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Hydration characteristics of municipal solid waste incinerator bottom ash slag as a pozzolanic material for use in cement

机译:用作水泥的火山灰材料的城市固体废物焚化炉底灰渣的水化特性

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This study investigated the pozzolonic reactions and engineering properties of municipal solid waste incinerator (MSWI) bottom ash slag blended cements (SBC) with various replacement ratios. The 90-day compressive strengths developed by SBC pastes with 10 percent and 20 percent cement replacement by slags generated from the bottom ash were similar to that developed by ordinary Portland cement pastes. Thermal analyses indicated that the hydrates in the SBC pastes were mainly portlandite (Ca(OH)_2) and calcium silicate hydrate (C-S-H) gels, similar to those found in ordinary Portland cement paste. It is also indicated that the slag reacted with Ca(OH)_2 to form C-S-H. The average length (in terms of the number of Si molecules) of linear polysilicate anions in C-S-H gel, as determined by ~(29)Si nuclear magnetic resonance, increased in all the SBC pastes with increasing curing age, which outperformed that of ordinary Portland cement at 90 days. It can thus be concluded from the study results, that municipal solid waste incinerator bottom ash can be processed by melting to obtain reactive pozzolanic slag, which may be used in SBC to partially replace the cement.
机译:这项研究调查了各种替代比例的城市固体废物焚烧炉(MSWI)底灰渣混合水泥(SBC)的火山灰反应和工程特性。由SBC水泥浆产生的90天抗压强度被底灰产生的矿渣替代了10%和20%的水泥,这与普通波特兰水泥浆所产生的相似。热分析表明,SBC浆料中的水合物主要是波特兰石(Ca(OH)_2)和硅酸钙水合物(C-S-H)凝胶,与普通波特兰水泥浆料中的相似。还表明炉渣与Ca(OH)_2反应形成C-S-H。通过〜(29)Si核磁共振测定,CSH凝胶中线性聚硅酸盐阴离子的平均长度(以Si分子数量计)随着固化年龄的增加而在所有SBC糊剂中均增加,超过了普通波特兰在90天水泥。因此,从研究结果可以得出结论,可以通过熔融处理城市固体废物焚化炉底灰以获得活性火山灰渣,该渣可用于SBC中以部分替代水泥。

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