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Ultrathin polymer membranes for high throughput CO_2 capture

机译:高通量CO_2捕获的超薄聚合物膜

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Robust ultrathin polymer membranes offer significant technical and economic advantage over conventional carbon capture methods due to their potential for high throughput, high selectivity, and relative ease of implementation. We have been developing a simple, ultrathin, polymer membrane system to capture CO_2 from post-combustion industrial exhaust streams. The approach involves nano-engineered membrane fabrication using an LLNL-developed solvent-less vapor deposition followed by in-situ polymerization (SLIP) process. The SLIP process vapor deposits ultrathin polymer films onto high throughput substrates to fabricate composite membranes. Single component gas permeation tests for PMDA-ODA films with thicknesses between 100-1000 nm were conducted. Permeability was found to be in the 30-100 Barrer range while maintaining CO_2/N_2 selectivity of ~20:1. Membrane performance may be enhanced via improved film quality, reduced thickness, the development of new materials which are compatible with the SLIP process, and a modeling effort to understand the underlying transport phenomena within the membrane material.
机译:由于其高吞吐量,高选择性和相对易于实施,因此稳健的超薄聚合物膜在传统的碳捕获方法提供了显着的技术和经济优势。我们一直在开发一种简单,超薄的聚合物膜系统,用于从燃烧后工业排气流中捕获CO_2。该方法涉及使用LLN1显影的溶剂 - 较少的气相沉积,然后是原位聚合(滑动)工艺的纳米工程膜制备。滑移过程气相将超薄聚合物膜沉积到高通量底物中以制造复合膜。对具有厚度的PMDA-ODA薄膜具有100-1000nm之间的单组分气体渗透试验。发现渗透性在30-100个禁迹范围内,同时保持〜20:1的CO_2 / N_2选择性。通过改善的薄膜质量可以提高膜性能,减少厚度,与滑动过程兼容的新材料的开发,以及了解膜材料内的潜在运输现象的建模努力。

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