Institut des Matériaux Poreux de Paris (IMAP), UMR 8004 CNRS, Ecole Normale Supérieure de Paris, Ecole Supérieure de Physique et de Chimie Industrielles de Paris, PSL Research University, 75005 Paris, France.
CERENA, Departamento de Engenharia Química, Instituto Superior Técnico, Universidade de Lisboa, Av. Rovisco Pais, 1049-001 Lisboa, Portugal.
Faraday Discuss. 2021 Oct 15;231(0):326-341. doi: 10.1039/d1fd00018g.
The potential of safe and low-cost batch production processes for Metal-Organic Frameworks (MOFs) at an industrial scale has been evaluated based on the prototypical MOF MIL-160(Al), a bio-derived material of high practical interest that can be made with a high space-time yield using green ambient pressure conditions. A simple method to calculate the production cost of this material has been determined based on a simulated process constructed with the data collected from laboratory pilot large-scale tests taking into account for the first time in MOF cost evaluation all the process parameters such as the scale, the cost of the raw materials, recirculation, and washing. The investment for a production plant established the ground for the estimation of the complete cost. The expected cost ranged from 55 $ per kg at 100 tons per year down to 29.5 $ per kg for 1 kton per year production with longer term perspectives of reaching costs below 10 $ per kg once the bio-derived ligand is considered for the large-scale production of bioplastics.
已经评估了基于典型的金属有机骨架(MOF) MIL-160(Al)的安全且低成本的批处理生产工艺在工业规模上的潜力,这是一种具有高实际应用价值的生物衍生材料,可以在绿色环境压力条件下以高时空产率制备。已经确定了一种简单的方法来计算这种材料的生产成本,该方法基于使用从实验室中进行的大型试验中收集的数据构建的模拟过程,首次在 MOF 成本评估中考虑了所有工艺参数,例如规模、原材料成本、循环和清洗。生产工厂的投资为估计总成本奠定了基础。预计成本范围从 100 吨/年的 55 美元/公斤降至 1 kton/年的 29.5 美元/公斤,从长远来看,一旦考虑用于生物衍生塑料的大规模生产,生物衍生配体的成本可能会低于 10 美元/公斤。