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A new generation of MFI-type zeolite pellets with very high mechanical performance for space decontamination

机译:新一代MFI型分子筛具有很高的机械性能,可进行空间净化

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MFI-type zeolite pellets were elaborated with a hydraulic press in the presence of a small amount of binder (methylcellulose (MC) or anhydrous sodium metasilicate (Na2SiO3)) for molecular decontamination, in particular for the space field. The influence of the compression load and the amount of binder was investigated to determine the optimum conditions to get pellets with high mechanical performances and high adsorption capacities. The compression load varied from 2 to 8 tons and the amount of binder varied from 5 to 20 wt% of the total pellet weight. Nitrogen sorption-desorption revealed a small loss of micropore volume (17%) with a compression load of 8 tons (0.15 cm(3)/g instead of 0.18 cm(3)/g for the MFItype zeolite powder), which can be attributed to a partial amorphization. Adsorption kinetics of n-hexane showed that the optimum pellets can adsorb volatile organic compounds. Indeed, MFI-type zeolite adsorbs 7.6 molecules of n-hexane per cell whereas the pellets made with 5 wt% of MC or Na2SiO3 adsorb about 7 molecules of n-hexane per unit-cell, respectively. These results are coherent with the ones obtained with nitrogen sorption-desorption. Uniaxial compression tests showed that the addition of small amount of binder in the mixture really improved the mechanical performances: the ultimate compressive strength was multiplied by 8 (10 MPa for the pellets without binder) when only 5 wt% of MC are used (80 MPa), with a compression load of 4 tons. (C) 2015 Elsevier Inc. All rights reserved.
机译:在存在少量粘合剂(甲基纤维素(MC)或无水偏硅酸钠(Na2SiO3))的情况下,使用液压机对MFI型沸石颗粒进行精细加工,以进行分子净化,尤其是用于空间领域。研究了压缩载荷和粘合剂量的影响,以确定获得具有高机械性能和高吸附能力的粒料的最佳条件。压缩负荷为2至8吨,粘合剂的量为总粒料重量的5至20重量%。氮吸附-解吸显示微孔体积损失很小(17%),压缩载荷为8吨(MFI型沸石粉末为0.15 cm(3)/ g,而不是0.18 cm(3)/ g),这可以归因于部分非晶化。正己烷的吸附动力学表明,最佳的颗粒可以吸附挥发性有机化合物。实际上,MFI型沸石每个电池可吸附7.6分子正己烷,而用5 wt%的MC或Na2SiO3制成的颗粒则每单元电池可吸附约7分子正己烷。这些结果与通过氮吸附-解吸获得的结果一致。单轴压缩试验表明,在混合物中添加少量粘合剂确实改善了机械性能:当仅使用5 wt%的MC(80 MPa)时,极限压缩强度乘以8(无粘合剂的粒料为10 MPa)。 ),压缩载荷为4吨。 (C)2015 Elsevier Inc.保留所有权利。

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