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Bio-oil Production from Napier Grass Using a Pyrolysis Process: Comparison of Energy Conversion and Production Cost between Bio-oil and Other Biofuels

机译:利用热解过程从纳皮尔草生产的生物油:生物油和其他生物燃料之间的能量转换和生产成本比较

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摘要

This article presents bio-oil production from Napier grass by using a pyrolysis process. The comparative potential of energy conversion and the cost of production among bio-oil, bio-ethanol, biogas and syngas from gasification by using Napier grass as raw material were also analyzed. The pyrolysis in this study was developed from previous work in order to improve the yield of bio-oils. The circulating fluidized bed reactor (CFBr) was used as the reactor, and a new scrub condenser was applied in order to increase the performance of condensing vapor into bio-oil. This system had the ability to feed Napier grass between 45-75 kg/hr, and it could create a solid-recirculating rate of about 52.36 kg/m~2s at 7 m/s of maximum superficial velocity. From the results of the bio-oil production, it has been concluded that the maximum yield of bio-oil production is 44.60 wt% at a feed rate of 60 kg/hr and bed temperature of 480°C. The properties and chemical components of bio-oil were also determined. A comparison of energy conversion from Napier grass to products such as bio-oil, ethanol, biogas and syngas through the gasification process as well as an analysis of cost of production revealed that syngas production through gasification has a greater potential energy conversion and cost of production than other technology, which had an energy conversion efficiency and cost of production of about 72.65% and 0.26 USD/GJ, respectively. However, as compared to liquid fuel, the gas fuel has greater limitations in terms of utilization and transportation The bio-oil production from pyrolysis in this study had a cold efficiency and cost of production of about 28.24% and 17.98 USD/GJ, which proved a more advantageous trend of cold efficiency and production cost than bio-ethanol production, thus it can support a large energy project to create more energy security.
机译:本文通过使用热解过程提出了纳皮尔草的生物油生产。还分析了能量转换的比较潜力和生物油,生物乙醇,沼气和合成气中的生产成本通过使用纳皮尔草作为原料的气化。本研究中的热解是从以前的工作开发的,以提高生物油的产量。循环流化床反应器(CFBR)用作反应器,并施加新的磨砂电容器以使冷凝蒸气变为生物油的性能。该系统能够在45-75 kg / hr之间喂养纳皮尔草,并且可以在最大浅表速度的7米/秒处产生约52.36kg / m〜2s的固体再循环率。从生物油生产的结果中,已经得出结论,生物油产量的最大收益率为44.60wt%,进给速度为60kg / hr和480°C的床温。还测定生物油的性质和化学成分。通过气化过程与生物油,乙醇,沼气和合成气等产品的能量转换的比较,以及生产成本的分析显示,通过气化的合成气产生具有更大的能量转换和生产成本而不是其他技术,其能量转换效率和生产成本分别为约72.65%和0.26美元/ GJ。然而,与液体燃料相比,气体燃料在利用率和运输方面具有更大的限制,本研究中热解的生物油产量具有冷却效率和生产成本约为28.24%和17.98美元/克GJ,其证明比生物乙醇生产更有利的冷效率和生产成本的趋势,因此它可以支持大量的能量项目以创造更多的能源安全性。

著录项

  • 来源
    《International energy journal》 |2020年第2期|155 -168|共14页
  • 作者单位

    Department of Mechanical Engineering Faculty of Engineering Khon Kaen University P.O. Box 123 Mitrapap Road Nai Muang Sub-district Muang District Khon Kaen 40002 Thailand;

    Department of Mechanical Engineering Faculty of Engineering Khon Kaen University P.O. Box 123 Mitrapap Road Nai Muang Sub-district Muang District Khon Kaen 40002 Thailand;

    Department of Mechanical Engineering Faculty of Engineering Khon Kaen University P.O. Box 123 Mitrapap Road Nai Muang Sub-district Muang District Khon Kaen 40002 Thailand;

    Department of Mechanical Engineering Faculty of Engineering Khon Kaen University P.O. Box 123 Mitrapap Road Nai Muang Sub-district Muang District Khon Kaen 40002 Thailand;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    bio-oil; CFBr; energy conversion; Napier grass; production cost;

    机译:生物油;CFBR;能量转换;纳米尔草;生产成本;

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