DESIGN AND CONSTRUCTION OF PORTABLE ETHYLENE GAS DETECTOR SYSTEM TO DETERMINE FRUIT MATURITY LEVEL OF MANGO FRUIT BASED ON INFRARED

Determination of ripe fruit is generally based on the color and whether the fruit flesh is soft or not. However, this method is subjective and a more objective method is needed. One of them is determining fruit maturity based on the gas it releases, that is ethylene. Development of an ethy...

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Main Author: Adha Agary Andi Paso (NIM: 10213040), Moch
Format: Final Project
Language:Indonesia
Online Access:https://digilib.itb.ac.id/gdl/view/28954
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Institution: Institut Teknologi Bandung
Language: Indonesia
id id-itb.:28954
spelling id-itb.:289542018-02-25T04:29:01ZDESIGN AND CONSTRUCTION OF PORTABLE ETHYLENE GAS DETECTOR SYSTEM TO DETERMINE FRUIT MATURITY LEVEL OF MANGO FRUIT BASED ON INFRARED Adha Agary Andi Paso (NIM: 10213040), Moch Indonesia Final Project INSTITUT TEKNOLOGI BANDUNG https://digilib.itb.ac.id/gdl/view/28954 Determination of ripe fruit is generally based on the color and whether the fruit &#64258;esh is soft or not. However, this method is subjective and a more objective method is needed. One of them is determining fruit maturity based on the gas it releases, that is ethylene. Development of an ethylene gas detector system has been widely used. However, the use of these tools is still in laboratory scale. Therefore, the purpose of this &#64257;nal project is to make a portable gas detection system based on infrared so that it can be used extensively. The principle used is the principle of frequency absorption in molecules. When the frequency from source is equal to the vibration frequency of the molecule, the frequency will be absorbed. Consequently there is energy lost. This lost energy is converted into other energy, one of which is heat energy. This heat will be detected by the sensor. In this &#64257;nal project, we use Far-Infrared Source and sensor Thermopile because this component is suitable for ethylene gas which has the largest absorption at wavelength 10-11 µm. Next, parameters to be measured are optimum fan voltage parameters and reference voltage of mature fruit. The result obtained is the fan optimum voltage of V and the mature reference voltage of V. The result obtained is the fan voltage is does not to a&#64256;ecting the signal obtained. Then, reference voltage for each fruit maturity level, which is half-baked = 2.05 V < Vout < 2.09 V and mature = Vout > 2.09 V. text
institution Institut Teknologi Bandung
building Institut Teknologi Bandung Library
continent Asia
country Indonesia
Indonesia
content_provider Institut Teknologi Bandung
collection Digital ITB
language Indonesia
description Determination of ripe fruit is generally based on the color and whether the fruit &#64258;esh is soft or not. However, this method is subjective and a more objective method is needed. One of them is determining fruit maturity based on the gas it releases, that is ethylene. Development of an ethylene gas detector system has been widely used. However, the use of these tools is still in laboratory scale. Therefore, the purpose of this &#64257;nal project is to make a portable gas detection system based on infrared so that it can be used extensively. The principle used is the principle of frequency absorption in molecules. When the frequency from source is equal to the vibration frequency of the molecule, the frequency will be absorbed. Consequently there is energy lost. This lost energy is converted into other energy, one of which is heat energy. This heat will be detected by the sensor. In this &#64257;nal project, we use Far-Infrared Source and sensor Thermopile because this component is suitable for ethylene gas which has the largest absorption at wavelength 10-11 µm. Next, parameters to be measured are optimum fan voltage parameters and reference voltage of mature fruit. The result obtained is the fan optimum voltage of V and the mature reference voltage of V. The result obtained is the fan voltage is does not to a&#64256;ecting the signal obtained. Then, reference voltage for each fruit maturity level, which is half-baked = 2.05 V < Vout < 2.09 V and mature = Vout > 2.09 V.
format Final Project
author Adha Agary Andi Paso (NIM: 10213040), Moch
spellingShingle Adha Agary Andi Paso (NIM: 10213040), Moch
DESIGN AND CONSTRUCTION OF PORTABLE ETHYLENE GAS DETECTOR SYSTEM TO DETERMINE FRUIT MATURITY LEVEL OF MANGO FRUIT BASED ON INFRARED
author_facet Adha Agary Andi Paso (NIM: 10213040), Moch
author_sort Adha Agary Andi Paso (NIM: 10213040), Moch
title DESIGN AND CONSTRUCTION OF PORTABLE ETHYLENE GAS DETECTOR SYSTEM TO DETERMINE FRUIT MATURITY LEVEL OF MANGO FRUIT BASED ON INFRARED
title_short DESIGN AND CONSTRUCTION OF PORTABLE ETHYLENE GAS DETECTOR SYSTEM TO DETERMINE FRUIT MATURITY LEVEL OF MANGO FRUIT BASED ON INFRARED
title_full DESIGN AND CONSTRUCTION OF PORTABLE ETHYLENE GAS DETECTOR SYSTEM TO DETERMINE FRUIT MATURITY LEVEL OF MANGO FRUIT BASED ON INFRARED
title_fullStr DESIGN AND CONSTRUCTION OF PORTABLE ETHYLENE GAS DETECTOR SYSTEM TO DETERMINE FRUIT MATURITY LEVEL OF MANGO FRUIT BASED ON INFRARED
title_full_unstemmed DESIGN AND CONSTRUCTION OF PORTABLE ETHYLENE GAS DETECTOR SYSTEM TO DETERMINE FRUIT MATURITY LEVEL OF MANGO FRUIT BASED ON INFRARED
title_sort design and construction of portable ethylene gas detector system to determine fruit maturity level of mango fruit based on infrared
url https://digilib.itb.ac.id/gdl/view/28954
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