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首页> 外文期刊>Journal of Stored Products Research >Sorption of carbon dioxide by chickpeas packaged in modified atmospheres
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Sorption of carbon dioxide by chickpeas packaged in modified atmospheres

机译:通过鹰嘴豆包装在改性环境中的二氧化碳的吸附

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摘要

Modified atmospheres (MAs) with high CO2 concentrations are used for packaging several commodities with different purposes, including as an alternative method for pest control. When used in gas-tight flexible packages, sorption by the commodity produces a vacuum effect that causes the package to adopt a random shape and makes it impossible to reshape it without opening the package. Other than storage problems in retail storehouses, sorption can affect the amount of gas inside the packages needed for pest control. This study reports the amount of CO2 sorption by chickpeas packaged with different MAs and the negative pressure produced due to the decrease in the partial pressure of the gas. Trials were conducted in 710 mL semi-rigid plastic containers filled up to 24%, 48% and 96% of their capacity (filling ratios). Three MAs (90%, 70% and 50% CO2 with a residual of 3%, 6% and 10% O-2, respectively, and balanced by N-2) were used during 24 h, 48 h, 240 h and 384 h of exposure at 20 degrees C. The maximum sorption (1.28 g CO2/kg of chickpea) was obtained with the lower filling ratio (24%) and with an initial concentration of 90%. Sorption decreased with the decline in the initial CO2 concentration and with the rise in the filling ratio. The time needed to reach the equilibrium sorption varied between 141 h and 27 h, depending on the initial CO2 concentration and the filling ratio of chickpeas. The vacuum effect produced inside the containers by sorption produced a negative pressure that increased with the increase in the filling ratio and the initial CO2 concentration. Whether the amount of CO2 available in packages after gas sorption is still effective for controlling chickpea pests remains to be tested. (C) 2019 Elsevier Ltd. All rights reserved.
机译:具有高二氧化碳浓度的改性环境(MAS)用于用不同目的包装多种商品,包括作为害虫控制的替代方法。当用于气密柔性封装时,商品的吸附产生了真空效应,使包装采用随机形状,使其无法重塑它而不打开包装。除了零售仓库中的储存问题,吸附可能会影响害虫控制所需的包装内的气体量。本研究报告了用不同的MAS包装的鹰嘴豆的二氧化碳吸附量和由于气体的分压降低而产生的负压。试验在710毫升半刚性塑料容器中进行,其填充高达24%,48%和96%的容量(填充比率)。在24小时,48小时,240小时和384期间使用三种MAS(90%,70%和50%的CO 2,分别为3%,6%和10%O-2,并通过N-2平衡) H暴露在20℃下。获得最大吸附(1.28g CO2 / kg鸡肝),填充率较低(24%),初始浓度为90%。初始CO2浓度下降并随着灌浆率的增加而降低了吸附。达到平衡吸附所需的时间在141小时和27小时之间变化,这取决于初始CO 2浓度和鹰嘴豆的填充率。通过吸附在容器内产生的真空效果产生了随着填充率的增加和初始CO 2浓度而增加的负压。在气体吸附后包装中可用的二氧化碳量是否仍然有效地控制鹰嘴豆病虫害仍有待测试。 (c)2019年elestvier有限公司保留所有权利。

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