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环管式反应器在氯化苄合成中的应用 被引量:1
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作者 亓建设 《中国氯碱》 CAS 2013年第4期26-27,共2页
介绍了环管式反应器的结构原理及在合成氯化苄的应用情况和操作要点,应用效果表明,该反应器优于光氯化反应器。
关键词 氯化苄 环管式反应器 光氯化反应器
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聚丙烯环管式反应器的热量、物料衡算及密度计校正 被引量:1
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作者 李永华 《齐鲁石油化工》 1993年第3期175-177,共3页
本文从物料衡算及热量衡算入手,以总物料平衡为基础,对主反应器R201/R202,从工程角度作了探讨,建立了数学模型,并写成dBASE程序,在微机上通过,由此对密度计DRC241/DRC251作了校正。
关键词 聚丙烯 环管式反应器 热量 物料
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新型连续乳液聚合反应器 被引量:1
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作者 彭慧 程时远 《合成橡胶工业》 CAS CSCD 北大核心 2006年第4期310-312,共3页
介绍了4种主要连续乳液聚合反应器的研究新进展,包括连续搅拌釜式反应器、连续环管式反应器、脉冲填料塔式反应器及库爱特-泰勒旋流式反应器。提出了连续乳液聚合反应器的发展方向。
关键词 乳液聚合 连续搅拌釜式反应器 连续环管式反应器 脉冲填料塔式反应器 库爱特-泰勒 旋流式反应器 综述
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用于淤浆环管聚乙烯钛系催化剂的研究 被引量:1
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作者 王世波 周俊领 +2 位作者 张磊 吕新平 周歆 《石化技术与应用》 CAS 2016年第3期191-194,共4页
以乙烯和氢气为原料,三乙基铝为助催化剂,采用自制的淤浆环管聚乙烯钛系催化剂(简称催化剂L)或参比催化剂(简称催化剂R),在己烷用量为1 L,三乙基铝(1 mol/L)用量为1 m L,聚合总压力为1.0 MPa,聚合温度为90℃,聚合时间为2 h的条件下,制... 以乙烯和氢气为原料,三乙基铝为助催化剂,采用自制的淤浆环管聚乙烯钛系催化剂(简称催化剂L)或参比催化剂(简称催化剂R),在己烷用量为1 L,三乙基铝(1 mol/L)用量为1 m L,聚合总压力为1.0 MPa,聚合温度为90℃,聚合时间为2 h的条件下,制备了聚乙烯粉料。结果表明:催化剂L与催化剂R的化学组成相似,二者均具有较宽的粒径分布,二者的氢调敏感性和共聚性能相近;乙烯聚合动力学行为均属于缓慢衰减型。 展开更多
关键词 乙烯 聚合 环管式反应器 钛系催化剂 聚乙烯
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Liquid Circulation in a Multi-tube Air-lift Loop Reactor 被引量:3
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作者 刘永民 刘铮 +1 位作者 穆克 袁乃驹 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2000年第3期267-271,共5页
A multi-tube air-lift loop reactor (MT-ALR) is presented in this paper. Based on the energy conservation, a mathematical model describing the liquid circulation flow rate was developed, which was determined by gas vel... A multi-tube air-lift loop reactor (MT-ALR) is presented in this paper. Based on the energy conservation, a mathematical model describing the liquid circulation flow rate was developed, which was determined by gas velocity, the cross areas of riser and downcomer, gas hold-up and the local frictional loss coefficient. The experimental data indicate that either increase of gas flow rate or reduction of the downcomer diameter contributes to higher liquid circulation rate. The correlation between total and the local frictional loss coefficients was also established.Effects of gas flowrate in two risers and diameter of downcomer on the liquid circulation rate were examined. The value of total frictional loss coefficient was measured as a function of the cross area of downcomer and independent of the gas flow rate. The calculated results of liquid circulation rates agreed well with the experimental data with an average relative error of 9.6%. 展开更多
关键词 REACTOR air-lift loop reactor multi-tube liquid circulation velocity frictional loss coefficient
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Investigation into Syngas Generation from Solid Fuel Using CaSO4-based Chemical Looping Gasification Process 被引量:17
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作者 LIU Yongzhuo GUO Qingjie 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2013年第2期127-134,共8页
Chemical-looping gasification (CLG) is a novel process for syngas generation from solid fuels, sharing the same basic principles as chemical-looping combustion (CLC). It also uses oxygen carriers (mainly metal ox... Chemical-looping gasification (CLG) is a novel process for syngas generation from solid fuels, sharing the same basic principles as chemical-looping combustion (CLC). It also uses oxygen carriers (mainly metal oxide and calcium sulfate) to transfer heat and oxygen to the fuel. In this paper, the primary investigation into the CLG process with CaSO4 as oxygen carrier was carried out by thermodynamic analysis and experiments in the tube reactor. Sulfur-contained gas emission was mainly H2S rather than SO2 in the CLG process, showing some different features from the CLC. The mass and heat balance of CLG processes were calculated thermodynamically to determinate the auto-thermal operating conditions with different CaSO4/C and steam/C molar ratios. It was found that the CaSO4/C molar ratio should be higher than 0.2 to reach auto-thermal balance. The effect of temperature on the reactions between oxygen carrier and coal was investigated based on Gibbs free energy minimum method and ex- perimental results. It indicated that high temperature favored the CLG process in the fuel reactor and part of syngas was consumed to compensate for auto-thermal system. 展开更多
关键词 chemical-looping gasification syngas generation CaSO4 oxygen carrier thermodynamic analysis
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