Lee Yuna, Bang John J, Kang Seunggu
Department of Advanced Materials Engineering, Kyonggi University, Suwon, Kyonggi-do, 16227, Korea.
Department of Environmental, Earth and Geospatial Sciences, North Carolina Central University, Durham, NC 27707, USA.
J Nanosci Nanotechnol. 2019 Apr 1;19(4):2193-2197. doi: 10.1166/jnn.2019.16003.
In this study, a geopolymer having a nano-scaled structure was fabricated using recycling fly ash slag discharged from IGCC (Integrated Gasification Combined Cycle), to assess the possibility of employing it to replace high strength concrete. Strength, density, crystal phase, and bonding structure, were measured and the nano-size crystal phase of the geopolymers was observed as a function of experimental parameters such as water-to-solid ratio (w/s ratio), flow of paste, and amount of sodium silicate in the alkali activator, NaOH. The geopolymer prepared with NaOH containing 5070% sodium silicate and a w/s ratio of 0.260.28 showed a compressive strength of 75~80 MPa, which satisfied the design standard for high strength concrete in Korea, 40 MPa. The specimen made with NaOH containing 55% sodium silicate had plate-shaped crystals with a nanoscale size, 100 nm or less, and showed compressive strength of 77 MPa, 3.9 times higher than that made with only NaOH. From the viewpoint of microstructure, it was confirmed that nano-sized plate-like crystals and amorphous structure were both effective in improving the strength of the specimen. In conclusion, this study showed that high-strength geopolymer made from IGCC coal ash slag may replace cement used in building materials and concrete secondary products in the near future.
在本研究中,利用整体煤气化联合循环(IGCC)排放的回收粉煤灰渣制备了具有纳米级结构的地质聚合物,以评估其替代高强度混凝土的可能性。测量了强度、密度、晶相和粘结结构,并观察了地质聚合物的纳米尺寸晶相随诸如水固比(w/s比)、浆体流动性和碱激发剂氢氧化钠中硅酸钠用量等实验参数的变化。用含5070%硅酸钠且w/s比为0.260.28的氢氧化钠制备的地质聚合物,其抗压强度为75~80MPa,满足韩国高强度混凝土40MPa的设计标准。用含55%硅酸钠的氢氧化钠制成的试件具有纳米级尺寸(100nm或更小)的板状晶体,抗压强度为77MPa,比仅用氢氧化钠制成的试件高3.9倍。从微观结构角度来看,证实了纳米级板状晶体和无定形结构都对提高试件强度有效。总之,本研究表明,由IGCC煤灰渣制成的高强度地质聚合物在不久的将来可能会替代建筑材料和混凝土二次制品中使用的水泥。