Ion-Exchange Resin-Templated Carbon Capture Sorbents with Hierarchical Pores

IF 3.8 3区 工程技术 Q2 ENGINEERING, CHEMICAL
Ching-En Ku, Lu Liu and Chen Zhang*, 
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Abstract

The pore structure of mesoporous silica is crucial to its application as a substrate for CO2 capture sorbents. In this work, the synthesis of resin-templated silica, a new class of hierarchically meso-/macroporous silica for fabrication of CO2 capture sorbents, was reported. Unlike the conventional acid-catalyzed synthesis of mesoporous silica using self-assembled surfactant or block copolymer templates, the resin-templated silica is derived from porous ion-exchange resin templates using a catalyst-free method that involves three simple steps of silane soaking, moisture exposure, and air calcination. The resin-templated silica reproduced the spherical shape of the porous ion-exchange resin template. It was also found that pores in resin templates were crucial to creating mesoporosity in resin-templated silica. The resin-templated silica has simultaneous attractive surface area and pore volume, which were both substantially higher than those of the ion-exchange resin template. Impregnation of the mesopores and macropores by polymeric amine provided novel amine-oxide sorbents for CO2 capture, that is, resin-templated sorbents. The resin-templated sorbents impregnated using a 15 wt % polyethylenimine (PEI)/methanol solution showed competitive direct air capture (at 400 ppm) performance with a CO2 sorption capacity of 2.1 mmol of CO2/g of SiO2 and amine efficiency of 0.11 mol of CO2/mol of N at an amine loading of 0.83 g of PEI/g of SiO2.

Abstract Image

Abstract Image

离子交换树脂--具有分层孔隙的碳捕获吸附剂
介孔二氧化硅的孔结构对其作为二氧化碳捕集吸附剂基质的应用至关重要。在这项工作中,研究人员报道了用于制造二氧化碳捕集吸附剂的一类新型分层介孔/大孔二氧化硅--树脂模板法二氧化硅的合成。与使用自组装表面活性剂或嵌段共聚物模板进行酸催化合成介孔二氧化硅的传统方法不同,树脂模板法二氧化硅是从多孔离子交换树脂模板中提取的,该方法无需催化剂,只需硅烷浸泡、受潮和空气煅烧三个简单步骤。树脂模板二氧化硅再现了多孔离子交换树脂模板的球形形状。研究还发现,树脂模板中的孔隙对于在树脂模板二氧化硅中形成介孔至关重要。树脂模板二氧化硅同时具有吸引表面积和孔隙体积,这两个指标都大大高于离子交换树脂模板。用聚合胺浸渍中孔和大孔可获得用于捕获二氧化碳的新型氧化胺吸附剂,即树脂模板吸附剂。使用 15 wt % 聚乙烯亚胺(PEI)/甲醇溶液浸渍的树脂模板吸附剂显示出具有竞争力的直接空气捕获(400 ppm)性能,在胺负载量为 0.83 g PEI/g SiO2 时,二氧化碳吸附容量为 2.1 mmol CO2/g SiO2,胺效率为 0.11 mol CO2/mol N。
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来源期刊
Industrial & Engineering Chemistry Research
Industrial & Engineering Chemistry Research 工程技术-工程:化工
CiteScore
7.40
自引率
7.10%
发文量
1467
审稿时长
2.8 months
期刊介绍: ndustrial & Engineering Chemistry, with variations in title and format, has been published since 1909 by the American Chemical Society. Industrial & Engineering Chemistry Research is a weekly publication that reports industrial and academic research in the broad fields of applied chemistry and chemical engineering with special focus on fundamentals, processes, and products.
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