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首页> 外文期刊>Chemical engineering journal >Pore structure regulation and carbon dioxide adsorption capacity improvement on porous BN fibers: Effects of high-temperature treatments in gaseous ambient
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Pore structure regulation and carbon dioxide adsorption capacity improvement on porous BN fibers: Effects of high-temperature treatments in gaseous ambient

机译:多孔BN纤维对孔结构调节和二氧化碳吸附能力改进:高温处理在气态环境中的影响

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摘要

Recently, capture and storage of carbon dioxide (CO2) has been an effective strategy to address global warming caused by excess CO2. Porous boron nitride (BN) with tunable porosity, excellent chemical stability and thermal stability have been considered as promising materials for CO2 adsorption. Here, porous BN fibers with high specific surface area have been used as promising adsorbent for CO2 capture. The effects of high-temperature treatments in different gaseous ambient on the microstructure evolution and CO2 adsorption capacity of porous BN fibers are studied in detail. Interestingly, the porous BN fibers after high-temperature post-treatment in NH3 gas show enhanced CO2 adsorption capacity, as compared with pristine porous BN and nearly three times more than porous BN nanosheets reported before. The NH3-treatment can effectively restrain the damage of pore structure caused by high-temperature annealing, especially micropores. Moreover, in the NH3-treatment process, the impurities (B-O) of porous BN fibers can react with NH3 to form B-N-H, which is the root cause of the enhancement of CO2 adsorption capacity of porous BN fibers.
机译:最近,捕获和储存二氧化碳(CO2)是一种有效的策略,以解决由过量二氧化碳引起的全球变暖。具有可调节孔隙率的多孔硼(BN),优异的化学稳定性和热稳定性被认为是CO 2吸附的有希望的材料。这里,具有高比表面积的多孔BN纤维被用作CO 2捕获的有希望的吸附剂。详细研究了在不同气态环境中对多孔BN纤维的微观结构演化和CO 2吸附能力的高温处理的影响。有趣的是,在NH3气体中高温后处理后的多孔BN纤维显示出增强的CO 2吸附能力,与原始多孔BN相比,比以前报道的多孔BN纳米蛋白近三倍。 NH 3治疗可以有效地抑制由高温退火,尤其是微孔引起的孔结构的损伤。此外,在NH 3处理过程中,多孔BN纤维的杂质(B-O)可以与NH 3反应形成B-N-H,这是多孔BN纤维增强CO 2吸附能力的根本原因。

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