Scaling up microwave excited plasmas—An alternative technology for industrial decarbonization

IF 2.9 3区 物理与天体物理 Q2 PHYSICS, APPLIED
Marilena Radoiu, Ariel Mello
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Abstract

The use of electricity for the industry's transition to a decarbonized economy requires optimization of the energy transfer to deliver efficient, cost-effective processes. Industrial demand for high-density plasmas over a wide pressure range has stimulated the use of microwave plasma (MWP) applications. In high-temperature processing, when microwaves of the correct frequency are absorbed by the plasma, the plasma particles absorb energy from the electromagnetic field and transfer it to the other particles through collisions, heating them. This rapid heating gives MWP properties that can be exploited to increase the conversion, selectivity, and/or energy efficiency of chemical processes. Here, we address questions raised by industrial users who wish to better understand the limitations of MWP applications.

Abstract Image

放大微波激发等离子体——工业脱碳的替代技术
为了实现行业向脱碳经济的过渡,电力的使用需要优化能源转移,以提供高效、经济的流程。工业对宽压力范围内高密度等离子体的需求刺激了微波等离子体(MWP)应用的使用。在高温加工中,当正确频率的微波被等离子体吸收时,等离子体粒子从电磁场中吸收能量,并通过碰撞将其传递给其他粒子,加热它们。这种快速加热赋予了MWP特性,可以用来提高化学过程的转化率、选择性和/或能源效率。在这里,我们解决了希望更好地理解MWP应用程序的局限性的工业用户提出的问题。
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来源期刊
Plasma Processes and Polymers
Plasma Processes and Polymers 物理-高分子科学
CiteScore
6.60
自引率
11.40%
发文量
150
审稿时长
3 months
期刊介绍: Plasma Processes & Polymers focuses on the interdisciplinary field of low temperature plasma science, covering both experimental and theoretical aspects of fundamental and applied research in materials science, physics, chemistry and engineering in the area of plasma sources and plasma-based treatments.
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