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Synthesis and Hydration Characteristic of Geopolymer Based on Lead Smelting Slag

机译:基于铅熔渣的地质聚合物的合成与水化特性

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摘要

Lead smelting slag (LSS) has been identified as general industrial solid waste, which is produced from the pyrometallurgical treatment of the Shuikoushan process for primary lead production in China. The LSS-based geopolymer was synthesized after high-energy ball milling. The effect of unconfined compressive strength (UCS) on the synthesis parameters of the geopolymer was optimized. Under the best parameters of the geopolymer (modulus of water glass was 1–1.5, dosage of water glass (W(SiO +Na O)) was 5% and water-to-binder ratio was 0.2), the UCS reached 76.09 MPa after curing for 28 days. The toxicity characteristic leaching procedure (TCLP) leaching concentration of Zn from LSS fell from 167.16 to 93.99 mg/L after alkali-activation, which was below the limit allowed. Meanwhile, C-S-H and the geopolymer of the hydration products were identified from the geopolymer. In addition, the behavior of iron was also discussed. Then, the hydration process characteristics of the LSS-based geopolymer were proposed. The obtained results showed that Ca and Fe occupied the site of the network as modifiers in the glass phase and then dissociated from the glass network after the water glass activation. At the same time, C-S-H, the geopolymer and Fe(OH) gel were produced, and then the Fe(OH) was easily oxidized to Fe(OH) under the air curing conditions. Consequently, the conclusion was drawn that LSS was an implementable raw material for geopolymer production.
机译:铅冶炼炉渣(LSS)已被确定为一般工业固体废物,是通过在中国主要铅生产的水口山工艺的火法冶金处理产生的。基于LSS的地质聚合物是在高能球磨后合成的。优化了无侧限抗压强度(UCS)对地质聚合物合成参数的影响。在最佳的地质聚合物参数下(水玻璃的模量为1–1.5,水玻璃的用量(W(SiO + Na O))为5%,水与胶料的比例为0.2),UCS在达到760.09 MPa后固化28天。碱活化后,从LSS中浸出锌的毒性特征浸出程序(TCLP)从167.16降至93.99 mg / L,低于允许的限值。同时,从地质聚合物中鉴定出C-S-H和水合产物的地质聚合物。此外,还讨论了铁的行为。然后,提出了基于LSS的地质聚合物的水化过程特征。所得结果表明,Ca和Fe在玻璃相中作为改性剂占据网络的位置,然后在水玻璃活化后从玻璃网络中解离。同时,生成C-S-H,地质聚合物和Fe(OH)凝胶,然后在空气固化条件下将Fe(OH)容易氧化为Fe(OH)。因此,得出的结论是,LSS是可用于地质聚合物生产的原材料。

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