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Modeling the equilibrium moisture content (EMC) of Miscanthus sinensis, miscane, energy cane, and energy sorghum

机译:模拟中国芒草,甘蔗,能源茎和能源高粱的平衡水分含量(EMC)

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Understanding of moisture sorption isotherms of bioenergy crops is critical to monitoring their stability and quality during harvest, handling, transportation, and storage. Relationships between the moisture content (EMC) and equilibrium relative humidity (ERH) of four biomass crops - Miscanthus sinensis, miscane, energy cane, and energy sorghum -were determined at 15, 25, and 35 degrees C. Type II and type III isotherm characteristics were observed in all samples. The Henderson, modified Henderson, modified Chung-Pfost, modified Halsey, modified Oswin, and modified GAB models were applied to the individual energy crop's sorption isotherm data and a global isotherm model for the four energy crops was developed. Results showed that the modified Oswin model best fit the sorption behavior of the individual crops (0.974 <= R-2 <= 0.997 and 0.72% wet basis (w.b.) <= standard error (SE) <= 1.91% w.b.) and for a global isotherm model of these crops (R-2 = 0.973 and SE = 1.96% w.b.). When the soluble sucrose content (0.00-15.9%) of the energy crops were included the global isotherm model based on the modified Oswin equation, overall performance improved (R-2 = 0.979 and SE = 1.75% w. b.). (C) 2015 Elsevier Ltd. All rights reserved.
机译:了解生物能源作物的水分吸收等温线对于在收获,处理,运输和储存期间监测其稳定性和质量至关重要。在15、25和35摄氏度下确定了四种生物量作物-芒草,甘蔗,能手和高粱的水分含量(EMC)与平衡相对湿度(ERH)之间的关系。II型和III型等温线在所有样品中观察到特征。将Henderson,Henderson修改,Chung-Pfost修改,Halsey修改,Oswin修改和GAB修改模型应用于单个能源作物的吸附等温线数据,并开发了四种能源作物的全局等温线模型。结果表明,修改后的Oswin模型最适合单个农作物的吸附行为(0.974 <= R-2 <= 0.997和0.72%湿基(wb)<=标准误差(SE)<= 1.91%wb),并且对于这些作物的全球等温线模型(R-2 = 0.973,SE = 1.96%wb)。当能量作物的可溶性蔗糖含量(0.00-15.9%)包括在基于改进的Oswin方程的全局等温线模型中时,总体性能得到改善(R-2 = 0.979和SE = 1.75%w。b。)。 (C)2015 Elsevier Ltd.保留所有权利。

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