砂砾渣用于陶瓷原料的利用

Edwin K Sijabat, Andrie Harmaji, Rafida Khoirani
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引用次数: 0

摘要

本研究利用纸浆工业产生的废渣和砂砾,以高岭土为原料,生产出具有良好物理力学性能的陶瓷。通过在120°C的烘箱中干燥5小时来制备矿渣和砂砾,然后使用200目筛进行粉碎和筛分,然后通过电感耦合等离子体(ICP)进行表征。陶瓷样品使用抗压强度计测试以15kN的强度印刷60秒。高岭土百分比在20-80%之间变化,然后在室温下干燥48小时。陶瓷样品在高达1000°C的阶梯式炉温中燃烧,保温时间为30分钟。表征了它们的物理性质,即密度、孔隙率、燃料损失和吸水性,并研究了它们的抗压强度。ICP测试表明,炉渣和砂砾中的化学成分最高的是CaO,分别为36%和50%。本研究生产的陶瓷的最佳剂量是80%高岭土的组成。高岭土混合物的百分比与抗压强度、密度和燃料收缩率成正比,而孔隙率和吸水率成反比。获得了抗压强度在4.48MPa至11.98MPa范围内的陶瓷表征。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Utilization of Grits and Dreg Wastes for Ceramics Raw Material
This research utilizes dreg and grits wastes from pulp industry by addition of kaolin as raw material in producing ceramics that have good physical and mechanical properties. Dreg and grits were prepared by drying in an oven at 120°C for 5 hours, then crushed and sieved using a 200 mesh sieve, then characterized by means of Inductively Coupled Plasma (ICP). Ceramic samples were printed using Compressive Gauge Testing with a strength of 15 kN for 60 seconds. The kaolin percentage was varied between 20-80% followed by drying for 48 hours at room temperature. The ceramic samples were burned in a stepwise furnace temperature of up to 1000°C with a holding time of 30 minutes. Their physical properties, i.e. density, porosity, fuel loss, and water absorption, were characterized, and their compressive strength was investigated. The ICP test showed that the highest chemical content in the dreg and grit is CaO, at 36% and 50%. The optimum dose of ceramics produced in this study is the composition of 80% kaolin. The percentage of kaolin mixture is directly proportional to the compressive strength, density and fuel shrinkage, while the porosity and water absorption are inversely proportional. The ceramic characterization was obtained with compressive strength ranging from 4.48 MPa to 11.98 MPa.
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