Cylindrical cavity resonator for complex permittivity estimation at 1.2853 GHz: Coir and skins of rice, banana, lemon, watermelon, pineapple and papaya

Author:

Alvarez-Flores Jose L.1,Vera-Reveles Gustavo2,Castillo-Soria Francisco R.3,Soriano-Equigua Leonel1,Maciel-Barboza F.M.1,Alcaraz-Valencia Pablo A.1,Cardenas-Juarez Marco3,Hernandez-Gomez E.S.4,Simon Jorge5

Affiliation:

1. , University of Colima, , Mexico

2. , Mexican National Institute of Technology, , Mexico

3. , University of San Luis Potosí, , Mexico

4. Acayucan Higher Institute of Technology, , Mexico

5. , Autonomous University of Zacatecas, , Mexico

Abstract

The knowledge of dielectric properties of organic materials at microwave frequencies is important for different applications in agriculture, food, or other similar research areas. The method of the low-cost disturbed cylindrical cavity resonator is a common measurement technique that considers resonant frequency shift when inserting samples of materials inside the cavity. Frequency shifts together with the knowledge of the complex permittivity of a reference material allow the estimation of the permittivity of a material under test. In this paper, the complex permittivity, and the loss tangent of dried and powdered agricultural wastes from the state of Colima in Mexico are obtained at 1.2853. The materials under test are coir and skins of rice, banana, lemon, watermelon, pineapple, and papaya since they are one of the most abundant agricultural wastes in the state of Colima in Mexico.

Publisher

IOS Press

Subject

Electrical and Electronic Engineering,Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics,Electronic, Optical and Magnetic Materials

Reference19 articles.

1. Agriculture: Definition and Overview

2. Origin and environmental setting of ancient agriculture in the lowlands of Mesoamerica;Pope;Science,2001

3. Low-Carbon Development for Mexico

4. Mexico - Agriculture, in: Encyclopedia of the Nations, 2012, https://www.trade.gov/country-commercial-guides/mexico-agriculture.

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