Monitoring Temperature and Humidity in Biomass Gasification Using Arduino Technology

J. Nzihou, Ousmane Zoundi, Salou Hamidou, B. G. Segda, Frederic Ouattara
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Abstract

Gasification of biomass can be done with pure oxygen or with ambient air. We have chosen gasification with ambient air in our project for costs considerations. Relative humidity (RH) of the air we used with a downdraft co-current gasifier is monitored in this paper. RH sensor used in this paper presents a capacitor which depends on the amount of water contained in the gaseous mixture. That RH, behaving as a variable capacitor is inserted in serial with the RC circuit of an astable multivibrator. Frequency of the oscillator is dependent of the resistance and the capacity which depends on the RH. We have inserted the RH sensor as a variable capacitor in the RC circuit of a NE555 oscillator. From the RH sensor datasheet, a mathematical model has been developed and the equation giving RH found to be $$Rh=496,23 * ( {1.44*T \over (R_4+2R_2 )* C_55}) -443,26.$$ The frequency of the oscillator is calculated with Arduino and the RH is deduced. Temperature can be measured with a K type thermocouple from 25 to 1024C with accuracy of +/-1.5C.The effect of temperature on the RH is also taken into account. Using Arduino Uno3 as a computer, we have calculated corrected RH respective to temperature and displayed both ambient and real RH on 20 columns with 4 lines LCD display. Arduino has also enabled us to save measured data in an Excel sheet, allowing us to analyses measured temperature and RH and plot different curves from it. The same circuit is also used to monitor RH of produced synthesis gas. Results of the Arduino temperature and monitoring system shows that visual observation of air and human feeling can be very misleading in respect to the air RH.
使用 Arduino 技术监控生物质气化过程中的温度和湿度
生物质气化可使用纯氧或环境空气。出于成本考虑,我们在项目中选择使用环境空气进行气化。本文对下行同流气化器所用空气的相对湿度(RH)进行了监测。本文中使用的相对湿度传感器是一个电容器,它取决于气体混合物中的含水量。该相对湿度传感器作为一个可变电容器,与一个可控多频振荡器的 RC 电路串联。振荡器的频率取决于电阻和容量,而电阻和容量又取决于相对湿度。我们将相对湿度传感器作为可变电容插入 NE555 振荡器的 RC 电路中。根据相对湿度传感器的数据表,我们建立了一个数学模型,发现相对湿度的计算公式为 $$Rh=496,23 * ( {1.44*T\over (R_4+2R_2 )* C_55}) -443,26.$$ 使用 Arduino 计算振荡器的频率并推导出相对湿度。使用 K 型热电偶可以测量 25 至 1024 摄氏度的温度,精度为 +/-1.5摄氏度。我们使用 Arduino Uno3 作为计算机,根据温度计算校正相对湿度,并在 20 列 4 行 LCD 显示屏上显示环境相对湿度和实际相对湿度。Arduino 还能将测量数据保存在 Excel 表中,以便分析测量的温度和相对湿度,并绘制不同的曲线。同样的电路还用于监测合成气体的相对湿度。Arduino 温度和监测系统的结果表明,目测空气和人的感觉会对空气相对湿度产生很大的误导。
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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