传质
小粒咖啡
含水量
原材料
工艺工程
阿拉比卡咖啡
制浆造纸工业
木材干燥
传热
环境科学
水分
化学
材料科学
工程类
植物
园艺
热力学
物理
色谱法
复合材料
有机化学
岩土工程
生物
作者
Paulo Sérgio de Andrade,Cláudio R. Duarte,Marcos A.S. Barrozo
标识
DOI:10.1080/07373937.2024.2341399
摘要
In the pursuit of advancing post-processing techniques for Arabica coffee, our research introduces a rotary dryer, known as a roto-aerated dryer, marking its first application in coffee drying and surpassing conventional methods. This study delves into the evaluation of heat and mass transfer dynamics between coffee and drying air within the innovative dryer. Characterization of raw materials precedes a series of drying experiments under varied conditions, forming the basis for a mathematical two-phase model elucidating the underlying dynamics of the drying process. Noteworthy is the significantly reduced material residence time (14.60–27.47 min) compared to conventional dryers. Drying rates (0.09–0.24 g water/100 g solid/min) surpass those achieved by other methods. Simulated results from the numerical solution of the two-phase model closely align with experiments (average error of 2.39% for moisture content and 0.89% for temperature). The effective preservation of material quality, particularly acidity, underscores the valuable insights offered for optimizing drying processes, holding substantial potential for advancing the specialty coffee industry.
科研通智能强力驱动
Strongly Powered by AbleSci AI