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Nitrogen production by efficiently removing oxygen from air using a perovskite hollow-fiber membrane with porous catalytic layer

机译:通过使用具有多孔催化层的钙钛矿中空纤维膜从空气中有效去除氧气来制氮

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Nowadays, nitrogen is mainly produced from air by cryogenic distillation, pressure-swing adsorption (PSA) and polymeric membrane technology. In this paper, we report a perovskite membrane-based nitrogen production route, which is basically driven by methane combustion. By coupling air separation with methane combustion on the opposite sides of oxygen-permeable perovskite membrane, most of oxygen in air is efficiently removed through the perovskite membrane and then consumed by methane oxidation. The production of nitrogen with purity of 98%-99% was successfully achieved, and remained stable over 120 h, with a methane conversion of 71%-73% on the other side of perovskite membrane. This work demonstrates that the joint use of oxygen-permeable perovskite membrane and methane oxidation is a promising strategy for nitrogen production and inspires more research efforts in the field of gas separation.
机译:如今,氮气主要是通过低温蒸馏,变压吸附(PSA)和聚合物膜技术从空气中产生的。在本文中,我们报告了钙钛矿膜为基础的氮气生产路线,该路线主要由甲烷燃烧驱动。通过将空气分离与透氧钙钛矿膜相反侧的甲烷燃烧结合起来,空气中的大部分氧气可以通过钙钛矿膜有效地去除,然后被甲烷氧化消耗掉。成功实现了纯度为98%-99%的氮气生产,并在120小时内保持稳定,钙钛矿膜另一侧的甲烷转化率为71%-73%。这项工作表明,透氧钙钛矿膜和甲烷氧化的联合使用是一种有前途的制氮策略,并激发了气体分离领域的更多研究工作。

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