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排序方式: 共有401条查询结果,搜索用时 15 毫秒
1.
研究一种加料不独立的垂直气力输送装置,并以流化床作为料仓和混合区,两者构成固体循环系统。由于系统特性,加料喷嘴的插入高度与加料结构将会直接影响操作的稳定性,从力的平衡出发导出临界结构为he/De<fHL/R,其中f是颗粒特性的函数。  相似文献   
2.
在我国金融科技不断创新的背景下,互联网金融平台中通过网络分析技术开展用户风险识别已经成为当前的热点技术发展方向。以某互联网金融平台的用户交易数据为对象,通过分析其中借贷逾期违约的传播行为,提出通过传播特征构建模型算法识别互联网金融平台的高风险用户。在构建基于阈值传播和随机传播的SIS模型和SIR模型基础上,将模型转换为可评价用户风险值的算法,并进一步与实际违约数据进行验证对比。对比结果显示在前5%和10%高风险群体划分条件下,算法具有较高的召回率和良好的结构关联性。  相似文献   
3.
As a nontoxic and cost-effective material, copper pastes have attracted great attention in both academia and industry. However, achieving the long-term stability of copper pastes remains challenging due to their susceptibility to oxidation. Therefore, stable copper nanoparticles with a Cu(0)–Cu(I) core–shell structure containing a surface passivation layer of formate ions-involved Cu(I) coordination polymers are developed. Based on the self-reducing nature of the passivation layer, the nanoparticle-based copper pastes can be sintered in <1 min, showing high electrical conductivity (220 000 S cm−1), mechanical flexibility, and long-term stability after sintering. The excellent properties of the developed copper pastes are even comparable with the ones of silver pastes. These stable copper pastes have broad applications in printed electronics (e.g., glucose sensors, RFID tags, and electromagnetic shielding films), showing great potential in the fabrication of flexible printed electronics.  相似文献   
4.
A high density of edge sites and other defects can significantly improve the catalytic activity of layered 2D materials. Herein, this study demonstrates a novel top‐down strategy to maximize catalytic edge sites of MoSe2 by breaking up bulk MoSe2 into quantum dots (QDs) via “turbulent shear mixing” (TSM). The ultrasmall size of the MoSe2 QDs provides a high fraction of atoms in reactive edge sites, thus significantly improving the catalytic activities. The violent TSM further introduces abundant defects as additional active sites for electrocatalytic reactions. These edge‐proliferated and defect‐laden MoSe2 QDs are found to be efficient electrocatalysts for the hydrogen evolution reaction, and useful as counter electrodes in dye‐sensitized solar cells. The work provides a new paradigm for creating edge‐proliferated and defect‐rich QDs from bulk layered materials.  相似文献   
5.
Liu  Daobin  Wu  Chuanqiang  Chen  Shuangming  Ding  Shiqing  Xie  Yaofeng  Wang  Changda  Wang  Tao  Haleem  Yasir A.  ur Rehman  Zia  Sang  Yuan  Liu  Qin  Zheng  Xusheng  Wang  Yu  Ge  Binghui  Xu  Hangxun  Song  Li 《Nano Research》2018,11(4):2217-2228
Nano Research - Atomically dispersed catalysts have attracted attention in energy conversion applications because their efficiency and chemoselectivity for special catalysis are superior to those...  相似文献   
6.
This study applied parallel factor analysis (PARAFAC) to fluorescence excitation-emission matrices (EEMs) of natural water samples in a freshly submerged catchment in the upper reach of Three Gorges Dam (China). Two fluorescent natural dissolved organic matter (NDOM) components (humic/fulvic-like) were uncovered and were positively correlated with selected water quality parameters, i.e. dissolved oxygen concentration, dissolved organic carbon concentration, dissolved Kjeldahl nitrogen concentration and total (dissolved plus particulate) phosphorus concentration, respectively. To other water quality parameters (i.e. total nitrogen, particulate nitrogen, particulate phosphorus, dissolved phosphorus, dissolved nitrate, pH, and chemical oxygen demand), either the two components did not show any correlation or only one component showed correlation. In particular, particulate N correlated significantly to the fulvic acid, but not to the humic acid. Meanwhile, two conventional spectroscopic indices i.e. specific UV absorbance at 254 nm (SUVA254) and fluorescence index (FI) indicated that the whole NDOM in the waters were low in aromaticity and predominantly derived from aquatic microbial processes. Given together, it concludes that N and P did not function equally in the NDOM production, and the two components were not derived from the same microbial processes. The EEMs-PARAFAC has proven to be of potential as an effective tool in investigation of the interlink between NDOM and nutrients which may be utilized as an indicator of water environment.  相似文献   
7.
利用超高真空化学气相沉积(UHV/CVD)成功实现了Si1-xGex的低温选择性外延生长,并研究了H2对选择性外延生长的影响及其作用机理.以SiH4和GeH4为反应气源,在开有6mm×6mm窗口氧化硅片上进行Si1-xGex外延层的生长.首先分别以不含H2(纯GeH4)和含H2(90%H2稀释的GeH4)的两种Ge源进行选择性外延生长.通过SEM观察两种情况下氧化硅片表面,发现H2的存在对选择性外延生长有至关重要的作用.接着以90%H2稀释的GeH4为Ge源,变化Si源和Ge源的流量比改变H2分压,以获得SiH4和GeH4(90%H2)的最佳流量比,使外延生长的选择性达到最好.利用SEM观察在不同流量比时,经40min外延生长后各样品的表面形貌,并对其进行比较,分析了H2分压在Si1-xGex选择性外延生长中的作用机理.  相似文献   
8.
介绍了在传统中央空调系统的自动化改造中,通过计算机对冷媒水温度随气温变化的自动设置,可以达到改善系统运行效果和节能的目的。  相似文献   
9.
The mechanics of glass-ceramics subjected to sharp contact or other loading conditions remain elusive, even after being commercialized in many industrial applications. We present work herein to reveal atomic details of such deformations that are otherwise extremely difficult to probe experimentally for a lithium disilicate (LS2) and β-quartz containing glass-ceramics via molecular dynamics simulations. Specifically, the materials are comprised of LS2 and β-quartz nanocrystals in a residual glass matrix. Regardless of the deformation mechanism, whether it be nanoindentation or crack propagation for samples with pre-existing flaws, we observe that the LS2 nanocrystal itself undergoes substantial deformation, either by activating dislocations, forming an amorphization zone, or by initiating microcracks at glass-crystal interfaces or weak crystallographic planes. In contrast, the β-quartz nanocrystal is not easily deformed and remains almost intact with minimal plastic deformation, thereby forcing shear flow and crack propagation pathways to predominately occur in the residual glass and/or at interfaces. The dramatic difference between the crystalline phases also manifests itself in the deformation mode of interfaces under pure shear loading, in which shear bands preferably occur at the LS2-glass interfaces, while cavities form at the β-quartz-glass interfaces. These observations significantly advance our understanding of glass-ceramics and pave ways to exploit the understanding for more applications.  相似文献   
10.
基于食品工业废弃蛋壳,本文利用不同有机酸反应制取乙酸钙、柠檬酸钙及葡萄糖酸钙共三种蛋壳源有机钙。在高温固定床反应器及热重分析仪上研究了不同前体所制成钙基吸收剂的碳循环捕集性能及碳酸化特性。进一步通过XRD分析了不同钙基吸收剂的物相组成,通过N2吸附仪及SEM分析了循环前后钙基吸收剂结构特性及微观形貌的变化。结果表明,在三种蛋壳源有机钙中,葡萄糖酸钙所制成的钙基吸收剂具有较高的反应活性和相对最佳的碳捕集性能,首次碳酸化转化率高达85.33%,其钙基吸收剂相比其他吸收剂晶粒更小,20~100nm孔径范围内的孔隙较为发达,具有相对较强的抗烧结能力。经过20次循环实验发现,随着循环次数的增加,几种钙基吸收剂小颗粒均团聚烧结成大颗粒,造成孔隙结构缺失,孔隙率降低,影响其后续碳捕集性能。  相似文献   
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