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81.
为提高钌基催化剂的高温稳定性,本文采用液相共浸法制备了一系列Ru-CeO x /TiO2复合氧化物催化剂,探究了CeO2对钌基催化剂在HCl氧化过程中催化性能的影响。通过TEM、XRD、N2吸附-脱附、Raman、XPS等表征手段分析催化剂结构及组成,结合催化剂在HCl催化氧化反应中的催化性能,研究了不同Ce负载量对RuO2/TiO2体系的作用规律。结果表明,引入Ce之后改变了活性相RuO2与载体TiO2的相互作用,形成了Ce-O-Ru结构,对钌基催化剂的活性产生一定的负面作用;但是由于抑制了Ru活性位点的烧结失活,同时高浓度的Ce3+物种有利于氧物种的吸附与活化,使含适量Ce的Ru-CeO x /TiO2复合氧化物催化剂能够在较高温度(370℃、400℃)下保持良好的高温稳定性与催化活性,最终确定摩尔比以Ru∶Ce=1∶1较为适宜。 相似文献
82.
A series of composites of polyindole (PIN) and poly(dimethylsiloxane) (PDMS) were synthesized chemically using FeCl3 as an oxidant agent in anhydrous media. The composites were characterized by FTIR and UV‐visible spectroscopies, thermogravimetric analysis (TGA), differential scanning calorimetry (DSC), scanning electron microscopy (SEM), X‐ray diffraction (XRD), elemental analysis, inductively coupled plasma‐optic emission spectroscopy (ICP‐OES), magnetic susceptibility, stress–strain experiments, and conductivity measurements. The conductivities of PIN at different temperatures were also measured and it was revealed that their conductivities were slightly increased with increasing temperature. Moreover, the freestanding films of PDMS/PIN composites were prepared by casting on glass Petri dishes to examine their stress–strain properties. From thermogravimetric analysis results it was found that PDMS/PIN composites were thermally more stable than PIN. Thermal stabilities of PDMS/PIN composites increased with increasing PIN content. It was found that the conductivities of PDMS/PIN composites depend on the indole content in the composites. © 2011 Wiley Periodicals, Inc. J Appl Polym Sci, 2011 相似文献
83.
Cucurbituril homologues are multi-functional macrocycles that can find applications in many areas and have numerous interesting features setting them apart from the other macrocycles. Among them, the ability of one of the cucurbituril homologues, cucurbit[6]uril (CB6), to catalyze 1,3-dipolar cycloaddition in a regiospecific fashion is truly exceptional. Using this feature, small molecules can be clicked together to form complex structures in a very efficient way. Accordingly, in this article we review recent research involving the use of CB6-catalyzed 1,3-dipolar cycloaddition or the click reaction of CB6 in the construction of supramolecular assemblies including rotaxanes, pseudorotaxanes, polyrotaxanes, polypseudorotaxanes, molecular switches, machines, and nanovalves. 相似文献
84.
针对用户差异化的需求及融合网络局部过载造成视频业务中断的问题,提出一种负载均衡的视频传输机制.首先根据光纤无线接入网络的前端结构特点来改进分裂多径路由协议以获得路径选取模型;其次计算视频在无线侧的延迟和路径差分延迟,并确定其阈值作为用户体验质量约束;最后在考虑用户体验质量的同时,采用多级惩罚函数的粒子群优化算法进行视频... 相似文献
85.
Column Fractionation of Canola Oil Deodorizer Distillate Using Supercritical Carbon Dioxide 总被引:1,自引:0,他引:1
Özlem Güçlü-Üstündağ Feral Temelli 《Journal of the American Oil Chemists' Society》2007,84(10):953-961
Semi-continuous column fractionation of canola oil deodorizer distillate using supercritical CO2 (SCCO2) was carried out to determine the feasibility of value-added processing of this feed material for the recovery of bioactive
components such as sterols and tocopherols and to determine the effect of operating conditions [pressure (20, 25 MPa using
a temperature gradient of 70–100 °C), temperature (70, 100 °C) and a linear temperature gradient (70–100 °C at 25 MPa)] on
extract yield and separation efficiency. Total extract yield increased significantly (p ≤ 0.05) with pressure, whereas at isobaric conditions (25 MPa) the highest yield was obtained at the lowest temperature tested
(70 °C). Fractionation efficiency was reflected in the composition of fractions and was affected by operating conditions.
Residue composition was determined by extract yield in addition to selectivity. Use of the thermal gradient (70–100 °C) decreased
the content of volatiles, free fatty acids and tocopherols while increasing sterol content significantly (p ≤ 0.05) to a level of 40% (GC area %) in the residue obtained at 25 MPa. The findings indicate the potential of canola oil
deodorizer distillate as a source of sterols and warrant further research on the countercurrent column fractionation to improve
the separation efficiency. 相似文献
86.
Deniz Ozdil Halil Murat Aydin 《Journal of chemical technology and biotechnology (Oxford, Oxfordshire : 1986)》2014,89(12):1793-1810
Recent decades have seen great advancements in medical research into materials, both natural and synthetic, that facilitate the repair and regeneration of compromised tissues through the delivery and support of cells and/or biomolecules. Biocompatible polymeric materials have become the most heavily investigated materials used for such purposes. Naturally‐occurring and synthetic polymers, including their various composites and blends, have been successful in a range of medical applications, proving to be particularly suitable for tissue engineering (TE) approaches. The increasing advances in polymeric biomaterial research combined with the developments in manufacturing techniques have expanded capabilities in tissue engineering and other medical applications of these materials. This review will present an overview of the major classes of polymeric biomaterials, highlight their key properties, advantages, limitations and discuss their applications. © 2014 Society of Chemical Industry 相似文献
87.
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89.
Amanda Broska da Cruz Deniz Renata Bachmann Guimarães Valt Maria José Jerônimo de Santana Ponte Haroldo de Araújo Ponte 《化学工程与技术》2020,43(7):1393-1401
Transport phenomena are investigated which are involved in the electrokinetic remediation process used for removing vanadium from deactivated catalysts from oil catalytic cracking that are currently allotted to cement plants and class-I landfills. Variables such as the concentration of electrolyte, electric potential, and applied electric current were evaluated in order to determine the effects produced by electroosmosis, diffusion, hydraulic gradient, and electromigration on the removal of vanadium from the catalyst. It was observed that migration is the most relevant phenomenon in the remediation tests, and for the best remediation condition, the migratory flow accounted for about 87 % of the vanadium removal. 相似文献
90.
Purushottam B. Tiwari Prem P. Chapagain Ahmed Seddek Thirunavukkarasu Annamalai Aykut Üren Yuk-Ching Tse-Dinh 《ChemMedChem》2020,15(7):623-631
A topoisomerase-DNA transient covalent complex can be a druggable target for novel topoisomerase poison inhibitors that represent a new class of antibacterial or anticancer drugs. Herein, we have investigated molecular features of the functionally important Escherichia coli topoisomerase I (EctopoI)-DNA covalent complex (EctopoIcc) for molecular simulations, which is very useful in the development of new antibacterial drugs. To demonstrate the usefulness of our approach, we used a model small molecule (SM), NSC76027, obtained from virtual screening. We examined the direct binding of NSC76027 to EctopoI as well as inhibition of EctopoI relaxation activity of this SM via experimental techniques. We then performed molecular dynamics (MD) simulations to investigate the dynamics and stability of EctopoIcc and EctopoI-NSC76027-DNA ternary complex. Our simulation results show that NSC76027 forms a stable ternary complex with EctopoIcc. EctopoI investigated here also serves as a model system for investigating a complex of topoisomerase and DNA in which DNA is covalently attached to the protein. 相似文献