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排序方式: 共有37条查询结果,搜索用时 171 毫秒
1.
采用等体积分浸法制备Pt-Sn/Al2O3蜂窝催化剂(Pt含量仅为0.06wt%).运用X射线衍射(XRD)、透射电镜(TEM)等技术对催化剂理化性质进行表征,并选取4种代表性C6烃(苯、环己酮、环己烷和正己烷)对催化剂性能进行评价.活性评价试验中,Pt/Sn比为3/1催化效果最佳.此时4种C6烃转化率达到90%的温度(T90)较Pt催化剂均降低约20℃,其原因在于Sn可将Pt分割为较小的团簇提高Pt分散度.寿命评价试验以环己烷为例同Pt-Sn蜂窝催化剂连续运行720h,催化活性无明显变化,其原因在于,Sn可有效抑制其粒径增长;Pt3Sn合金降低表面对C6烃的吸附,减少催化剂表面积炭.  相似文献   
2.
通过水热法制备了暴露(001)晶面的Bi2WO6纳米片,利用光还原法将Pt纳米颗粒负载于其表面.选择苯甲醇氧化和罗丹明B(RhB)降解为探针反应,评价了催化剂的光催化性能.在苯甲醇氧化实验中,Pt负载暴露001晶面的Bi2WO6样品的苯甲醇转化率为20.7%,约为未负载样品的2倍.在RhB降解实验中,Pt负载样品在光照40min后对RhB的矿化率可达81.1%,而未负载样品RhB矿化率仅为55.8%,表明Pt负载样品具有更优的降解速率和矿化能力.催化剂性能的提升归因于高能晶面暴露和Pt负载的协同作用.Pt纳米颗粒的负载作为助催化剂增加了催化剂表面的活性位点,同时提高了晶面光生电子空穴对的分离和迁移效率.  相似文献   
3.
上海市大气气溶胶中铂元素污染状况调查   总被引:3,自引:0,他引:3  
为调查上海市大气气溶胶中铂元素的污染状况,用PM10-2型可吸入颗粒物采样器采集了上海市大气气溶胶样品,采样时间分别为2003-12~2005-12.用微波消解密闭系统消解样品,电感耦合等离子体质谱法(ICP-MS)测定了大气气溶胶中Pt的含量.分析结果表明,同清洁对照点((0.65±0.16)pg·m-3)相比,上海市中心区大气中Pt((1.69±0.93)pg·m-3)的污染是明显的;装有三元催化转化器的汽车尾气中Pt的含量均在100ng·g-1以上,远远高于大气气溶胶样品(人民广场平均值21.7ng·g-1);不同交通密度区Pt含量分析结果表明,Pt含量与交通密度紧密相关,这说明装有三元催化器的汽车尾气是气溶胶中Pt污染的主要来源;此外,上海市大气气溶胶中Pt呈现季节性变化,并受气象条件影响.同世界其它城市相比,上海市气溶胶中铂元素污染程度还较低,但是这种潜在的重金属污染应该引起重视.  相似文献   
4.
采用前掺杂法、沉积-沉淀法和浸渍法制备了氧化锰八面体分子筛(OMS-2)负载Pt催化剂(Pt/OMS-2),对所制催化剂进行了结构和织构表征。并研究了不同制备方法和沉积-沉淀法中不同制备(Pt负载量和溶液的pH值)对Pt/OMS-2催化氧化CO性能的影响。结果表明,沉积-沉淀法制备的Pt/OMS-2-DP催化剂活性最好(T100=100℃)。这与Pt/OMS-2-DP催化剂中Pt颗粒大小及OMS-2载体与Pt之间存在强相互作用有关。Pt负载量明显影响Pt/OMS-2-DP催化剂的催化活性,3Pt/OMS-2-DP催化剂(Pt=3.0 wt%)催化活性最高,这是由于适当Pt负载量,Pt颗粒较小,并与载体OMS-2的相互作用较强,能较好地活化OMS-2晶格氧。pH值对Pt/OMS-2-DP催化剂催化性能影响较大,这与OMS-2的等电点和Pt在不同溶液中存在不同Pt配位体形式有关。  相似文献   
5.
无火焰原子吸收法测定岩矿及煤——金聚团中Pt和Pd   总被引:1,自引:0,他引:1  
采用C410哌啶树脂分离除去溶液中的贱金属元素,痕量贵金属Pt和Pd被定量吸附,交换最佳酸度为0.5-1mol/L介质,树脂的Pt、Pd用3%硫脲-0.1mol/LHCl热溶液定量脱脱。本法可用于岩矿和煤-金聚团(CGA)焙灰中基本元素的分离,测定痕量Pt和Pd。  相似文献   
6.
Pt catalysts with nitrogen-doped graphene oxide (GO) as support and CeO2 as promoter were prepared by impregnation method,and their catalytic oxidation of formaldehyde (HCHO) at room temperature was tested.The Pt-CeO2/N-rGO (reduced GO) with a mass fraction of 0.7% Pt and 0.8%CeO2 exhibited an excellent catalytic performance with the 100% conversion of HCHO at room temperature.Physicochemical characterization demonstrated that nitrogendoping greatly increased the...  相似文献   
7.
IntroductionTheprintinganddyeingindustryhasahighpotentialenvironmentalimpact,principallyduetothereleaseoflargevolumesofwastewaterthatcontainhighorganicchargeandstrongcoloration .Therearemanyprocessestotreatwastewaterfromprintinganddyeingindustry ,butth…  相似文献   
8.
A photoelectrochemical process in the degradation of an azodye(Acid Orange II)on a Pt/TiO2 film electrode was investigated.By using the glass device and the voltage stabilized source of direct current,decolorization ratios higher than 78% were observed during a period of 5h.Comparing this value with the sum of the decolorization ratios obtained by a sole application of electrochemical(lower than 3%)and photochemical(about 23%)procedures, a significant synergic effect between both processes was observed.The effects of adscititious voltage and pH value on the decolorization ratios were obvious while the effect of the amount of aeration was minor.  相似文献   
9.
Micro-mesoporous ZSM-5 zeolites were obtained by the post-treatment of tetrahydroxy ammonium hydroxide (TPAOH) solution with different concentration. The hierarchical pore structure formed during the desilication process facilitates the dispersion of Pt nanoparticles and Pt/ZSM-5 catalysts exhibit rather high catalytic activity for the deep oxidation of various VOCs at low temperature. The catalyst treated with TPAOH of 0.1 mol/L (Pt/ZSM-5(0.1)) shows the lowest degradation temperature (T90%) of 128 and 142°C, respectively for benzene and n-hexane. Compared with the untreated Pt/ZSM-5 catalyst, the abundant mesopores, small Pt particle size and finely dispersed Pt contribute to the superior catalytic activity and stability of the Pt/ZSM-5 catalysts for VOCs removal. More importantly, the existence of H2O in the feed gases hardly affected the activity of Pt/ZSM-5(0.1) catalyst at the low reaction temperature of 128°C, which is very important for VOCs low-temperature removal in the future practical applications.  相似文献   
10.
A 0.5 wt.% Pt/TiO2 catalyst was prepared and used for the low-temperature selective catalytic reduction(SCR) of NO with C3 H6 in the presence of excess oxygen.The effects of Pt loading and O2 concentration on Pt/TiO2 catalytic performance for low-temperature SCR were investigated.It was found that optimal Pt loading was 0.5 wt.% and excess O2 favored low-temperature SCR of NOx.The mechanism of low-temperature SCR of NO with C3 H6 was investigated with respect to the behavior of adsorbed species over Pt/TiO2 at 150°C using in situ DRIFTS.The results indicated that surface nitrosyl species(Pt δ+-NO and Ti 3+-NO) and Pt 2+-CO are main reaction intermediates during the interactions of NO,C3 H6 and O2.A simplified NO decomposition mechanism for the low-temperature SCR of NO with C3 H6 was proposed.  相似文献   
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