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1.
通过水浴浸泡制备了磷钨酸(PWA)修饰的活性炭(PWA/C),再通过液相还原法将Pd沉积于PWA/C复合载体上制备了Pd-PWA/C催化剂. 采用X射线能量色散(EDS)谱、X射线衍射(XRD)谱、透射电子显微镜(TEM)和X射线光电子能谱(XPS)对产物进行表征. 结果表明,磷钨酸修饰活性炭不仅能有效降低Pd纳米粒子的粒径,而且与Pd纳米粒子间发生了强烈作用. 电化学测试结果显示,Pd-PWA/C催化剂对甲酸氧化的电催化活性和稳定性均远优于Pd/C催化剂,这是由于Pd与PWA/C间的强烈作用既能有效降低CO在催化剂上的吸附强度和吸附量,又能降低甲酸分解的速率,从而减弱CO的毒化作用.  相似文献   

2.
通过水浴浸泡制备了磷钨酸(PWA)修饰的活性炭(PWA/C), 再通过液相还原法将Pd沉积于PWA/C复合载体上制备了Pd-PWA/C催化剂. 采用X射线能量色散(EDS)谱、 X射线衍射(XRD)谱、 透射电子显微镜(TEM)和X射线光电子能谱(XPS)对产物进行表征. 结果表明, 磷钨酸修饰活性炭不仅能有效降低Pd纳米粒子的粒径, 而且与Pd纳米粒子间发生了强烈作用. 电化学测试结果显示, Pd-PWA/C催化剂对甲酸氧化的电催化活性和稳定性均远优于Pd/C催化剂, 这是由于Pd与PWA/C间的强烈作用既能有效降低CO在催化剂上的吸附强度和吸附量, 又能降低甲酸分解的速率, 从而减弱CO的毒化作用.  相似文献   

3.
Pd/NaZSM-5负载型催化剂上CO完全氧化研究   总被引:7,自引:2,他引:5  
毕玉水  刘建福  吕功煊 《化学学报》2002,60(9):1624-1629
采用浸渍法制备了一系列Pd/NaZSM-5负载型催化剂。考察了焙烧温度、反应温 度、Pd含量及预还原等对CO氧化性能的影响。结果表明:制备条件和反应条件对催 化活性均有较大影响,催化剂的活性随着焙烧温度的增加而降低,随反应温度及 Pd含量的增加而增加。XRD,TEM结果表明催化剂中Pd组分处于高分散状状;表面 XPS分析证实催化剂表面Pd物种PdO_2和PdO在反应过程中发生明显的表面化学变化 ,高价Pd物种随反应的进行逐步被CO还原为低价Pd物种,催化剂活性下降与Pd物种 被还原有关。H_2预还原作用也导致催化剂活性有所下降。  相似文献   

4.
铈改性NaZSM-5分子筛担载Pd催化剂上CO氧化性能研究   总被引:3,自引:0,他引:3  
毕玉水  吕功煊 《化学学报》2003,61(4):635-640
以浸渍法制备了一系列添加CeO2的Pd-Ce/NaZSM-5负载型催化剂.以C0氧化为 模型反应,考察了反应温度、Ce含量、预还原、空速及水蒸气等对C0氧化性能的影 响,并利用XIlD和朋等手段对催化剂体相及表面结构进行了表征.结果表明:加入 CeO2作助剂可明显提高催化剂的活性,且催化转化率随着反应温度及Ce含量的增加 而增加;随着空速的增加而降低;催化剂对水蒸气不敏感,在水蒸气存在的条件下 反应可连续进行720h以上保持C0完全转化;H2预还原作用使催化剂活性有所提高. XRD测试结果表明,催化剂中Pd组分处于高分散状态,Ceob的引入促进了N物种在 NaZSM—5载体上的分散.表面XPS分析证实催化剂表面Pd物种处于较高的氧化状态 ,且CeO2与Pd物种间存在协同作用.Pd的高分散及其与CeO2的相互作用是催化剂具 有高活性的关键.  相似文献   

5.
嵌入Y型沸石中Pd簇的合成及其催化性能   总被引:8,自引:0,他引:8  
以[Pd(NH3)4](NO3)2·H2O作为离子交换前驱物,应用微波交换-氢还原法合成了嵌入Y型沸石中的Pd簇合物。XRD和PXS测试结果表明,在合成过程中,焙烧阶段的温度是影响Pd原子进入沸石体相形成Pd簇的主要因素。在焙烧温度240℃和还原温度210℃的制备条件下,Pd含量高达6.13%(质量分数)也能进入Y型沸石体相形成Pd簇。在相同条件下制得Pd含量仅为0.410%(质量分数)的样品,在  相似文献   

6.
研究了氧化还原预处理对溶胶-凝胶法制备的CeO2-TiO2复合氧化物负载Pd催化剂上CO低温氧化性能的影响,并对催化剂的稳定性进行了考察。H2-TPR结果表明,83 ℃的耗氢峰是PdO和载体中CeO2共同还原的结果,高温还原后Pd与载体之间相互作用加强。经高温氧化(500 ℃)低温还原(150 ℃)预处理的催化剂CO低温氧化活性最好,在反应气组成为0.5% CO+1.6% O2+6.0%N2+Ar,空速为30 000 mL·g-1·h-1,程序升温反应显示CO完全转化温度为48 ℃,这种预处理方式能够形成适宜的载体与金属间相互作用。稳定性实验在室温下进行,反应气组成为0.6% CO+14.7% O2+55.3%N2+Ar,Pd/CeO2-TiO2催化剂具有较好的低温反应稳定性,100%CO转化率可持续12 h。  相似文献   

7.
磷钨酸对甲酸在碳载Pd催化剂上电氧化的促进作用   总被引:1,自引:1,他引:1  
利用X射线能量色散(EDS)谱、X射线衍射(XRD)谱和电化学等技术研究了电解液中磷钨酸(PWA)对直接甲酸燃料电池(DFAFC)中甲酸在碳载Pd(Pd/C)催化剂上电氧化的促进作用. 研究结果发现, 因吸附的PWA能促进甲酸在Pd/C催化剂上的脱氢而加速了甲酸的电氧化. 这种促进作用与PWA的浓度有关, 当PWA的浓度低于0.15 mg/mL时, 该促进作用随PWA的浓度的增加而增加; 当PWA的浓度高于0.15 mg/mL时, 过多吸附的PWA会覆盖过多Pd/C催化剂的活性点而使其电催化性能随PWA的浓度增大而降低. 因此, 当电解液中PWA的浓度为0.15 mg/mL时, Pd/C催化剂对甲酸氧化的电催化性能最好.  相似文献   

8.
Pd/C catalyst used for the Pd/C gas diffusion cathodes was prepared by hydrogen reduction method and formaldehyde reduction method, and characterized by X-ray diffraction (XRD), transmission elec- trode microcopy (TEM), X-ray photoelectron spectroscopy (XPS), and cyclic voltammetry (CV) tech- niques. The electrochemical degradation of 4-chlorophenol was investigated in the diaphragm elec- trolysis system, aerating firstly with hydrogen gas then with air, using three different kinds of gas dif- fusion cathode. The results indicated that the self-made Pd/C gas diffusion cathode can not only re- ductively dechlorinate 4-chlorophenols by aerating hydrogen gas, but also accelerate the two-electron reduction of O2 to hydrogen peroxide (H2O2) by aerating air. Therefore, the removal efficiency of 4-chlorophenol by using Pd/C gas diffusion cathode is better than that of the C/PTFE gas diffusion cathode (no catalyst). The catalytic activity of Pd/C catalyst prepared by hydrogen reduction method is higher than that prepared by formaldehyde reduction method. The stability of the Pd/C gas diffusion cathodes is good. Therefore, both the removal efficiency and the dechlorination degree of 4-chlorophenol reached about 100% after 60 min, and the removal efficiency of 4-chlorophenol in terms of chemical oxygen demand (COD) in the cathodic compartment reached 87.4% after 120 min.  相似文献   

9.
Pd-based catalysts are the most widely used for CO oxidation because of their outstanding catalytic activity and thermal stability. However, fundamental understanding of the detailed catalytic processes occurring on Pd-based catalysts under realistic conditions is still lacking. In this study, we investigated CO oxidation on metallic Pd clusters supported on Al2O3 and SiO2. High-angle annular dark-field scanning transmission electron microscopy revealed the formation of similar-sized Pd clusters on Al2O3 and SiO2. In contrast, CO chemisorption analysis indicated a gradual change in the dispersion of Pd (from 0.79 to 0.2) on Pd/Al2O3 and a marginal change in the dispersion (from 0.4 to 0.24) on Pd/SiO2 as the Pd loading increased from 0.27 to 5.5 wt %; these changes were attributed to differences in the metal-support interactions. Diffuse reflectance infrared Fourier-transform spectroscopy revealed that fewer a-top CO species were present in Pd supported on Al2O3 than those in Pd supported on SiO2, which is related to the morphological differences in the metallic Pd clusters on these two supports. Despite the different dispersion profiles and surface characteristics of Pd, O2 titration demonstrated that linearly bound CO (with an infrared signal at 2090 cm−1) reacted first with oxygen in the case of CO-saturated Pd on Al2O3 and SiO2, which suggests that a-top CO on the terrace site plays an important role in CO oxidation. The experimental observations were corroborated by periodic density functional calculations, which confirmed that CO oxidation on the (111) terrace sites is most plausible, both kinetically and thermodynamically, compared to that on the edge or corner sites. This study will deepen the fundamental understanding of the effect of Pd clusters on CO oxidation under reaction conditions.  相似文献   

10.
The liquid-phase alkylation of phenol with benzyl alcohol was carried out using zirconia-supported phosphotungstic acid (PTA) as catalyst. The catalysts with different PTA loadings (5–20 wt.% calcined at 750 °C) and calcination temperature (15 wt.% calcined from 650 to 850 °C) were prepared and characterized by 31P MAS NMR and FT-IR pyridine adsorption spectroscopy. The catalyst with optimum PTA loading (15%) and calcination temperature (750 °C) was prepared in different solvents. 31P MAS NMR spectra of the catalysts showed two types of phosphorous species, one is the Keggin unit and the other is the decomposition product of PTA and the relative amount of each depends on PTA loading, calcination temperature and the solvent used for the catalyst preparation. The catalysts with 15% PTA on zirconia calcined at 750 °C showed the highest Brönsted acidity. At 130 °C and phenol/benzyl alcohol molar ratio of 2 (time, 1 h), the most active catalyst, 15% PTA calcined at 750 °C gave 98% benzyl alcohol conversion with 83% benzyl phenol selectivity.  相似文献   

11.
在Pd/TiO2上CO的光催化增强效应   总被引:4,自引:0,他引:4  
在Pd(2%)/TiO2上CO催化氧化的研究中发现:室温下, 以黑光灯(λ=365 nm)照时, CO的氧化活性比暗态显著提高,产生了明显的光催化增强效应(两者速率常数比约为15).但在TiO2上,无论暗态还是黑光灯(λ=365 nm)照,均无CO氧化反应发生.这可能是由于氧分子解离吸附时的键能减弱,使Pd表面氧原子(或O-)浓度增加和氧原子的溢流(oxygen spillover)两种效应结合产生的.  相似文献   

12.
采用密度泛函理论(DFT)计算模拟Pd平板和Pd_(38)团簇上的CO催化氧化过程,分析了CO在Pd催化剂表面上的氧化反应机理。结果表明,在Pd_(38)团簇模型上CO催化氧化的决速步骤是O_2的解离,反应能垒为0.65 eV,而在Pd平板模型上的决速步骤是CO的氧化,其反应能垒为0.87 eV。对比决速步骤的活化能发现,CO在Pd_(38)团簇上的氧化反应更易进行,说明CO氧化更易在小颗粒催化剂表面上进行,即Pd催化剂的活性与活性组分颗粒大小相关,活性组分颗粒越小,暴露的活性位点越多,其催化活性也越高。  相似文献   

13.
How colored Gaussian noise (CN) affects the intrinsic stochastic oscillations (ISO) of CO oxidation on a nm-sized Pd particle is studied. It is found that the optimal ISO can be enhanced not only by a CN with appropriate noise intensity, but by a CN with appropriate correlation times. Moreover, the optimal ISO can be most greatly enhanced by the CN when the noise intensity or the correlation time is optimal. This result shows that external noise may, via its interplay with the internal noise of the system, play a constructive role in the ISO of the system, and the ISO can employ the external noise to reach a best oscillation performance. Supported by the Science Foundation of Ludong University (23140301, L20072805)  相似文献   

14.
碳酸二甲酯(DMC)是一种重要的工业产品, 被广泛应用于制备锂离子电池溶剂和聚碳酸酯等化工产品. 一氧化碳(CO)酯化反应制DMC是一种新型的碳一技术路线, 具有成本低、反应效率高和安全等优势, 近年来引起了广泛的研究兴趣. 许多研究表明, Pd单位点催化剂(Pd SSCs)可以催化该反应高选择性合成DMC, 却易被反应物CO还原成Pd纳米颗粒, 从而导致DMC选择性快速下降. 因此, 设计合成稳定的Pd SSCs显得尤为重要. 通常, 研究人员通过增加Pd原子与载体之间的相互作用来稳定催化剂. 在各种载体中, 金属有机框架材料(MOFs)由于具有比表面积大、稳定性好、可修饰性强等特点, 是稳定单金属位点的理想载体. 选择自身较为稳定且易修饰的UiO-66-NH2作为载体, 采用后合成修饰的方法将吡啶-2-甲醛引入UiO-66-NH2的孔中. 吡啶-2-甲醛通过与氨基进行反应连接在UiO-66-NH2的框架上, 进而创造了相近的双氮原子位点共同鳌合Pd原子, 记为PdII-UiO-66-X%. 该催化剂在反应中, 展现出极高的DMC选择性, 同时也具备良好的催化稳定性, 在70 h的连续评价中, 依旧能够保持85%以上的DMC选择性. 该工作这一发现对构筑稳定Pd SSCs高选择性催化合成DMC提供了新思路.  相似文献   

15.
An efficient and convenient method for the direct hydroalkylation of styrene and norborene with 1,3-diketones has been developed by using 12-phosphotungstic acid as an eco-friendly, and air- and moisture-tolerable catalyst. Reactions proceeded without any solvent, providing a clean access to alkylated 1,3-diketones.  相似文献   

16.
利用X射线能量色散(EDS)谱、X射线衍射(XRD)谱、透射电子显微镜(TEM)和电化学等技术研究了在电解液中添加乙二胺四甲叉膦酸(EDTMP)对甲酸在Pd/C催化剂上电氧化性能的影响. 结果表明, 当EDTMP添加的浓度为0.5 mmol/L时, Pd/C催化剂对甲酸氧化的电催化活性和稳定性最好. 这主要归结于吸附在Pd/C催化剂表面的EDTMP不但能通过基团效应降低CO的吸附量, 还能抑制Pd/C催化剂催化甲酸分解的速率, 从而减少了CO的毒化作用. 但当EDTMP的浓度大于0.5 mmol/L时, 吸附过多的EDTMP反而会占据Pd的活性位点, 降低催化作用.  相似文献   

17.
为了提高直接甲酸燃料电池(DFAFC)中炭载Pd(Pd/C)催化剂对甲酸氧化的电催化性能,用回流法制备了磷钼酸(PMA)修饰的炭载Pd(PMA-Pd/C)催化剂.并用谱学技术和电化学技术表征了催化剂的组分和结构,发现PMA通过化学作用而牢固地固定在Pd表面.由于PMA-Pd/C催化剂能抑制甲酸的自分解,因此,PMA-Pd/C催化剂对甲酸氧化的电催化性能优于Pd/C催化剂.  相似文献   

18.
采用改进的Hummers法氧化石墨后,对其超声剥离成氧化石墨烯水溶液,继之通过乙二醇还原Pd金属离子和氧化石墨烯,得到了还原态氧化石墨烯(RGO)负载Pd纳米催化剂,并用于甲酸的电催化氧化.透射电子显微镜和X射线衍射结果显示:负载于RGO上的Pd粒子平均粒径为3.8nm,其优先在RGO的褶皱和边缘处生长.电化学测试表明:RGO上残存的含氧基团降低了Pd催化剂受CO毒化的程度,Pd/RGO催化剂表现出了较商业化Pd/C更高的电催化活性和更好的稳定性.  相似文献   

19.
炭载体改性对炭载Pd催化剂电催化性能的影响   总被引:3,自引:0,他引:3  
研究了硝酸和氨水改性处理对活性炭表面基团、炭载Pd纳米粒子的形态及其对甲酸氧化电催化性能的影响.傅里叶变换红外(FT-IR)光谱、X射线光电子能谱(XPS)及Boehm滴定结果表明,硝酸和氨水处理分别增加了活性炭表面含氧基团和含氮基团的含量.透射电镜(TEM)及电化学测试显示,活性炭经硝酸处理后,表面负载的Pd粒子粒径降低,催化剂对甲酸氧化活性和稳定性提高.进一步用氨水处理后,Pd粒子的粒径没有明显变化,但催化剂中Pd0的含量增加,催化剂性能进一步提高.  相似文献   

20.
Dimerization of the trimethyl ether of resveratrol catalyzed by phosphotungstic acid gave two tetralins and a naphthalene derivative. The structure of the tetralins was obtained by X-ray crystallography and confirms the reported stereochemical configuration of resformicol A and B.  相似文献   

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