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Energetic, economic, and global warming aspects of fluidized bed drying of the medicinal plant Echium Amoenum Fisch. & C. A. Mey

机译:精力充沛,经济,全球变暖方面的药用植物echium春季FISCH的流化床干燥。 &C. A. Mey

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摘要

This research aims to conduct a comprehensive analysis of the drying conditions in a pilot-scale fluidized bed dryer by considering energetic, economic and global warming aspects. Echium amoenum Fisch. & C. A. Mey. E. amoenum petals were dried at a temperature range of 40-60°C and air velocities of 0.5 to 1 m s~(-1). According to the results, the air velocity has a positive effect but the drying temperature has a negative impact on the specific energy consumption (SEC), the production cost and the GHG emissions. It was observed that the case of 0.5 m s~(-1) air velocity and 60°C drying temperature, the production cost, the SEC and the GHG emissions were minimized. However, considering the quality of the dried E. amoenum petals the optimal conditions were obtained at 60°C drying temperature and 0.91 m s~(-1) air velocity. Under these conditions, GHG emissions, production cost and SEC of dried E. amoenum petals would be 60.56 g CO_2 kg~(-1), $38.87 kg~(-1) of dried E. amoenum petals and 29.87 MJ kg~(-1) of evaporated water, respectively.
机译:本研究旨在通过考虑精力充沛,经济和全球变暖方面来对先导流化床干燥机中的干燥条件进行全面分析。 echium amoenum fisch。 &C. A. Mey。 E.氨因瓣在40-60℃的温度范围内干燥,空气速度为0.5至1M S〜(-1)。根据结果​​,空气速度具有积极效果,但干燥温度对特定能耗(秒),生产成本和温室气体排放产生负面影响。观察到,0.5M S〜(-1)空气速度和60℃干燥温度,生产成本,秒和温室气体排放的情况最小化。然而,考虑到干燥的E.Amoenum花瓣的质量,在60℃干燥温度和0.91M S〜(-1)空气速度下获得最佳条件。在这些条件下,干燥E.Amoenum花瓣的温室气体排放,生产成本和秒为60.56g CO_2 kg〜(-1),38.87 kg〜(-1)干燥的amoenum花瓣和29.87 mj kg〜(-1分别蒸发的水。

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