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Mechanically milled powder from cotton gin trash for diverse applications

机译:来自棉花轧饼垃圾的机械研磨粉末各种应用

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摘要

There are very few reports, if any, on the physicochemical changes during the powder fabrication of cotton gin trash (CGT), an abundant source of lignocellulose. This particular study can be very informative for the production of new CGT composite materials. In our current study, we investigated the changes in particle size, morphology, surface area, chemical structure, crystallinity, thermal and moisture properties of CGT at different stages of the milling operation. An attritor milling of CGT up to 4 h reduced the particle size (from 144.2 mu m to 6.2 mu m) and enhanced the surface area up to 2.5 times without damaging its original properties, including crystallinity and chemical structure. Milling operation beyond 4 h did not further reduce the particle size effectively, though affected the thermal stability of CGT. Overall, it is suggested that the milled CGT can be a sustainable source of lignocellulose powder for use in a wide area of applications. (C) 2019 Elsevier B.V. All rights reserved.
机译:在粉末池垃圾(CGT)的粉末制作期间,有很少的报道,如果有的话,如果在粉末池垃圾(CGT)中,则是木质纤维素的丰富来源。这种特殊的研究对于生产新的CGT复合材料的生产非常有效。在我们目前的研究中,我们在铣削操作的不同阶段调查了CGT的粒度,形态,表面积,化学结构,结晶度,热和水分性能的变化。 CGT的磨损磨削率高达4小时(从144.2μm至6.2μm)降低,并增强了高达2.5倍的表面积,而不会损坏其原始性质,包括结晶度和化学结构。铣削操作超过4小时并未进一步降低粒度,尽管影响了CGT的热稳定性。总体而言,建议碾磨的CGT可以是木质纤维素粉末的可持续源,用于广泛的应用领域。 (c)2019年Elsevier B.V.保留所有权利。

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