工艺工程
可扩展性
灵活性(工程)
微波食品加热
环境科学
废物管理
计算机科学
材料科学
工程类
电信
数学
数据库
统计
作者
Javier F. de la Fuente,Anton A. Kiss,Marilena Radoiu,Georgios D. Stefanidis
摘要
Abstract Microwave plasma ( MWP ) technology is currently being used in application fields such as semiconductor and material processing, diamond film deposition and waste remediation. Specific advantages of the technology include the enablement of a high energy density source and a highly reactive medium, operational flexibility, fast response time to inlet variations and low maintenance costs. These aspects make MWP a promising alternative technology to conventional thermal chemical reactors provided that certain technical and operational challenges related to scalability are overcome. Herein, an overview of state‐of‐the‐art applications of MWP in chemical processing is presented (e.g. stripping of photo resist, UV ‐disinfection, waste gas treatment, plasma reforming, methane coupling to olefins, coal/biomass/waste pyrolysis/gasification and CO 2 conversion). In addition, two potential approaches to tackle scalability limitations are described, namely the development of a single unit microwave generator with high output power (>100 kW ), and the coupling of multiple microwave generators with a single reactor chamber. Finally, the fundamental and engineering challenges to enable profitable implementation of the MWP technology at large scale are discussed. © 2017 Society of Chemical Industry
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