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The oxidation of viscose fiber optimized by response surface methodology and its further amination with PEI for CO2 adsorption

机译:响应面法优化粘胶纤维的氧化反应,并用PEI进一步胺化以吸附CO2

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摘要

Viscose fiber was oxidized with sodium periodate to prepare a reactive dialdehyde viscose fiber (DAVF) containing abundant aldehyde groups. A solid amine adsorbent (DAVF-PEI) with high amino density for CO2 capture was then prepared by modifying DAVF with polyethylenimine (PEI). Response surface methodology (RSM) based on a three-level, three-factorial design was used to optimize the synthesis conditions of DAVF, in which multiple linear regression equations of aldehyde content and fiber mass loss degree were constructed. The well-designed DAVF was then employed as a support to graft with PEI via Schiff base reaction to prepare a solid amine fiber (DAVF-PEI) for CO2 adsorption. The experimental results verified that DAVF-PEI possessed good thermo-stability and high CO2 adsorption capacity (4.11 mmol/g). DAVF-PEI also showed promising regeneration performance, which could maintain almost the same adsorption capacity for CO2 after ten adsorption and desorption recycles.
机译:用高碘酸钠氧化粘胶纤维以制备含有大量醛基的反应性二醛粘胶纤维(DAVF)。然后通过用聚乙烯亚胺(PEI)修饰DAVF,制备用于捕获CO2的具有高氨基密度的固体胺吸附剂(DAVF-PEI)。采用基于三级三因子设计的响应面法优化了DAVF的合成条件,构建了醛含量和纤维失重程度的多元线性回归方程。然后将设计良好的DAVF用作载体,通过Schiff碱反应与PEI接枝,以制备用于CO2吸附的固体胺纤维(DAVF-PEI)。实验结果证明,DAVF-PEI具有良好的热稳定性和较高的CO2吸附能力(4.11 mmol / g)。 DAVF-PEI还显示出令人鼓舞的再生性能,经过十次吸附和解吸循环后,可以保持几乎相同的CO2吸附容量。

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