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DES assisted synthesis of hierarchical nitrogen-doped carbon molecular sieves for selective CO2versus N2 adsorption

机译:DES辅助合成分层氮掺杂碳分子筛以选择性吸附CO2和N2

摘要

Deep eutectic solvents (DESs) composed of resorcinol, 3-hydroxypyridine and tetraethylammonium bromide were used for the synthesis of hierarchical nitrogen-doped carbon molecular sieves. DESs played multiple roles in the synthetic process, as the liquid medium that ensures reagent homogenization, the structure-directing agent responsible for the achievement of the hierarchical structure, and the source of carbon and nitrogen for the solid sorbent obtained after carbonization. Thus, the synthesis offers an economy of reagents that emphasizes the green nature and low cost of conventional polycondensation. Interestingly, while macropores facilitated mass transport and access to the surface area, the combination of the molecular sieve structure and nitrogen functionalization provided, respectively, excellent CO2 adsorption capacities of up to 3.7 mmol g-1, and outstanding CO 2-N2 selectivities of up to 14.4 from single component gas data. Nonetheless, the CO2-N2 selectivity in the Henry law regime-representative of post-combustion flue-gas streams-of some of our carbons was particularly remarkable (e.g. 96), comparable to or even higher than those described for most recent carbons, and only surpassed by those of certain zeolites. This journal is © the Partner Organisations 2014.
机译:由间苯二酚,3-羟基吡啶和溴化四乙铵组成的深共熔溶剂(DES)用于合成分层的氮掺杂碳分子筛。 DES在合成过程中扮演着多种角色,作为确保试剂均质化的液体介质,负责实现分层结构的结构导向剂以及碳化后获得的固体吸附剂的碳和氮源。因此,合成提供了试剂的经济性,其强调了常规缩聚反应的绿色本质和低成本。有趣的是,虽然大孔促进了物质的运输和表面积的获取,但分子筛结构和氮官能化的组合分别提供了高达3.7 mmol g-1的出色的CO2吸附容量和高达3.7 mmol g-1的出色CO 2 -N 2选择性。从单组分气体数据到14.4。但是,在亨利法则制度中,代表燃烧后烟气流的某些碳的二氧化碳选择性特别显着(例如96),与最新碳相比甚至更高。仅被某些沸石所超越。该期刊为©合作伙伴组织2014。

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