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Sorption Study on Developed Low-cost Solid Desiccant Material for Solar Dryer

机译:用于太阳能干燥器开发的低成本固体干燥剂材料的吸附研究

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A study was attempted to develop a solar regenerative Bentonite - CaCl2 based solid desiccant material, and examine it's moisture sorption performance and regeneration characteristics. The desiccant was developed from 60 % bentonite, 20 % vermiculite,10 % CaCl2 and 10 % cement. Regeneration studies on the desiccant were carried out for moisture adsorption at 30 °C and 96 % R.H. for 144 h; and moisture desorption at 40 °C, 50 °C, 60 °C, 70 °C and 80 °C for 8 h. Regeneration temperature and time significantly affected the moisture sorption and I desorption of the solid desiccant, and their combined impact was meaningful (p < 0.05). Maximum adsorption capacity of the desiccant was 35.12 % (d.b.), and was efficiently regenerated by solar energy.
机译:试图开发太阳能再生膨润土 - CaCl2的固体干燥剂材料,并检查其水分吸附性能和再生特性。 干燥剂是从60%膨润土,20%蛭石,10%CaCl 2和10%水泥产生的。 对干燥剂的再生研究在30℃和96%R.H中进行水分吸附。144小时; 和水分解吸在40℃,50℃,60℃,70℃和80℃下8小时。 再生温度和时间显着影响水分吸附和固体干燥剂的解吸,它们的组合影响有意义(P <0.05)。 干燥剂的最大吸附能力为35.12%(D.B.),并通过太阳能有效地再生。

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