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真空干燥循環(huán)時間取決于哪些因素

來源:http://m.jz418.cn/   日期:2021-05-19   瀏覽量:0
TAG:山東制氮機,山東干燥機,山東螺桿鼓風(fēng)機,山東空壓機,山東自動排水器
除產(chǎn)品特性外,真空干燥循環(huán)時間取決于以下關(guān)鍵因素:
In addition to product characteristics, the vacuum drying cycle time depends on the following key factors:
1.壓力:真空干燥器中的壓力范圍從幾毫巴到幾百毫巴,用于蒸發(fā)諸如甲醇,丙酮的溶劑;作為一般規(guī)則,通過使蒸汽首先通過表面冷凝器然后通過真空泵來產(chǎn)生真空是較經(jīng)濟的。這樣,只有很小的流量進入真空泵。在相同溫度下,大多數(shù)有機溶劑的蒸汽壓高于水。因此在一定的真空下,大多數(shù)有機溶劑的蒸發(fā)溫度較低。
1. Pressure: the pressure range of vacuum dryer is from several millibars to several hundred millibars, which is used to evaporate solvents such as methanol and acetone; As a general rule, it is more economical to create a vacuum by passing the steam first through the surface condenser and then through the vacuum pump. In this way, only a small amount of flow enters the vacuum pump. At the same temperature, the vapor pressure of most organic solvents is higher than that of water. Therefore, in a certain vacuum, the evaporation temperature of most organic solvents is low.
2.溫度:干燥器壁的溫度取決于固體允許的^大允許溫度。當(dāng)壁溫低于100時,水循環(huán)加熱系統(tǒng)通常是較經(jīng)濟的
2. Temperature: the temperature of dryer wall depends on the allowable temperature of solid. When the wall temperature is below 100, the water circulation heating system is usually more economical
3.表面積:在錐形干燥器中,加熱壁的表面積小于體積的比例,因此在較小的干燥器中干燥時間變短。
3. Surface area: in the conical dryer, the surface area of the heating wall is less than the volume ratio, so the drying time becomes shorter in the smaller dryer.
4.熱傳遞系數(shù):傳熱系數(shù)是取決于產(chǎn)品的參數(shù)。濕產(chǎn)品的傳熱系數(shù)比干材料高4到6倍。對于干燥產(chǎn)品,傳熱系數(shù)為25-30W/m2/℃。由于除水以外的溶劑需要較少的輸入熱來蒸發(fā),因此這些溶劑的干燥能力可以高得多。例如,乙醇或甲醇代替水的蒸發(fā)能力是其兩倍。使用丙酮和乙酸乙酯,蒸發(fā)量甚至?xí)叱?倍。
4. Heat transfer coefficient: the heat transfer coefficient depends on the product parameters. The heat transfer coefficient of wet products is four to six times higher than that of dry materials. For dry products, the heat transfer coefficient is 25-30w / m2 / ℃. Since solvents other than water require less input heat to evaporate, the drying capacity of these solvents can be much higher. For example, ethanol or methanol has twice the evaporation capacity of water. Using acetone and ethyl acetate, the evaporation is even four times higher.

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