生物炭
热解
生物量(生态学)
斜线和字符
环境科学
生物燃料
固碳
生物能源
废物管理
资源回收
制浆造纸工业
环境工程
化学
农学
工程类
二氧化碳
有机化学
废水
生物
作者
Vishal Hadiya,Kartik Popat,Shaili Vyas,Sunita Varjani,Meththika Vithanage,Vijai Kumar Gupta,Avelino Núñez Delgado,Yaoyu Zhou,Pau Loke Show,Muhammad Bilal,Zhien Zhang,Mika Sillanpää,Swayansu Sabyasachi Mohanty,Zeel Patel
标识
DOI:10.1016/j.biortech.2022.127303
摘要
In recent years, biomass has been reported to obtain a wide range of value-added products. Biochar can be obtained by heating biomass, which aids in carbon sinks, soil amendments, resource recovery, and water retention. Microwave technology stands out among various biomass heating technologies not only for its effectiveness in biomass pyrolysis for the production of biochar and biofuel but also for its speed, volumetrics, selectivity, and efficiency. The features of microwave-assisted biomass pyrolysis and biochar are briefly reviewed in this paper. An informative comparison has been drawn between microwave-assisted pyrolysis and conventional pyrolysis. It focuses mainly on technological and economic scenario of biochar production and environmental impacts of using biochar. This source of knowledge would aid in the exploration of new possibilities and scope for employing microwave-assisted pyrolysis technology to produce biochar.
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