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Development of industrially viable geopolymers from treated petroleum fly ash

机译:从处理过的石油粉煤灰的工业上可行的地缘聚合物的发展

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This paper investigates the development of stable geopolymers using petroleum fly ash with high compressive strength and water absorption to promote cleaner production, sustainability, and recycling of waste. The paper provided detailed characterizations of the petroleum fly ash, which involved the determination of the particle size diameter, density, surface area, pore-volume, mineralogical identification of recording X-ray diffraction pattern, X-ray fluorescence, Fourier transform infrared, thermogravimetric analysis, and scanning electron microscope. Moreover, metals leachability from the petroleum fly ash using different extracting agents, namely H2SO4, H3PO4, (NH4)(2)SO4, NH4NO3, and NH4O2CCO2H was also considered. Five geopolymers were prepared using different amounts of petroleum fly ash to assess the influence of petroleum fly ash on the final performance of the prepared geopolymers. The results revealed that the petroleum fly ash was carbonaceous in nature and rich in vanadium oxide and nickel oxide with low in SiO2 and Al2O3. Furthermore, it was found that petroleum fly ash has a low calcium level. The maximum extraction values were 15.6% for V and 55.6% for Ni using H2SO4. All the prepared geopolymers displayed high compressive strength for longer curing times, and the water absorption properties of all geopolymers were improved by incorporating more petroleum fly ash. Increasing the petroleum fly ash from 0 vol% to 61 vol% increased the water absorption value from 6.6 to 13.3 wt% for the samples collected after 28 days of curing. It was concluded that the petroleum fly ash did tend to form successful stable geopolymers with high compressive strength and water absorption. (C) 2020 The Author(s). Published by Elsevier Ltd.
机译:本文调查了利用石油粉煤灰的稳定地质聚合物的发展,具有高抗压强度和吸水性,以促进废物的清洁生产,可持续性和废物回收。本文提供了石油粉煤灰的详细表征,涉及测定粒径直径,密度,表面积,孔体积,记录X射线衍射图案的矿物学识别,X射线荧光,傅里叶变换红外,热重验证分析和扫描电子显微镜。此外,还考虑了来自使用不同提取剂的石油粉煤灰的金属可渗透性,即H 2 SO 4,H3PO4,(NH 4)(2)SO4,NH 4 NO 3和NH4O2CH2H。使用不同量的石油粉煤灰制备五个地质聚合物,以评估石油粉煤灰对制备的地质聚合物的最终性能的影响。结果表明,石油粉煤灰本质上是碳质,富含氧化钒和氧化镍,在SiO 2和Al2O3中。此外,发现石油粉煤灰具有低钙水平。使用H2SO4的Ni的最大提取值为V和55.6%的55.6%。所有制备的地质聚合物显示出高抗压强度,用于更长的固化时间,通过掺入更多的石油粉煤灰来改善所有地质聚合物的吸水性。增加0 Vol%至61体积%的石油粉煤灰增加了6.6至13.3wt%的吸水值,用于固化28天后收集的样品。得出结论是石油粉煤灰倾向于形成具有高抗压强度和吸水性的成功稳定的地质聚合物。 (c)2020提交人。 elsevier有限公司出版

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