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1.
Reconstruction of spectral information based on multi‐channel image system is a significant problem in color reproduction, detection, and recognition. A spectral radiance reconstruction from trichromatic digital camera responses is researched in this article. The mapping relationship between the trichromatic imaging system response and the incident spectral radiance is analyzed. Then, in order to remove the ill‐posedness of the problem, a regularized constraint solution model of spectral radiance reconstruction matrix is established. And the spectral radiance can be reconstructed by spectral radiance reconstruction matrices and trichromatic imaging system response. Finally, the spectral radiance reconstruction matrix is estimated by the system radiometric calibration experiment. The input radiance is offered by a LCD display. A 3‐factor and 9‐level orthogonal test is designed for the calibration experiment, and a test set of 24 colors is used for precision analysis. The results show that the average relative mean error of our method is 8.69%, it is lower than that of Wiener filtering method by 2.84%. The method can reconstruct spectral radiance information effectively.  相似文献   
2.
为了提高学生在翻转课堂模式下对Python语言进行自主学习的兴趣,开发一个基于Python Turtle库的图形动画案例库集成软件.在软件中可以直观地看到图形案例、动画程序、小游戏程序的运行效果及其实现代码.案例内容从简单到复杂,从静态到动态,有助于学生通过案例自主学习,在教学中取得了良好的应用效果.该软件可以应用于高职、高专Python翻转课堂教学中,也可以应用于Python爱好者的自学.  相似文献   
3.
司训练  尚慧 《中国矿业》2021,30(4):29-35
在去产能成为供给侧结构性改革首要任务之一的背景下,从政策视角探讨政府补贴对煤炭企业产能过剩的影响及其作用机制。基于2009—2019年沪深A股上市40家煤炭企业的数据,采用柯布-道格拉斯生产函数测算其产能利用率,并运用多元回归分析法探究政府补贴、技术创新与煤炭企业产能过剩三者间的相互关系。研究结果表明:我国煤炭行业产能过剩问题依然严重,政府补贴正向促进煤炭企业产能过剩,技术创新能弱化这一正向影响。进一步地,运用Richardson投资期望模型测度了煤炭企业的过度投资程度,通过建立中介效应模型分析发现:过度投资在政府补贴促进煤炭企业产能过剩的过程中发挥了部分中介作用。据此提出:政府可通过建立以技术创新为目标导向的补贴机制、理清政府和市场的职能边界、构建完善的地方政府绩效考核体系等方式提升煤炭企业产能利用率。研究结论对促进我国煤炭企业早日实现高质量发展具有一定的参考意义。  相似文献   
4.
The effects of ultraviolet (UV) radiation, particularly UV-B on algae, have become an important issue as human-caused depletion of the protecting ozone layer has been reported. In this study, the effects of different short-term UV-B radiation on the growth, physiology, and metabolism of Porphyra haitanensis were examined. The growth of P. haitanensis decreased, and the bleaching phenomenon occurred in the thalli. The contents of total amino acids, soluble sugar, total protein, and mycosporine-like amino acids (MAAs) increased under different UV-B radiation intensities. The metabolic profiles of P. haitanensis differed between the control and UV-B radiation-treated groups. Most of the differential metabolites in P. haitanensis were significantly upregulated under UV-B exposure. Short-term enhanced UV-B irradiation significantly affected amino acid metabolism, carbohydrate metabolism, glutathione metabolism, and phenylpropane biosynthesis. The contents of phenylalanine, tyrosine, threonine, and serine were increased, suggesting that amino acid metabolism can promote the synthesis of UV-absorbing substances (such as phenols and MAAs) by providing precursor substances. The contents of sucrose, D-glucose-6-phosphate, and beta-D-fructose-6-phosphate were increased, suggesting that carbohydrate metabolism contributes to maintain energy supply for metabolic activity in response to UV-B exposure. Meanwhile, dehydroascorbic acid (DHA) was also significantly upregulated, denoting effective activation of the antioxidant system. To some extent, these results provide metabolic insights into the adaptive response mechanism of P. haitanensis to short-term enhanced UV-B radiation.  相似文献   
5.
Succinic acid is an important synthetic monomer but it is difficult to use it as a precursor for synthesizing high molecular weight polyamide, due to its tendency to perform intra-cyclization reaction at high temperature. In order to solve this problem, in this paper, the direct solid-state polymerization (DSSP) method with the initial reactant, nylon salt which was composed of 1, 5-diaminopentane, succinic acid, and terephthalic acid, was applied to synthesize the bio-based copolyamide PA 5T/54. In comparison with the conventional melting polymerization method, the DSSP method can prevent the cyclization reaction of succinic acid effectively due to the lower reacting temperature as well as the restriction effect of the nylon salt. As a result, the product fabricated by DSSP method has higher molecular weight and much lighter color from red to white. Therefore, the DSSP method is advantageous for the synthesis of the polymers or copolymers composed of the succinic acid as the monomer. Furthermore, the polymerization mechanism proposed in this work can serve as a guidance for the design of the molecular structure and control of the polymerization process.  相似文献   
6.
To enhance the display quality of light-emitting diodes (LEDs), it is of great significance to exploit green/yellow-emitting phosphors with narrow emission band, high quantum yield, and excellent color purity to satisfy the application. Herein, orthophosphate-based green/yellow-emitting Na3Tb(PO4)2:Ce3+/Eu2+ (NTPO:Ce3+/Eu2+) phosphors have been successfully synthesized by a facile solid-state reaction method. The absorption band of NTPO samples was extended to the near-ultraviolet region and the absorption efficiency was significantly improved owing to a highly efficient energy transfer from Ce3+/Eu2+ ion to Tb3+ ion in NTPO host certified by time-resolved PL spectra. Upon 300 nm excitation, the NTPO:Ce3+ is characterized by ultra-narrow-band green emission of Tb3+ with an absolute quantum yield of 94.5%. Unexpectedly, NTPO:Eu2+ emits bright yellow light with a color purity of 73% as a result of the blending of green light emission from Tb3+ and red light emission from Eu3+. The thermal stability has been improved by controlling the stoichiometric ratio of Na+. The prototype white LED used yellow-emitting NTPO:Eu2+ phosphor has higher color-rendering index (Ra = 83.5), lower correlated color temperature (CCT = 5206 K), and closer CIE color coordinates (0.338, 0.3187) to the standard white point at (0.333, 0.333) than that used green-emitting NTPO:Ce3+ phosphor, indicating the addition of the yellow light component improved the Ra of the trichromatic (RGB) materials.  相似文献   
7.
Hydrodynamics characteristics of a fast and highly exothermic liquid–liquid oxidation process with in situ gas production in microreactors were studied using a newly developed experimental method. In the adipic acid synthesis through the K/A oil (the mixture of cyclohexanol and cyclohexanone) oxidation with nitric acid, bubble generation modes were divided into four categories. The gas production became more intensive, unstable, even explosive with increasing the oil phase feed rate and the temperature. A novel automatic image processing method was developed to monitor the instantaneous velocity online by tracking the gas–liquid interface. The axial velocity at the same location was unstable due to the changing gas production rate. Furthermore, the actual residence time was obtained easily with being only 36% of the space–time minimally, beneficial for establishing accurate kinetics and mass transfer models with time participation. Finally, an empirical correlation was developed to predict the actual residence time under different conditions.  相似文献   
8.
超深断溶体油藏纵向连通性好,油井生产时井底下方油气易沿断裂高导流通道向井底流动。为明确油井油藏动用深度,以Z油田W9井为例,对比分析超深断溶体油藏流温、静温特征,并基于温度特征建立不同温度-深度关系下油井动用深度计算方法。研究表明:同一深度下流温大于静温,与油嘴直径无关;当深度一定时,油嘴直径越大,流温越高;随深度增大,流温与静温差整体呈降低趋势,靠近井底处流温梯度较低;超深断溶体油藏温度特征受热损失、油井动用深度和传热方式影响;W9井在目前4.5 mm油嘴生产条件下动用深度约为52~62 m。该研究可为超深断溶体油藏油柱高度判断、储量计算、合理生产制度的制订提供依据。  相似文献   
9.
Designing a semiconductor-based heterostructure photocatalyst for achieving the efficient separation of photogenerated electron-hole pairs is highly important for enhancing H2 releasing photocatalysis. Here, a new class of Ni1−xCoxSe2–C/ZnIn2S4 hierarchical nanocages with abundant and compact ZnIn2S4 nanosheets/Ni1−xCoxSe2C nanosheets 2D/2D hetero–interfaces, is designed and synthesized. The constructed heterostructure photocatalyst exposes rich hetero-junctions, supplying the broad and short transfer paths for charge carriers. The close contacts of these two kinds of nanosheets induce a strong interaction between ZnIn2S4 and Ni1−xCoxSe2 C, improving the separation and transfer of photo-generated electron-hole pairs. As a consequence, the distinctive Ni1−xCoxSe2 C/ZnIn2S4 hierarchical nanocages without using additional noble-metal cocatalysts, display remarkable H2-relaesing photocatalytic activity with a rate of 5.10 mmol g−1 h−1 under visible light irradiation, which is 6.2 and 30 times higher than those of fresh ZnIn2S4 nanosheets and bare Ni1−xCoxSe2 C nanocages, respectively. Spectroscopic characterizations and theory calculations reveal that the strong interaction between ZnIn2S4 and Ni1−xCoxSe2 C 2D/2D hetero-interfaces can powerfully promote the separation of photo-generated charge carriers and the electrons transfer from ZnIn2S4 to Ni1−xCoxSe2 C.  相似文献   
10.
电化学能源存储与转换材料的构筑和解析已成为目前研究的热点.结合课题组内电化学能源存储与转换方向的研究成果,总结了电化学能源材料的先进电子显微测试方法.电子显微技术可解析材料的表面形貌、结构、构筑化学等.常见的电子显微技术有:扫描电子显微(SEM)、透射电子显微(TEM)、X射线能谱分析(EDS)、电子能量损失谱分析(EELS)等.详细介绍了使用先进电子显微解析手段,研究电化学能源存储与转换体系材料的进展和优势,不同电子显微技术的特点以及在电化学能源体系材料中的应用.同时,提出电子显微解析技术与其他表征方法联用是未来可能的发展方向,以期能更全面、精准地解析目标材料信息,找到合适的制备工艺,为提高电化学综合性能提供指导.  相似文献   
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