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首页> 外文期刊>Chemical Engineering Communications >AUGMENTATION OF ABSORPTION AND DESORPTION RATES IN A HYDROPHOBIC MICROPOROUS HOLLOW FIBER CONTAINED CONTACTOR BY ADJUSTING OUTLET GAS PRESSURE
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AUGMENTATION OF ABSORPTION AND DESORPTION RATES IN A HYDROPHOBIC MICROPOROUS HOLLOW FIBER CONTAINED CONTACTOR BY ADJUSTING OUTLET GAS PRESSURE

机译:通过调节出口气体压力来提高疏水性微孔中空纤维污染接触器的吸附和脱附速率

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摘要

The absorption of dilute CO 22 into aqueous solutions of sterically hindered 2-methyl aminoethanol (MAE) and the desorption of CO 22 from CO 22 loaded MAE solutions into N2 stream were investigated separately for the various combinations of operational variables, using a hydrophobic microporous hollow-fiber (polytetrafluoroethylene, PTFE) contained gas-liquid contactor (HFCC) with aqueous solutions of MAE as liquid media in the shell side at 30°C. The absorption of CO2 from the lumen side in this contactor is governed by the resistance in the liquid and hollow-fiber phases. The resistance to diffusion in the hollow-fiber phase (membrane resistance) amounted to 78-83% of the total resistance. Such a high membrane resistance was believed to be caused by some liquid penetration into the pores of hydrophobic microporous hollow fibers. Thus, the outlet gas pressure in the lumen side of the contactor was raised above an atmospheric pressure or adjusted at 0.1017 to 0.1019 MPa (i.e., 0.0004-0.0006 MPa over-pressure) so that the pore penetration of the aqueous solution might be suppressed. By such an adjustment of outlet total gas pressure, the total resistance and the membrane resistance were shown to be decreased on average to 28% and 12%, respectively. By adjusting the outlet total gas pressure, the total resistances to mass transfer during desorption of CO2 from aqueous CO2-loaded MAE solutions could also be decreased on average to about 21%. For the simultaneous absorption-desorption operation in a single unit, both absorption and desorption fluxes approached the respective constant values or the steady state was attained, as the process time had elapsed. Both absorption and desorption fluxes at the steady state were augmented by adjusting the outlet total gas pressure. In addition, both absorption and desorption processes approached the steady state faster by adjusting the outlet total gas pressure. At the constant flux periods, the absorption flux was about ten times higher than the desorption flux whether the outlet total gas pressure was adjusted or not. Because the desorption-part area here is designed as ten times the absorption-part area, the total absorption rate (= absorption flux × absorption-part area) is believed to be almost balanced with the total desorption rate (= desorption flux × desorption-part area) at the constant flux periods.View full textDownload full textKeywordsAbsorption, Carbon dioxide, Desorption, Hollow fiber contained gas-liquid contactor, 2-Methyl aminoethanol, Outlet gas pressure adjustmentRelated var addthis_config = { ui_cobrand: "Taylor & Francis Online", services_compact: "citeulike,netvibes,twitter,technorati,delicious,linkedin,facebook,stumbleupon,digg,google,more", pubid: "ra-4dff56cd6bb1830b" }; Add to shortlist Link Permalink http://dx.doi.org/10.1080/00986440701555225
机译:稀CO 2 2 在位阻2-甲基氨基乙醇(MAE)水溶液中的吸收和CO 2 2 2 2 加载到N 2 流中的CO 2 2 流中的> 的各种操作变量组合,疏水微孔中空纤维(聚四氟乙烯,PTFE)在30°C的壳侧包含气液接触器(HFCC),MAE水溶液作为液体介质。在该接触器中,管腔侧对CO 2 的吸收受液相和中空纤维相中的电阻支配。中空纤维相中的扩散阻力(膜阻力)为总电阻的78-83%。认为如此高的膜抗性是由于某些液体渗透到疏水性微孔中空纤维的孔中引起的。因此,将接触器内腔侧的出口气体压力提高到大气压以上或将其调整为0.1017至0.1019 MPa(即0.0004-0.0006 MPa过压),以使水溶液的孔隙渗透率达到压抑。通过这样调节出口总气体压力,总电阻和膜电阻平均分别降低到28%和12%。通过调节出口总气体压力,在从装载有CO 2 的MAE水溶液中解吸CO 2 的过程中,总传质阻力也可以平均降低至21 %。对于在单个单元中的同时吸收-解吸操作,随着处理时间的流逝,吸收和解吸通量都接近各自的恒定值或达到稳态。通过调节出口总气体压力可以增加稳态下的吸收通量和解吸通量。另外,吸收和解吸过程都通过调节出口总气体压力更快地达到稳态。在恒定的通量周期内,无论出口总气压是否调节,吸收通量都比解吸通量高约十倍。因为此处的解吸部分面积设计为吸收部分面积的十倍,所以总吸收率(=吸收通量×吸收部分面积)被认为与总解吸率(=脱附率)基本平衡恒定通量周期内的通量–解吸部分面积。)泰勒和弗朗西斯在线”,services_compact:“ citeulike,netvibes,twitter,technorati,delicious,linkedin,facebook,stumbleupon,digg,google,更多”,发布号:“ ra-4dff56cd6bb1830b”};添加到候选列表链接永久链接http://dx.doi.org/10.1080/00986440701555225

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