Tanchuk Brenden, Sawada James A, Kuznicki Steven M
J Nanosci Nanotechnol. 2015 Mar;15(3):2556-63. doi: 10.1166/jnn.2015.9093.
ETS-10, a mixed octahedral/tetrahedral titanosilicate molecular sieve, has a unique architecture where its 0.8 nm pores are lined exclusively with silicon which imparts a high degree of chemical stability, yet the anionic framework can be modified by cation exchange. In this work, the hydrogen-exchanged form of ETS-10 was impregnated with monoethanolamine and the thermal stability and CO2 adsorption characteristics were analyzed. The surface area of the material was characterized by N2 physisorption, the thermal stability of the material assessed through TG-MS experiments, the CO2 capacity was measured via static volumetric adsorption experiments, and the influence of moisture as a carbamate promoter was investigated through a series of gravimetric CO2 adsorption/desorption cycling experiments. Several measurements converge on ~7 wt% monoethanolamine loading which occupies about half of the available pore volume of the sieve. The results suggest that the monoethanolamine is so effectively retained by the molecular sieve that, while the amine is effectively immobilized, under both humid and dry process streams the monoethanolamine is either chemically or sterically hindered and is unable to react measurable quantities of CO2.
ETS-10是一种混合八面体/四面体钛硅分子筛,具有独特的结构,其0.8纳米的孔道仅由硅衬里,这赋予了高度的化学稳定性,然而其阴离子骨架可通过阳离子交换进行改性。在这项工作中,用单乙醇胺浸渍ETS-10的氢交换形式,并分析其热稳定性和二氧化碳吸附特性。通过N2物理吸附表征材料的表面积,通过热重-质谱实验评估材料的热稳定性,通过静态体积吸附实验测量二氧化碳容量,并通过一系列重量法二氧化碳吸附/解吸循环实验研究水分作为氨基甲酸盐促进剂的影响。几次测量结果表明,单乙醇胺负载量约为7 wt%,占据了分子筛可用孔体积的一半左右。结果表明,单乙醇胺被分子筛如此有效地保留,以至于虽然胺被有效地固定,但在潮湿和干燥的工艺气流中,单乙醇胺在化学或空间上受到阻碍,无法与可测量量的二氧化碳发生反应。