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首页> 外文期刊>Journal of Cleaner Production >Design and optimization of alkaline binders of limestone-metakaolin : A comparison of strength, microstructure and sustainability with Portland cement and geopolymers
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Design and optimization of alkaline binders of limestone-metakaolin : A comparison of strength, microstructure and sustainability with Portland cement and geopolymers

机译:石灰石型醇碱碱性粘合剂的设计与优化:与波特兰水泥和地质聚合物的强度,微观结构和可持续性的比较

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Studies on alkali activated cements (AAC) of metakaolin (MK) with up to 50% replacement by limestone (LS) have recently emerged; although interesting, no reduction in the alkali content has generally been implemented, in detriment of the durability, safety, environmental impact and costs. This paper presents an innovative approach for designing sustainable AAC of composites precursors of MK with high contents of LS, activated by NaOH-Na2O center dot nSiO(2). The method combines design of mixtures and a multi-response statistical optimization, in which the 28-day strength was maximized while the CO2-emissions, energy demand and production cost were simultaneously minimized. The approach resulted in a binder with high LS and reduced MK and alkali contents. The optimal formulation was 80%LS, Na2O/Al2O3 = 0.94, and SiO2/Al2O3 = 3.54, equivalent to only 4.7% Na2O relative to the mass of the precursors (MK + LS), which reduces the risk of deleterious carbonation and is lower than the requirements of AAC of 100%MK and similar to those of AAC of blast furnace slag. This optimal binder had predicted and measured strengths of 49.96 +/- 13.1 and 51.9 +/- 0.7 MPa, respectively, which confirmed the accuracy of the modelling; its microstructure had a dense matrix of cementitious products with partially reacted limestone particles distributed throughout, the reaction products were amorphous with a chemical composition that suggested a mixture of (C,N) A-S-H with N-A-S-H, CASH and C-S-H. Compared to a reference portland cement, the optimal formulation emits 75.1% less CO2, consumes 41.1% less energy and is 42.6% less expensive; while compared to the AAC of 100%MK, the reductions were 51.6, 53.8 and 57.5%, respectively. The optimal formulation represents a competitive sustainable alternative cement. (C) 2020 Elsevier Ltd. All rights reserved.
机译:最近出现了高达50%的Metakaolin(MK)的碱活性水泥(AAC)的研究最近出现了高达50%的替代物;虽然有趣,但碱性含量的降低通常已经实施,否则耐久性,安全性,环境影响和成本。本文介绍了一种创新的方法,用于设计具有高含量LS的MK的复合材料的可持续AAC,由NaoH-Na2O中心点Nsio(2)激活。该方法结合了混合物的设计和多响应统计优化,其中28天的强度在同时最小化时最大化,能量需求和生产成本。该方法产生具有高LS和降低的MK和碱含量的粘合剂。最佳配方为80%LS,Na 2 O / Al 2 O 3 = 0.94和SiO 2 / Al 2 O 3 = 3.54,相对于前体(MK + LS)的质量仅为4.7%Na 2 O,这降低了有害碳化的风险并降低比100%MK的AAC的要求,类似于高炉炉渣的AAC。这种最佳粘合剂预测和测量的强度分别为49.96 +/- 13.1和51.9 +/- 0.7MPa,这证实了建模的准确性;其微观结构具有浓稠的水泥产物基质,其中具有部分反应的石灰石颗粒在整个中,反应产物与化学组合物是无定形的,所述化学组合物建议(C,N)A-S-H的混合物,具有N-A-S-H,CASH和C-S-H。与参考文献植物水泥相比,最佳配方少45.1%的二氧化碳,消耗41.1%的能量,较便宜42.6%;虽然与100%MK的AAC相比,减少分别为51.6,53.8和57.5%。最佳制剂代表竞争性可持续替代水泥。 (c)2020 elestvier有限公司保留所有权利。

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