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Design synthesis and physicochemical study of a biomass-derived CO

机译:生物质衍生有限公司的设计合成和物理化学研究

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摘要

In this study, the concept of biomass-based direct air capture is proposed, and the aminoguanidine CO2 chemical sorbent 2,5-furan-bis(iminoguanidine) (FuBIG) was designed, synthesized, and elucidated for the physicochemical properties in the process of CO2 capture and release. Results showed that the aqueous solution of FuBIG could readily capture CO2 from ambient air and provided an insoluble tetrahydrated carbonate salt FuBIGH2(CO3) (H2O)4 with a second order kinetics. Hydrogen binding modes of iminoguanidine cations with carbonate ions and water were identified by single-crystal X-ray diffraction analysis. Equilibrium constant (K) and the enthalpies (ΔH) for CO2 absorption/release were obtained by thermodynamic and kinetic analysis (K7 = 5.97 × 104, ΔH7 = −116.1 kJ/mol, ΔH8 = 209.31 kJ/mol), and the CO2-release process was conformed to the geometrical phase-boundary model (1-(1-α)1/3 = kt). It was found that the FuBIGH2(CO3) (H2O)4 can release CO2 spontaneously in DMSO without heating. Zebrafish models revealed a favorable biocompatibility of FuBIG.
机译:在该研究中,提出了基于生物质的直接空气捕获的概念,并设计了氨基胍二氧化碳化学吸附剂2,5-呋喃 - 双(Iminoguanidine)(Fubig),合成,并阐明了在过程中的物理化学性质二氧化碳捕获和释放。结果表明,Fubig水溶液可以容易地从环境空气中捕获CO 2,并提供一种具有二阶动力学的不溶性四碳酸碳酸盐盐Fubigh2(CO 3)(H2O)4。通过单晶X射线衍射分析鉴定碳酸酯离子和水的硫代胍阳离子的氢结合模式。通过热力学和动力学分析获得CO 2吸收/释放的平衡常数(k)和焓(ΔH)(K7 = 5.97×104,ΔH7= -116.1kJ / mol,ΔH8= 209.31kJ / mol),以及CO2-释放过程符合几何相相边界模型(1-(1-α)1/3 = kt)。发现Fubigh2(CO3)(H2O)4可以在不加热的情况下在DMSO中自发地释放CO 2。斑马鱼型号揭示了富力的良好生物相容性。

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