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Mass transfer performance enhancement by nanoabsorbents during CO_2 absorption process

机译:CO_2吸收过程中纳米光伏的传质性能提高

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摘要

A fluid in which nano-sized particles are dispersed is called nanofluids. It has been actively studied in the field of heat and mass transfer because of its attractive thermophysical properties. Since methanol is mainly used as a physical CO2 absorbent, methanol-based nanofluids (nanoabsorbents) are tested for mass transfer performance enhancement. Al2O3 and SiO2 nanopowders are used, and the nanoabsorbents are manufactured by the ultrasonication method. Thermal conductivity (0.005-1.0 vol%, 24-40 degrees C), viscosity (0.005-1.0 vol%, 20 degrees C), surface tension (0.005-0.1 vol%, 20 degrees C) and average cluster size (0.005-1.0 vol%, 20 degrees C) are measured to analyze the combined heat and mass transfer and the dispersion characteristics of the nanofluids. Also, the mass transfer characteristics between CO2 and nanoabsorbents is evaluated using the Schlieren visualization experiment. It is found that the thermal conductivity and viscosity of the nanoabsorbents increase with increasing the volume concentration of nanoparticles. At 1.0 vol%, the thermal conductivities of Al2O3/methanol and SiO2/methanol nanoabsorbents are 4.6% and 5.5% higher than that of pure methanol, respectively, while the viscosities are also increased by 21% and 11%, respectively. The average cluster sizes of Al2O3 and SiO2 nanoabsorbents are not vary depending on the volume concentration, and they range 267-288 nm and 496-507 nm, respectively. It is concluded that the mass diffusivities of nanoabsorbents are significantly higher than that of pure methanol, and the enhancement mechanism of mass transfer is newly proposed. (C) 2019 Elsevier Ltd. All rights reserved.
机译:将纳米尺寸颗粒分散的流体称为纳米流体。由于其具有吸引力的热物理性质,已经在热和传质领域积极研究。由于甲醇主要用作物理二氧化碳吸收剂,因此测试甲醇基纳米流体(纳米吸收剂)以进行传质性能增强。使用Al 2 O 3和SiO2纳米粉末,纳米吸收剂通过超声法制造。导热系数(0.005-1.0 Vol%,24-40℃),粘度(0.005-1.0体积%,20℃),表面张力(0.005-0.1 Vol%,20℃)和平均簇尺寸(0.005-1.0测量VOR%,20℃)以分析纳米流体的组合热和传质和分散特性。而且,使用Schlieren可视化实验评估CO 2和纳米吸收剂之间的传质特性。发现纳米吸收剂的导热率和粘度随着纳米颗粒的体积浓度而增加。在1.0体积%,Al 2 O 3 /甲醇和SiO 2 /甲醇纳米吸收剂的热导体分别比纯甲醇高4.6%和5.5%,而粘度也分别增加21%和11%。 Al 2 O 3和SiO2纳米吸收剂的平均簇大小不根据体积浓度而变化,分别为267-288nm和496-507nm。得出结论,纳米吸收剂的质量扩散性显着高于纯甲醇的散谷物,新提出了传质的增强机制。 (c)2019 Elsevier Ltd.保留所有权利。

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