煅烧红土与牡蛎壳粉基混合地聚合物粘结剂的性能评价

Ludovic Ivan Ntom Nkotto, Lionel Jacques Ntamag, Frances Jane Manjeh Ma-A, Judicaël Sandjong Kanda, J. V. Sontia Metekong
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摘要

本文主要研究了煅烧红土和牡蛎壳粉基混合地聚合物粘结剂的性能。为了做到这一点,从yaound市的Soa提取的红土和从Sanaga-Maritime的Mouanko提取的牡蛎壳首先被风干,然后在105°C下干燥,然后分别在500°C和200°C下煅烧2小时。对这些样品进行了初步研究,即测定其化学和矿物学成分、粒度分布、密度以及合成地聚合物粘合剂的热分析。对牡蛎壳粉和红土进行了x射线衍射、热分析和重量分析,以阐明两种样品的煅烧时间和程度、线收缩率的演变、凝结时间以及地聚合物粘合剂的抗压强度和抗弯强度。结果表明:牡蛎壳中含有丰富的CaCO3和结晶相,红土中含有丰富的二氧化硅、铁(FeCO3)和氧化铝(Al2O3)。土聚合物样品:Lat + 0%牡蛎壳,凝结时间在125 ~ 168 min之间,抗压强度约为47 MPa。当牡蛎壳粉添加量为15%时,随着凝结时间的延长,28天的峰值强度为53.5 MPa。这种强度从加入牡蛎壳的25%开始下降,尽管在凝固时间中观察到增加。从本研究中可以看出,添加15%的牡蛎壳提高了地聚合物的抗压强度,但也导致吸收率大幅下降。在此速率以上,抗压强度急剧下降,凝结时间随之增加。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Evaluation of Performances of Calcined Laterite and Oyster Shell Powder Based Blended Geopolymer Binders
This work consisted in characterizing of calcined laterite and oyster shell powder based blended geopolymer binders. To do this, raw laterite taken from Soa in the city of Yaoundé and oyster shells extracted from Mouanko in the Sanaga-Maritime were initially air-dried, then dried at 105 °C, before being calcined at 500 °C and 200 °C respectively for 2 hours. These samples were subjected to preliminary studies, i.e. determination of their chemical and mineralogical compositions, particle size distributions, densities, as well as thermal analysis for the synthesis of geopolymer binders. X-ray diffractometry, thermal and gravimetric analysis were carried out on the oyster shell powder and laterite, in order to elucidate the time and degree of calcination of the two samples, the evolution of the linear shrinkage, the setting time as well as the compressive and flexural strengths of the geopolymer binders. The results obtained show that oyster shells are rich in CaCO3 and contain crystalline phases, while laterite is rich in silica, iron (FeCO3) and alumina (Al2O3). The geopolymer samples: Lat + 0% oyster shells have a setting time between 125 and 168 min for a compressive strength of about 47 MPa. The peak strength is observed around 15% addition of oyster shell powder, i.e. 53.5 MPa at 28 days with an increased setting time. This strength was decreased from 25 % of addition of oyster shells, despite the increase observed in the setting time. It appears from this study that the addition of 15% oyster shell increases the compressive strength of the geopolymer, but also leads to a considerable decrease in absorption rate. Above this rate, the compressive strength decreases drastically and concomitantly the setting time increases.
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