聚光太阳能快速热解生物质研究进展

S. Novita, S. Santosa, N. Nofialdi, A. Andasuryani, A. Fudholi, P. Putera
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引用次数: 0

摘要

印度尼西亚的生物质能潜力估计约为49,810兆瓦,非常适合发展可再生能源。生物质转化技术的一个例子是热解,它将生物质转化为生物油。热解过程的最佳温度为300-600℃。影响热解过程的参数包括物料的预处理、物料的含水率和粒度、生物质化合物的组成、温度的影响、加热速率、气体流速、热解方式、热解反应器等。这是一种热化学技术,其中生物质废物转化为固体燃料(炭),生产者气体(合成气)和液体(生物油),在反应器中没有氧气。本文全面综述了利用太阳能快速热解法将生物质转化为生物油的技术。此外,所使用的曝光率是基于出版物来源、年份、原产国、研究方法和重点领域。大多数研究都是实证研究,主要集中在快速热解及其影响因素上。本文中描述了一些研究、信息和研究建议。
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Fast Pyrolysis of Biomass with a Concentrated Solar Power: a Review
Indonesia's biomass energy potential is estimated at around 49,810 MW and is very adequate for the development go renewable energy. An example of a biomass conversion technique is pyrolysis which converts biomass into bio-oil. The optimum temperature for the pyrolysis process is 300-600 0C. Parameters that affect the pyrolysis process such as pretreatment of the material, moisture content and particle size of the material, the composition of biomass compounds, the effect of temperature, heating rate, gas flow rate, type of pyrolysis, and pyrolysis reactor. This is a thermochemical technique in which biomass waste is converted into solid fuel (char), producer gas (syngas), and liquid (bio-oil) without oxygen in a reactor. This article contains a comprehensive review of biomass conversion techniques to bio-oil using the solar energy-based fast pyrolysis method. Furthermore, the exposure used was based on the publication source, year, origin country, research methodology, and focus area. Most research has been empirical and mainly focused on fast pyrolysis and its influencing factors. There are several studies, information, and research recommendations described in this article.
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审稿时长
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