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Functionalized stellate macroporous silica nanospheres for CO2 mitigation

机译:功能化的星状大孔二氧化硅纳米球,用于缓解二氧化碳

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摘要

Carbon capture represents an integral part of the CO2 mitigation efforts, and involves the demonstration of effective and inexpensive CO2 capture technologies. We report the first demonstration of an amine-functionalized stellate macroporous silica as a platform for effective CO2 absorption, with potential application in current fossil-fuel burning plants. The work demonstrates that the facile impregnation of the silica platform with tetraethylenepentamine results in a high-performing sorbent for carbon dioxide. The CO2 absorption data exceed the performance of other reported silica-amine matrices for carbon capture, showing an amount of over 4 mmol CO2/g sorbent at low temperature, simulating the flue gas temperature. The platform is robust, showing recyclability and > 85 % mass conservation of sorbent upon nine cycles. In addition, the stellate MSNs show high CO2 selectivity at room temperature, indicating that the presence of nitrogen in flue gas will not impair the CO2 absorption performance. The results could lead to a simple and inexpensive new technology for CO2 mitigation.
机译:碳捕集是减少二氧化碳排放工作不可或缺的一部分,并且涉及有效且廉价的二氧化碳捕集技术的示范。我们报告了胺官能化的星状大孔二氧化硅作为有效吸收CO2的平台的首次演示,并潜在地应用于当前的化石燃料燃烧工厂。这项工作表明,用四亚乙基五胺容易地浸渍二氧化硅平台,会产生高性能的二氧化碳吸附剂。模拟烟道气温度时,CO2吸收数据超过了其他报道的硅胺基体的碳捕获性能,表明在低温下的吸附剂量超过4 mmol CO2 / g。该平台坚固耐用,在九个循环中显示出可回收性和> 85%的吸附剂质量守恒。此外,星状MSN在室温下显示出高的CO2选择性,表明烟道气中存在氮不会损害CO2的吸收性能。结果可能会导致一种简单而廉价的二氧化碳减排新技术。

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