Rutkowska Gabriela, Ogrodnik Paweł, Fronczyk Joanna, Bilgin Ayla
Institute of Civil Engineering, Warsaw University of Life Sciences-SGGW, Nowoursynowska 166, 02-787 Warsaw, Poland.
Institute of Security Engineering, Main School of Fire Service, 01-629 Warsaw, Poland.
Materials (Basel). 2020 Nov 20;13(22):5259. doi: 10.3390/ma13225259.
Concrete is the most commonly used structural material, without which modern construction could not function. It is a material with a high potential to adapt to specific operating conditions. The use of this potential is made by its material modification. The aim of the performed investigations was the assessment of rational application possibilities of fly ashes from thermally conversed municipal sewage sludge as an alternative concrete admixture. A concrete mix was designed, based on the Portland cement CEM I 42.5R and containing various quantity of ash, amounting to 0-25% of cement mass. The samples were conditioned and heated in a furnace at the temperature of 300 °C, 500 °C, and 700 °C. Physical and chemical properties of the ashes as well as utility properties of the concrete, i.e., density, compressive strength after 28, 56, and 90 days of maturation, frost resistance, and compressive strength in high temperature were determined. The tests were performed at cubic samples with 10 cm edge. The replacement of a determined cement quantity by the fly ashes enables obtaining a concrete composite having good strength parameters. The concrete modified by the fly ashes constituting 20% of the cement mass achieved its average compressive strength after 28 days of maturation equal to 50.12 MPa, after 56 days 50.61 MPa and after 90 days 50.80 MPa. The temperature growth weakens the composite structure. The obtained results confirm the possibility of waste recycling in the form of fly ashes as a cement substitute in concrete manufacturing.
混凝土是最常用的结构材料,没有它现代建筑就无法运行。它是一种具有很大潜力以适应特定使用条件的材料。通过对其进行材料改性来发挥这种潜力。所进行的研究目的是评估热转化城市污水污泥产生的飞灰作为混凝土替代外加剂的合理应用可能性。设计了一种基于波特兰水泥CEM I 42.5R的混凝土混合物,其中含有不同数量的飞灰,飞灰含量占水泥质量的0 - 25%。对样品进行养护并在炉中于300℃、500℃和700℃的温度下加热。测定了飞灰的物理和化学性质以及混凝土的使用性能,即密度、养护28天、56天和90天后的抗压强度、抗冻性以及高温下的抗压强度。试验在边长为10厘米的立方体样品上进行。用飞灰替代一定量的水泥能够得到具有良好强度参数的混凝土复合材料。由占水泥质量20%的飞灰改性的混凝土在养护28天后的平均抗压强度为50.12兆帕,56天后为50.61兆帕,90天后为50.80兆帕。温度升高会削弱复合材料的结构。所得结果证实了以飞灰形式进行废物回收作为混凝土生产中水泥替代品的可能性。