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稀土离子掺杂MSi_2O_2N_2(M=Ca,Sr,Ba)基荧光粉研究进展
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作者 郭芳芳 宁青菊 +1 位作者 王邦卿 乔畅君 《化工新型材料》 CAS CSCD 北大核心 2013年第11期17-18,25,共3页
概述了近年来MSi2O2N2(M=Ca,Sr,Ba)基荧光粉的发展现状,介绍了稀土离子掺杂对MSi2O2N2(M=Ca,Sr,Ba)基荧光粉的发射光谱和发光强度的影响,综述了稀土离子的敏化作用和离子间能量传递机理,并对稀土离子掺杂MSi2O2N2(M=Ca,Sr,Ba)基荧光粉... 概述了近年来MSi2O2N2(M=Ca,Sr,Ba)基荧光粉的发展现状,介绍了稀土离子掺杂对MSi2O2N2(M=Ca,Sr,Ba)基荧光粉的发射光谱和发光强度的影响,综述了稀土离子的敏化作用和离子间能量传递机理,并对稀土离子掺杂MSi2O2N2(M=Ca,Sr,Ba)基荧光粉的研究进行了展望。 展开更多
关键词 白光LED 稀土离子 氮硅酸盐 MSi2O2N2(M=Ca Sr Ba)
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Distributions of Inorganic Nutrients in the Bohai Sea of China 被引量:4
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作者 LI Zhengyan BAI Jie +1 位作者 SHI Jinhui GAO Huiwang 《Journal of Ocean University of Qingdao》 2003年第1期112-116,共5页
To study the contents and distribution of inorganic nutrients in the Bohai Sea of China, two cruise surveys were undertaken in August (summer) 2000 and January (winter) 2001, respectively. A total of 595 water samples... To study the contents and distribution of inorganic nutrients in the Bohai Sea of China, two cruise surveys were undertaken in August (summer) 2000 and January (winter) 2001, respectively. A total of 595 water samples were collected from 91 stations and five nutrients, i.e., nitrate, nitrite, ammonia, phosphate and silicate, were analyzed for each sample. The results show that the average concentration of dissolved inorganic nitrogen (DIN) in the Bohai Sea in winter (6.529 μmol L -1) is significantly higher than that in summer (3.717 μmol L -1). The phosphorus concentration in winter (0.660 μmol L -1) is also significantly higher than that in summer (0.329 μmol L -1). Mean silicate concentration in winter (7.858 μmol L -1) is, however, not significantly different from that in summer (7.200 μmol L -1). Nutrients also vary considerably in different areas in Bohai Sea. DIN concentration in the Laizhou Bay (4.444 μmol L -1), for example, is significantly higher than those in the Bohai Bay (2.270 μmol L -1) and Bohai Strait (2.431 μmol L -1), which is caused by the discharge of large amounts of nitrogen into Laizhou Bay via Yellow River. The nutrients show different vertical distribution patterns. In summer, nutrients in bottom layer are generally richer than those in surface and middle layers. In winter, however, nutrients are not significantly different in different layers. Compared with historic data, DIN contents have increased continually since the early 1980 s. Based on atomic ratios of different nutrients, nitrogen is still the limiting factor for algal growth in the Bohai Sea. 展开更多
关键词 Bohai Sea inorganic nutrient DISTRIBUTION
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The Burial of Biogenic Silica, Organic Carbon and Organic Nitrogen in the Sediments of the East China Sea 被引量:2
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作者 WANG Lisha ZHANG Chuansong SHI Xiaoyong 《Journal of Ocean University of China》 SCIE CAS 2015年第3期464-470,共7页
We sampled the sediments of the East China Sea during 2005 and 2006, and analysed the contents of the biogenic matters: biogenic silica, organic carbon, and organic nitrogen. From the surface distribution we found the... We sampled the sediments of the East China Sea during 2005 and 2006, and analysed the contents of the biogenic matters: biogenic silica, organic carbon, and organic nitrogen. From the surface distribution we found the contents of these substances to be in the ranges of 0.72%-1.64%, 0.043%-0.82%, and 0.006%-0.11%, respectively. Their distributions were similar to each other, being high inside the Hangzhou Bay and low outside the bay. The vertical variations of the contents were also similar. In order to discuss the relation between them we analysed the variations of content with depth. They increased in the first 7 cm and then decreased with depth. The peaks were found at depths between 20 to 25 cm. The distribution of carbonate showed an opposite trend to that of biogenic matters. The content of total carbon was relatively stable with respect to depth, and the ratio of high organic carbon to carbonate showed a low burial efficiency of carbonate, which means that the main burial of carbon is organic carbon. In order to discuss the source of organic matters, the ratio of organic carbon to organic nitrogen was calculated, which was 8.01 to 9.65, indicating that the organic matter in the sediments was derived mainly from phytoplankton in the seawater. 展开更多
关键词 BURIAL sediment biogenic matters carbon and nitrogen ratio East China Sea
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Low temperature sintering and performance of aluminum nitride/borosilicate glass 被引量:3
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作者 Hong-sheng ZHAO Lei CHEN Nian-zi GAO Kai-hong ZHANG Zi-qiang LI 《Journal of Zhejiang University-Science A(Applied Physics & Engineering)》 SCIE EI CAS CSCD 2009年第1期109-113,共5页
Aluminum nitride (AlN)/borosilicate glass composites were prepared by the tape casting process and hot-press sintered at 950 ℃ with AIN and SiO2-B203-ZnO-Al2O3-Li2O glass as starting materials. We characterized and... Aluminum nitride (AlN)/borosilicate glass composites were prepared by the tape casting process and hot-press sintered at 950 ℃ with AIN and SiO2-B203-ZnO-Al2O3-Li2O glass as starting materials. We characterized and analyzed the variation of the microstructure, bulk density, porosity, dielectric constant, thermal conductivity and thermal expansion coefficient (TEC) of the ceramic samples as a function of AIN content. Results show that AIN and SiO2-B2O3-ZnO-Al2O3-Li2O glass can be sintered at 950 ℃, and ZnAI204 and Zn2SiO4 phase precipitated to form glass-ceramic. The performance of the ceramic samples was determined by the composition and bulk density of the composites. Lower AlN content was found redounding to liquid phase sintering, and higher bulk density of composites can be accordingly obtained. With the increase of porosity, corresponding decreases were located in the dielectric constant, thermal conductivity and TEC of the ceramic samples. When the mass fraction of AlN was 40%, the ceramic samples possessed a low dielectric constant (4.5-5.0), high thermal conductivity (11.6 W/(m.K)) and a proper TEC (3.0× 10^-6 K^-1 which matched that of silicon). The excellent performance makes this kind of low temperature co-fired ceramic a promising candidate for application in the micro-electronics packaging industry. 展开更多
关键词 Aluminum nitride (AlN) Borosilicate glass Low temperature sintering PERFORMANCE
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