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首页> 外文期刊>Journal of Cleaner Production >Transforming wood waste into water-resistant magnesia-phosphate cement particleboard modified by alumina and red mud
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Transforming wood waste into water-resistant magnesia-phosphate cement particleboard modified by alumina and red mud

机译:将木材废料转变成氧化铝和赤泥改性的耐水镁磷酸盐水泥刨花板

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摘要

To transform construction wood waste by magnesia-phosphate cement (MPC) into cement-bonded particleboards, instability of MPC in water that compromises durability of particleboards in moist environment needs to be addressed. This study proposed a novel use of alumina and red mud to improve water resistance of MPC particleboards. Cement hydration chemistry and microstructure characteristics were revealed by quantitative X-ray diffraction analyses and scanning electron microscopy. Addition of alumina or red mud (Mg/Al or Mg/Fe at optimal molar ratio of 10:1) facilitated formation of amorphous Mg-Al or Mg-Al-Fe phosphate gel, respectively, which enhanced compressive strength. Alumina improved short-term water resistance, whereas red mud provided better long-term water resistance. Red mud-MPC binder enhanced strength retention (by 22.8%) and reduced water absorption (by 26.4%) of particleboards after 72-h water immersion, probably attributed to stable scaly-like Mg-Al-Fe phosphate gel. This study demonstrated that red mud and wood waste are sustainable materials for producing particleboards. (C) 2017 Elsevier Ltd. All rights reserved.
机译:为了通过磷酸镁镁水泥(MPC)将建筑废料转变成水泥粘合的刨花板,需要解决MPC在水中的不稳定性,这会损害刨花板在潮湿环境中的耐久性。这项研究提出了一种新颖的使用氧化铝和赤泥来改善MPC刨花板耐水性的方法。通过定量X射线衍射分析和扫描电子显微镜揭示了水泥的水合化学和微观结构特征。添加氧化铝或赤泥(最佳摩尔比为10:1的Mg / Al或Mg / Fe)分别有助于形成无定形的Mg-Al或Mg-Al-Fe磷酸盐凝胶,从而提高了抗压强度。氧化铝改善了短期耐水性,而赤泥提供了更好的长期耐水性。赤泥-MPC粘合剂在水浸泡72小时后可提高刨花板的强度保持率(提高22.8%)并减少吸水率(降低26.4%),这可能归因于稳定的鳞片状Mg-Al-Fe磷酸盐凝胶。这项研究表明赤泥和木材废料是生产刨花板的可持续材料。 (C)2017 Elsevier Ltd.保留所有权利。

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