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101.
KF or K2CO3 was added into the 1-butanol-water system and two phases were formed: water-rich phase (water phase) and 1-butanol-rich phase (1-butanol phase). The liquid liquid equilibrium (LLE) data for 1-butanol-water-KF and 1-butanol-water-K2CO3 systems were measured at 25℃ and showed that 1-butanol phase contained negligible salt and water phase contained negligible 1-butanol when the concentrations of KF and K2CO3 in the water phase were equal to or higher than 27.11% and 31.68% , respectively. Thus water could be separated efficiently from 1-butanol-water by adding KF or K2CO3 into the system. A theoretical calculation of LLE data was calculated by using the Pitzer theory to get water activity in the water phase, and by the models, such as the Wilson, NRTL or the UNIQUAC for the 1-butanol phase. For 1-hutanol-water-KF system, the experimental data were found in good agreement with the calculated results by using Pitzer theory and Wilson equa tion, while for 1-butanol-water-K2CO3 system, the experimental data were found in good agreement with the calculated results by using Pitzer theory and UNIQUAC eauation.  相似文献   
102.
引用带权的Sobolev模和牛顿迭代格式,讨论了拟线性对称双曲抛物耦合方程组的初边值问题,得到了可微解的存在和唯一性定理。  相似文献   
103.
讨论了一类二阶非线性微分方程解的振动性与渐近性,得到了该方程有界解的振动性与渐近性的新的充分条件,改进并推广了已有的结果。  相似文献   
104.
在普通光纤光孤子传输的行为基础上,提出纳米光纤概念,讨论利用纳米光纤的强三阶光学非线性建立的全新光孤子光通信系统 分析纳米光纤量子点的制备和纳米光纤的形成机制  相似文献   
105.
刑法溯及力在我国古代法律文献中多有记载,随着历代刑事政策以及立法指导思想的变化,历史上各朝代对刑法溯及力规定各有不同。唐朝刑律立法成熟,确立了现代意义上的“从旧兼从轻”原则,从法律制度史角度来看,当是现代刑法溯及力制度的渊源。  相似文献   
106.
以华泽铝电空冷机组为例,对300MW直接空冷机组的启动冲洗工艺进行了探讨,并对其冲洗方法和冲洗原则进行了较为详细的介绍。  相似文献   
107.
本文分析了G.728语音编码算法增益固定量化的缺陷,设计了精确表示增益的自适应量化方案。采用BP神经网络对增益的量化步长进行非线性自适应量化,并提出一种新的用于训练BP神经网络的数据的获取方法。  相似文献   
108.
基于位移的抗震设计中位移模式的确定   总被引:2,自引:0,他引:2  
根据地震强度、地震波、结构层数与跨度、强柱弱梁系数等影响水平位移模式的主要因素,通过大量算例分析,提出了确定基于位移的抗震设计中水平位移模式的方法.  相似文献   
109.
对用熔体淬火再真空蒸发所制备的非晶态Te_(8l)Ge_(15)Sb_4薄膜的伏-安特性,直流电导率及玻璃转变温度等性能进行了研究。结果表明,这种材料具有较好的开关效应及较高的热稳定性,可用作开关器件等。  相似文献   
110.
Summary In the realm of human circadian rhythms, the masking effect is defined as the change in the course of deep body temperature induced by changes in the degree of physical activity, or by the alteration between sleep and wake. This effect is particularly obvious during internal desynchronization where the rhythms of deep body temperature, and the sleep-wake sleep-wake sleep cycle — i.e. one of the masking factors — run with different periods.Every sleep onset is accompanied by a rapid drop, and wake onset by a rapid rise in deep body temperature, each one with an overshoot of about 50% of the steady state variations. When rhythms are calculated, with the dominant temperature period as the screening period, exclusively from data obtained during sleep episodes, on the one hand, and from those obtained exclusively during wake, on the other, two average cycles emerge: the sleep temperature curve and the wake temperature curve. Both run in parallel but are separated by the masking effcct. As derived from many experiments, the mean masking effect amounts to 0.28±0.06°C. The masking effect also depends to some extent on the phase of the temperature rhtthm; it is larger than average around the temperature maximum and during the descending phase of the temperature cycle, where the alertness commonly is highest and the probability to sleep, in general, and the REM sleep propensity, in particular, are smaller than average. This also can be interpreted to indicate that the sleep temperature curve is phase advanced relative to the wake temperature curve; this, on the average, by 0.9±0.3 h.If the individually determined amount of masking is added to the temperature data obtained during sleep, or substracted from the temperature data obtained during wake, a temperature curve emerges that can be though of as being purified of the masking effect. Analyses of this artificial curve allow estimation of that part of the internal interactions uninfluenced by the masking effect. On the average, about half of the amount of interaction between the rhythm of sleep-wake and that of deep body temperature is explained by the masking effect, whereas the other half is oscillatory interaction. Both types of interaction are inherent and inseparable parts of the circadian clock mechanism, as can be deduced from model considerations.  相似文献   
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