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HYGROCOPIC EQUILIBRIUM AND ISOSTERIC HEAT OF SUGARCANE BAGASS

机译:甘蔗渣的吸湿平衡和等空间热

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摘要

This study aimed to determine the hygroscopic equilibrium and isosteric heat of sugarcane bagasse to evaluate sorption dynamics and the required energy to vaporize water in the bagasse dehydration. The reaction was assessed at different controlled conditions of temperature (20, 40, 55 and 70 degrees C) and air relative humidity (10, 12, 17, 18, 30, 40, 45, 50, 60 and 85), as well as testing various models described in the literature to identify the condition that better represents sorption behavior. As a result, we found that the model that best fit empirical data of sugarcane bagasse sorption was the modified Henderson with determination coefficient of 0.972; while the integral isosteric heat of desorption ranged from 2,524.09 to 2,951.95 kJ kg(-1), for all water contents and equilibrium of 0.014 until 0.170 bs, respectively.
机译:本研究旨在确定甘蔗渣的吸湿平衡和等置热,以评估甘蔗渣脱水中的吸附动力学和汽化水所需的能量。在不同的温度(20、40、55和70°C)和空气相对湿度(10、12、17、18、30、40、45、50、60和85%)的受控条件下评估反应,并测试文献中描述的各种模型,以确定更好地代表吸附行为的条件。结果表明,最符合甘蔗渣吸附经验数据的模型是决定系数为0.972的改良Henderson;而整体等空间热解吸范围为2,524.09至2,951.95 kJ kg(-1),含水量为0.014至0.170 bs。

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