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首页> 外文期刊>Transactions of the Indian Ceramic Society >Investigating the Suitability of Nigerian Calcined Kaolins as Raw Materials for Geopolymer Binders
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Investigating the Suitability of Nigerian Calcined Kaolins as Raw Materials for Geopolymer Binders

机译:研究尼日利亚煅烧高岭土作为地质聚合物粘合剂原料的适用性

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摘要

Clay minerals constitute large deposits of natural resources in Nigeria which may exhibit the pozzolanic properties of geopolymer materials. Therefore, this study investigated the suitability of Ikare and Ikere kaolins from two different geological locations in Nigeria as raw materials to synthesis geopolymer binders. In order to ascertain optimal geopolymerization conditions, the effects of calcining temperature, activator concentration and particle size on the compressive strength (engineering) and water absorption (durability) properties of the geopolymers produced were measured at 7 and 28 days at room temperature. The two kaolins with particle sizes 600, 425, 212 mu m were calcined at 600 degrees, 700 degrees and 750 degrees C and activated with sodium silicate at SiO2/Na2O mole ratios 2.1, 2.5 and 2.8. The best compressive strength and water absorption were obtained at 700 degrees C calcination temperature, SiO2/Na2O mole ratio 2.1, 212 mu m clay particle size and at 28 days curing time. The obtained CS for Ikare and Ikere kaolins at the optimal conditions were 23.2 and 26.1 MPa while water absorption values were 1.62 and 0.12% respectively. Calcined Nigerian kaolins are proposed as cost-effective and sustainable binders which may be applied to substitute or augment ordinary Portland cement in construction applications.
机译:粘土矿物构成了尼日利亚大量的自然资源,这些矿物可能表现出地聚合物材料的火山灰特性。因此,本研究调查了来自尼日利亚两个不同地理位置的Ikare和Ikere高岭土是否适合用作合成地质聚合物粘结剂的原料。为了确定最佳的地质聚合条件,在室温下7天和28天测量了煅烧温度,活化剂浓度和粒度对所生产的地质聚合物的抗压强度(工程化)和吸水率(耐久性)的影响。将两种尺寸分别为600、425、212μm的高岭土分别在600度,700度和750度下煅烧,并以SiO2 / Na2O摩尔比2.1、2.5和2.8用硅酸钠活化。在700摄氏度的煅烧温度,SiO2 / Na2O摩尔比2.1,粘土颗粒尺寸212μm和固化28天时获得了最佳的抗压强度和吸水率。在最佳条件下,Ikare和Ikere高岭土的CS值为23.2 MPa和26.1 MPa,而吸水率分别为1.62%和0.12%。提议将煅烧的尼日利亚高岭土作为具有成本效益和可持续性的粘合剂,可在建筑应用中替代或增加普通波特兰水泥。

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