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Cyclone separation in a supercritical water circulating fluidized bed reactor for coallbiomass gasification: Structural design and numerical analysis 被引量:6
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作者 Guoxing Li Youjun Lu 《Particuology》 SCIE EI CAS CSCD 2018年第4期55-67,共13页
A new concept of a supercritical water (SCW) circulating fiuidized bed reactor is proposed to produce hydrogen from coal/biomass gasification. The cyclone is a key component of the reactor system, in this paper, cyc... A new concept of a supercritical water (SCW) circulating fiuidized bed reactor is proposed to produce hydrogen from coal/biomass gasification. The cyclone is a key component of the reactor system, in this paper, cyclones with a single circular inlet (SCI) or a double circular inlet (DCI) were designed to adapt to the supercritical conditions. We evaluated the separation performance of the two cyclones using numerical simulations. A three-dimensional Reynolds stress model was used to simulate the turbulent flow of the fluid, and a stochastic Lagrangian model was used to simulate the particle motion. The flow fields of both cyclones were three-dimensionally unsteady and similar to those of traditional gas-solid cyclones. Secondary circulation phenomena were discovered and their influence on particle separation was estimated. Analyzing the distribution of the turbulence kinetic energy revealed that the most intensive turbulence existed in the zone near the vortex finder while the flow in the central part was relatively stable. The particle concentration distribution was non-uniform because of centrifugal forces. The distribution area can be divided into three parts according to the motion of the particles. In addition, the separation efficiency of both cyclones increased with the inlet SCaN velocity. Because of its perturbance flow, the DCI separator had higher separation efficiency than the SCI separator under comparable simulations. However, this was at the expense of a higher pressure drop across the cyclone. 展开更多
关键词 CycloneStructural design supercritical water-solid flow separation performance Circulating fluidized bed Computational fluid dynamics
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A crosslinked chiral stationary phase for the separation of enantiomers by gas and supercritical fluid chromatography
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作者 ZHOU,Liang-Mo LOU,Xian-Wen SHENG,Yu-Fong WANG,Qing-Hai ZHU,Dao-Qian Dalian Institute of Chemical Physics,Academia Sinica,Dalian116012 《Chinese Journal of Chemistry》 SCIE CAS CSCD 1991年第4期322-326,共0页
Crosslinking experin(?)tnts for the chiral stationary phase OV-225-L-Val-t-butylamide within both fused silica and glass capillary columns have been carried out.Amino acid enantiomers were separated on crosslinked col... Crosslinking experin(?)tnts for the chiral stationary phase OV-225-L-Val-t-butylamide within both fused silica and glass capillary columns have been carried out.Amino acid enantiomers were separated on crosslinked columns by、both GC and SFC methods.In SFC,the α values of amino acid enantiomers are independent of the density of the mobile phase,and they are hig her than those obtained by GC for the tested enantiomers with the same column due to the lower column tempera- ture used in SFC. 展开更多
关键词 A crosslinked chiral stationary phase for the separation of enantiomers by gas and supercritical fluid chromatography
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