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首页> 外文期刊>ChemEngineering >Effect of Concentration on Amine-Modified Kenaf as a Sorbent for Carbon Dioxide Adsorption in a Pressure Swing Adsorption System
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Effect of Concentration on Amine-Modified Kenaf as a Sorbent for Carbon Dioxide Adsorption in a Pressure Swing Adsorption System

机译:浓度对胺改性红麻作为变压吸附系统中二氧化碳吸附剂的影响

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Amongst the strategies applicable for CO2 capture and sequestration, the adsorption process has a high potential to be applied as an alternative CO2 separation strategy as it offers large adsorption capacity, requires low energy for regeneration with economical equipment cost, prevents corrosion problems, and provides ease of applicability. Inspired by the most applicable amine-based chemical absorption for CO2 capture, the modification of adsorbent by amine was first considered and then investigated. This study introduces kenaf (Hibiscus Cannabinus L.) as a potential low-cost material in evaluating the effect of amine functional group concentrations on CO2 adsorption capacity. Monoethanolamine (MEA) and tetraethylenepentamine (TEPA) were impregnated on kenaf via a wetness impregnation method to achieve the aim. The ratios of amine to kenaf were varied at 1:2, 7:10, 1:1, 2:1, 5:1, 7:1, and 10:1. Then, the prepared amine-modified kenaf core sorbent was characterized using different morphology and structural characterization techniques such as a field emission scanning electron microscope (FESEM) analyzer and Fourier transform infrared (FTIR) spectroscopy. Results obtained through the analyses showed that amine (MEA and TEPA) were successfully impregnated on the kenaf core surfaces, and that amine concentrations have a significant effect on the morphological structures of the kenaf core support. The study on CO2 adsorption capacity was conducted in a pressure swing adsorption system (PSA). Results revealed that the highest CO2 adsorption capacity for MEA-modified kenaf adsorbent was achieved at an amine to kenaf ratio of 1:1 (2.070 mmol/g), while for TEPA-modified kenaf adsorbent at a ratio of 2:1 (2.086 mmol/g). The study on the effect of amine concentration on kenaf adsorbent is beneficial in introducing kenaf as a sorbent in capturing CO2.
机译:在适用于CO2捕集和封存的策略中,吸附工艺具有很大的潜力,因为它具有大的吸附能力,需要低能耗的再生能源和经济的设备成本,可防止腐蚀问题并易于操作,因此有可能被用作替代CO2分离策略。适用性。受最适用于胺的化学吸收二氧化碳的启发,首先考虑了胺对吸附剂的改性,然后进行了研究。这项研究介绍了洋麻(Hibiscus Cannabinus L.)作为潜在的低成本材料,用于评估胺官能团浓度对CO2吸附能力的影响。通过湿法浸渍法将单乙醇胺(MEA)和四亚乙基五胺(TEPA)浸渍在洋麻上以达到目的。胺与洋麻的比例在1:2、7:10、1:1、2:1、5:1、7:1和10:1之间变化。然后,使用不同的形态和结构表征技术,例如场发射扫描电子显微镜(FESEM)分析仪和傅里叶变换红外(FTIR)光谱,对制得的胺改性洋麻芯吸附剂进行表征。通过分析获得的结果表明,胺(MEA和TEPA)已成功浸渍在洋麻芯表面上,并且胺的浓度对洋麻芯支撑物的形态结构具有重要影响。 CO 2吸附能力的研究是在变压吸附系统(PSA)中进行的。结果显示,胺与洋麻的比例为1:1(2.070 mmol / g)时,MEA改性洋麻吸附剂的最高CO2吸附量为2:1(2.086 mmol),而TEPA改性的洋麻吸附剂为最高。 /G)。胺浓度对洋麻吸附剂影响的研究有助于引入洋麻作为吸附剂捕获二氧化碳。

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