使用arrhenius模型的香蕉呼吸速率概述

Arief Rahman, Muhammad Faisal
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引用次数: 0

摘要

收获后的园艺产品不能与呼吸过程分离。所以我们需要一种方法来确定呼吸速率(二氧化碳产量),其中之一就是阿伦尼乌斯模型。本研究的目的是利用Arrhenius模型预测Barangan香蕉的CO2产量。采用IRA-107岛津连续气体分析仪测量不同采收年龄(10周和11周)的巴兰干香蕉的二氧化碳产量,香蕉样品放置在呼吸室,冰箱低温储存。然后使用阿伦尼乌斯模型估计测量到的呼吸速率数据。当储存温度升高时,CO2的产率也会增加。采收11周和10周时,贮藏温度越高,CO2产率越高。CO2产速率与储存温度之间的关系可以用Arrhenius模型求解。Arrhenius模型的预测结果表明,其决定系数为0.91-0.94。采用Arrhenius模型计算收获10周的k值(0.1、0.24、0.36)和收获11周的k值(0.19、0.31、0.49)。Ea值在10周收获33.76 kJ/mol,在11周收获45.83 kJ/mol。第10周和第11周产生的呼吸速率不同,收获时第11周产生的CO2速率为77.98 ml/kg。小时,预测结果为75.76 mm/kg。1小时和10周收获时65.80 ml/kg。小时,预测结果为68.21毫升/公斤小时。Arheniuss模型的结果可用于估算巴兰干香蕉在贮藏期间的CO2产率
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Pendugaan laju respirasi pisang barangan menggunakan model arrhenius
The respiration process cannot be separated from horticultural products after harvest. So we need a method to determine the rate of respiration (CO2 production), one of which is the Arrhenius model. The purpose of this study was to predict the CO2 production rate of Barangan bananas using the Arrhenius model. CO2 production of Barangan bananas with different harvesting ages (10 and 11) weeks was measured using the Continuous Gas Analyzer IRA-107 Shimadzu where the banana samples were placed in a respiration chamber, refrigerator for low temperature storage. The measured respiration rate data was then estimated using the Arrhenius model. When the storage temperature increases, the rate of CO2 production will increase. At the harvest age of 11 and 10 weeks the higher the storage temperature, the CO2 production rate will increase. The relationship between CO2 production rate and storage temperature can be solved using the Arrhenius model. The results of the prediction of the Arrhenius model found a coefficient of determination of 0.91-0.94. The k values of 10 weeks of harvest (0.1, 0.24, 0.36) and k of 11 weeks of harvest (0.19, 0.31, 0.49) were calculated using the equation obtained using the Arrhenius model. Value of Ea harvested 33.76 kJ/mol at 10 weeks and 45.83 kJ/mol at 11 weeks. The respiration rate produced at 10 and 11 weeks was different, where the CO2 production rate at 11 weeks at harvest was 77.98 ml/kg.hour with predicted results of 75.76 mm/kg.hour and at 10 weeks at harvest 65.80 ml/kg.hour with a predicted result of 68.21 ml/kg.hour. The results of the Arheniuss model can be used to estimate the CO2 production rate of Barangan bananas during storage
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