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Recent developments in microwave-assisted thermal conversion of biomass for fuels and chemicals

机译:微波辅助燃料和化学物质生物质热转化的最新进展

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摘要

Increasing energy demand coupled with greater consumer awareness of sustainability in meeting that demand has made the need to find renewable alternatives to fossil-derived products more pressing today than it has ever been. Biomass has long been identified as the renewable resource best suited for being converted through various processing techniques into products that can supplement and ultimately replace fossil derived fuels and chemicals. The thermal conversion of biomass to renewable fuels and chemicals has been the subject of research for several decades with some commercial success. One of the limitations of current thermal biomass conversion platforms is process efficiency due to the nature of heat transfer. Microwave-assisted thermal conversion of biomass has received significant attention in recent years as it is capable of improving the process efficiency and product quality. The objective of this work was to perform a review of the recent developments in the microwave-assisted thermal conversion of biomass for fuels and chemicals. Specifically, we review the fundamentals of microwave dielectric heating and microwave-matter interactions in light of the factors that influence this interaction; the studies related to the use of microwave dielectric heating in the pyrolysis of biomass, with emphasis on the advances made in recent years; and the challenges that affect the commercial deployment of pyrolysis of microwave assisted biomass and future direction. The available literature shows significant progress has been made in understanding the microwave-assisted thermal conversion of biomass. However, additional efforts and research are still needed to fully translate the technology from research to commercialization.
机译:能源需求的增长,加上消费者对满足可持续性意识的增强,使得如今比以往任何时候都更需要寻找化石衍生产品的可再生替代品。长期以来,生物质一直被认为是最适合通过各种加工技术转化为可补充并最终替代化石燃料和化学品的产品的可再生资源。将生物质热转化为可再生燃料和化学物质一直是研究的主题,并取得了一些商业成功。由于传热的性质,当前热生物质转化平台的局限性之一是工艺效率。微波辅助生物质的热转化由于能够改善工艺效率和产品质量,近年来受到了广泛关注。这项工作的目的是对微波辅助燃料和化学物质生物质热转化的最新进展进行回顾。具体来说,我们根据影响微波相互作用的因素来回顾微波介电加热和微波物质相互作用的基本原理。有关在生物质热解中使用微波介电加热的研究,重点是近年来取得的进展;以及影响微波辅助生物质热解商业应用的挑战和未来方向。现有文献表明,在理解微波辅助生物质的热转化方面已取得重大进展。但是,仍然需要付出更多的努力和研究才能将技术从研究完全转化为商业化。

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