Department of Forest Sciences - DCF, Federal University of Lavras - UFLA, University Campus, Doutor Sylvio Menicucci Av., POB 3037, Lavras, MG, Brazil.
Department of Forest Sciences - DCF, Federal University of Lavras - UFLA, University Campus, Doutor Sylvio Menicucci Av., POB 3037, Lavras, MG, Brazil.
Waste Manag. 2020 Dec;118:36-44. doi: 10.1016/j.wasman.2020.08.019. Epub 2020 Sep 2.
This research proposed to investigate a possible destination for the cocoa waste as component in the core layer of Medium Density Particleboards (MDPs) and to evaluate the effect of the waste insertion on the physical-mechanical properties of the panel. The core layers of the MDPs were composed by different percentages of cocoa wastes (0, 25, 50, 75 and 100%) in combination with pine wood. The targeted density of the panels was pre-established in 0.7 g cm, bonded with urea-formaldehyde. The cocoa waste showed higher extractives content (34.8%) when compared with the pine wood (4.0%). The inclusion of the waste did not cause a significant difference in the moisture and bulk density of the panels; however, there was an increase in water absorption 24 h (71-105%) and thickness swelling 24 h (13-35%). Despite the values of the mechanical properties decreased in general, in low percentages, the cocoa waste does not prevent the use of the MDPs as furniture for internal environments. The results show that the cocoa waste has potential for being applied as raw material in the core layer of the MDP, in percentages up to 21%. The lignocellulosic wastes are promising alternatives for the achievement of the required current context of the sustainability and should be highlighted with research focused on their management for the development of added value materials.
本研究旨在探讨可可废料作为中密度纤维板(MDF)芯层的可能用途,并评估废料添加对板材物理力学性能的影响。MDF 的芯层由不同比例的可可废料(0、25、50、75 和 100%)与松木组合而成。目标板密度预先设定为 0.7 g cm,采用脲醛树脂胶黏剂。与松木(4.0%)相比,可可废料的抽提物含量更高(34.8%)。废料的添加并未导致板的水分和体积密度产生显著差异;然而,24 小时吸水率(71-105%)和 24 小时厚度膨胀率(13-35%)均有所增加。尽管机械性能值普遍下降,但在低比例下,可可废料不会妨碍 MDF 作为室内家具的使用。研究结果表明,可可废料具有作为 MDF 芯层原材料的潜力,其添加比例可达 21%。木质纤维素废料是实现可持续性当前要求的有前途的替代品,应通过专注于其管理的研究来突出其价值,以开发附加值材料。