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1.
对水力喷射空气旋流器(WSA)的中心排气管直径De和排气管插入深度S进行了设计优化研究,实验考察了不同DeS对WSA脱氨传质系数KLa和气相压降的影响,提出了综合评价传质过程效率的概念——单位压降传质效率ηp,讨论了DeS的设计取值。研究表明,当De增大时,KLa和气相压降均随之降低,较小De的WSA具有较高的气液传质性能,但气相压降比较大,而KLa和气相压降均随S增大而增大。综合能效关系表明,随着De的增大ηp增大,随着S的增大ηp出现先增大后降低的趋势,WSA设计中De与WSA直径D之比De/D宜为0.42~0.53,S与WSA筒体长度H之比S/H适宜取值约为0.70。  相似文献   

2.
燃煤烟气中SO2对氨法脱碳的影响   总被引:1,自引:0,他引:1       下载免费PDF全文
利用湿壁塔实验台对燃煤烟气中SO2对氨水溶液[1%~7%(质量)]吸收CO2的影响进行了实验研究,具体分析了不同反应温度(20~80℃)和CO2体积分数(5%~20%)条件下,CO2传质通量及传质系数随SO2浓度和SO2负载量的变化规律。结果表明, SO2浓度由0增至11428 mg·m-3,CO2传质通量及传质系数均有一半左右降幅,而SO2负载量[0.1~0.4 mol SO2·(mol NH3-1]的增加,同样导致CO2传质通量及传质系数明显减小。氨水浓度及反应温度增加可有效提高CO2传质通量和传质系数,相对降低SO2对CO2传质的影响。CO2浓度的增加可明显提高其传质通量,但是CO2的传质系数有所降低。  相似文献   

3.
研究了具有三维交错菱形结构的微通道对离子液体1-丁基-3-甲基咪唑四氟硼酸盐([Bmim][BF4])水溶液吸收CO2过程的传质增强作用。实验主要聚焦于弹状流和破碎弹状流。考察了弹状流型下气液流量、离子液体浓度对体积传质系数kLa、增强因子E、CO2吸收率X及压力降ΔP的影响。结果表明,较之于直通道,三维菱形通道可以显著提高体积传质系数和CO2吸收率,其增强因子可达2.1,压力降仅增加 0.9 kPa。提出了一个新的体积传质系数kLa预测式,预测效果良好。采用VOF法模拟了微通道内气液两相流动过程,获得了连续相的速度矢量场。三维菱形通道能诱导涡流,强化传质过程。  相似文献   

4.
俞致远  赵兵涛  何书申 《化工学报》2015,66(3):1012-1018
为强化二氧化碳的吸收过程,采用一类旋流逆向气液多级接触的方式,以NaOH溶液为吸收剂,研究其与大跨度浓度CO2(2.5%~15%)接触反应的传质性能。分别探讨了吸收剂浓度、吸收剂流量、烟气CO2浓度、烟气流量及反应温度对气相总体积传质系数(Kga)的定量影响。结果表明,在实验条件下,其Kga可达(4.53×10-5)~(9.22×10-5)kmol·m-3·s-1·kPa-1。与双级直流喷雾和单级旋流喷雾相比,旋流逆向气液多级接触能够有效强化大跨度浓度CO2的吸收过程。Kga随吸收剂浓度、流量和反应温度的增加而增加,随CO2浓度增加呈现先增加后减小(CO2浓度大于5%)的非线性关系,随气体流量增加先增加后趋于稳定。  相似文献   

5.
研究了微通道内醇胺[单乙醇胺(MEA)和甲基二乙醇胺(MDEA)]与离子液体[1-丁基-3-甲基咪唑四氟硼酸([Bmim][BF4])和1-羟乙基-3-甲基咪唑甘氨酸([C2OHmim][GLY])]复配水溶液吸收CO2的传质特性。考察了醇胺/离子液体浓度比(cAAcIL)对液相体积传质系数(kLa)的影响,发现kLa随反应速率的增大而增大。为进一步阐释复配水溶液吸收CO2的传质机理,分析了比表面积、扩散速率、增强因子和液弹循环对传质速率的影响。结果表明,四种复配溶液中,反应速率和循环频率(fcir)分别在低流率和高流率下对传质速率起主导作用。kLa可表示为fcir的函数,低气相流率下kLafcir呈线性关系,斜率与反应速率成正相关,高气相流率下,液弹循环因膜弹传递困难而对整体传质速率的影响减弱,kLafcir呈指数关系,幂律指数小于1。  相似文献   

6.
规整填料塔中氨水吸收CO2的体积总传质系数   总被引:1,自引:0,他引:1  
目前,CO2排放问题已经成为世界各国可持续发展面临的重要挑战。以化学溶剂吸收法工艺为基础的燃烧后脱碳是当前比较成熟的已进入工业规模实验的技术路线。而氨水作为一种新的吸收剂受到广泛关注。以气相体积传质系数(KGae)作为表征,对规整填料塔中氨水吸收CO2的传质性能进行了研究,探索了气速、CO2分压、液速和氨水浓度对KGae的影响。实验结果表明,在本文的工况条件下,KGae随液速和氨水浓度的增大而增大,随CO2分压的增大有所减小,气速对KGae的影响不大。实验结果对今后填料塔的设计工作的经济性和合理性有一定指导作用。  相似文献   

7.
为了研究错流旋转填料床的质、热同传性能,采用热空气-氨水体系,考察了进气温度T、超重力因子β、液体喷淋密度q和气速u对错流旋转填料床传热性能的影响,在相同实验条件下对比了丝网填料和乱堆填料的传热性能。研究结果表明:气相体积传质系数kyae、体积传热系数(Ua)s随进气温度、超重力因子、气速、液体喷淋密度的增大而增大;传热效率ε、传热面积A随超重力因子、气速、液体喷淋密度的增大而增大;传热系数K随超重力因子、气速、液体喷淋密度的增大几乎不变,从而揭示了错流旋转填料床强化气液直接传热的机理是通过提高传热面积进而提高体积传热系数,而不是显著提高传热系数。在相同条件下,以丝网为填料时kyae和(Ua)s分别是乱堆填料的1.09~1.63倍和1.24~3.53倍。  相似文献   

8.
刘应书  魏广飞  张辉  李虎  李小康  谭雅倩 《化工学报》2013,64(11):4096-4104
醇胺溶液吸收CO2是沼气提纯领域重要的研究课题。在实验填料吸收塔中,以乙醇胺(MEA)、二乙醇胺(DEA)为吸收剂,研究了吸收剂浓度、进气流量、CO2浓度、进液温度对吸收过程转化率η、吸收速率N以及气相总体积传质系数KGae的影响。结果表明,吸收剂浓度增加可有效提高η、N及KGae;进气流率增加,η逐渐降低,N先增加后降低,KGae先增加后降低最终趋于稳定;随着CO2浓度增加,η和KGae不断降低,N逐渐增加;随着进液温度升高,η和KGae均先升高后降低;MEA、DEA的最佳进液温度在40~60℃之间,并随CO2负载量增大而逐渐降低。研究结果对于醇胺溶液吸收法沼气提纯技术的研究开发和实际应用有参考作用。  相似文献   

9.
填料塔中的NaOH水溶液脱除空气中微量CO2的传质动力学   总被引:2,自引:0,他引:2  
骆培成  王志祥  焦真  张志炳 《化工时刊》2004,18(2):35-37,40
在填料吸收塔中测定了25℃时NaOH水溶液吸收空气中微量CO2的体积传质总系数(KGαv).并研究了进口气体中CO2的含量、气体流量、吸收液喷淋密度以及NaOH浓度对体积传质总系数的影响。进口气体中CO2的含量、气体流量、吸收液喷淋密度对KGαv的影响较小;NaOH浓度对KGαv的影响较大,随着NaOH浓度的增加,KGαv显著提高。  相似文献   

10.
采用激光诱导荧光(LIF)观测方法考察了在气相中分别添加乙醇和二氯甲烷分别对CO2在水中溶解过程界面对流的影响,得到了液相中CO2浓度分布及其演化的观测结果,通过物料衡算得到了相应条件下的液相传质系数。CO2溶解过程会出现由密度梯度引起的Rayleigh对流。实验结果表明,当添加的乙醇含量小于8.47 mg·L-1时,Rayleigh对流会被增强,进而促进了CO2的溶解;随着气相中乙醇含量的增大,Rayleigh对流反而被抑制;气相添加二氯甲烷会显著增强Rayleigh对流,提高了CO2的传质速率,随着气相二氯甲烷含量的增大,CO2在水中溶解过程的液相传质系数呈现先加强后恒定的趋势。  相似文献   

11.
The application of spray towers for CO2 capture is a development trend in recent years. However, most of the previous jobs were conducted in a cylindrical tower by using a single spray nozzle, whose configuration and performance is not good enough for industrial application. To solve this problem, the present work proposed a diameter-varying spray tower and a new spray mode of dual-nozzle opposed impinging spray to enhance the heat and mass transfer of CO2 absorption process. Experiments were performed to investigate the mass transfer performance (in terms of the CO2 removal rate (η) and the overall mass transfer coefficient (KGae2 are major factors, which affect the absorption performance and the maximums of η and KGae that are 94.0% and 0.574 kmol·m-3·h-1·kPa-1, respectively, under the experimental conditions. Furthermore, new correlations to predict the mass transfer coefficient of the proposed spray tower are developed in various CO2 concentrations with a Pearson Correlation Coefficient over 90%.  相似文献   

12.
Phase change absorbents for CO2 are of great interest because they are expected to greatly reduce the heat energy consumption during the regeneration process. Compared with other phase change absorbents, monoethanolamine (MEA)-sulfolane-water is inexpensive and has a fast absorption rate. It is one of the most promising solvents for large-scale industrial applications. Therefore, this study investigates the mass transfer performance of this phase change system in the process of CO2 absorption in a packed tower. By comparing the phase change absorbent and the ordinary absorbent, it is concluded that the use of MEA/sulfolane phase change absorbent has significantly improved mass transfer efficiency compared to a single MEA absorbent at the same concentration. In the 4 mol·L-1 MEA/5 mol·L-1 sulfolane system, the CO2 loading of the upper liquid phase after phase separation is almost zero, while the volume of the lower liquid phase sent to the desorption operation is about half of the total volume of the absorbent, which greatly reduces the energy consumption. This study also investigates the influence of operating parameters such as lean CO2 loading, gas and liquid flow rates, CO2 partial pressure, and temperature on the volumetric mass transfer coefficient (KGaV). The research shows that KGaV increases with increasing liquid flow rate and decreases with the increase of lean CO2 loading and CO2 partial pressure, while the inert gas flow rate and temperature have little effect on KGaV. In addition, based on the principle of phase change absorption, a predictive equation for the KGaV of MEA-sulfolane in the packed tower was established. The KGaV obtained from the experiment is consistent with the model prediction, and the absolute average deviation (AAD) is 7.8%.  相似文献   

13.
In this work, an air-blast atomizing column was used to study the CO2 capture performance with aqueous MEA (mono-ethanol-amine) and NaOH solutions. The effects of gas flow rate, the liquid to gas ratio (L/G), the CO2 concentration on the CO2 removal efficiency (η) and the volumetric overall mass transfer coefficient (KGav) were investigated. The air-blast atomizing column was also compared with the pressure spray tower on the studies of the CO2 capture performance. For the aqueous MEA and NaOH solutions, the experimental results show that the η decreases with increasing gas flow rate and CO2 concentration while it increases with increasing L/G. The effects on KGav are more complicated than those for η. When the CO2 concentration is low (3 vol%), KGav increases with increasing gas flow rate while decreases with increasing L/G. However, when the CO2 concentration is high (9.5 vol%), as the gas flow rate and L/G increases, KGav increases first and then decreases. The aqueous MEA solution achieves higher η and KGav than the aqueous NaOH solution. The air-blast atomizing column shows a good performance on CO2 capture.  相似文献   

14.
This study investigated catalytic decomposition and mass transfer of aqueous ozone promoted by Fe-Mn-Cu/γ-Al2O3 (Cat) in a rotating packed bed (RPB) for the first time. The results showed that the value of the overall decomposition rate constant of ozone (Kc) and overall volumetric mass transfer coefficient (KLa) are 4.28×10-3 s-1 and 11.60×10-3 s-1 respectively at an initial pH of 6, β of 40, of 60 mg·L-1 and QL of 85 L·h-1 in deionized water, respectively. Meanwhile, the Kc and KLa values of Fenhe water are 0.88×10-3 s-1 and 2.51×10-3 s-1 lower than deionized water, respectively. In addition, the Kc and KLa values in deionized water for the Cat/O3-RPB system are 44.86% and 47.41% higher than that for the Cat/O3-BR (bubbling reactor) system, respectively, indicating that the high gravity technology can facilitate the decomposition and mass transfer of ozone in heterogeneous catalytic ozonation and provide some insights into the industrial wastewater.  相似文献   

15.
This paper studies the mass transfer performance of structured packings in the absorption of CO2 from air with aqueous NaOH solution. The Eight structured packings tested are sheet metal ones with corrugations of different geometry parameters. Effective mass transfer area and overall gas phase mass transfer coefficient have been measured in an absorption column of 200 mm diameter under the conditions of gas F-factor in 0.38–1.52 Pa0.5 and aqueous NaOH solution concentration of 0.10–0.15 kmol·m?3. The effects of gas/liquid phase flow rates and packing geometry parameters are also investigated. The results show that the effective mass transfer area changes not only with packing geometry parameters and liquid load, but also with gas F-factor. A new effective mass transfer area correlation on the gas F-factor and the liquid load was proposed, which is found to fit experiment data very well.  相似文献   

16.
研究了阵列凸起微通道内N-甲基二乙醇胺(MDEA)吸收CO2过程的气液两相传质特性。在弹状流型下,考察了气液两相流量、MDEA浓度对体积传质系数、CO2吸收效率、压力降以及能量损耗的影响。弹状气泡受到阵列凸起的挤压作用发生形变,促进了气液两相间的传质。与平滑通道相比,阵列凸起微通道在实验条件下具有更好CO2吸收效率。在相同的能量损耗时,阵列凸起微通道具有更大的体积传质系数。  相似文献   

17.
abstract The volumetric mass transfer coefficient kLa of gases (H2, CO, CO2) and mass transfer coefficient kL on liquid par-affin side were studied using the dynamic absorption method in slurry bubble ...  相似文献   

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