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稻壳和番荔枝草残余灰分的介电特性表征

Characterization of dielectric properties of residual ashes obtained from rice husk and annoni grass.

作者信息

Pereira Vinícius Macedo, Heckler Marcos V Thomas, Vasconcellos Marcos A Z, de Menezes Eliana W, Armas Luis E G

机构信息

Grupo de Óptica, Micro e Nanofabricação de Dispositivos-GOMNDI, Universidade Federal do Pampa, UNIPAMPA, Campus Alegrete, Alegrete, CEP 97546-550, Brazil.

Laboratório de Eletromagnetismo, Micro-Ondas e Antenas, Universidade Federal do Pampa-UNIPAMPA, Campus Alegrete, Alegrete, CEP 97546-550, Brazil.

出版信息

Sci Rep. 2023 Sep 2;13(1):14478. doi: 10.1038/s41598-023-40887-y.

Abstract

This paper presents a study about the characterization of dielectric properties (dielectric constant [Formula: see text] and dielectric-loss constant [Formula: see text]) of samples derived from two different biomass types: rice husk ash (RHA) and annoni grass ash (AGA).The procedure is carried out using the resonant cavity method along with a vector network analyzer. For this purpose, four different ashes were produced, by burning rice husk and annoni grass at two different temperatures and burning times: 400 °C/30 min (RHA40030 and AGA40030) and 800 °C/5 h (RHA8005h and AGA8005h). These ashes were combined with Bakelite to produce cylindrical samples with diameter of 30 mm and thickness of 4.5 mm, which were characterized considering the frequency in the test band for 5G technologies ([Formula: see text] GHz). Experimental results showed that the samples burnt at high temperature showed very high [Formula: see text] when compared to the samples burnt at low temperature, mainly for AGA8005h. These values are [Formula: see text] 0.1690 and 1.4900 for RHA8005h and AGA8005h, respectively. The resulting dielectric constants are [Formula: see text] = 3.87 for RHA8005h and [Formula: see text] = 15.14 for AGA8005h). These very high dielectric loss tangent, indicate that these materials exhibit formidable properties for electromagnetic energy absorption, hence allowing the application as radiation-absorbent material (RAM).

摘要

本文介绍了一项关于两种不同生物质类型(稻壳灰(RHA)和番荔枝草灰(AGA))衍生样品的介电特性(介电常数[公式:见原文]和介电损耗常数[公式:见原文])表征的研究。该过程使用谐振腔法和矢量网络分析仪进行。为此,通过在两个不同温度和燃烧时间下燃烧稻壳和番荔枝草制备了四种不同的灰:400°C/30分钟(RHA40030和AGA40030)以及800°C/5小时(RHA8005h和AGA8005h)。这些灰与酚醛树脂混合制成直径为30毫米、厚度为4.5毫米的圆柱形样品,并根据5G技术测试频段([公式:见原文]吉赫兹)的频率对其进行表征。实验结果表明,与低温燃烧的样品相比,高温燃烧的样品显示出非常高的[公式:见原文],主要是AGA8005h。RHA8005h和AGA8005h的这些值分别为[公式:见原文]0.1690和1.4900。所得介电常数RHA8005h为[公式:见原文]=3.87,AGA8005h为[公式:见原文]=15.14)。这些非常高的介电损耗正切表明这些材料具有强大的电磁能量吸收特性,因此可作为辐射吸收材料(RAM)应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/61cf/10475050/fdb918a77014/41598_2023_40887_Fig1_HTML.jpg

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