Andini S, Cioffi R, Colangelo F, Grieco T, Montagnaro F, Santoro L
Dipartimento di Chimica, Università di Napoli Federico II, Complesso Universitario di Monte S.Angelo, Via Cintia, 80126 Napoli, Italy.
Waste Manag. 2008;28(2):416-23. doi: 10.1016/j.wasman.2007.02.001. Epub 2007 Mar 26.
In this work coal fly ash has been employed for the synthesis of geopolymers. Two different systems with silica/alumina ratios stoichiometric for the formation of polysialatesiloxo (PSS, SiO2/Al2O3=4) and polysialatedisiloxo (PSDS, SiO2/Al2O3=6) have been prepared. The alkali metal hydroxide (NaOH or KOH) necessary to start polycondensation has been added in the right amount as concentrated aqueous solution to each of the two systems. The concentration of each alkali metal solution has been adjusted in order to have the right liquid volume to ensure constant workability. The systems have been cured at four different temperatures (25, 40, 60, and 85 degrees C) for several different times depending on the temperature (16-672 h at 25 degrees C; 72-336 h at 40 degrees C; 16-120 h at 60 degrees C and 1-6h at 85 degrees C). The products obtained in the different experimental conditions have been submitted to the quantitative determination of the extent of polycondensation through mass increase and loss on ignition, as well as to qualitative characterization by means of FT-IR spectroscopy. Furthermore, physico-structural and mechanical characterization has been carried out through microscopic observations and the determination of unconfined compressive strength, elasticity modulus, apparent density, porosity and specific surface area. The results have indicated that the systems under investigation are suited for the manufacture of pre-formed building blocks at room temperature.
在这项工作中,煤飞灰已被用于合成地质聚合物。制备了两种不同的体系,其二氧化硅/氧化铝比对于聚硅铝酸硅氧烷(PSS,SiO₂/Al₂O₃ = 4)和聚硅铝酸二硅氧烷(PSDS,SiO₂/Al₂O₃ = 6)的形成而言是化学计量的。引发缩聚所需的碱金属氢氧化物(NaOH或KOH)已作为浓水溶液以适量添加到这两个体系中的每一个中。已对每种碱金属溶液的浓度进行了调整,以便有合适的液体体积以确保恒定的可加工性。这些体系已在四个不同温度(25、40、60和85℃)下固化,固化时间根据温度而有所不同(25℃下为16 - 672小时;40℃下为72 - 336小时;60℃下为16 - 120小时;85℃下为1 - 6小时)。在不同实验条件下获得的产物已通过质量增加和烧失量进行缩聚程度的定量测定,以及通过傅里叶变换红外光谱进行定性表征。此外,还通过显微镜观察以及无侧限抗压强度、弹性模量、表观密度、孔隙率和比表面积的测定进行了物理结构和力学表征。结果表明,所研究的体系适合在室温下制造预制建筑砌块。