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Investigation of mass transfer, thermodynamics, and greenhouse gases properties in pennyroyal drying

机译:路票干燥中传质,热力学和温室气体特性的调查

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摘要

In this research, kinetic analysis, energy, exergy, and greenhouse gases of a hybrid laboratory dryer (solar-hot air) are presented for pennyroyal. Drying was performed at input temperatures of 50, 60, and 70 degrees C and air velocities of 0.6, 1.2, and 1.8 m/s. The effect of drying variables on moisture ratio, effective moisture diffusivity, specific energy consumption, energy utilization ratio, energy utilization, exergy efficiency, and exergy loss was investigated. The highest amounts of effective moisture diffusivity and specific energy consumption were 2.30 x 10(-10)m(2)/s and 48.60 kWh/kg, respectively. Energy utilization and energy utilization ratio varied from 0.0064 to 0.0826 kJ/s and from 0.056 to 0.957, respectively. Exergy loss and exergy efficiency varied between 0.0037 to 0.0510 kJ/s and 0.2428 to 0.8731, respectively. In addition, by increasing the temperature and intake air velocity, drying rate increased and the emissions of greenhouse gases (CO2, SO2, and NOX) were reduced. Practical Applications Modeling of the drying process is an important aspect of drying technology, especially in drying for industrial purposes. The aim of modeling is to select the most suitable drying method and the best operating conditions for obtaining the product. Some of the key issues in drying have been to reduce the price of the energy resources used, increase the drying efficiency, and improve the quality of the dried products. The concept of exergy is defined by the concept of reversible work. The concept of reversibility depends on energy balance and mass regardless of energy quality (exergy loss).
机译:在这项研究中,杂交实验室干燥器(太阳能热空气)的动力学分析,能量,电力和温室气体呈现出PennyRodent。在50,60和70℃的输入温度和0.6,1.2和1.8m / s的空气速度下进行干燥。研究了干燥变量对水分比,有效的水分扩散,特定能耗,能量利用率,能源利用,高度效率和漏洞的影响。有效湿度差异和特定能耗的最高量分别为2.30×10( - 10)m(2)/ s和48.60千瓦时/千克。能量利用率和能量利用率分别从0.0064〜0.0826 kJ / s和0.056〜0.957变化。高度损失和高级效率在0.0037至0.0510 kJ / s和0.2428至0.8731之间变化。另外,通过增加温度和进气空气速度,减少干燥速率和温室气体排放(CO2,SO2和NOx)。干燥过程的实用应用建模是干燥技术的一个重要方面,尤其是在工业用途的干燥中。建模的目的是选择最合适的干燥方法和获得产品的最佳操作条件。一些关键问题已经降低了所用能量资源的价格,提高干燥效率,提高干燥产品的质量。 Deergy的概念由可逆工作的概念定义。可逆性的概念取决于能量平衡和质量无论能量质量如何(漏洞)。

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  • 来源
    《Journal of food process engineering》 |2020年第8期|e13446.1-e13446.15|共15页
  • 作者单位

    Univ Mohaghegh Ardabili Dept Biosyst Engn Ardebil Iran;

    Univ Mohaghegh Ardabili Dept Biosyst Engn Ardebil Iran|Wageningen Univ & Res Dept Farm Technol Wageningen Netherlands;

    Univ Mohaghegh Ardabili Dept Biosyst Engn Ardebil Iran;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-18 21:34:04

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