Zhao Tianxiang, Guo Bo, Han Limin, Zhu Ning, Gao Fei, Li Qiang, Li Lihua, Zhang Jianbin
College of Chemical Engineering, Inner Mongolia University of Technology, Huhhot 010051 (China).
Chemphyschem. 2015 Jul 20;16(10):2106-9. doi: 10.1002/cphc.201500206. Epub 2015 May 7.
A new CO2 fixation process into solid CO2 -storage materials (CO2 SMs) under mild conditions has been developed. The novel application of amine-glycol systems to the capture, storage, and utilization of CO2 with readily available 1,2-ethanediamine (EDA) and ethylene glycol derivatives (EGs) was demonstrated. Typically, the CO2 SMs were isolated in 28.9-47.5 % yields, followed by extensive characterization using (13) C NMR, XRD, and FTIR. We found that especially the resulting poly-ethylene-glycol-300-based CO2 SM (PCO2 SM) product could be processed into stable tablets for CO2 storage; the aqueous PCO2 SM solution exhibited remarkable CO2 capturing and releasing capabilities after multiple cycles. Most importantly, the EDA and PEG 300 released from PCO2 SM were found to act as facilitative surfactants for the multiple preparation of CaCO3 microparticles with nano-layer structure.
已经开发出一种在温和条件下将二氧化碳固定到固体二氧化碳储存材料(CO2 SMs)中的新工艺。证明了胺 - 二醇体系在利用易于获得的1,2 - 乙二胺(EDA)和乙二醇衍生物(EGs)捕获、储存和利用二氧化碳方面的新应用。通常,以28.9 - 47.5%的产率分离出CO2 SMs,随后使用(13)C NMR、XRD和FTIR进行广泛表征。我们发现,特别是所得的基于聚乙二醇 - 300的CO2 SM(PCO2 SM)产品可以加工成用于二氧化碳储存的稳定片剂;PCO2 SM水溶液在多个循环后表现出显著的二氧化碳捕获和释放能力。最重要的是,发现从PCO2 SM中释放的EDA和PEG 300作为促进剂用于多次制备具有纳米层结构的碳酸钙微粒。