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Solidification and recycling of incinerator bottom ash through the addition of colloidal silica (SiO_2) solution

机译:通过添加胶体二氧化硅(SiO_2)溶液使焚烧炉底灰固化和回收

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摘要

The possibility of using incinerator bottom ash as a substitute for natural aggregates was investigated. Rough, porous surface of bottom ash, which diminishes the strength of solidified products, was improved by colloidal silica solution. As a result, a significant increase of mechanical strength was accomplished by a slight amount of silica ( < 1 wt% to total). Moreover, pozzolanic reaction was induced in initial cement hydration due to the nano-particle size of about 20 nm in colloidal silica solution. Cylindrical specimens and bricks were prepared from bottom ash added to a colloidal silica (SiO_2) solution and cement, and then their compressive strengths were evaluated. Cylindrical specimens showed an increase of approximately 60% in compressive strength when colloidal solution containing 4 wt% silica particles was sprayed onto the bottom ash. The strength of bricks containing colloidal silica was in excess of 20 MPa, which meets the requirement of construction materials. Results of leaching tests based on Toxicity Characteristic Leaching Procedure (TCLP) proved that the solidified bottom ash possessed good chemical stability.
机译:研究了使用焚烧炉底灰代替天然骨料的可能性。胶体二氧化硅溶液改善了底灰的粗糙多孔表面,降低了固化产物的强度。结果,通过少量的二氧化硅(总量的<1wt%)实现了机械强度的显着提高。此外,由于胶态二氧化硅溶液中约20nm的纳米粒度,在初始水泥水合作用中引起火山灰反应。将底灰添加到胶体二氧化硅(SiO_2)溶液和水泥中制成圆柱形标本和砖,然后评估其抗压强度。当将含有4 wt%二氧化硅颗粒的胶体溶液喷涂到底灰上时,圆柱状样品的抗压强度提高了约60%。含胶态二氧化硅的砖的强度超过20 MPa,可以满足建筑材料的要求。根据毒性特征浸出法(TCLP)的浸出试验结果表明,固化的底灰具有良好的化学稳定性。

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