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首页> 外文期刊>Drying technology: An International Journal >Comparison of mass and heat transfer properties of kelp when dried by radiation or conduction using a novel superheated steam system with built-in heat recovery unit
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Comparison of mass and heat transfer properties of kelp when dried by radiation or conduction using a novel superheated steam system with built-in heat recovery unit

机译:用内置热回收单元用新型过热蒸汽系统干燥时海带的质量和传热性能的比较

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摘要

Kelp is an aquatic product that must be dried after harvest to prevent spoilage. This study tested a novel system for drying kelp. It utilized superheated steam for heating and could recover the latent heat of the exhausted steam, for further drying of the product. The system was tested in four drying modes, including single-face radiation drying mode (SRDM), double-face radiation drying mode (DRDM), single-face conduction drying mode (SCDM), and combined conduction and radiation drying mode (CCRDM). A one-dimensional semi-empirical mathematical model was used to predict the change in the moisture content and temperature of kelp during drying in each of the four drying modes. The drying characteristics of standardized kelp samples in each drying mode were investigated and the efficiency of heat recovery was assessed and compared. The change in moisture content and surface temperature of kelp during drying in each of the four drying modes was also predicted. The results showed that the drying characteristic of the kelp differed significantly depending on the drying mode. The CCRDM was determined as the optimal drying method and exhibited the best drying characteristics, including the highest kelp surface temperature, shortest drying time, and fastest drying rate. Compared to SRDM, DRDM and SCDM, CCRDM recovered, 83.3, 79.5, and 4.5% more energy from the system, and was the most energy efficient among 4 operation modes. Compared with changes in moisture, the changes in the surface temperature of kelp were more accurately predicted during drying.
机译:海带是一种水生产品,必须在收获后干燥以防止腐败。该研究测试了一种用于干燥海带的新型系统。它利用过热蒸汽进行加热,可以恢复耗尽的蒸汽的潜热,以进一步干燥产品。该系统以四种干燥模式测试,包括单面辐射干燥模式(SRDM),双面辐射干燥模式(DRDM),单面导电干燥模式(SCDM),以及组合传导和辐射干燥模式(CCRDM) 。用一维半经验数学模型用于预测在四种干燥模式中的每一个中干燥过程中海带的水分含量和温度的变化。研究了标准化海藻样品的干燥特性,并研究了热回收效率并进行了比较。还预测了在每种干燥模式中的每种干燥中干燥期间海带水分含量和表面温度的变化。结果表明,根据干燥模式,海带的干燥特性显着不同。 CCRDM被确定为最佳干燥方法,并表现出最佳干燥特性,包括最高的海带表面温度,最短的干燥时间和最快的干燥速率。与SRDM,DRDM和SCDM相比,CCRDM从系统中恢复,83.3,79.5和4.5%的能量,并且在4种操作模式下最有效。与水分的变化相比,在干燥过程中更准确地预测海带表面温度的变化。

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