用陶瓷膜处理烟气的理论进展

IF 16.3 1区 工程技术 Q1 ENERGY & FUELS
Zhaohao Li , Heng Zhang , Haiping Chen , Dan Gao
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引用次数: 0

摘要

陶瓷膜分离是解决湿烟气中水分和余热回收问题的关键技术。它涉及冷凝、跨膜过程和不可逆等研究内容。本研究总结了这三个方面存在的问题,并根据研究现状提出了相应的解决方案,希望通过实验和数值模拟相结合的方式解决问题。针对冷凝特性,将明确湿烟气在孔隙内冷凝模式转换的临界标准,并对冷凝液的时间和空间分布进行表征,从而揭示理论强化冷凝传热的局限性。针对跨膜过程,将建立热量和质量耦合传递的理论模型。分析稳定和非稳定条件下传递通量与驱动力之间的构成关系,揭示物理场中热质耦合传递的机理。针对不可逆问题,将为多级陶瓷膜组件的热量和水分回收生成一个涵盖不可逆损失的综合效率评估模型,并确定能量流和物质流之间的匹配关系。这项工作的新颖之处在于阐明了陶瓷膜处理湿烟气物理情景下的传热和传质问题,可为该领域的未来研究提供参考。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Theoretical progress in treating the flue gas with ceramic membranes
The ceramic membrane separation is the key technology to solving problems caused by the moisture and the waste heat recovery from the wet flue gas. It involves research contents of the condensation, the transmembrane process and the irreversibility. This work summarizes problems in these three aspects, provides corresponding solutions based on the research status, and hopes to solve problems by combining experiments and numerical simulations. Aiming at the condensation characteristics, the critical criterion for the condensation mode conversion of the wet flue gas inside pores will be defined, followed by the characterization of the temporal and the spatial distribution of the condensate so as to shed light on limitations of the theoretical strengthening of the condensation heat transfer. Aiming at the transmembrane process, a theoretical model of the heat and mass coupled transfer will be developed. Constitutive relations between transfer fluxes and driving forces under steady and unsteady conditions will be analyzed to reveal mechanisms of the heat and mass coupled transfer in the physical field. Aiming at the irreversibility, a comprehensive efficiency evaluation model will be generated for the heat and the moisture recovery of multi-stage ceramic membrane modules covering irreversible losses, and to determine the matching relationship between the energy flow and the material flow. The novelty of this work is clarifying the heat and mass transfer problem under the physical scenario of treating the wet flue gas by ceramic membranes, which may provide references for the future research in this field.
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来源期刊
Renewable and Sustainable Energy Reviews
Renewable and Sustainable Energy Reviews 工程技术-能源与燃料
CiteScore
31.20
自引率
5.70%
发文量
1055
审稿时长
62 days
期刊介绍: The mission of Renewable and Sustainable Energy Reviews is to disseminate the most compelling and pertinent critical insights in renewable and sustainable energy, fostering collaboration among the research community, private sector, and policy and decision makers. The journal aims to exchange challenges, solutions, innovative concepts, and technologies, contributing to sustainable development, the transition to a low-carbon future, and the attainment of emissions targets outlined by the United Nations Framework Convention on Climate Change. Renewable and Sustainable Energy Reviews publishes a diverse range of content, including review papers, original research, case studies, and analyses of new technologies, all featuring a substantial review component such as critique, comparison, or analysis. Introducing a distinctive paper type, Expert Insights, the journal presents commissioned mini-reviews authored by field leaders, addressing topics of significant interest. Case studies undergo consideration only if they showcase the work's applicability to other regions or contribute valuable insights to the broader field of renewable and sustainable energy. Notably, a bibliographic or literature review lacking critical analysis is deemed unsuitable for publication.
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