生化工程
催化作用
纳米技术
等离子体
资源(消歧)
计算机科学
钥匙(锁)
生产(经济)
工艺工程
材料科学
环境科学
化学
工程类
物理
有机化学
宏观经济学
量子力学
经济
计算机安全
计算机网络
作者
Naama Alhemeiri,Lance Kosca,Marko Gacesa,Kyriaki Polychronopoulou
标识
DOI:10.1016/j.jcou.2024.102887
摘要
Catalysis has optimized and improved production rates in many industrial processes. Conventional catalysis plays a key role in the mass-production of otherwise difficult to obtain substances. Plasma catalysis, plasma incorporation to appropriate catalysts, has been shown in literature to further outperform the typical conventional methods, and has shown potential to become a key production method in deep space exploration and survival. However, it faces a few more challenges that hinder it from being used industrially. In this review, we discuss known mechanisms in literature and the instrumentation and diagnostics that were utilized to be able to determine and explain these mechanisms in detail, and thus have led to the development of plasma catalysts with up to 80 % conversion rates for CO2 conversion processes. We also discuss diagnostics that may be employed in the near future to reveal the last few unconventional mechanisms that must be explained in order to address the current instability and short life of catalysts due to the harsh conditions of plasma. In successful implementations of diagnostics in literature, they have proven to be the key to unlocking the knowledge required to develop appropriate catalysts optimized for converting CO2 in a plasma environment.
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