...
首页> 外文期刊>Renewable & Sustainable Energy Reviews >Fundamentals and applications of microwave heating to chemicals separation processes
【24h】

Fundamentals and applications of microwave heating to chemicals separation processes

机译:微波加热在化学品分离过程中的基础知识和应用

获取原文
获取原文并翻译 | 示例

摘要

The aim of this review is to discuss the applications of microwave heating to separation and purification processes in chemical engineering from the perspective of its three unique features, namely rapid heating, selective heating and specific microscopic effects. These features render microwaves an alternative clean energy source that can replace or complement the conventional heating in various separation processes. The rapid heating and evaporation of water under the influence of microwaves renders the technology valuable in materials drying and organic extraction. The direct and selective heating of materials with high dielectric loss in a mixture enables energy savings in the treatment of petrochemical products. In adsorption processes, microwave heating can selectively heat solid adsorbent material leading to the formation of micro "hot spots" (localized zones of high temperature), increasing the efficiency in adsorbent regeneration. Finally, a deeper understanding of the impact of microwaves on microscopic structure has led to novel separation methods, such as microwave-assisted per-vaporation and microwave-assisted reactive distillation. An overview of the key mechanisms and developments of microwave heating in all these applications during the recent five years is provided and is followed by identification of the associated challenges in scale up. Fundamental research is still required for guiding further industrial application, while numerical simulations considering both heat transfer and distribution of the electromagnetic field in various reactor geometries can be helpful in the design of microwave reactors for large scale applications.
机译:这篇综述的目的是从微波加热在化学工程中的分离和纯化过程中的三个独特特征(即快速加热,选择性加热和特定的微观效应)的角度来讨论其应用。这些特征使微波成为替代的清洁能源,可以替代或补充各种分离过程中的常规加热。在微波的作用下,水的快速加热和蒸发使该技术在材料干燥和有机萃取中具有重要的价值。在混合物中直接和选择性加热具有高介电损耗的材料可以节省石化产品处理中的能源。在吸附过程中,微波加热可以选择性地加热固体吸附剂,导致形成微小的“热点”(高温局部区域),从而提高了吸附剂再生的效率。最后,对微波对微观结构影响的更深刻理解导致了新颖的分离方法,例如微波辅助的全蒸发和微波辅助的反应蒸馏。提供了最近五年中所有这些应用中微波加热的关键机制和发展的概述,然后确定了在扩大规模方面的相关挑战。仍然需要基础研究来指导进一步的工业应用,而同时考虑各种反应堆几何形状中电磁场的传热和分布的数值模拟对大规模应用微波反应堆的设计很有帮助。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号