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首页> 外文期刊>Indian Journal of Science and Technology >Impregnated Palm Kernel Shell Activated Carbon for CO2 Adsorption by Pressure Swing Adsorption
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Impregnated Palm Kernel Shell Activated Carbon for CO2 Adsorption by Pressure Swing Adsorption

机译:变压吸附法浸渍棕榈仁壳活性炭吸附CO2。

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Objectives: To study the application of impregnated palm kernel shell activated carbon (AC-PKS) as carbon dioxide (CO2) adsorbent for simulated coal-fired power flue gas. Methods/Statistical Analysis: The activated carbon was prepared using chemical (ZnCl2) activation method and impregnated with several types of metal oxides (Cerium, Barium and Titanium). The physico-chemical properties of PKS-ACs such as BET surface area, pore volume, and pore diameter were performed using N2 adsorption isotherm. Both loaded and unloaded ACs were also characterized using X-ray diffraction (XRD) and Scanning electron microscopy (SEM). The adsorption of CO2 from the simulated flue gas was investigated by pressure swing adsorption process in fixed-bed reactor. Findings: AC-PKS impregnated with Cerium Oxide (CeO2) showed the highest sorption capacity of CO2 among other impregnated metal oxides. AC-PKS/CeO2 also displayed the longest breakthrough time of 350 seconds for CO2 with 0.63 mole CO2/kg AC. The CO2 adsorption capacity of AC-PKS, ACPKS- TiO2, PKS-AC/BaO and AC-PKS/CeO2 until complete saturation, were at 0.54 mole CO2/kg AC, 0.78 mole CO2/kg AC, 1.37 mole CO2/kg AC and 1.41 mole CO2/kg AC, respectively. During the desorption process, 99% of CO2 can be recovered and under 2 bar, 3 bar and 4 bar, the purity of CO2 was 25%, 36% and 38%. Interestingly, the purity increased to 93% when purging step with CO2 was added. Application/Improvements: This system will be implemented to capture CO2 from flue gas emissions from coal based power plant.
机译:目的:研究浸渍棕榈仁壳活性炭(AC-PKS)作为二氧化碳(CO2)吸附剂在模拟燃煤发电烟气中的应用。方法/统计分析:用化学(ZnCl2)活化方法制备活性炭,并用几种类型的金属氧化物(铈,钡和钛)浸渍。使用N2吸附等温线进行PKS-AC的物理化学性质(如BET表面积,孔体积和孔径)。还使用X射线衍射(XRD)和扫描电子显微镜(SEM)对有负载和无负载的AC进行了表征。通过变压吸附法研究了固定床反应器中模拟烟气对CO2的吸附。研究结果:氧化铈(CeO2)浸渍的AC-PKS在其他浸渍的金属氧化物中显示出最高的CO2吸附能力。 AC-PKS / CeO2在以0.63摩尔CO2 / kg AC的条件下对CO2的穿透时间也最长,为350秒。直到完全饱和为止,AC-PKS,ACPKS-TiO2,PKS-AC / BaO和AC-PKS / CeO2的CO2吸附量分别为0.54摩尔CO2 / kg AC,0.78摩尔CO2 / kg AC,1.37摩尔CO2 / kg AC和1.41摩尔CO2 / kg AC。在解吸过程中,可以回收99%的CO2,在2 bar,3 bar和4 bar的压力下,CO2的纯度分别为25%,36%和38%。有趣的是,当添加CO2吹扫步骤时,纯度提高到93%。应用/改进:将实施该系统以捕获来自燃煤电厂烟气排放中的CO2。

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