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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Sustainable materials from hazardous lead ore flotation waste in composites with spent foundry sand and clay
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Sustainable materials from hazardous lead ore flotation waste in composites with spent foundry sand and clay

机译:从铸造砂和粘土的复合材料中的危险铅矿浮选废物的可持续材料

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摘要

The aim of this study was the experimental tests of the mechanical properties and structure formation processes of sustainable ceramics from hazardous lead ore flotation waste, spent foundry sand, and natural red clay to produce sustainable ceramics. The lead was mined on a large scale from lead ores in the city of Adrianopolis, Brazil, for 58 years. The wastes from this activity bequeathed profound environmental and social impacts. The mechanical characteristics of twenty compositions of the ceramics were analyzed through the flexural resistance, water absorption, apparent density, and linear shrinkage; the study of the physicochemical processes of the ceramics' mineral composite transitions and structure formation during sintering at 900-1250 degrees C was accomplished using XRD, SEM, EDS, AAS, and LAMMA methods. All ceramics presented flexural resistance (until 10.08 MPa) in comparison with the values established in the Brazilian national standards (> 1.5 MPa), with low water absorption and shrinkage. Ceramics with 7% of the flotation waste and 10% spent foundry sand, whose resistance reached from 3.7 to 10.1 MPa, showed the best mechanical properties. Leaching and solubility analyses by AAS method showed that there is no environmental jeopardy in using these compositions to produce sustainable ceramics.
机译:本研究的目的是从危险铅矿浮选废物,铸造砂砂和天然红粘土生产可持续陶瓷的机械性能和结构形成过程的实验测试,以生产可持续陶瓷。铅在巴西阿德里亚诺波利亚城市的领先矿石中大规模开采了铅,58年。这种活动的废物留下了深刻的环境和社会影响。通过弯曲电阻,吸水,表观密度和线性收缩分析20种陶瓷组合物的机械特性;使用XRD,SEM,EDS,AAS和LAMMA方法完成对烧结期间烧结过程中陶瓷矿物复合转变和结构形成的研究。与巴西国家标准(> 1.5MPa)中建立的价值相比,所有陶瓷均呈现弯曲阻力(直至10.08MPa),具有低吸水性和收缩。陶瓷含有7%的浮选废物和10%的铸造砂岩,其阻力从3.7达到10.1MPa达到,显示出最佳的机械性能。 AAS方法的浸出和溶解度分析表明,使用这些组合物产生可持续陶瓷的环境危险。

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