4.7 Article

Thermophysical characterization of oil palm shell (OPS) and OPS char synthesized by the microwave pyrolysis of OPS

期刊

APPLIED THERMAL ENGINEERING
卷 105, 期 -, 页码 605-612

出版社

PERGAMON-ELSEVIER SCIENCE LTD
DOI: 10.1016/j.applthermaleng.2016.03.053

关键词

Oil palm shell; Microwave pyrolysis; Thermal conductivity; Thermal diffusivity; Specific heat capacity

资金

  1. University Malaya High Impact Research Chancellery grant [UM.C/625/1/HIR/237]
  2. University Malaya Research Grant (AFR - Frontier Science) [RP031C-15AFR]

向作者/读者索取更多资源

Thermochemical conversion of OPS has gained huge attention among the researchers mainly because it converts the waste OPS into energy rich value added by-products. Thermophysical properties play a very crucial role in the thermal treatment of OPS and govern the heat transfer phenomenon of the material. Temperature dependence of thermophysical properties of OPS and OPS char has been investigated within the temperature range between 30 and 110 degrees C. OPS char is synthesized by the microwave pyrolysis of OPS. Thermogravimetric analysis of OPS and OPS char confirmed that OPS is more thermally stable as compared to OPS char. Moreover, it gave information about the degradation behavior of OPS and OPS char. Thermophysical properties was measured by thermal analyzer, based on the transient hot wire technique which is suitable to measure the thermal conductivity at elevated temperatures. At room temperature, thermal conductivity and thermal diffusivity of OPS are 0.199 W/m K and 0.142 mm(2)/s respectively and are 15.07% and 12.67% higher than that of OPS char. Specific heat capacity of OPS and OPS char are found to be almost same (1.139 kJ/kg K for OPS and 1.108 kJ/kg K for OPS char). Thermal conductivity and thermal diffusivity values lowered on increasing the temperature while specific heat capacity increased linearly on increasing the temperature. Low thermal conductivity and thermal diffusivity values of OPS implies that the conventional conductive heating is less effective and inefficient for the thermal treatment of OPS. (C) 2016 Elsevier Ltd. All rights reserved.

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