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研究 MIL-100(Fe)、Cu-BTC 和 CPO-27(Ni) 的放大、配方、老化和氨吸附能力,以用于呼吸保护过滤器。

Study of the scale-up, formulation, ageing and ammonia adsorption capacity of MIL-100(Fe), Cu-BTC and CPO-27(Ni) for use in respiratory protection filters.

机构信息

Johnson Matthey Technology Centre, Blount's Court Road, Sonning Common, RG4 9NH, UK.

出版信息

Faraday Discuss. 2017 Sep 1;201:113-125. doi: 10.1039/c7fd00090a. Epub 2017 Jun 14.

Abstract

The metal-organic frameworks (MOFs) MIL-100(Fe), Cu-BTC and CPO-27(Ni) were synthesised in 1 kg batches. The materials were then formed in two different industrially relevant ways. Firstly, dry granulation was used to produce pellets which were sieved to give material with a 300-1000 μm size, and the fines were subsequently recycled to mimic a large scale industrial process. Secondly, wet granulation with a polymer was used to produce granules which were again sieved to 300-1000 μm. XRD data shows that the structures of MIL-100(Fe) and CPO-27(Ni) remain intact during both forming processes, whilst Cu-BTC is shown to degrade during processing. This is in line with the ammonia adsorption data obtained for the formed materials which evaluated the ammonia adsorption capacity of the materials using breakthrough measurements. MIL-100(Fe) and CPO-27(Ni) are shown to have capacities of 47 mg g and 62 mg g respectively whilst Cu-BTC has a decreased capacity of 37 mg g from 97 mg g upon forming. The formed materials were also aged at 25 °C and 80% humidity for a week and the ammonia adsorption capacity re-evaluated. As expected, Cu-BTC decomposed under these conditions, whilst MIL-100(Fe) and CPO-27(Ni) show slightly decreased ammonia adsorption capacities of 36 mg g and 60 mg g respectively.

摘要

金属有机骨架(MOFs)MIL-100(Fe)、Cu-BTC 和 CPO-27(Ni) 以 1 公斤批量合成。然后,这些材料通过两种不同的工业相关方法成型。首先,采用干法制粒生产出球粒,将其筛分以获得 300-1000μm 大小的物料,随后将细粉回收以模拟大规模工业过程。其次,使用聚合物进行湿法制粒生产出颗粒,然后再次筛分至 300-1000μm。XRD 数据表明,MIL-100(Fe) 和 CPO-27(Ni) 的结构在两种成型过程中均保持完整,而 Cu-BTC 在加工过程中被证明会降解。这与形成材料的氨吸附数据一致,该数据通过穿透测量评估了材料的氨吸附能力。MIL-100(Fe) 和 CPO-27(Ni) 的容量分别为 47mg/g 和 62mg/g,而 Cu-BTC 的容量从 97mg/g 降低至 37mg/g。形成的材料还在 25°C 和 80%湿度下老化一周,并重新评估氨吸附能力。正如预期的那样,Cu-BTC 在这些条件下分解,而 MIL-100(Fe) 和 CPO-27(Ni) 的氨吸附容量分别略有下降至 36mg/g 和 60mg/g。

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