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2.
Journal of Materials Science: Materials in Electronics - Non-volatile organic memory devices were fabricated using polystyrene sulfonate (PSS)?+?nitrogen-doped multi-walled carbon...  相似文献   
3.

Cr doped ZnAl2O4 spinel samples were prepared by the traditional solid state reaction and co-precipitation synthetic route, and the results suggest that the co-precipitation method has some superiority in contrast to the solid state reaction method. XRD, FT-IR, and XPS spectra confirmed that the well-crystallized spinel cubic phase of ZnAl2O4: Cr3+ samples were successfully formed. The morphology of the samples was investigated by FE-SEM and FE-TEM, and the results show that the samples by the co-precipitation route can generate a smaller size of particles compared to the solid state reaction. Photoluminescence excitation spectra monitored at 686 nm are comprised of two broad excitation bands near 530 nm and 395 nm, and the emission spectra show emissions ranging from 640 to 780 nm, due to the 2E?→?4A2 spin-forbidden transition of Cr3+ ions in spinel lattices. The optimized concentration monitored at 686 nm is 1%, while at 693 nm is 3.5%. Compared with the samples by solid state reaction method, the samples by co-precipitation method show preferable luminescent properties, such as the higher photoluminescence intensity and higher quantum efficiency. Several phosphor-converted LEDs were to investigate the applicability of the prepared samples. The results confirm that the phosphor has potential applications in plant growth and supplementing the red region in white-LEDs and the phosphors prepared by co-precipitation are more suitable to be used in phosphor-converted LED devices due to their preferable luminescent properties.

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4.
对浸矿后离子型稀土原地浸矿场采用清水进行淋洗,在184天的清水淋洗过程中,尾水氨氮值从最开始的507mg/L,降低至140mg/L,淋洗尾水pH4.52~3.10。淋洗尾水采用两级反渗透膜分离,既回收有价资源稀土,又能使出水氨氮达标。结果表明,产水氨氮浓度稳定低于15mg/L,对稀土的截留率高于98.25%,浓水中稀土离子平均浓度313.4mg/L,可进一步回收稀土资源。  相似文献   
5.
The development of efficient filters is an essential part of industrial machinery design, specifically to increase the lifespan of a machine. In the filter chamber design considered in this study, the magnetic material is placed along the horizontal surface of the filter chamber. The inside of the filter chamber is layered with a porous material to restrict the outflow of unwanted particles. This study aims to investigate the flow, pressure, and heat distribution in a dilating or contracting filter chamber with two outlets driven by injection through a permeable surface. The proposed model of the fluid dynamics within the filter chamber follows the conservation equations in the form of partial differential equations. The model equations are further reduced to a steady case through Lie's symmetry group of transformation. They are then solved using a multivariate spectral-based quasilinearization method on the Chebyshev–Gauss–Lobatto nodes. Insights and analyses of the thermophysical parameters that drive optimal outflow during the filtration process are provided through the graphs of the numerical solutions of the differential equations. We find, among other results, that expansion of the filter chamber leads to an overall decrease in internal pressure and an increase in heat distribution inside the filter chamber. The results also show that shrinking the filter chamber increases the internal momentum inside the filter, which leads to more outflow of filtrates.  相似文献   
6.
The present article investigates the influence of Joule heating and chemical reaction on magneto Casson nanofluid phenomena in the occurrence of thermal radiation through a porous inclined stretching sheet. Consideration is extended to heat absorption/generation and viscous dissipation. The governing partial differential equations were transformed into nonlinear ordinary differential equations and numerically solved using the Implicit Finite Difference technique. The article analyses the effect of various physical flow parameters on velocity, heat, and mass transfer distributions. For the various involved parameters, the graphical and numerical outcomes are established. The analysis reveals that the enhancement of the radiation parameter increases the temperature and the chemical reaction parameter decreases the concentration profile. The empirical data presented were compared with previously published findings.  相似文献   
7.
George  S. L.  Chicuba  L. 《Journal of Materials Science》2022,57(11):6412-6427

During homogenisation of the AA3104 cast ingot, a phase transformation of intermetallic particles from β-Al6(Fe,Mn) orthorhombic phase to harder α-Alx(Fe,Mn)3Si2 cubic phase occurs. The large constituent intermetallic particles, regardless of phase, assist in the recrystallisation nucleation process through particle stimulated nucleation (PSN). Ultimately, this helps to refine grain size. The sub-micron dispersoids act to impede grain boundary migration through a Zener drag mechanism. For this reason, the dispersoids that form during homogenisation are critical in the recrystallisation kinetics during subsequent rolling, with smaller dispersoids being better suited to reverse rolling mills. This work simulates an industrial two-step homogenisation practice with variations in the peak temperature of the first step between 560 °C and 580 °C. The effect of this temperature variation on the intermetallic particle-phase evolution is investigated. The aim is to identify the ideal intermetallic phase balance and the dispersoid structure that are best suited for hot rolling on a single stand reversing mill, in order to minimise recrystallisation during rolling through maximising Zener drag and maintaining galling resistance. The results indicate a trend where an increase in homogenisation temperature from 560 °C to 580 °C yields, firstly, an increase in the volume fraction of the α-phase particles to greater than 50% of the total volume fraction at both the edge and the center of the ingot and, secondly, it yields an increased dispersoid size. Thus, in the context of a reverse rolling operation, a lower temperature homogenisation practice produces a near-ideal combination of intermetallic particle-phase distribution, as well as dispersoid size, which is critical for Zener drag and the minimization of recrystallisation during the hot rolling processes.

Graphical abstract

SEM BEI images and corresponding EDS maps, highlighting the variation in intermetallic particle phase balance, size and morphology after homogenisation at different temperatures. With a focus on the exaggerated differences seen between material the center of and at the edge of a DC cast ingot of AA3104 Aluminum alloy.

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8.
基于千年生态系统评估对生态系统服务的分类方法,将天津市地下水生态系统服务功能划分为供给、调节、 支持和文化 4 个方面,以此为基础建立地下水生态系统服务价值评估指标体系,采用价值量评估方法构建货币化 的价值评估模型,对地下水生态系统服务价值进行测算,并重点分析南水北调中线工程通水前后天津市地下水生 态系统服务价值演变特征。结果表明:2008—2019 年,天津市地下水生态系统年均总服务价值为 83.71 亿元,其 中,南水北调中线工程通水前(2008—2014 年)为 69.81 亿元,通水后(2015—2019 年)为 103.18 亿元;通水后,地 下水调节服务价值、支持服务价值增大,供给服务价值减小;南水北调中线工程对地下水生态系统服务价值的贡 献呈增大趋势,由 2015 年 2.64 亿元增加至 2019 年 24.01 亿元。  相似文献   
9.
Cybernetics and Systems Analysis - The pursuit problem for linear fractional differential systems with pure delay is considered. A scheme of the method of resolving functions for these...  相似文献   
10.
基于历史实测降水数据与全球气候模型预估数据,使用 Morlet 小波方法分析滇中引水工程水源区与受水区 降水序列的周期变化和未来的降水趋势。同时,采用 Copula 函数计算历史时期(1960—2021 年)与未来时期 (2022—2100 年)水源区与受水区降水丰枯异步或丰枯同步的概率。结果表明:1960—2021 年降水序列存在 26~39?a、18~25?a、4~7?a 的 3 类时间尺度的周期变化,2022—2100 年降水序列存在 38~55?a、18~30?a、5~12?a 的 3 类时间尺度的周期变化,降水量呈现“多—少—多”的循环交替,预计未来 10~20?a 将持续处于降水较多的时期; 过去 62?a,水源区和受水区降水丰枯异步频率 36.4%,同期丰水年频率为 25.3%,同期枯水年频率小于 30%,水源区 和受水区具有水量互补的引水条件,两区域之间存在着水量补偿特征;与历史丰枯遭遇对比,未来降水量丰枯同 步频率均呈现减小的趋势,丰枯异步呈现增加的趋势,同枯和源枯受丰的频率减少,未来有利于调水的降水丰枯 组合概率平均增加 3.75%;在近、中、远期预估中,从 SSP1-2.6 情景过渡到 SSP5-8.5 情景,SSP5-8.5 情景下降水量 丰枯异步频率比 SSP1-2.6 情景大,说明水源区与受水区的降水区域差异变大,降水时空差异更加显著。通过对滇 中引水工程水源区与受水区降水量丰枯遭遇的综合分析、定量评估和模拟预测,为滇中引水工程水资源调度协同 一体化提供数据支撑及参考依据。  相似文献   
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