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首页> 外文期刊>Powder Technology: An International Journal on the Science and Technology of Wet and Dry Particulate Systems >Surfactant assisted CaO-based sorbent synthesis and their application to high-temperature CO2 capture
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Surfactant assisted CaO-based sorbent synthesis and their application to high-temperature CO2 capture

机译:表面活性剂辅助CaO基吸附剂合成及其在高温二氧化碳捕获中的应用

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摘要

The concern of carbon dioxide (CO2) emissions, a main contribution of greenhouse gases, has been emerged as an important issue for environmental impact. Adsorption of CO2 by porous solid materials is proven to be one of efficient techniques for CO2 capture technologies. In the present work, attempted has been made to improve property of porous solid materials, CaO-based sorbent, applied for high-temperature CO2 capture. CaCO3 and CaO-based alumina was synthesized using precipitation technique with the addition of sulfonic single chain (SDS) and gemini (12-carbon hydrophobic chains and 3-carbon alkyl spacer, 12-3-12) surfactants for controlling/modifying physical properties. Our studies showed that the addition of anionic surfactants affected phase formation and polymorph of CaCO3, where stronger effect was observed with gemini surfactant. The synthetic CaCO3 was derived to form CaO and applied for capturing CO2 at 600 degrees C, 15% v/v CO2 (N-2 balanced). The results showed that CaO synthesized with adding gemini surfactant offered higher CO2 sorption capacity than single chain surfactant. By incorporating calcium with alumina using co-precipitation technique, the addition of gemini surfactant showed a good impact on CO2 capture performance as an increase in CO2 sorption capacity was observed. However, sintering effect was still not yet be resolved with the addition of gemini surfactant as CO2 sorption capacity decreased upon multiple cycles of CO2 capture. (C) 2018 Elsevier B.V. All rights reserved.
机译:二氧化碳(二氧化碳)排放是温室气体的主要贡献的关注,作为环境影响的重要问题。通过多孔固体材料的吸附CO2是CO2捕获技术有效技术之一。在本作工作中,已经尝试改善多孔固体材料,CaO基吸附剂的性能,适用于高温CO2捕获。使用沉淀技术合成CaCO 3和CaO的氧化铝,加入磺源单链(SDS)和Gemini(12-碳疏水链和3-碳烷基间隔物,12-3-12)表面活性剂,用于控制/改性物理性质。我们的研究表明,使用Gemini表面活性剂观察到阴离子表面活性剂的增加的阴离子表面形成和多晶型物。衍生合成CaCO 3以形成CaO,并施加用于在600℃,15%v / v CO 2(N-2平衡)下捕获CO 2。结果表明,加入Gemini表面活性剂的CaO合成,提供比单链表面活性剂更高的CO 2吸附能力。通过使用共沉淀技术将钙与氧化铝掺入,Gemini表面活性剂的添加表现出对CO 2捕获性能的良好影响,因为观察到CO 2吸附能力的增加。然而,随着二氧化碳吸附能力在多循环的CO 2捕获时降低,尚未解决烧结效果仍然尚未解决。 (c)2018 Elsevier B.v.保留所有权利。

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