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Evaluation of the stability of waste-based geopolymeric artificial aggregates for wastewater treatment processes under different curing conditions

机译:在不同固化条件下废水处理过程中废酸性地覆聚集体稳定性的评价

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Waste geopolymeric artificial aggregates (WGA) with different atomic ratios of mining waste mud/Na2SiO (4 to 5) and Na2SiO/NaOH (1.25 to 5) were produced using curing temperatures of 20°C and 130°C and its structural stability and pH variation after immersion in water was observed during 3 months. Results showed that WGA with mud/Na2SiO and Na2SiO/NaOH of 5 and 4, respectively, cured at 20°C presented good stability in water and pH decreased from 10 to 7 in 24 days. Compressive strength was determined in additional samples cured at 20°C and 80°C in dry conditions, for 13 curing ages and 15 water immersion periods (up to 14 weeks). Results of this second stage showed that increasing temperature to 80°C accelerated compressive strength gain but only during the first 3 weeks (up to 15.4 MPa). After 24 h in water compressive strength decreased to half of the initial values determined in dry conditions in all samples and, therefore, the increase of temperature did not bring benefits to WGA strength in water. Regardless the curing temperature and the dry curing age comprehensive strength stabilizes between 1 MPa and 2 MPa after 4 weeks immersion in water, which are values that makes WGA suitable to be used as bed material for wastewater treatment processes.
机译:使用20℃和130℃的固化温度及其结构稳定性和pH制备具有不同原子比的垃圾覆盖物(4至5)和Na 2 SiO / NaOH(1.25至5)的不同原子比例(4-5)和Na 2 SiO / NaOH(1.25至5)的人工聚集体(WGA)。在3个月内观察到浸入水中的变化。结果表明,在20℃下分别在20℃下固化的WGA分别为5和4,在20℃下呈现出良好的稳定性,在24天内从10到7降低。在干燥条件下在20℃和80℃下固化的另外的样品中测定压缩强度,用于13个固化年龄和15个水浸时间(最长14周)。该第二阶段的结果表明,将温度升高至80°C加速压缩强度增益,但仅在前3周(高达15.4MPa)期间。在24小时后在水压强度下降至所有样品中干燥条件下测定的初始值的一半,因此,温度的增加并未为水中的WGA强度带来益处。无论固化温度和干燥的固化年龄综合强度均匀稳定在4周后浸泡在水中的1MPa和2MPa之间,这是使WGA适合用作废水处理过程的床材料的值。

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