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首页> 外文期刊>LWT-Food Science & Technology >Moisture sorption isotherms and isosteric heat of sorption of leaves and stems of lemon balm (Melissa officinalis L.) established by dynamic vapor sorption.
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Moisture sorption isotherms and isosteric heat of sorption of leaves and stems of lemon balm (Melissa officinalis L.) established by dynamic vapor sorption.

机译:通过动态蒸气吸附建立的柠檬香脂( L.)的叶和茎的水分吸收等温线和等量吸附热。

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摘要

The equilibrium moisture contents (MC) of leaves and stems of lemon balm (Melissa officinalis L.) were determined separately at temperatures of 25, 35 and 45 degrees C over a stepwise increase of relative humidity (RH) ranging from 3 to 90% by an automatic, gravimetric analyzer (DVS system). Equilibrium was achieved within 6 h for most of the target values of relative humidity. The equilibrium moisture content of leaves was significantly higher than that of stems (p <0.05). Differences in moisture sorption capacity between the leaves and stems can be attributed to chemical composition and structure of the tissues. Five three-parameter moisture sorption models (modifications of Chung-Pfost, GAB, Halsey, Henderson and Oswin) were tested for their effectiveness to fit the experimental sorption data. The modified Oswin equation was found to be the best model to describe the adsorption isotherms of both leaves and stems of lemon balm. The recommended MC values of leaves and stems for microbial safe storage at 25 degrees C were 0.124 and 0.113 kg water per kg dry solids, respectively. The net isosteric heat of sorption was computed from the predicted sorption data by applying the integrated form of the Clausius-Clapeyron equation
机译:在25、35和45摄氏度的温度下,逐步升高相对湿度(RH),分别测定柠檬香脂(Melissa officinalis L.)的叶子和茎的平衡水分含量(MC)。自动重量分析仪(DVS系统)在3%到90%之间变化。大多数相对湿度目标值均在6小时内达到平衡。叶片的平衡水分含量显着高于茎( p <0.05)。叶子和茎之间的水分吸收能力的差异可归因于组织的化学组成和结构。测试了五个三参数水分吸收模型(Chung-Pfost,GAB,Halsey,Henderson和Oswin的修改形式),以适应实验吸收数据的有效性。修改后的Oswin方程被认为是描述柠檬香脂的叶子和茎部的吸附等温线的最佳模型。在25摄氏度下,微生物安全储存的叶和茎的MC推荐值分别为每千克干固体0.124和0.113千克水。应用Clausius-Clapeyron方程的积分形式,从预测的吸附数据中计算出净的等规吸附热。

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