Gujarat Pollution Control Board, Gandhinagar 382010, Gujarat, India; Gujarat University, Navrangpura, Ahmedabad 380009,Gujarat, India.
Gujarat Pollution Control Board, Gandhinagar 382010, Gujarat, India; Pandit Deendayal Energy University, Knowledge Corridor, Gandhinagar 382007, Gujarat, India.
Bioresour Technol. 2022 Jul;355:127303. doi: 10.1016/j.biortech.2022.127303. Epub 2022 May 10.
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.
近年来,生物质被报道可获得广泛的增值产品。通过加热生物质可以得到生物炭,这有助于碳汇、土壤改良、资源回收和保水。在各种生物质加热技术中,微波技术不仅因其在生物炭和生物燃料生产中的生物质热解效果,而且因其速度、体积、选择性和效率而脱颖而出。本文简要综述了微波辅助生物质热解和生物炭的特点。对微波辅助热解和常规热解进行了有益的比较。主要集中在生物炭生产的技术和经济前景以及使用生物炭的环境影响上。这方面的知识将有助于探索利用微波辅助热解技术生产生物炭的新可能性和范围。