新概念的“MERIT”气固燃烧系统,燃烧效率高,排放低

T. Hatanaka, S. Matsuda, H. Hatano
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引用次数: 47

摘要

为了解决环境问题,提出了一种新型的气固燃烧系统“MERIT”(介质再循环集成技术)。该系统将燃烧分为两个反应,高温下空气对金属的氧化和低温下燃料对金属氧化物的还原。它使金属作为氧载体在这两个过程之间再循环。由于还原反应中吸收的低温热作为氧化反应中的高温热释放出来,提高了整体热效率。没有no /sub x/排放,因为氧化是金属和空气之间的气固反应,没有火焰。由于还原反应只产生二氧化碳和水蒸气,因此通过冷却废气可以很容易地分离和收集CO/sub 2/。开发这种燃烧系统的关键是氧化和还原反应的动力学。我们进行了实验来阐明以镍为金属和甲烷为燃料的两种反应的基本动力学。结果证明两个反应的速率都足够快。结果表明,该燃烧系统在实现高热效率和解决环境问题方面具有很大的潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A new-concept gas-solid combustion system "MERIT" for high combustion efficiency and low emissions
A new-concept gas-solid combustion system "MERIT" (Mediator Recirculation Integrating Technology) is proposed to contribute the settlement of environmental problems. This system divides combustion into two reactions, oxidation of metal by air at high temperature and reduction of metal oxide by fuel at low temperature. It recirculates the metal as an oxygen-carrier between these two processes. Since the low-temperature heat absorbed in the reduction reaction is released as the high-temperature heat in the oxidation reaction, the overall thermal efficiency is improved. There is no NO/sub x/ emission because the oxidation is a gas-solid reaction between metal and air without a flame. Since the reduction reaction produces only carbon dioxide and water vapor, CO/sub 2/ can be easily separated and collected by cooling the exhaust gas. The key point of the development of this combustion system is the kinetics of oxidation and reduction reactions. We carried out experiments to clarify the fundamental kinetics of the two reactions applying nickel as metal and methane as a fuel. It was certified that the rates of both reactions were fast enough. This result revealed that this combustion system has high potential to achieve high thermal efficiency and contribute to the settlement of environmental problems.
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