College of Engineering, China Agricultural University, Beijing 100083, China.
Beijing Aerospace Propulsion Institute, Beijing 100076, China.
Bioresour Technol. 2016 Aug;214:242-247. doi: 10.1016/j.biortech.2016.04.062. Epub 2016 Apr 16.
The effects and mechanism of ball milling on the torrefaction process were studied. Ball- and hammer-milled (screen size 1mm) pine sawdust samples were torrefied at three temperatures (230, 260, and 290°C) and two durations (30 and 60min) to investigate into their torrefaction behavior and physicochemical properties. The results showed that, under identical torrefaction conditions, torrefied ball-milled pine sawdust had a higher carbon content and fixed carbon, and lower hydrogen and oxygen contents than torrefied hammer-milled pine sawdust. Torrefied ball-milled pine sawdust produced lower mass and energy yields, but higher heating values than torrefied hammer-milled pine sawdust. Ball milling destroyed the crystalline structure of cellulose and thus reduced the thermal stability of hemicellulose, cellulose, and lignin, causing them to degrade at relatively lower temperatures. In conclusion, biomass pretreated with a combination of ball milling and torrefaction has the potential to produce an alternative fuel to coal.
研究了球磨对热解过程的影响和作用机制。将球磨和锤磨(筛网尺寸 1mm)的松树锯末样品在三个温度(230、260 和 290°C)和两个时间(30 和 60min)下进行热解,以研究其热解行为和物理化学性质。结果表明,在相同的热解条件下,球磨热解的松树锯末的碳含量和固定碳含量较高,而氢和氧含量较低。球磨热解的松树锯末的质量和能量产率较低,但热值较高。球磨破坏了纤维素的结晶结构,从而降低了半纤维素、纤维素和木质素的热稳定性,导致它们在相对较低的温度下降解。总之,经过球磨和热解预处理的生物质有可能成为煤炭的替代燃料。