A feasibility study for disinfection of farmland using microwaves

M. Spanu, M. B. Lodi, A. Fanti, S. Casu, F. Desogus, G. Mazzarella
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引用次数: 1

Abstract

This work focuses on the heat transfer dynamics in agricultural soils when exposed to microwave (MW) fields, in order to disinfect them and to eliminate dangerous organisms without using pesticides. The work managed with the design of a horn antenna, with fixed feeding power, to be used to irradiate the superficial layer of soils for a fixed depth. The soil was approximated using a transmission line model, i.e. a lumped electrical model. By this model, after having evaluated the relevant physical parameters, e.g. the dielectric constant (as a function of the soil water content), it was possible to evaluate the power absorption for the irradiated ground and, finally, the increase in temperature and its profile as a function of the irradiation time. Since the latter information is strictly connected to the heat transfer process occurring in the system, it is demonstrated the feasibility of the methodology here proposed to achieve difficult conditions for microbial and pathogens life and so an effective disinfection of the treated farmland.
微波消毒农田的可行性研究
为了在不使用农药的情况下对农业土壤进行消毒和消灭危险生物,本研究重点研究了农业土壤暴露于微波场时的传热动力学。这项工作采用了一个喇叭天线的设计,具有固定的馈电功率,用于照射土壤表层的固定深度。土壤近似采用传输线模型,即集总电模型。通过该模型,在评估了相关的物理参数,例如介电常数(作为土壤含水量的函数)之后,可以评估受辐照地面的功率吸收,最后,温度的升高及其曲线作为辐照时间的函数。由于后一种信息与系统中发生的传热过程严格相关,因此证明了本文提出的方法的可行性,可以实现微生物和病原体生存的困难条件,从而有效地消毒处理过的农田。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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