Salamanova Madina, Murtazaev Sayd-Alvi, Saidumov Magomed, Alaskhanov Arbi, Murtazaeva Tamara, Fediuk Roman
Grozny State Oil Technical University named after acad. M.D. Millionshchikov, 364051 Grozny, Russia.
Polytechnical Institute, Far Eastern Federal University, 690922 Vladivostok, Russia.
Materials (Basel). 2022 Sep 26;15(19):6660. doi: 10.3390/ma15196660.
The cement industry is recognized as an environmental nuisance, and so there is a need to not only minimizes the consumption of cement, but also to completely recycle the waste of the cement industry. This paper's originality lies in the fact that, for the first time, a comprehensive study of the structure formation of alkali-activated materials (AAM) based on aspiration dust and clinker dust has been carried out. The tasks for achieving this goal were to characterize cement production waste as a new binder and comprehensively research the microstructure, fresh, physical, and mechanical properties of alkali-activated material based on a cement-free binder. Grains of cement production waste are represented by coarse volumetric particles with pronounced cleavage, and a clear presence of minerals is observed. The mineral composition of cement production waste is characterized by calcium silicates, which guarantee good binding properties. The results of the X-ray diffraction analysis of the samples (based on the alkaline-activated cement-free binder using clinker dust and aspiration dust) confirmed the presence of calcite, quartz, feldspar close to albite, micas, and zeolites. The obtained products of the chemical interaction of the binder components confirm the effectiveness of the newly developed AAM. As a result of comparing several binders, it was found that the binder based on aspiration dust with NaSiO and NaSiF was the most effective, since, for specimens based on it, a density of 1.8 g/cm, maximum compressive strength of 50.7 MPa, flexural strength of 5.6 MPa, minimum setting time (starting at 24 min and ending at 36 min), and water absorption of 12.8 wt. % were obtained. The research results will be of interest to specialists in the construction industry since the proposed recipes for eco-friendly, alkali-activated materials are an alternative to expensive and energy-intensive Portland cement, and they provide for the creation of strong and durable concrete and reinforced concrete composites.
水泥行业被认为是一种环境公害,因此不仅需要尽量减少水泥的消耗,还需要对水泥行业的废弃物进行完全回收利用。本文的创新之处在于,首次对基于吸尘灰和熟料粉尘的碱激活材料(AAM)的结构形成进行了全面研究。实现这一目标的任务是将水泥生产废弃物表征为一种新型粘结剂,并对基于无水泥粘结剂的碱激活材料的微观结构、新拌性能、物理性能和力学性能进行全面研究。水泥生产废弃物颗粒由具有明显解理的粗大体积颗粒组成,并且观察到有明显的矿物存在。水泥生产废弃物的矿物成分以硅酸钙为特征,这保证了良好的粘结性能。样品(基于使用熟料粉尘和吸尘灰的碱性激活无水泥粘结剂)的X射线衍射分析结果证实了方解石、石英、接近钠长石的长石、云母和沸石的存在。粘结剂组分化学相互作用得到的产物证实了新开发的AAM的有效性。通过比较几种粘结剂发现,基于吸尘灰与NaSiO和NaSiF的粘结剂最有效,因为基于它的试件密度为1.8 g/cm,最大抗压强度为50.7 MPa,抗弯强度为5.6 MPa,最短凝结时间(从24分钟开始到36分钟结束),吸水率为12.8 wt.%。研究结果将引起建筑行业专家的兴趣,因为所提出的环保型碱激活材料配方是昂贵且能源密集型的波特兰水泥的替代品,并且它们有助于制造坚固耐用的混凝土和钢筋混凝土复合材料。