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1.
TiO2薄膜光催化气相甲醇制氢   总被引:6,自引:0,他引:6  
 在气相连续流动装置中以TiO2薄膜为光催化剂,对甲醇的脱氢反应进行了研究.考察了空速、光照时间和反应温度对甲醇转化率的影响以及产氢量与添加的水蒸气量和甲醇浓度的关系,并将TiO2薄膜催化剂的光催化活性与TiO2纳米粉体催化剂进行了比较.反应动力学研究表明,光催化甲醇脱氢反应为一级反应,其活化能为8.64kJ/mol.探讨了该反应的机理.  相似文献   

2.
污染物甲醛为电子给体Pt/TiO2光催化制氢   总被引:10,自引:1,他引:10  
研究了甲醛为电子给体在Pt/TiO2上光催化生成氢的反应。甲醛经光催化降解产生CO2和甲酸,甲酸可进一步被氧化;甲醛的光催化降解与放氢同时发生,催化剂的最佳Pt负载量为0.5%,甲醛浓度对反应的影响,表观上符合Langmuir-Hinshelwood关系式;碱性条件有利于该反应;在甲醛浓度较低时,甲醇的存在能部分地提高放氢速率,并讨论了可能的反应机理。  相似文献   

3.
甲醇在纳米TiO2作用下进行光催化氧化反应的机理研究   总被引:1,自引:0,他引:1  
以纳米TiO2为催化剂,以主波长为364 nm的汞灯为光源,用气相色谱法分别考察了0.1 mol/L的甲醇、甲醛和甲酸水溶液进行光催化氧化反应的动力学规律.Langmuir-Hinshelwood方程进行核算结果证明,该组反应均为零级反应.用TEM、 XRD、 SSA和XPS对催化剂进行表征.根据XPS的检测结果提出了甲醇光催化氧化的反应机理.TiO2光激发活化时间约为30~60 min,生成物及剩余反应物浓度随时间变化的曲线表明,该反应速率为HCH2OH相似文献   

4.
稀土/二氧化钛催化剂的制备和光催化消除气体污染物   总被引:1,自引:0,他引:1  
为了提高TiO2的光催化性能,用溶胶-凝胶法制备了掺杂稀土元素的RE(RE=La,Ce,PR,Nd)/TiO2催化剂,并对其进行表征.通过光催化消除甲醇气体为模式反应,研究了催化剂的催化性能.探讨稀土掺杂量、活化温度、甲醇的初始浓度对催化剂活性的影响.实验结果表明:由于稀土元素的掺杂,TiO2由锐钛矿向金红石相的转变温度有所提高,热稳定性增加,光生电子和空穴复合率有所降低,催化性能比纯TiO2明显提高.尤其是Pr元素的掺杂对TiO2催化性能的提高最为明显.当甲醇初始浓度为4.5 g·m-3,流速为10.0ml·min-1,催化剂用量为0.1 g时,Pr/TiO2光催化消除甲醇的消除率达100%.  相似文献   

5.
以Cu(NO3)2·3H2O和P25为前躯体,通过简单浸渍法制备了CuO/TiO2光催化剂,利用N2物理吸附、XRD、TEM、UV-vis漫反射光谱分析了催化剂的结构特性。研究了Cu组分的负载量、催化剂在反应液中的分散量、催化剂焙烧温度、反应液中甲醇浓度对CuO/TiO2光催化反应产氢活性的影响,并考察了催化剂的稳定性,提出了该体系光催化反应的机理。结果表明,Cu的适宜负载量为2.0%~7.5%(质量分数),在Cu质量分数2.0%、催化剂焙烧温度350℃、甲醇的体积浓度为10%、催化剂分散量为1.0 g/L时,产氢活性可达到1 022 μmol/(h·g),并且该催化剂具有较好的稳定性。  相似文献   

6.
TiO2光催化降解苯和甲苯的动力学研究   总被引:1,自引:0,他引:1  
刘洋  杨海燕 《化学通报》2007,70(3):222-227
利用溶胶-凝胶法制备了粒径约为13nm、晶型为锐钛矿相和金红石相混晶的TiO2光催化剂,并利用此催化剂对挥发性有机污染物苯和甲苯进行了光催化降解研究,对不同的催化剂用量、光源、污染物的初始浓度以及氧气对光催化反应速率的影响进行了研究。结果表明,光催化降解甲苯和苯的反应均符合假一级动力学方程,光强与光催化降解甲苯的反应的速率常数之间呈指数关系,光波长对光催化降解苯的影响也很显著;随着甲苯和苯初始浓度的增加,光催化反应速率常数降低;氧气加快了光催化降解甲苯和苯的速率;对于光催化降解初始浓度为37.6μmol/L的甲苯而言,催化剂的最佳使用量为0.30g,对于光催化降解初始浓度为9.0μmol/L的苯来说,催化剂的最佳用量为0.10g。  相似文献   

7.
复合催化剂NdPW12O40/TiO2的制备、表征及光催化性能   总被引:13,自引:0,他引:13  
 采用溶胶-凝胶法制备了NdPW12O40/TiO2复合催化剂,并用热重-差热分析、红外光谱、紫外-可见漫反射光谱、荧光发射光谱、扫描电镜和X射线衍射对催化剂进行了表征. 在紫外光照射下,以有机污染物丙酮和甲醇的气相光催化消除为模型反应,考察了催化剂的光催化活性. 结果表明, NdPW12O40的掺杂使TiO2纳米晶粒细化(粒径为11~14 nm), 表面积增大,同时有效抑制了TiO2粒子的团聚. 0.1 g 1%NdPW12O40/TiO2光催化消除初始浓度为6.58 g/m3的丙酮,空时为2.4 s时消除率可达96.74%, 达到排放要求; 催化消除初始浓度为8.82 g/m3的甲醇,空时为2.0 s时消除率可达100%, 实现完全矿化. 与纯的TiO2相比,复合催化剂吸收光的能力增强,吸收带边向长波方向延伸了20 nm.  相似文献   

8.
Pt/TiO2光诱导催化重整乙醇制氢   总被引:4,自引:2,他引:4  
对无氧条件下Pt/TiO2光诱导催化重整乙醇制氢进行了系统的研究,结果表明,乙醇的光催化重整制氢反应受催化剂表面化学状态,反应体系的pH值,浓度的影响较大,而受反应体系温度的影响较小,在运动XRD,XPS,HNMR等技术手段对催化剂和反应产物进行表征,分析的基础上,提出了无氧条件下乙醇光催化重整制氢可能的反应机理。  相似文献   

9.
光催化苯甲醇直接脱氢制苯甲醛是一种利用太阳能合成精细化学品的同时生成氢气的节能途径。负载型半导体CdS基催化剂是该反应的一类典型的光催化剂。文献报道CdS的形貌对光催化水分解的性能有明显的影响,但其在光催化苯甲醇无氧脱氢制苯甲醛反应中的形貌效应研究报道极少。本工作合成了纳米片状(NS)和纳米线状(NW)两种不同形貌的CdS,发现CdS-NS表现出比CdS-NW更高的转化苯甲醇的光催化活性,但这两种催化剂对苯甲醛的选择性非常低。通过在CdS-NS和CdS-NW上负载Au25纳米团簇,光催化苯甲醇无氧脱氢制苯甲醛反应的活性和选择性明显提高,并显著减弱了CdS载体的形貌对催化反应性能的影响。以上结果为设计合成精细化学品的高效光催化剂提供了参考。  相似文献   

10.
纳米Pt/TiO2催化剂上气相CH3OH光催化分解制氢反应的研究   总被引:7,自引:0,他引:7  
利用不同还原方法制备了不同纳米粒度的Pt/tiO2光催化剂,并且用脉冲氢氧滴定法测定了TiO2表面Pt的分散度.在气相连续流动装置中利用纳米Pt/tiO2作为光催化剂,对气相甲醇的脱氢反应进行了研究.研究了添加Pt和不添加Pt的纳米TiO2,Pt负载量、铂的不同还原方法、不同TiO2纳米粒度对气相甲醇光催化分解反应的影响,并对反应气的空速、光照时间、添加水蒸汽、改变甲醇浓度等与光催化分解甲醇制氢的关系进行了研究,在最佳反应条件下,产氢速率达到5.808 mmol/(g·h).研究了反应的动力学,得到该反应为一级反应,求得了该反应的活化能为8.53 kJ/mol,并讨论了反应机理.  相似文献   

11.
TiO2纳米粒子制备方法对其光催化活性的影响   总被引:20,自引:0,他引:20  
尚静  徐自力等 《分子催化》2001,15(4):282-286
分别用胶溶法、金属醇盐水解法和低温水解法制备了TiO2纳米粒子;采用XRD和BET技术,测试了TiO2粒子的粒径、晶型及表面积。以庚烷的气相光催化氧化为探针反应,考察了不同方法、不同温度处理的TiO2粒子的光催化活性。结果表明,以胶溶法和金属醇盐水解法制备的TiO2粒子,随焙烧温度的增加TiO2粒子长大,晶型由锐钛矿向金红石型转变,光催化活性降低。用低温水解法,可在低温下制得金红石型TiO2粒子,但其催化活性很低。说明由原料和制备方法所决定的TiO2粒子的物理化学性质,影响其光催化行为。锐钛矿型TiO2粒子催化活性较金红石型TiO2好。这是由于前者的表面羟基含量较高且带隙能较大的缘故。  相似文献   

12.
The macro-kinetics and pathway of styrene oxidation catalyzed by Co2+-exchanged X, using O2 as oxidant, were investigated. The effects of external diffusion, internal diffusion, the styrene concentration, O2 pressure, the catalyst concentration and the reaction temperature on the styrene oxidation reaction rate were examined. The results showed that the reaction rate of styrene oxidation was 0.19 order with respect to the styrene concentration, 0.64 order with respect to O2 pressure, and zero to first order with respect to the different catalyst concentration. The calculated activation energy for this reaction was 13.79 kJ/mol. On the other hand, the three products in the styrene oxidation reaction were, respectively, used as the reactant to examine the reaction pathway of styrene oxidation. The results revealed that styrene oxidation reaction occurred as two parallel reactions. One was the production of styrene oxide and the other was the production of benzaldehyde and formaldehyde with former partially oxidized to benzoic acid and the latter mostly oxidized to O2 and H2O. Published in Russian in Kinetika i Kataliz, 2009, vol. 50, No. 2, pp. 212–217. The article is published in the original.  相似文献   

13.
Electrocatalytic oxidation of methanol on a glassy carbon disc electrode modified with Ni(II)-1-(2-pyridylazo)-2-naphthol (Ni-PAN) complex and conditioned by potential recycling in a limited range (between 100–600 mV) in 0.1 M NaOH solution, abbreviated as NiPANME, is studied by cyclic voltammetry in alkaline medium. The results are compared with those obtained for a NiO modified glassy-carbon electrode, NiOME, prepared in similar conditions. The findings show that the NiPAN film behaves as an efficient electrocatalyst for the oxidation of methanol in alkaline medium via Ni(III) species with the cross-exchange reaction occurring throughout the layer at a low concentration of methanol and for a thin film of modifier. Effects of the scan rate and methanol concentration on the methanol oxidation are investigated. The cyclic voltammetry and amperometry methods are used to investigate the methanol electrooxidation at the modified electrode. Published in Russian in Elektrokhimiya, 2006, Vol. 42, No. 2, pp. 196–202. The text was submitted by the authors in English.  相似文献   

14.
The hydroxide ion concentration dependence of the methanol oxidation reaction at Pt was studied using microelectrode voltammetry and rotating disk electrode voltammetry. Both methods suggest that the rate of methanol oxidation is limited by hydroxide mass transport at low hydroxide concentrations, while it is inhibited by hydroxide adsorption at high concentrations. It was possible to shift from the transport-limited regime to the inhibitory regime by varying the bulk concentration of hydroxide or by varying mass transport to the electrode. Rotating ring-disk electrode voltammetry was employed to qualitatively assess changes in the diffusion layer pH. The results indicated a decrease in the surface pH during methanol oxidation, as expected, but also that the pH reached a steady state during hydroxide transport limited methanol oxidation.  相似文献   

15.
The reactions of the catalytic oxidation and decomposition of methanol on the atomically smooth and high-defect Pt(111) single-crystal surfaces were studied using in situ temperature-programmed reaction and X-ray photoelectron spectroscopy. It was found that the decomposition of methanol on both of the surfaces occurred via two reaction pathways: complete dehydrogenation to CO and decomposition with the C-O bond cleavage. Although the rate of reaction via the latter pathway was lower than the rate of dehydrogenation by three orders of magnitude, the carbon formed as a result of the C-O bond cleavage can be accumulated on the surface of platinum to prevent the further course of the reaction. It was shown that oxygen exhibits high activity toward the formed carbon deposits. As a result, the rate of methanol conversion in the presence of oxygen in a gas phase increased by one or two orders of magnitude; in this case, CO2 and water appeared in the composition of the reaction products as a result of the oxidation of CO and hydrogen, respectively. The high-defect surface of platinum was more active in the reactions of methanol decomposition and oxidation than the atomically smooth Pt(111) single-crystal surface. On the former, selectivity for the formation of methanol dehydrogenation products in oxygen deficiency was higher than on the latter. The main reaction pathways of the decomposition and oxidation of methanol on platinum were considered.  相似文献   

16.
《Electroanalysis》2004,16(3):199-209
Electrocatalytic oxidation of methanol on a glassy carbon disc electrode modified with Ni(II)‐hematoporphyrin IX, complex and conditioned by potential recycling in a limited range (between 100 and 600 mV vs. SCE) in 0.10 M NaOH solution, abbreviated as NiOHPME(A), was studied by cyclic voltammetry in alkaline medium. The results were compared with those obtained for a NiO modified glassy carbon electrode, NiOME, prepared in similar conditions. The findings show that the NiOHP film at NiOHPME(A) behaves as an efficient electrocatalyst for the oxidation of methanol in alkaline medium via Ni(III) species with the cross‐exchange reaction occurring throughout the layer at a low concentration of methanol and for a thin film of modifier. A plausible mechanism was proposed for catalytic oxidation of methanol at NiOHP modified electrode. Moreover, the effects of various parameters such as the scan rate, methanol concentration, thickness of NiOHP film and the real surface area of modified electrode on the oxidation of methanol were investigated. Finally, it has been shown that the NiOHPME(A) has a long‐term stability toward the oxidation of methanol.  相似文献   

17.
Electrocatalytic oxidation of methanol on a glassy carbon electrode coated with Ni(II)-(1,2-phenylendiamine)2 (GC/NiOPD), conditioned by the potential recycling in a potential range of 100–650 mV (vs. SCE) is studied by cyclic voltammetry in an alkaline medium (0.10 M NaOH). The results show that the NiOPD layer formed at the surface of the electrode behaves as an efficient electrocatalyst for the oxidation of methanol in the alkaline medium via the Ni(III) species with a cross exchange reaction occurring throughout the layer at a low concentration of methanol. The effects of various parameters such as potential scan rates, methanol concentration and NiOPD surface concentration on the electro-oxidation of methanol are also investigated.  相似文献   

18.
A nickel hydroxide-modified nickel electrode (Ni(OH)2/Ni) was successfully prepared by the cyclic voltammetry (CV) method and the electrocatalytic properties of the electrode for formaldehyde and methanol oxidation have been investigated respectively. The Ni(OH)2/Ni electrode exhibits high electrocatalytic activity in the reaction. A new method has been developed for formaldehyde determination at the nickel hydroxide-modified nickel electrode and the experimental parameters were optimized. The oxidation peak current is linearly proportional to the concentration of formaldehyde in the range of 7.0 × 10?5 to 1.6 × 10?2 M with a detection limit of 2.0 × 10?5 M. Recoveries of artificial samples are between 93.3 and 103.5%. The effect of scan rate and methanol concentration on the electrochemical behavior of methanol were investigated respectively.  相似文献   

19.
含钒杂多酸催化发烟硫酸中甲烷液相部分氧化反应   总被引:8,自引:0,他引:8  
 以H5PV2Mo10O40 为催化剂,在发烟硫酸中进行了甲烷液相部分氧化,考察了催化剂用量、反应温度、反应时间和发烟硫酸浓度等工艺条件对反应收率的影响. 甲烷在反应中首先转化为硫酸甲酯,硫酸甲酯随后水解为甲醇. 对于甲烷液相部分氧化反应,发烟硫酸中游离的SO3是非常重要的影响因素. 在工艺条件为催化剂用量7.0 mmol, 反应温度473 K, 反应压力3.5 MPa, 反应时间3 h和发烟硫酸中SO3含量50%时,甲烷转化率可达48.5%, 目的产物甲醇收率为41.5%.  相似文献   

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