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二维材料在生物制氢节能、分子精准膜方面的进展。

Advances in two-dimensional materials for energy-efficient and molecular precise membranes for biohydrogen production.

机构信息

Department of Chemical Engineering, University of Bath, Bath BA2 7AY, United Kingdom.

Fujian Provincial Key Laboratory of Soil Environmental Health and Regulation, College of Resources and Environment, Fujian Agriculture and Forestry University, Fuzhou 350002, China.

出版信息

Bioresour Technol. 2022 Nov;364:128065. doi: 10.1016/j.biortech.2022.128065. Epub 2022 Oct 4.

Abstract

Waste management has become an ever-increasing global issue due to population growth and rapid globalisation. For similar reasons, the greenhouse effect caused by fossil fuel combustion, is leading to chronic climate change issues. A novel approach, the waste-to-hydrogen process, is introduced to address the concern of waste generation and climate change with an additional merit of production of a renewable, higher energy density than fossil fuels and sustainable transportation fuel, hydrogen (H) gas. In the downstream H purifying process, membrane separation is one of the appealing options for the waste-to-hydrogen process given its low energy consumption and low operational cost. However, commercial polymeric membranes have hindered membrane separation process due to their low separation performance. By introducing novel two-dimensional materials as substitutes, the limitation of purifying using conventional membranes can potentially be solved. Herein, this article provides a comprehensive review of two-dimensional materials as alternatives to membrane technology for the gas separation of H in waste-to-hydrogen downstream process. Moreover, this review article elaborates and provides some perspectives on the challenges and future potential of the waste-to-hydrogen process and the use of two-dimensional materials in membrane technology.

摘要

由于人口增长和全球化的快速发展,废物管理已成为一个日益严重的全球问题。出于类似的原因,化石燃料燃烧导致的温室效应正在导致慢性气候变化问题。一种新方法——废物制氢工艺被引入,以解决废物产生和气候变化的问题,其额外的优点是生产可再生、比化石燃料更高能量密度和可持续的运输燃料氢气(H)气体。在下游的 H 提纯过程中,膜分离是废物制氢工艺的一种有吸引力的选择,因为它的能耗和运营成本低。然而,商业聚合物膜由于其低分离性能而阻碍了膜分离过程。通过引入新型二维材料作为替代品,有可能解决使用传统膜进行净化的局限性。本文全面综述了二维材料作为膜技术替代品,用于废物制氢下游工艺中 H 的气体分离。此外,本文还详细阐述并提供了一些关于废物制氢工艺和二维材料在膜技术中应用的挑战和未来潜力的观点。

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