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101.
Wu Xiang He Ran Hu Yibo Sun Zhenan 《International Journal of Computer Vision》2020,128(8-9):2089-2106
International Journal of Computer Vision - Knowledge distillation methods aim at transferring knowledge from a large powerful teacher network to a small compact student one. These methods often... 相似文献
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Yuanming Wu Xiaohua Chen Li Wang Lunjie Wu Lu Lin Wenwu Ding Zhenming Che Jianfeng Wang Jianzhou Li Yi Liu Weifeng Sun 《International Journal of Food Science & Technology》2020,55(4):1825-1832
Preparation of flavour peptides with microorganisms is an attractive choice for its large-scale production. However, beefy meaty peptide (BMP), as a research hotspot in the field of umami peptide, has been studied in few microorganisms, and furthermore, the safe preparation of BMP has not yet been reported. In this study, multi-copy BMP (8BMP) was successfully expressed and produced in the ‘generally recognized as safe’ Bacillus subtilis (B. subtilis). Firstly, 8BMP with the potentially intense umami was screened out based on molecular docking analysis. Then, it was successfully expressed in the B. subtilis 168 and verified through sensory evaluation. Finally, the scaling capacity of 8BMP was evaluated in a 5-L fermenter, with the highest yield (0.84 g L−1) 6.4 times than that of shake flask, which is conductive for industrial production of BMP and other food peptides. 相似文献
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The Caputo and Caputo–Fabrizio derivative are applied to study a second‐grade nanofluid over a vertical plate. A comparative analysis is presented to study the unsteady free convection of a second‐grade nanofluid with a new time–space fractional heat conduction. The governing equations with mixed time–space fractional derivatives are non‐dimensionalized and solved numerically, and a comparison between the Caputo and the Caputo–Fabrizio models is made. It is found that the temperature is higher for the Caputo–Fabrizio fractional model than the Caputo model, but the higher velocity only exists near the vertical plate for the Caputo–Fabrizio model than the Caputo model. Moreover, the velocity for the Caputo model will exceed the Caputo–Fabrizio model as y evolves. 相似文献
105.
Hong Zhong Guodong Wu Zhihua Fu Haowei Lv Gang Xu Ruihu Wang 《Advanced materials (Deerfield Beach, Fla.)》2020,32(21):2000730
Artificial transistors represent an ideal means for meeting the requirements in interfacing with biological systems. It is pivotal to develop new proton-conductive materials for the transduction between biochemical events and electronic signals. Herein, the first demonstration of a porous organic polymer membrane (POPM) as a proton-conductive material for protonic field-effect transistors is presented. The POPM is readily prepared through a thiourea-formation condensation reaction. Under hydrated conditions and at room temperature, the POPM delivers a proton mobility of 5.7 × 10−3 cm2 V−1 s−1; the charge carrier densities are successfully modulated from 4.3 × 1017 to 14.1 × 1017 cm−3 by the gate voltage. This study provides a type of promising modular proton-conductive materials for bioelectronics application. 相似文献
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超低渗油藏在线分流酸化增注技术研究与应用 总被引:1,自引:0,他引:1
酸化是超低渗油藏最有效的增注措施之一,但由于储层物性差、非均质性强等问题,造成目前常规酸化措施普遍具有施工周期长、有效率低、有效作用距离短等不足,且酸化过程中存在指进现象和储层二次伤害。针对这一问题,选取鄂尔多斯盆地环江油田三叠系超低渗油藏为研究对象,提出了在线分流酸化技术,并配套研制了一种多元缓速螯合酸COA-1S和一种新型的水溶性分流剂COA-1P。通过室内评价实验和在线分流酸化模拟实验,发现该技术在缓速性、配伍性、水溶性、螯合能力和暂堵功能等方面均显著优于常规酸化;现场先导性实验结果表明,酸化后剖面吸水均匀程度从28.5%上升至50.9%,视吸水指数增加2倍左右,降压增注效果显著;同时,该技术还具有“不停井、不泄压、不动管柱、不返排”的特点,简化了常规分流酸化工序、降低了安全环保风险,是一种能够很好地适应超低渗油藏特征的酸化增注技术。 相似文献
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The aim of this research was to investigate the effect of sintering additive and relatively low-sintering temperature on the thermal conductivity of aluminum nitride nanoceramic. While using nanosized AlN powder and liquid-phase sintering additives, the various sintering processes were performed at temperatures 1400 and 1500°C for several hours. In the analysis methods, thermal conductivity (K) and thermal diffusivity (α) were measured using thermal conductivity analyzer (Hot Disk), scanning electron microscope (SEM) was used to observe the surface morphology of the microstructure, x-ray diffraction analyzer (XRD) to analyze the grain size and crystal structure, Raman spectroscopy (Raman) emission spectrum was analyzed to identify the material microstructure and the densities of AlN specimens were measured by Archimedes method. It was found that the thermal conductivity is related to the densification of nanosize low-temperature sintered material, which can be controlled by additives and sintering temperature. With Y2O3 sintering add, the densification of AlN for low-temperature sintering increased by the factor of ~5% to ~12%, and the thermal conductivity was enhanced by 25%. The relative density observed in this research is about 78%-84%, and the thermal conductivity measured is in the range of 9-14 W/mK. 相似文献