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  • 标题:Electromagnetic Wave Absorption Performance of Carbonized Rice Husk Obtained at Various Temperatures
  • 本地全文:下载
  • 作者:Gan Jet Hong Melvin ; Zhipeng Wang ; Qing‐Qing Ni
  • 期刊名称:Global Challenges
  • 印刷版ISSN:2056-6646
  • 电子版ISSN:2056-6646
  • 出版年度:2019
  • 卷号:3
  • 期号:11
  • 页码:1-5
  • DOI:10.1002/gch2.201900045
  • 语种:English
  • 出版社:John Wiley & Sons, Ltd
  • 摘要:AbstractAgricultural wastes such as rice husks (RHs) are valuable due to their feasibility to be converted into carbon materials, low cost, and abundancy in contrast to the conventional carbon material sources. In this study, RHs are carbonized at various temperatures from low to high temperatures, and their electromagnetic (EM) wave absorption properties are evaluated. Carbon materials, silicon carbide (SiC) whiskers, and SiC particles are obtained from RHs carbonized at 1500 °C (CRH1500) for 0.5 h with presence of Ar gas at 1 atm. In order to evaluate their EM wave absorption performance, complex permittivity and permeability are measured by using vector network analyzer, and the values are utilized in the reflection loss (R.L.) calculation according to the transmission line theory. CRH1500, 40 wt% with thickness of 1.6 mm exhibits minimum R.L. of ≈−55.4 dB (>99.9997% absorption) at 11.37 GHz and response bandwidth (R.L. < 10 dB, > 90% absorption) of 4.21 GHz. Low‐cost and abundant RHs, carbonized at various temperatures, show significant absorption performance. Their absorption performance and response bandwidth are highly dependent on matching thickness, indicating that they can be easily modulated for promising electromagnetic wave absorber materials.Carbon materials, silicon carbide (SiC) whiskers, and SiC particlesare obtained from rice husks (RHs) carbonized at 1500 °C (CRH1500) for 0.5 h in the presence of Ar gas at 1 atm. CRH1500, 40 wt% with thickness of 1.6 mm, exhibits a minimum reflection loss (R.L.) of ≈−55.4 dB (>99.9997% absorption) at 11.37 GHz and response bandwidth (R.L. < 10 dB, >90% absorption) of 4.21 GHz.
  • 关键词:carbonelectromagnetic wave absorptionrice huskssilicon carbide
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