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Structural characterization of sustainable geopolymers of steel slag LD and steel slag LF with KOH

机译:钢渣LD和钢渣LF与KOH可持续地缘聚合物的结构特征

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Production of composites based on derivative products of industrial wastes was presented in this study, which aggregate value to metallurgical, steelmaker wastes of the industries, and this is reversed in beneficial effects to society. Geopolymeric materials can be a solution to industrial residues generated for these sectors. The objective of study was the investigation between a solid/liquid relationship to production of specimens obtained from geopolymerization reaction, using steelmaking slags by process of Linz Donawitz (LD) and ladle furnace (LF), respectively. Samples of the residues were synthesized from an alkaline solution of 8M potassium hydroxide (KOH) in the 1.2, 1.4 and 1.6 g/v proportions (solid/liquid). Analyses of chemical composition, thermal stability, microstructure, amount of crystallinity phases and porosity were evaluated to XRF, FTIR, TGA, SEM-FEG and Archimedes’ principle obtained by reaction geopolymerization through the steelmaking slags (LF and LD), respectively. The results indicated that obtained geopolymers from steelmaking slags developed specimens with dimensional stability and high possibilities of applications, as engineering materials. The results indicate that the solid / liquid ratio is an important point in the geopolymerization process, since the 1.6 samples presented a more cohesive appearance and higher densification values than the 1.2 and 1.4 samples.
机译:本研究提出了基于工业废物衍生产品的复合材料的生产,该研究将价值汇总,钢制造商的行业,这对社会有益效果逆转。聚合物材料可以是对这些部门产生的工业残留物的溶液。研究的目的是,使用钢板蛇鲸(LD)和钢包炉(LF)的工艺,通过钢制制炉和钢包炉(LF)的固体/液体关系与从地缘聚合物化反应获得的标本产生的调查。将残留物的样品从1.2,1.4和1.6g / v比例(固体/液体)的8M氢氧化钾(KOH)的碱溶液中合成。通过分别通过炼钢渣(LF和LD)分别评价化学成分,热稳定性,微观结构,结晶度和孔隙率的XRF,FTIR,TGA,SEM-FEG和ARCHIMEDES的原理。结果表明,从炼钢渣中获得的地质聚合物开发出具有尺寸稳定性和高可能性的标本,作为工程材料。结果表明,固体/液体比是地质聚合物化过程中的一个重要点,因为1.6样品呈现出比1.2和1.4样品更高的粘性外观和更高的致密化值。

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