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采用响应面法评价含电石渣和纳米硅粉混凝土的力学性能。

Evaluation of the mechanical performance of concrete containing calcium carbide residue and nano silica using response surface methodology.

机构信息

Engineering Management Department, College of Engineering, Prince Sultan University, 11586, Riyadh, Saudi Arabia.

Department of Civil Engineering, Bayero University Kano, Kano, P.M.B 3011, Kano State, Nigeria.

出版信息

Environ Sci Pollut Res Int. 2022 Sep;29(44):67076-67102. doi: 10.1007/s11356-022-20546-x. Epub 2022 May 5.

Abstract

Calcium carbide residue (CCR) is generated from acetylene gas production, and it is highly alkaline and contains a very high amount of calcium. Nano silica (NS), on the other hand, is mostly used in combination with other pozzolanic materials in concrete to ignite the reactivity of the material and to improve the properties of the concrete. This study investigated the effect of CCR incorporated in concrete mixtures to partially replace cement content at 0 to 30% (interval of 7.5%). NS was used as an additive by weight of binder at levels 0 to 4% in increment of 1%. Thus, response surface methodology (RSM) was employed to investigate the effects of CCR and NS on the properties of the concrete, including compressive strength, flexural strength, splitting tensile strength, modulus of elasticity (MoE), and water absorption. The RSM was used for model development predicted concrete's properties and carried out mixture multi-objective optimization by maximizing strengths, MoE, and minimizing water absorption. The results showed that using up to 15% CCR improved the strengths, MoE, and water absorption of the concrete. Adding up to 3% NS further enhanced the strengths, MoE, and water absorption significantly. The developed models for predicting the properties of the concrete using RSM were highly efficient with high degree of correlation. The optimization solutions indicated that the best optimum or best mix combination based on maximum strengths and MoE with minimum water absorption was achieved by replacing 10.6% cement with CCR and adding 1.95% NS by the weight of cementitious materials.

摘要

电石渣(CCR)是乙炔气生产过程中产生的,它呈强碱性,且含有大量的钙。另一方面,纳米二氧化硅(NS)主要与混凝土中的其他火山灰材料结合使用,以激发材料的反应性,并提高混凝土的性能。本研究调查了将 CCR 掺入混凝土混合物中以部分替代水泥含量在 0 至 30%(间隔 7.5%)的效果。以胶凝材料重量计,将 NS 用作 0 至 4%的添加剂,增量为 1%。因此,采用响应面法(RSM)来研究 CCR 和 NS 对混凝土性能的影响,包括抗压强度、抗弯强度、劈裂抗拉强度、弹性模量(MoE)和吸水率。RSM 用于开发模型,预测混凝土的性能,并通过最大化强度、MoE 和最小化吸水率来进行混合物的多目标优化。结果表明,使用高达 15%的 CCR 可以提高混凝土的强度、MoE 和吸水率。添加高达 3%的 NS 可以进一步显著提高强度、MoE 和吸水率。使用 RSM 预测混凝土性能的开发模型非常高效,相关性很高。优化解决方案表明,通过用 CCR 替代 10.6%的水泥,并以水泥用量的 1.95%添加 NS,可以实现基于最大强度和 MoE 并具有最小吸水率的最佳最优或最佳混合组合。

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