Metal Organic Frameworks (MOFs) are materials with large surface areas and internal volumes, which result in a number of useful properties for applications such as catalysis, separations and gas storage. However, MOFs are challenging to produce at a large scale creating a barrier to becoming truly viable alternatives to current technologies. As a first step towards industrial scale manufacture, we demonstrate here the first scalable, continuous synthesis of high-quality HKUST-1 using ethanol as the solvent, resulting in a greener and potentially much more economical process (as solvent does not decompose and thus can be recycled). We also show that microwave heating can be used to produce HKUST-1 continuously, in timescales several orders of magnitude faster than by conventional heating. We demonstrated a novel approach to microwave assisted synthesis of HKUST-1, based on a recycle loop with microwave irradiation, which is scalable under both batch and continuous conditions and allows an independent control of microwave irradiation regime and the overall reaction time. The use of microwave heating for continuous production of HKUST-1 enabled STY of 400,000 kg m-3 day1, which is higher than any production rates reported to date, even when using the preferred high yield solvent, DMF, and is 17 times more than the highest production rates reported to date for HKUST-1 in ‘ethanol-only’ systems. These significant advances in MOF manufacturing technologies represent a cutting edge contribution to the field.
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机译:金属有机骨架(MOF)是具有大表面积和内部体积的材料,可为催化,分离和储气等应用提供许多有用的特性。但是,MOF的大规模生产具有挑战性,这对成为真正可行的替代当前技术的障碍构成了障碍。作为向工业规模制造迈出的第一步,我们在这里展示了首次可扩展,连续合成,使用乙醇作为溶剂的高质量HKUST-1的合成,从而实现了绿色环保且经济得多的方法(因为溶剂不会分解,因此可以回收)。我们还表明,微波加热可用于连续生产HKUST-1,其时间尺度比传统加热快几个数量级。我们展示了一种基于微波辐射的循环回路,用于微波辅助合成HKUST-1的新颖方法,该方法在间歇和连续条件下均可扩展,并可以独立控制微波辐射方式和总反应时间。使用微波加热连续生产HKUST-1可以使STY达到400,000 kg m-3天than1,即使使用首选的高收率溶剂DMF,也比迄今报道的任何生产率高出17倍超过了迄今为止报道的“仅乙醇”系统中HKUST-1的最高生产率。 MOF制造技术的这些重大进步代表了该领域的前沿贡献。
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