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821.
822.
XRD,DTA,比表面测定等结果表明,制备方法对MoO3/ZrO2结构有决定性影响.仲钼酸铵浸渍仅经干燥的Zr(OH)4再经高温焙烧所得团体超强酸MoO3/ZrO2(Ⅰ)与浸渍晶态ZrO2所得部分氧化催化剂MoO3/ZrO2(Ⅱ)的载体形态有明显不同.(1)MoO3/ZrO2(Ⅰ)的比表面数倍于MoO3/ZrO2(Ⅱ);(2)MoO3含量增加时,MoO3/ZrO2(Ⅰ)的比表面逐步增大至一极大值再缓缓下降,而MoO3/ZrO2(Ⅱ)的比表面随MoO3含量增加而单调下降;(3)在MoO3/ZrO2(Ⅰ)中,ZrO2以介稳四方相存在,而在MoO3/ZrO2(Ⅱ)中则是稳定的单斜相.在此基础上研究了事先引入的活性组分在载体织构形成过程中的作用,包括延迟ZrO2晶化,阻碍晶粒长大及与之相关的相变等,并讨论了MoO3/ZrO2(Ⅰ)中MoO3最佳含量的科学含义. 相似文献
823.
A procedure has been developed to coat micron-sized poly(styrene-co-3-trimethoxysilyl propyl methacrylate) microspheres with
a smooth layer of polysiloxane by the hydrolysis and condensation of methyl trimethoxylsilane (MTMS). Firstly, polystyrene
microspheres containing silanol groups were prepared by conventional dispersion polymerization using 3-(trimethoxysilyl) propyl
methacrylate (MPS) as a functional comonomer in an ethanol/water medium. Secondly, the synthesis of the polysiloxane shell
was carried out using a sol–gel process of MTMS. The thickness of the shells can be easily varied with different copolymer
seeds and MTMS feed ratio. When we used copolymer particles with 2.00 μm diameter as seeds, the thickness of the polysiloxane
shells can be varied from 0.10 to 0.18 μm. The core/shell structure of the composite microspheres was characterized by transmission
electron microscope (TEM). 相似文献
824.
Medical laboratories of the public sector as well as of the private sector on the island of Mauritius are preparing for accreditation. The clinical laboratory of the Central Health laboratory of the Ministry of Health and Quality of Life has undergone a pre-assessment by experts of the International Atomic Energy Agency (IAEA) through the aegis of a project targeted to members of the Africa Region. Several shortcomings were identified and respective corrective actions were recommended for implementation within a given time frame. In addition to ensuring the competence of the laboratory, accreditation has various positive aspects such as an increased awareness of the staff to quality and better training opportunities. The pre-assessment exercise has provided a gap analysis, which is an important aspect in the preparation towards accreditation. 相似文献
825.
过渡金属对分子筛担载Pd催化剂上CO氧化性能影响 总被引:2,自引:0,他引:2
分别采用共浸和连续浸渍法制备了一系列添加过渡金属的Pd-M-Ox-NaZSM-5(M=Cr,Mn,Fe,Co,Ni,Cu,Zn,Mo,Zr等)负载型催化剂.以CO氧化为探针反应,考察了不同制备方法对CO氧化性能影响,结果表明共浸法制备的各催化剂其活性明显优于连续浸渍法.详细考察了反应温度、Fe含量、氢气预还原、空速以及水蒸气等对共浸Pd-Fe-Ox-NaZSM-5催化剂上CO氧化行为影响,并应用XRD和XPS等手段对催化剂体相结构和表面状态进行了表征.结果表明:加入Fe2O3可明显提高Pd/NaZSM-5催化剂活性,且催化CO氧化的转化率随反应温度及Fe含量增加而增加;空速增加以及H2预还原作用导致Pd-Fe-Ox-NaZSM-5活性有所降低;催化剂对水蒸气较为敏感.XRD测试结果表明催化剂中Pd组分处于较高分散状态,以红铁矿形式存在的Fe2O3的引入,促进了Pd物种在NaZSM-5载体上的分散.表面XPS分析证实Fe2O3与Pd物种间存在较强的相互协同作用,且催化剂表面Pd物种处于较高氧化状态.Pd的高分散及其与Fe2O3的相互协同作用是共浸催化剂具有高活性的关键因素. 相似文献
826.
应用液/液界面微电极对二苯并18-冠-6(DB18-C-6)辅助推动Ba~(2+)在1,2-二氯乙烷/水(DCE/W)界面转移的电化学过程进行了详细探讨,证明该过程遵循TIC机理,是受扩散控制的可逆过程。通过转移电流和反应物浓度之间的线性关系,测定了Ba~(2+)以及用其它方法难以测定的DB18-C-6。 相似文献
827.
828.
829.
830.
Martí S Andrés J Moliner V Silla E Tuñón I Bertrán J 《Chemistry (Weinheim an der Bergstrasse, Germany)》2003,9(4):984-991
In this paper a deeper insight into the chorismate-to prephenate-rearrangement, catalyzed by Bacillus subtilis chorismate mutase, is provided by means of a combination of statistical quantum mechanics/molecular mechanics simulation methods and hybrid potential energy surface exploration techniques. The main aim of this work is to present an estimation of the preorganization and reorganization terms of the enzyme catalytic rate enhancement. To analyze the first of these, we have studied different conformational equilibria of chorismate in aqueous solution and in the enzyme active site. Our conclusion is that chorismate mutase preferentially binds the reactive conformer of the substrate--that presenting a structure similar to the transition state of the reaction to be catalyzed--with shorter distances between the carbon atoms to be bonded and more diaxial character. With respect to the reorganization effect, an energy decomposition analysis of the potential energies of the reactive reactant and of the reaction transition state in aqueous solution and in the enzyme shows that the enzyme structure is better adapted to the transition structure. This means not only a more negative electrostatic interaction energy with the transition state but also a low enzyme deformation contribution to the energy barrier. Our calculations reveal that the structure of the enzyme is responsible for stabilizing the transition state structure of the reaction, with concomitant selection of the reactive form of the reactants. This is, the same enzymatic pattern that stabilizes the transition structure also promotes those reactant structures closer to the transition structure (i.e., the reactive reactants). In fact, both reorganization and preorganization effects have to be considered as the two faces of the same coin, having a common origin in the effect of the enzyme structure on the energy surface of the substrate. 相似文献