电流效率(Instant Current Efficiency)高达90.1%和63.28%,优于后者66.9%和44.96%.强化寿命测试表明,β-PbO2/Sb-SnO2/Ti电极与β-PbO2/Ti电极相比延长10倍,工业寿命可达8.6a,有较高的工程应用价值. 展开更多
关键词 sb-sno2中间层 β-PbO2/ti 极化特性 电流效率 加速寿命测试
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Sb-SnO2/Ti纳米涂层电极对对硝基苯酚的电催化氧化 被引量:2
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作者 杨芬 甘复兴 +3 位作者 张学俊 汪帆 刘品华 彭天蔚 《环境科学与技术》 CAS CSCD 北大核心 2008年第7期14-17,共4页
采用改进的热氧化工艺制备了不同掺锑量二氧化锡纳米涂层电极,对电极结构和形貌进行表征,进行了电化学性能测试,并进一步考察了不同掺锑量二氧化锡纳米涂层电极对对硝基苯酚电催化氧化降解行为。研究结果表明:不同掺锑量二氧化锡纳米涂... 采用改进的热氧化工艺制备了不同掺锑量二氧化锡纳米涂层电极,对电极结构和形貌进行表征,进行了电化学性能测试,并进一步考察了不同掺锑量二氧化锡纳米涂层电极对对硝基苯酚电催化氧化降解行为。研究结果表明:不同掺锑量二氧化锡纳米涂层电极析氧电位均在1.70V(vs.SCE)以上,当掺锑量WSb/(WSn+WSb)为6.450wt%时,电极的电催化氧化性能最好,对硝基苯酚的电催化氧化反应属于电化学燃烧过程。 展开更多
关键词 sb-sno2/ti纳米涂层电极 对硝基苯酚 电催化氧化
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电沉积条件对Ti/Sb-SnO_2/β-PbO_2电极性能的影响 被引量:2
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作者 杨卫华 王鸿辉 +1 位作者 付芳 黄婷婷 《华侨大学学报(自然科学版)》 CAS 北大核心 2010年第3期297-301,共5页
采用电沉积法镀制Ti/Sb-SnO2/β-PbO2电极,研究电沉积时间、镀液温度、pH值、NaF浓度,以及电流密度等因素对电极催化活性和稳定性的影响规律.结果表明,当电沉积时间为1 h,镀液温度为60℃,镀液pH值为1,NaF浓度为0.04 mol.L-1,组合电流密... 采用电沉积法镀制Ti/Sb-SnO2/β-PbO2电极,研究电沉积时间、镀液温度、pH值、NaF浓度,以及电流密度等因素对电极催化活性和稳定性的影响规律.结果表明,当电沉积时间为1 h,镀液温度为60℃,镀液pH值为1,NaF浓度为0.04 mol.L-1,组合电流密度为600/400 A.m-2(梯度电流密度)时,电极性能最佳,对苯酚降解率达91.4%,强化寿命为23 h. 展开更多
关键词 电沉积 ti/sb-sno2/-βPbO2电极 电催化活性 稳定性
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Mo掺杂Ti/Sb-SnO_2电极处理含油废水的实验研究
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作者 葛伟青 刘艳娟 +1 位作者 郝玉翠 郝斌 《唐山学院学报》 2013年第6期63-64,共2页
采用自制的Mo掺杂Ti/Sb-SnO2电极处理含油废水,实验结果表明,在电流密度为20mA/cm2,电解时间为50min,极板间距为1.5cm,pH值为6.5的工作条件下,废水COD和浊度的去除率分别达到59.7%和87.0%。
关键词 Mo掺杂ti sb-sno2电极 含油废水 去除效果
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改性Ti/SnO_(2)-Sb电极电催化降解硝基苯研究
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作者 李阳 陈平 +2 位作者 丁家正 李晋 李敏 《应用化工》 北大核心 2025年第10期2547-2552,2559,共7页
硝基苯(NB)作为一种生物毒性高、生化性能差的化工原料,常规氧化剂难以将其分解。通过水热法制备出具有大量三维球形颗粒的Ti/Ti O_(2)-NTs/Sn O_(2)-Sb-Nd-Pt电极,由线性伏安曲线和加速寿命测试得出析氧电位为2.03 V、加速寿命为94.7 ... 硝基苯(NB)作为一种生物毒性高、生化性能差的化工原料,常规氧化剂难以将其分解。通过水热法制备出具有大量三维球形颗粒的Ti/Ti O_(2)-NTs/Sn O_(2)-Sb-Nd-Pt电极,由线性伏安曲线和加速寿命测试得出析氧电位为2.03 V、加速寿命为94.7 h。改性电极在单室电解槽中对NB、COD去除率分别为88.9%和73.5%,去除1 g NB所需电荷量为16.0 Ah,远低于现有文献报道电极;相同反应条件下,双室电解槽阳极室中NB、COD去除率分别为63.7%和55.2%,阴极室中NB、COD去除率分别为89.5%和26.3%,阴极室生成苯胺(248 mg/L)是其矿化率低的主要原因。结果说明,相较于双室电解槽,单室电解槽可以同时利用电催化还原和电催化氧化技术,实现NB的更高效降解。淬灭实验表明电催化降解NB主要通过羟基自由基(·OH)机制,形成中间产物苯酚、硝基苯酚、苯二酚和苯醌,最终转化为CO_(2)和H_(2)O。此外,NB还可通过还原生成亚硝基苯和苯胺,进一步氧化为偶氮苯或联苯胺,最终被矿化。 展开更多
关键词 ti/SnO_(2)-Sb电极 电催化 硝基苯 降解机理
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Ti/TiH_(x)-NiCO_(2)O_(4)阳极电化学氧化氨苄西林的研究
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作者 张媛媛 周川乂 +1 位作者 饶永芳 延卫 《西安交通大学学报》 北大核心 2025年第11期53-62,共10页
针对新型有机污染物氨苄西林长期累积引发的耐药性风险及环境危害问题,基于低成本、高导电性与催化活性的NiCO_(2)O_(4)材料,开发环境友好型电化学氧化新型钛阳极材料。首先,采用电沉积法制备Ti/TiH_(x)-NiCO_(2)O_(4)电极,通过催化活... 针对新型有机污染物氨苄西林长期累积引发的耐药性风险及环境危害问题,基于低成本、高导电性与催化活性的NiCO_(2)O_(4)材料,开发环境友好型电化学氧化新型钛阳极材料。首先,采用电沉积法制备Ti/TiH_(x)-NiCO_(2)O_(4)电极,通过催化活性和线性扫描伏安法、电化学阻抗谱等系统电化学表征工艺参数优化;其次,探究了反应过程中初始pH、电流密度等因素对氨苄西林降解效果的影响;最后,进行了自由基捕获实验和加速寿命测试。结果表明:Ti/TiH_(x)-NiCO_(2)O_(4)电极的最佳制备条件为电流密度20 mA·cm^(-2)、硝酸镍浓度为0.5 mol·L^(-1)、镀膜层数为3层;碱性(pH=9.97)条件下,氨苄西林降解速率最快,20 min内可去除97%的质量浓度为50 mg·L^(-1)的氨苄西林;降解时所用的最佳电流密度为10 mA·cm^(-2),此条件下质量浓度50 mg·L^(-1)的氨苄西林可在40 min内被完全去除;Ti/TiH_(x)-NiCO_(2)O_(4)电极氧化的反应机理是直接氧化(直接电子转移)与间接氧化(羟基自由基作用)作用并存;Ti/TiH_(x)-NiCO_(2)O_(4)阳极的稳定使用寿命超过90 h,表面钝化和活性成分浸出是其主要的失活途径。 展开更多
关键词 电化学氧化 氨苄西林 ti/tiH_(x)-NiCO_(2)O_(4)电极 工艺参数优化 反应机理
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