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Elmwood多处理机操作系统
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作者 Lebl.,TJ 柘彬 《软件》 北大核心 1990年第5期379-401,共23页
关键词 多处理机 操作系统 elmwood
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Cathodoluminescence Characteristics and Mineral Chemistry of Tennessee Sphalerites (Tn-Usa)
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作者 Emin ifti H.Haluk Selim Dougles Crowe 《矿物学报》 CAS CSCD 北大核心 2013年第S1期21-21,共1页
Optical cathodoluminescence microscopy (CLM) can provide very useful information both on mineral zoning formed during crystal growth and on variations in chemical composition of sphalerites which is reflected by their... Optical cathodoluminescence microscopy (CLM) can provide very useful information both on mineral zoning formed during crystal growth and on variations in chemical composition of sphalerites which is reflected by their visible colors. Gem quality sphalerite crystals associated with dolomite, calcite and fluorite having 3 different visible colors - green, honey and brown - were studied to compare their mineral chemistry and CL characteristics. Electron microprobe analyses indicated essentially no significant differences in terms of major components. Although the common CL-quencher ferrous iron contents of all three were lower than 0.25 wt %, none of the sphalerites cathodoluminescenced: two (brown and honey) were non-CL, the green sphalerite showed very week CL in faint brown color. Other trace elements that were analyzed include Fe, Cd, Mn, Ag, Hg, In, Bi, Cu, Ge, and Ga. Fe, Cd, Ga and Cu were relatively higher than the others. Most significant differences with respect to the common trace elements include honey colored sphalerites are essentially Fe- and Cd-poor but rich in Ga, green sphalerites are Fe- and Cd- rich but poor in all the others, and brown sphalerites are rich in Cd. No conclusive relation between non-CL behavior of all three sphalerites and their trace element chemistry was established, however; low quantities of common CL activators in sphalerite crystal structures such as Mn, Cu, and In were the main cause of the non-CL behavior. 展开更多
关键词 SPHALERITE CATHODOLUMINESCENCE EPMA elmwood Tennessee
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榆林木热重及热解动力学分析
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作者 唐明天 马德鹏 +1 位作者 张国凯 孙杰 《节能》 2015年第2期24-26,2,共3页
对榆林木采用热重分析,通过不同升温速率(10、30、50、80℃/min)下的热解实验,得到TGDTG曲线,分析榆林木的热解特性,结果表明:将榆林木的热解过程分为干燥脱水、挥发分热解、炭化三个阶段,随着升温速率的增加,挥发分热解温度范围扩大,... 对榆林木采用热重分析,通过不同升温速率(10、30、50、80℃/min)下的热解实验,得到TGDTG曲线,分析榆林木的热解特性,结果表明:将榆林木的热解过程分为干燥脱水、挥发分热解、炭化三个阶段,随着升温速率的增加,挥发分热解温度范围扩大,最大失重率所对应的温度升高;采用Lyon积分算法,得到活化能数值随着热解转化的不同阶段而不同,为78.47~271.58k J/mol,炭化阶段活化能最高,其次是挥发分,最小的是脱水。同时验证了:榆林木的热解反应与阿尼乌斯的一阶单步反应具有良好线性相关度。 展开更多
关键词 榆林木 热重量分析 热解 Lyon积分算法
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