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991.
The industrial silica fume pretreated by nitric acid at 80 °C was re-used in this work. Then, the obtained silica nanoparticles were surface functionalized by silane coupling agents, such as(3-Mercaptopropyl) triethoxysilane(MPTES) and(3-Amincpropyl) trithoxysilane(APTES). Some further modifications were studied by chloroaceetyl choride and 1,8-Diaminoaphalene for amino modified silica. The surface functionalized silica nanoparticles were characterized by Fourier transform infrared(FI-IR) and X-ray photoelectron spectroscopy(XPS). The prepared adsorbent of surface functionalized silica nanoparticles with differential function groups were investigated in the selective adsorption about Pb2+, Cu2+, Hg2+, Cd2+ and Zn2+ions in aqueous solutions. The results show that the(3-Mercaptopropyl) triethoxysilane functionalized silica nanoparticles(SiO2-MPTES) play an important role in the selective adsorption of Cu2+ and Hg2+, the(3-Amincpropyl) trithoxysilane(APTES) functionalized silica nanoparticles(SiO2-APTES) exhibited maximum removal efficiency towards Pb2+ and Hg2+, the 1,8-Diaminoaphalene functionalized silica nanoparticles was excellent for removal of Hg2+ at room temperature, respectively.  相似文献   
992.
The surfaces of X80 pipeline steel welded joints were processed with a CO2 laser, and the effects of laser heat treatment (LHT) on H2S stress corrosion in the National Association of Corrosion Engineers (NACE) solution were analyzed by a slow strain rate test. The fracture morphologies and chemical components of corrosive products before and after LHT were analyzed by scanning electron microscopy and energy-dispersive spectroscopy, respectively, and the mechanism of LHT on stress corrosion cracking was discussed. Results showed that the fracture for welded joints was brittle in its original state, while it was transformed to a ductile fracture after LHT. The tendencies of hydrogen-induced corrosion were reduced, and the stress corrosion sensitivity index decreased from 35.2% to 25.3%, indicating that the stress corrosion resistance of X80 pipeline steel welded joints has been improved by LHT.  相似文献   
993.
The dissolution mechanism of hemimorphite in NH3-(NH4)2SO4-H2O system at 298.15 K was investigated by X-ray powder diffraction (XRD), scanning electron microscopy (SEM), Fourier transform infrared spectroscopy (FTIR) and X-ray photoelectron spectroscopy (XPS) analysis. The results show that hemimorphite is soluble in NH3-(NH4)2SO4-H2O system and its residue exists in the form of an amorphous SiO2 layer on the hemimorphite surface. The XPS data also indicate that the Si 2p3/2 and O ls spectra of the hemimorphite are broadened and shift to higher binding energies and their binding energies are closer to silica with an increase of total ammonia and time. Solubility of hemimorphite in NH3-(NH4)2SO4-H2O system was measured by means of isothermal solution method at 298.15 K based on the study of the dissolution mechanism of hemimorphite. The results show that the solubility of zinc in solution increases firstly and then decreases with the increase of cr(NH3) (total ammonia concentration) at different NH3/NH4^+ ratios. The solubility of silicon in solution decreases from 0.0334 mol/kg in ct(NH3)-4.1245 mol/kg NH3-(NH4)2SO4-H2O solution to 0.0046 mol/kg in cT(NH3)=7.6035 mol/kg NH3-(NH4)2SO4-H2O solution.  相似文献   
994.
A new MoO3/SO4^2- -TiO2 catalyst was prepared by a conventional impregnation of SO42-/TiO2 as carrier with an aqueous solution of ammonium molybdate and used for the synthesis of transesterification of dimethyl carbonate (DMC) with phenol.A series of MoO3/SO42--TiO2 catalysts with different MoO3 loadings were investigated and characterized using X-ray diffraction (XRD),Fourier transform infrared spectrometer (FTIR),NH3-temperature programmed desorption (NH3-TPD) and X-ray photoelectron spectroscopy (XPS).The results show that MoO3 loading is related to the activity of transesterification reaction.With the increase of MoO3 loading,the activity of transesterification reaction increases.The sulfur species in the catalyst have an influence on the molybdenum species,and lead to an increase in the electropositive of molybdenum,which promotes the catalytic activity of MoO3/SO42--TiO2.Among the series of catalysts prepared,MoO3/SO42--TiO2 with 10% MoO3 and 823 K calcinated is found to be the most active catalyst for transesterification reaction.Under the reaction conditions of 453 K and 12 h,the conversion of DMC is 30.5 %,and the yields of MPC and DPC reach 21.2 % and 8.7 %,respectively.  相似文献   
995.
The optimization of electrolytes and the material removal mechanisms for Cu electrochemical mechanical planarization (ECMP) at different pH values including 5-methyl-1H-benzotriazole (TTA), hydroxyethylidenediphosphoric acid (HEDP), and tribasic ammonium citrate (TAC) were investigated by electrochemical techniques, X-ray photoelectron spectrometer (XPS) analysis, nano-scratch tests, AFM measurements, and polishing of Cu-coated blanket wafers. The experimental results show that the planarization efficiency and the surface quality after ECMP obtained in alkali-based solutions are superior to that in acidic-based solutions, especially at pH=8. The optimal electrolyte compositions (mass fraction) are 6% HEDP, 0.3% TTA and 3% TAC at pH=8. The main factor affecting the thickness of the oxide layer formed during ECMP process is the applied potential. The soft layer formation is a major mechanism for electrochemical enhanced mechanical abrasion. The surface topography evolution before and after electrochemical polishing (ECP) illustrates the mechanism of mechanical abrasion accelerating electrochemical dissolution, that is, the residual stress caused by the mechanical wear enhances the electrochemical dissolution rate. This understanding is beneficial for optimization of ECMP processes.  相似文献   
996.
Simulation of hydrogen diffusion in welded joint of X80 pipeline steel   总被引:1,自引:0,他引:1  
Hydrogen diffusion coefficients of different regions in the welded joint of X80 pipeline steel were measured using the electro-chemical permeation technique. Using ABAQUS software, hydrogen diffusion in X80 pipeline steel welded joint was studied in consideration of the inhomogeneity of the welding zone, and temperature-dependent thermo-physical and mechanical properties of the metals. A three dimensional finite element model was developed and a coupled thermo-mechanical-diffusion analysis was performed. Hydrogen concentration distribution across the welded joint was obtained. It is found that the postweld residual hydrogen exhibits a non-uniform distribution across the welded joint. A maximum equivalent stress occurs in the immediate vicinity of the weld metal. The heat affected zone has the highest hydrogen concentration level, followed by the weld zone and the base metal.Simulation results are well consistent with theoretical analysis.  相似文献   
997.
本文以AT89C51单片机为核心,与传统电子燃气灶结合,设计出可以自动点火的燃气灶。该燃气灶通过感受压力来控制燃气的通断和点火,并通过温度传感器检测燃气灶是否已经点燃了。  相似文献   
998.
采用电化学阻抗法和阴极极化曲线法研究了X70钢在含NH4Cl薄层液膜下的电化学行为.研究了液膜厚度、NH4Cl浓度对X70钢腐蚀行为的影响.结果表明,液膜厚度降低,X70钢腐蚀电位正移,阴极极限扩散电流增大.液膜厚度为130μm时,阴极极限扩散电流达最大值.液膜厚度为130~100μm时,阴极极限扩散电流反而降低.液膜厚度进一步减薄,阴极极限扩散电流又增大.薄层液膜下,NH4Cl浓度增大,阴极极限扩散电流减小,抑制了阴极过程;随着NH4Cl浓度增大,X70钢腐蚀的电荷传递电阻减小,对阳极过程有一定的促进作用,从而加速X70钢的腐蚀速率.  相似文献   
999.
在复杂时变水声通信环境中非相干FH-FSK调制解调技术是一种较为稳健、可靠的通信方式,适合于低速、高可靠的水声设备遥控等应用场合,如水面船遥控高速运动的水下智能机器人(autonomous underwater vehicle,AUV)。但也面临着以下困难:1)高速运动带来的多普勒会严重恶化通信系统性能;2)为节省能耗,AUV依据通信需求可对通信单元进行经常性的上电与断电操作,导致异步单工工作模式下水面与水下通信节点之间很难协调工作。针对以上问题,提出了采用脉冲对技术进行可靠多普勒估计,并采用线性插值技术进行高效多普勒补偿;结合通信节点板载高精度时钟以及设计的声链路同步机制有效地解决了AUV和水面控制船之间的双向链路建立与数据传输工作。基于OMAP-L138双核处理器平台设计与实现了FH-FSK的水声调制解调器的样机,湖上实验结果表明提出的传输控制协议可保证通信节点之间的通信链路随机建立和断开,结果证明所设计的样机稳定、可靠。  相似文献   
1000.
将苝四甲酸二酐(3,4,9,10-perlenetetracrboxylic dianhydride,PTCDA)真空蒸发到无机半导体p-Si衬底上,研制的p-Si/PTCDA异质结光电探测器,对光照非常敏感,是一种响应度很高的宽带光电子元器件。讨论分析了不同的衬底制备条件制备p-Si/PTCDA异质结薄膜的情况,实验结果表明,制备过程中细微的环境变化,显著影响了器件质量,通过分析成膜质量与器件内部微观机制、能带结构、载流子输运之间的关系,确定制备异质结有机薄膜的硅晶面选择,以及衬底的温度最佳的选择范围。  相似文献   
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