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The effect of the hydrothermal carbonization process on palm oil empty fruit bunch

机译:水热碳化工艺对棕榈油空果串的影响

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摘要

Investigations of biomass conversion technologies and processes have been carried out intensively for the past two decades due to the reduction in the availability of landfill, stricter regulations, and increasing awareness of the problem. In this study we have concentrated on a wet-base biomass, in particular a waste stream from the commercial production of palm oil, empty fruit bunch (EFB). This has been converted through a hydrothermal carbonization process (HTC), where lignocellulosic material was converted in a low temperature and pressure environment to a product of increased carbon content offering the prospect of a material with a higher commercial value from an abundant waste stream. A purpose built pressure vessel was used in the presence of excess water at relatively low temperatures (180-220 ℃) and saturated water pressures (1-22 MPa). The chemical and physical characteristics of the products were confirmed using elemental analysis, calorific value, SEM, FTIR and GCMS. The carbon value recorded a decrease of the O/C ratio of raw EFB = 0.85 to a HTC processed EFB of 0.55. The surface morphology obtained from SEM showed minimal structural modification of the material although small pores (10-13 μm) were seen on the surface of the HTC processed material. This suggests a processing route that preserves the existing carbohydrate structure whilst increasing its carbon content, which offers a route to complex carbon-rich materials based upon naturally grown carbohydrate materials.
机译:由于垃圾掩埋场的减少,更严格的法规以及对问题的认识的提高,过去二十年来对生物质转化技术和工艺进行了深入研究。在这项研究中,我们集中于湿基生物质,尤其是商业生产的棕榈油,空果串(EFB)产生的废物流。它已通过水热碳化工艺(HTC)进行了转化,在此过程中,木质纤维素材料在低温和高压环境下转化为碳含量增加的产品,从而有望从大量废物流中获得具有更高商业价值的材料。在过低的水温(180-220℃)和饱和水压(1-22 MPa)下,使用专用压力容器。使用元素分析,热值,SEM,FTIR和GCMS确认了产品的化学和物理特性。碳值记录了原始EFB的O / C比降低了0.85,而HTC处理的EFB降低了0.55。尽管在HTC处理过的材料的表面上看到了小孔(10-13μm),但从SEM获得的表面形态显示出该材料的结构改性最小。这表明加工路线可保留现有碳水化合物结构,同时增加其碳含量,这为基于天然生长的碳水化合物材料的复杂的富碳材料提供了一条途径。

著录项

  • 来源
    《Biomass & bioenergy》 |2012年第12期|82-90|共9页
  • 作者单位

    Department of Chemical and Biological Engineering, University of Sheffield, Mappin Street, Sheffield S1 3JD, United Kingdom Faculty of Chemical and Natural Resources Engineering, Universiti Malaysia Pahang, 26300 Kuantan, Malaysia;

    Department of Chemical and Biological Engineering, University of Sheffield, Mappin Street, Sheffield S1 3JD, United Kingdom;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    agricultural; waste; carbonization; hydrothermal; carbon;

    机译:农业浪费;碳化水热碳;

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