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Preparation and characteristics of steam-autoclaved bricks produced from electrolytic manganese solid waste

机译:电解锰固废制备蒸汽压制砖的特性

摘要

Electrolytic manganese solid waste (EMSW) is a sort of hydrometallurgical process residue from sulfuric acid leaching for rhodochrosite. The objective of this study was to investigate the feasibility of producing steam-autoclaved bricks with EMSW, and to determine the most appropriate preparation conditions. We tested the compressive strength (CS), dry shrinkage (DS) and frost resistance (FR), using microstructure change analysis combined with component reactions. The crystalline components of raw materials and bricks were examined by X-ray diffraction. Other properties of the brick, including leaching toxicity and radioactivity, were also measured to examine the environmental safety of EMSW steam-autoclaved bricks. The results show that the most appropriate conditions were: EMSW content of 30-40% by mass ratio, cement content of 10.5-12%, formation pressure of 15-20 MPa, W/C ratio of 0.4 and steam pressure of 1.2-1.5 MPa. Under those conditions, the compressive strength can be higher than 15 MPa, dry shrinkage lower than 0.11%, and compressive strength loss and weight loss lower than 10% and 2%, respectively. The compressive strength, leaching toxicity and radioactivity of the brick manufactured under the aforementioned conditions met the standards of GB 11945-1999 MU 15, GB 5085.3-2007 and GB 6566-2010, respectively. The compressive strength mechanism was formed by C-S-H gel and ettringite detected in the brick samples. Dry shrinkage was caused mainly by the removal of gaseous components and the shrinkage of cementitious materials. Frost resistance was influenced mainly by an increase in hydraulic pressure within the pore spaces. (C) 2013 Elsevier Ltd. All rights reserved,
机译:电解锰固体废物(EMSW)是一种硫酸浸出法生产菱锰矿的湿法冶金渣。这项研究的目的是研究用EMSW生产蒸汽压热砖的可行性,并确定最合适的制备条件。我们使用微结构变化分析与组分反应相结合,测试了抗压强度(CS),干收缩率(DS)和抗冻性(FR)。通过X射线衍射检查原料和砖的结晶成分。还测量了砖的其他性能,包括浸出毒性和放射性,以检查EMSW蒸汽压制砖的环境安全性。结果表明,最合适的条件为:EMSW含量为30-40%(质量比),水泥含量为10.5-12%,地层压力为15-20 MPa,水灰比为0.4,蒸汽压力为1.2-1.5 MPa。在这些条件下,抗压强度可以高于15 MPa,干收缩率低于0.11%,抗压强度损失和重量损失分别低于10%和2%。在上述条件下生产的砖的抗压强度,浸出毒性和放射性分别满足GB 11945-1999 MU 15,GB 5085.3-2007和GB 6566-2010的标准。抗压强度机理是由C-S-H凝胶和钙矾石在砖样品中检测到的。干缩主要是由于除去气态组分和胶结材料的缩水引起的。抗冻性主要受孔隙空间中水压的增加影响。 (C)2013 Elsevier Ltd.保留所有权利,

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